The field of the invention generally relates to management of distributed DC power sources and, more particularly, to monitoring of distributed DC power sources, such as solar cell array, fuel cells, batteries, and similar applications.
The recent increased interest in renewable energy has led to increased research in systems for distributed generation of energy, such as photovoltaic cells (PV), fuel cells, batteries (e.g., for hybrid cars), etc. Various topologies have been proposed for connecting these power sources to the load, taking into consideration various parameters, such as voltage/current requirements, operating conditions, reliability, safety, costs, etc. For example, most of these sources provide low voltage output (normally lower than 3V), so that many of them need to be connected serially to achieve the require operating voltage. Conversely, a serial connection may fail to provide the required current, so that several strings of serial connections may need to be connected in parallel to provide the required current.
It is also known that power generation from each of these sources depends on manufacturing, operating, and environmental conditions. For example, various inconsistencies in manufacturing may cause two identical sources to provide different output characteristics. Similarly, two identical sources may react differently to operating and/or environmental conditions, such as load, temperature, etc. In practical installations, different source may also experience different environmental conditions, e.g., in solar power installations some panels may be exposed to full sun, while others be shaded, thereby delivering different power output. While these problems and the solutions provided by the subject invention are applicable to any distributed power system, the following discussion turns to solar energy so as to provide better understanding by way of a concrete example.
A conventional installation of solar power system 10 is illustrated in
The harvested power from the DC sources is delivered to the inverter 104, which converts the fluctuating direct-current (DC) into alternating-current (AC) having a desired voltage and frequency, which, for residential application, is usually 110V or 220V at 60 Hz or 220V at 50 Hz. The AC current from the inverter 104 may then be used for operating electric appliances or fed to the power grid. Alternatively, if the installation is not tied to the grid, the power extracted from the inverter may be directed to a conversion and charge/discharge circuit to store the excess power created as charge in batteries. In case of a battery-tied application, the inversion stage might be skipped altogether, and the DC output of the MPPT stage 107 may be fed into the charge/discharge circuit.
Various environmental and operational conditions impact the power output of DC power sources. For example, the solar energy incident on various panels, ambient temperature and other factors impact the power extracted from each panel. Depending on the number and type of panels used, the extracted power may vary widely in the voltage and current. Changes in temperature, solar irradiance and shading, either from near objects such as trees or far objects such as clouds, can cause power losses. Owners and even professional installers find it difficult to verify the correct operation of the system. With time, many more factors, such as aging, dust and dirt collection and module degradation affect the performance of the solar array.
Data collected at the inverter 104 is not sufficient to provide proper monitoring of the operation of the system. Moreover, when the system experiences power loss, it is desirable to ascertain whether it is due to environmental conditions or from malfunctions and/or poor maintenance of the components of the solar array. Furthermore, it is desirable to easily locate the particular solar panel that may be responsible for the power loss. However, to collect information from each panel requires some means of communication to a central data gathering system. The data gathering system needs to be able to control data transmission, avoid transmission collisions, and ascertain each sender of data. Such a requirement can be most easily accomplished using a duplex transmission method. However, a duplex transmission method requires additional transmission lines and complicates the system. On the other hand, one-way transmission is prone to collisions and makes it difficult to compare data transmitted from the various sources.
Consequently, conventional methods in the field of solar array monitoring focus mainly on the collection of the output parameters from the overall solar array. Due to the wide variability of power output of such systems, and the wide range of environmental conditions that affect the power output, the output parameters from the overall system are not sufficient to verify whether the solar array is operating at peak power production. Local disturbances, such as faulty installation, improper maintenance, reliability issues and obstructions might cause locals power losses which are difficult to detect from overall monitoring parameters.
For further discussion of the above issues relating to distributed power sources and solar panels, the reader is highly encouraged to review the following literature, which may or may not be prior art.
The following summary of the invention is provided in order to provide a basic understanding of some aspects and features of the invention. This summary is not an extensive overview of the invention, and as such it is not intended to particularly identify key or critical elements of the invention, or to delineate the scope of the invention. Its sole purpose is to present some concepts of the invention in a simplified form as a prelude to the more detailed description that is presented below.
According to aspects of the invention, there is provided a monitoring system employing one-way transmission. Collisions are avoided or minimized by a novel transmission timing scheme. The novel transmission method also voids the necessity to synchronize the transmission of data. According to aspects of the invention, each transmission carries a unique ID of the data source. The data is collected and stored at a central analysis system, and various analysis is performed on the data to ascertain the operation parameters of each transmission source and of the entire system. According to further aspects of the invention, a mechanism for sending an interrupt message is provided. When a fault is detected in any of the power sources, an interrupt message may be sent that overrides all other messages, so that the fault may be detected immediately. According to aspects of the invention, all data transmission is done using power line communication (PLC). Alternatively, other modes of transmission may be used, such as wireless or dedicated transmission lines, such as Ethernet, RS232, RE485, etc.
According to aspects of the invention, a monitoring system for distributed DC power installation is provided, comprising: a plurality of power sources; a plurality of monitoring modules, each monitoring module associated with one of the power sources and collecting performance data of the associated power source; a plurality of transmitters, each transmitter associated with one of the monitoring modules and transmitting the performance data; a plurality of controllers, each associated with one of the transmitters and controlling transmission events according to elapsed time from timer initialization. Each of the power sources may be connected to a power line and wherein each transmitter transmits the performance data over the power line. Each of the monitoring modules comprises: a current measurement module for collecting the current data; and a voltage measurement module for collecting the voltage data. Each of the monitoring modules may further comprise a temperature sensor module for sensing the temperature data at the power source. Each of the monitoring modules may further comprise an arc detection module for detecting arcing at the power source. Each of the monitoring modules may further comprise a timer, and wherein each controller initializes the timer whenever the associated power source starts to generate power. Each of the monitoring modules may further comprise a randomizer for varying time increments for controlling transmission events. The monitoring system may further comprise a memory storing the performance data accumulated since timer initialization. The monitoring system may further comprise: a central analysis station; and, a communication translator for receiving the performance data from the monitoring modules and transmitting the performance data to the central analysis station. The central analysis station may analyze fault detection. The central analysis station may compare measured power to expected power determined based on external data. Each of the power sources may comprise a solar panel. Each of the power sources may comprise a string of serially connected solar panels. Each of the monitoring modules may comprise a current measurement module for collecting current data. The monitoring system may further comprise: a connection box for parallel coupling all of the string of serially connected solar panels; and, a voltage measuring module measuring the voltage of the parallel coupling. The monitoring system may further comprise: a connection box for parallel coupling all of the string of serially connected solar panels; and, total current measuring module measuring the total current of the parallel coupling. The monitoring system may detect current leakage by comparing output of the total current measuring module to the sum of current measuring modules of each of the monitoring modules.
According to aspects of the invention, a method for monitoring distributed power harvesting systems including DC power sources is provided, the method comprising: individually monitoring power generation at each of the DC power sources and, when power generation passes a threshold at one of the DC power sources, performing the steps: initializing a timer for the power source; collecting performance data for the power source; monitoring passage of time period of the timer and, when the time period reached a setup time, transmitting the collected performance data to a central analysis station. Collecting performance data may further comprise storing the performance data in memory, and wherein transmitting the collected performance data comprises transmitting the collected performance data accumulated since initialization of the timer. Collecting performance data may comprise measuring at least one of output voltage and output current. The method may further comprise comparing performance data for at least one of the DC power sources to performance data from the same DC power source at a different time. The method may further comprise comparing performance data for at least one of the DC power sources to performance data from adjacent ones of the DC power sources. The method may further comprise comparing performance data for at least one of the DC power sources to expected performance data based on external parameters. Monitoring passage of time period may further comprise introducing randomness to the setup time. The method may further comprise serially connecting a plurality of solar panels to form each of the DC power sources. Transmitting the collected performance data may comprise sending the collected performance data over a power line.
According to aspects of the invention, a distributed DC power harvesting system is provided, comprising: a plurality of solar panels serially connected to form a string of panels coupled to a power line; at least one monitoring module connected to the string of panels and gathering performance data from at least one solar panel, the monitoring module comprising: a transmitter for transmitting the performance data over the power line; a controller for controlling transmission events of the transmitter according to elapsed time from timer initialization; and, a receiving station coupled to the power line and receiving the performance data from the transmitter. The receiving station may further comprise at least one of a voltage and current sensor. The receiving station may further comprise a transmitter for relaying at least the performance data received from the power line. The transmitter may comprise a wireless transmitter. The monitoring module may comprise and least one of: a current measurement module for collecting current data from at least one solar panel; and a voltage measurement module for collecting voltage data from at least one solar panel. The monitoring module may further comprise a temperature sensor. The monitoring module may further comprise a timer, and wherein the controller initializes the timer whenever an associated panel starts to generate power. The monitoring module may further comprise a randomizer for varying time increments for controlling transmission events. The system may further comprise a memory storing the performance data accumulated since timer initialization. The system may further comprise: one or more additional string of panels; a connection box for parallel coupling of the string of panels and the one or more additional string of panels; and, a voltage measuring module measuring the voltage of the parallel coupling.
The accompanying drawings, which are incorporated in and constitute a part of this specification, exemplify the embodiments of the present invention and, together with the description, serve to explain and illustrate principles of the invention. The drawings are intended to illustrate major features of the exemplary embodiments in a diagrammatic manner. The drawings are not intended to depict every feature of actual embodiments nor relative dimensions of the depicted elements, and are not drawn to scale.
Aspects of the present invention provide a monitoring system for solar panel system. The monitoring system includes modules that may be attached to each solar panel of the solar system. The monitoring module will monitor several parameters including, etc., panel voltage, panel current, panel temperature, lighting conditions, spatial orientation (e.g., tilt), and other parameters. The information from each monitoring module may be transmitted to a central management unit together with a unique module ID. The transmission may be done over the power lines, in wireless form, or with dedicated wiring—such as Ethernet, RS-232, RS-485 or other. In one aspect of the invention, transmission is done as power line communication in a one-way implementation. Collisions are avoided or minimized by using a unique transmission timing mechanism.
The central management unit may analyze the data from all solar panels. The monitoring system can be implemented at the string level, at the panel level or even at the cell level. The principle applicable at the panel level monitoring may be applied for string level and cell level. Moreover, the innovative monitoring system may be used in small installation, such as residential solar panel installations, and large installations, such as large solar panel field power plants.
Analysis of the data may enable detection and pinpointing of most of the common failures associated with solar array power loss. Further, smart analysis of current and historical data can also be used to suggest corrective measures such as cleaning or replacing a specific portion of the solar array. The system can also detect normal power losses caused by environmental conditions and prevent costly and difficult solar array testing. Additionally, analysis of the data can lead to suggestion for environmental corrective actions. For example, it may suggest changing the tilt or location of specific panels, or removing of obstacles that block the sun under certain conditions not realized at the time of installation.
The monitoring module 300 includes several sub-modules. The sub-modules within the monitoring module 300 include a current measurement module 301, a microcontroller 302, a communication module 303, a voltage measurement module 304, a random access memory (RAM) module, a non-volatile RAM or NVRAM module 306, a temperature sensor 307 and one or more external sensor interfaces 308.
The microcontroller module 302 is coupled to the other modules and controls the other modules. In one exemplary aspect shown in
In various aspects of the invention, inclusion of some of the modules, such as the temperature sensor 307, is optional.
The monitoring module 300 can be implemented using discrete components or may be integrated to obtain an application specific integrated circuit (ASIC).
The measurement modules 301, 304 and the sensor modules 307, 308 may have filter circuits and analog to digital conversion circuits associated with them.
Current and voltage measurement modules 301, 304 are used to collect current and voltage data. The collected data is transferred to the microcontroller module 302. The microcontroller module 302 may be a digital state machine. The microcontroller stores the collected information in its local RAM 305. Pre-defined data, stored in the NVRAM module 306, may be used to control the activity of the microcontroller 302.
The data collected by the current and voltage measurement modules 301, 304 and transferred to the microcontroller 302 may be subsequently transmitted to a central analysis station described below with respect to
The current measurement module 301 may be implemented by various techniques used to measure current. In one aspect of the invention, the current measurement module 301 is implemented using a very low value resistor. The voltage across the resistor will be proportional to the current flowing through the resistor. In another aspect of the invention, the current measurement module 301 is implemented using current probes which use the Hall Effect to measure the current through a conductor without the need to add a series resistor. After translating the current to voltage, the data passes through a low pass filter and is digitized. The low-pass filter and the analog to digital converter associated with the current measurement module 301 are shown as module 311 in
In one aspect of the invention, the voltage measurement module 304 uses simple parallel voltage measurement techniques in order to measure the voltage output of the solar panel. The analog voltage is passed through a low pass filter in order to minimize aliasing. The data is then digitized using an analog to digital converter. The low-pass filter and the analog to digital converter associated with the voltage measurement module 304 are shown as module 314 in
The optional temperature measurement module 307 enables the system to use temperature data in the analysis process. The temperature may be indicative of several types of failures and problems. Furthermore, the panel temperature is a factor in the power output from the panel and in the overall power production.
The one or more external sensor interfaces 308 enable connecting various external sensors to the monitoring module 300. These sensors are optional and may be used where they enable enhanced analysis of the state of the solar array. Examples of external sensors that may be used at the external sensor interfaces 308, include ambient temperature sensor, solar irradiance sensors, spatial orientation such as tilt sensor, sensors from neighboring panels and the like. When a type of sensor is regularly used, then it may be integrated into the monitoring module 300 instead of being an external component.
The microcontroller module 302 manages the monitoring process. The tasks performed by the microcontroller module 302 includes gathering information from the current and voltage measurement modules 301, 304, storing the information in local memory 305, 306 and transmitting the stored information to outside of the monitoring module 300. The microcontroller module 302 uses the information stored in memory in order to control its operation. This operating information may be stored in the non-volatile memory of the NVRAM module 306, to preserve the information even when power-loss occurs. Information in the NVRAM module 306 may include information about the microcontroller module 302 such as the serial number, the type of communication bus used, the status update rate and the ID of the central analysis station to which the data is transmitted. This information may be added to the parameters collected by the measurement modules 301, 304 before transmission out of the monitoring module 300.
The installation process of the monitoring module 300 includes connecting each of the monitoring modules 300 to a panel such as the solar panel 101 of
The monitoring module 300 may be installed during the installation of the solar array or retrofitted to an existing installation. In both cases the monitoring module may be connected to the panel junction connection box or to the cables between the panels. The monitoring module may be provided with the connectors and cabling needed to enable easy installation and connection to the panels and cables.
The monitoring module 300 shown in
When the solar panel “wakes”, i.e., starts to receive sun light and generate output power, the monitor initializes a timer to time t0. The monitor may or may not send data at the initialization time. Then, the monitor collects data continuously, but transmits collected data only after a given period has past from t0 or from the last transmission. For example, the monitor may transmit data every 15 minutes. Since the panels are spatially separated, they will most likely wake at different times, introducing randomness to the transmission time, so that each panel would transmit according to its own timer. That is, each monitor would transmit data at:
t0+xC,
where x is a whole natural number and C is a set constant, say 15 minutes. However, for each panel t0 may be at a different time every morning.
As can be appreciated from the above, using the wake up time of the panel to initiate the timer introduces a measure of randomness that helps avoid collisions. According to another embodiment of the invention, another measure of randomness is introduced in the counter. For example, the transmission time may be calculated as t0+xC+ε, where ε is a random number provided by a random number generator, etc. Alternatively, the transmission time may be calculated as t0+x(C+ε). Notably, the random number should be generated separately to each module to prevent the chance that two panels wake at the same time and increment the counter at the same rate, thereby colliding on each transmission attempt. This random element may be reintroduced for each time a transmission is sent. Other methods of introducing randomness may also be used.
The above schemes minimize or avoid collisions. However, if a collision does occur, since the transmission is only one way, the central system would not get the data and would not know what data was lost, and the sending monitors would also have no way of knowing that the data never reached the central system. As a result, when the central system analyzes the data and compares data from one panel to another, errors may be introduced if some data transmission was lost due to collision. For example, if the central unit tries to compare power generated by several panels between 1 pm and 2 pm, the comparison would be inaccurate if data from two or more panels collided at 1:30 pm and is missing from the calculation.
To avoid this problem, a scheme is adopted wherein the data is accumulated at each monitor. Then, at each transmission, the accumulated total value of the data is transmitted. For example, at time t15 the power generated from wake to wake plus 15 minutes is transmitted. At time t0 the power generated from wake to wake plus 30 minutes is transmitted, and so on. In this way, even if one or more transmission was not received by the central unit, the central unit can reconstruct the missing data by, for example, extrapolating it from the data from all of the transmissions that were received. Similar extrapolation may be done in order to put data that arrived at different times from different panels in order to compare between panels on a unified time-base. E.g. Curves of power production from the monitors could be extrapolated for each panel based on the data points that arrived, and then these curves could be compared in order to detect power anomalies or other problems and phenomena.
According to a further aspect of the invention, an interrupt message may be sent, which overrules all other messages. An interrupt message may be sent by any monitoring module 300, for example, whenever a rapid corrective action may be required. This may be when power drops suddenly, as due to malfunction, panel breakage due to hail storms or other cause, etc. The interrupt message may be sent at any time, regardless of the counter's position. In connection with the interrupt message, according to an aspect of the invention a wide band noise detector (WBN) 309 is implemented in the module 300. When the wideband noise detector 309 detects noise above a certain threshold, it sends an interrupt message. Notably, this feature is implemented to identify arcing that may be caused due to an open connection in the system. That is, since the system voltage is relatively high, e.g., 400-600V, if a connection becomes separated, and potential may arc through the air. Such arcing can be detected as wideband noise. The wideband noise detector 309 may be implemented as part of the controller 302, as shown in
Additionally to assist in locating faults and deleterious conditions, each monitor has a unique ID, which is transmitted together with the data. In this way, the central unit can easily monitor each panel individually and the physical location of the panel corresponding to each data stream can be easily ascertained. Thus, for example, if every day at 2 pm there is power drop at one or more panels, their physical location can be easily ascertained by using the unique ID transmitted with the data. Then the status of the panels can be evaluated to see whether there is an obstacle that obscures the sun every day at 2 pm. Furthermore, if a geographic information sensor (such as a GPS) is attached to the monitoring module, it could directly transmit its location so the obstruction may be found and removed.
The central analysis unit may also use the ID information to perform data analysis by comparing the data from the particular panel to expected data obtained from external sources. That is, if the central analysis system knows the location, temperature, tilt, etc., of the panel having the particular ID, it may calculate expected power from this panel at the current prevailing conditions. If the data received from the panel substantially deviates from the expected power output, it may determine that the panel is faulty or some factors cause it to lose power. This is especially a beneficial feature in the topology of the embodiment described herein, since the maximum power point tracking is performed on an individual panel basis, so the power obtained should be commensurable with the expected power. That is, there is no error introduced due to tracking maximum power point on an average of several panels.
In
The module communication bus 404 can be implemented in different ways. In one aspect of the invention, an off-the-shelf communication bus such as Ethernet, RS232 or RS485 is used. Using an off-the-shelf communication bus simplifies the design of the communication module 303 of the monitoring module 300 but requires separate cables. Other methods such as wireless communications or power line communications may also be used. When wired communication is used between the monitoring modules 300 and the communication translator 401, the communication translator 401 may be located in close physical proximity to the panels to reduce the length of the module communication bus 404 or buses. When wireless communication is used between the monitoring modules 300 and the communication translator 401, the communication translator 401 need not be in close physical proximity to the panels.
The communication translator 401 is used to convert the module communication bus or buses 404 to a standard communication protocol and physical layer. This enables receiving data from the monitoring module 300 on various data terminals, such as a computer or PDA. The central analysis station 403 may then be implemented as a software that is run on a standard PC, an embedded platform or a proprietary device.
In one aspect of the invention, unidirectional power line communication is used from the monitoring modules 300 to the central analysis station 403. With unidirectional communication, a mechanism for preventing cross-talk between the monitoring modules 300 may be provided. Such a mechanism may be implemented in the form of transmitting data from each of the monitoring modules 300 at preset times as explained with respect to
In one aspect of the invention, bidirectional communication is used between the central analysis station 403 and the monitoring modules 300. With bidirectional communication, the central analysis station 403 may proactively request the data collected by one or more of the monitoring modules 300.
The collected data is analyzed at the central analysis station 403. By analyzing the information from each of the monitoring modules, many causes for power losses can be detected. For example, when energy production from a panel is low on some hours of the day while the adjacent panels produce the same power on all hours, the low performance panel is probably shaded during the low production hours. Panels that produce little power in comparison to their adjacent panels might be constantly shaded, soiled or installed incorrectly. Comparison of the power output of each panel with its corresponding power output a year earlier may indicate that the output has diminished due to dust or soil collected on the panel. Additional data may be gathered from outside sources in order to monitor and evaluate the power production of the array. E.g. irradiance data from satellites, weather data from terrestrial stations, RADAR systems or satellites, or weather and irradiance forecasts based on historical data or computerized models, and so forth. Many more heuristics and algorithmic methods may be used to detect problems and help the owner of the system to pinpoint problems in the array. Having the unique ID transmitted with the data helps identify the panels and their physical location.
In configuration 50, each solar panel 501 is connected to a separate power converter circuit 505. Power converter circuit 505 adapts optimally to the power characteristics of the connected solar panel 501 and transfers the power efficiently from input to output. Power converters 505 can be buck converters, boost converters, buck/boost converters, flyback or forward converters. The converters 505 may also contain a number of component converters, for example a serial connection of a buck and a boost converter.
Each converter 505 includes a control loop that receives a feedback signal, not from the output current or voltage, but rather from the input coming from the solar panel 501. An example of such a control loop is a maximum power point tracking (MPPT) loop in solar array applications. The MPPT loop in the converter locks the input voltage and current from each solar pane 1501 to its optimal power point. The MPPT loop of the converter 505 operates to perform maximum power point tracking and transfers the input power to its output without imposing a controlled output voltage or output current.
Each converter 505 may include a monitoring module according to the aspects of the invention. For example, each converter 505 may include the monitoring module 300 of
Conventional DC-to-DC converters have a wide input voltage range at the solar panel side and an output voltage predetermined and fixed on installation. In these conventional DC-to-DC voltage converters, the controller monitors the current or voltage at the input, and the voltage at the output. The controller determines the appropriate pulse width modulation (PWM) duty cycle to fix the input voltage to the predetermined value decreasing the duty cycle if the input voltage drops while varying the current extracted from the input. In converters 505, according to embodiments of the present invention, the controller monitors the voltage and current at its input and determines the PWM in such a way that maximum power is extracted, dynamically tracking the maximum point. In embodiments of the present invention, the feedback loop is closed on the input power in order to track maximum power rather than closing the feedback loop on the output voltage as performed by conventional DC-to-DC voltage converters.
The outputs of converters 505 are series connected into a single DC output into the inverter 504, which converts the series connected DC output to an alternating current power supply. If the output is not required to be AC, the inverter may be omitted, or other load, such as a central DC/DC converter or battery charger may be used instead.
The circuit of
The power conversion controller 706 includes the pulse-width modulation (PWM) circuit 733, and a digital control machine 730 including a protection portion 737. The power conversion controller 706 is coupled to microcontroller 790, which includes an MPPT module 719, and may also optionally include a communication module 709, a monitoring and logging module 711, and a protection module 735.
A current sensor 703 may be coupled between the DC power source 701 and the converter 705, and output of the current sensor 703 may be provided to the digital control machine 730 through an associated analog to digital converter 723. A voltage sensor 704 may be coupled between the DC power source 701 and the converter 705 and output of the voltage sensor 704 may be provided to the digital control machine 730 through an associated analog to digital converter 724. The current sensor 703 and the voltage sensor 704 are used to monitor current and voltage output from the DC power source, e.g., the solar panel 701. The measured current and voltage are provided to the digital control machine 730 and are used to maintain the converter input power at the maximum power point.
The PWM circuit 733 controls the switching transistors of the buck and boost portions of the converter circuit. The PWM circuit may be a digital pulse-width modulation (DPWM) circuit. Outputs of the converter 705 taken at the inductor 708 and at the switching transistor 750 are provided to the digital control machine 730 through analog to digital converters 741, 742, so as to control the PWM circuit 733.
A random access memory (RAM) module 715 and a non-volatile random access memory (NVRAM) module 713 may be located outside the microcontroller 790 but coupled to the microcontroller 790. The unique ID and other related data, such as serial number, manufacturer, manufacturing date, etc., may be stored in the NVRAM. A temperature sensor 779 and one or more external sensor interfaces 707 may be coupled to the microcontroller 790. The temperature sensor 779 may be used to measure the temperature of the DC power source 701. A physical interface 717 may be coupled to the microcontroller 790 and used to convert data from the microcontroller 790 into a standard communication protocol and physical layer. An internal power supply unit 739 may be included in the converter 705.
In various aspects of the invention, the current sensor 703 may be implemented by various techniques used to measure current. In one aspect of the invention, the current measurement module 703 is implemented using a very low value resistor. The voltage across the resistor will be proportional to the current flowing through the resistor. In another aspect of the invention, the current measurement module 703 is implemented using current probes which use the Hall Effect to measure the current through a conductor without adding a series resistor. After translating the current to voltage, the data may be passed through a low pass filter and then digitized. The analog to digital converter associated with the current sensor 703 is shown as the A/D converter 723 in
In one aspect of the invention, the voltage sensor 704 uses simple parallel voltage measurement techniques in order to measure the voltage output of the solar panel. The analog voltage is passed through a low pass filter in order to minimize aliasing. The data is then digitized using an analog to digital converter. The analog to digital converter associated with the voltage sensor 704 are shown as the A/D converter 724 in
The current and voltage data collected for tracking the maximum power point at the converter input may be used for monitoring purposes also. An analog to digital converter with sufficient resolution may correctly evaluate the panel voltage and current. However, to evaluate the state of the panel, even low sample rates may be sufficient. A low-pass filter makes it possible for low sample rates to be sufficient for evaluating the state of the panel. The current and voltage date may be provided to the monitoring and logging module 711 for analysis.
The temperature sensor 779 enables the system to use temperature data in the analysis process. The temperature is indicative of some types of failures and problems. Furthermore, in the case that the power source is a solar panel, the panel temperature is a factor in power output production.
The one or more optional external sensor interfaces 707 enable connecting various external sensors to the converter 705. External sensors are optionally used to enhance analysis of the state of the solar panel 701, or a string or an array formed by connecting the solar panels 701. Examples of external sensors include ambient temperature sensors, solar radiance sensors, and sensors from neighboring panels. External sensors may be integrated into the converter 705 instead of being attached externally.
In one aspect of the invention, the information acquired from the current and voltage sensors 703, 704 and the optional temperature sensor 779 and external sensor 707 may be transmitted to a central analysis station for monitoring, control, and analysis using the communications interface 709. The central analysis station is not shown in the figure. The communication interface 709 connects a microcontroller 790 to a communication bus. The communication bus can be implemented in several ways. In one aspect of the invention, the communication bus is implemented using an off-the-shelf communication bus such as Ethernet or RS422. Other methods such as wireless communications or power line communications may also be used. If bidirectional communication is used, the central analysis station may request the data collected by the microcontroller 790. Alternatively or in addition, the information acquired from sensors 703, 704, 707 is logged locally using the monitoring and logging module 711 in local memory such as the RAM 715 or the NVRAM 713.
Analysis of the information from sensors 703, 704, 707 enables detection and location of many types of failures associated with power loss in solar arrays. Smart analysis can also be used to suggest corrective measures such as cleaning or replacing a specific portion of the solar array. Analysis of sensor information can also detect power losses caused by environmental conditions and prevent costly and difficult solar array testing.
Consequently, in one aspect of the invention, the microcontroller 790 simultaneously maintains the maximum power point of input power to the converter 705 from the attached DC power source or solar panel 701 based on the MPPT algorithm in the MPPT module 719 and manages the process of gathering the information from sensors 703, 704, 707. The collected information may be stored in the local memory 713, 715 and transmitted to an external central analysis station. In one aspect of the invention, the microcontroller 790 uses previously defined parameters stored in the NVRAM 713 in order to operate. The information stored in the NVRAM 713 may include information about the converter 705 such as serial number, the type of communication bus used, the status update rate and the ID of the central analysis station. This information may be added to the parameters collected by the sensors before transmission.
The converters 705 may be installed during the installation of the solar array or retrofitted to existing installations. In both cases, the converters 705 may be connected to a panel junction connection box or to cables connecting the panels 701. Each converter 705 may be provided with the connectors and cabling to enable easy installation and connection to solar panels 701 and panel cables.
In one aspect of the invention, the physical interface 717 is used to convert to a standard communication protocol and physical layer so that during installation and maintenance, the converter 705 may be connected to one of various data terminals, such as a computer or PDA. Analysis may then be implemented as software which will be run on a standard computer, an embedded platform or a proprietary device.
The installation process of the converters 705 includes connecting each converter 705 to a solar panel 701. One or more of the sensors 703, 704, 707 may be used to ensure that the solar panel 701 and the converter 705 are properly coupled together. During installation, parameters such as serial number, physical location and the array connection topology may be stored in the NVRAM 713. These parameters may be used by analysis software to detect future problems in solar panels 701 and arrays.
When the DC power sources 701 are solar panels, one of the problems facing installers of photovoltaic solar panel arrays is safety. The solar panels 701 are connected in series during the day when there is sunlight. Therefore, at the final stages of installation, when several solar panels 701 are connected in series, the voltage across a string of panels may reach dangerous levels. Voltages as high as 600V are common in domestic installations. Thus, the installer faces a danger of electrocution. The converters 705 that are connected to the panels 701 may use built-in functionality to prevent such a danger. For example, the converters 705 may limit the output voltage to a safe level until a predetermined minimum load is detected. Only after detecting this predetermined load, the microcontroller 790 ramps up the output voltage from the converter 705.
Another method of providing a safety mechanism is to use communications between the converters 705 and the associated inverter for the string or array of panels. This communication, that may be for example a power line communication, may provide a handshake before any significant or potentially dangerous power level is made available. Thus, the converters 705 would wait for an analog or digital signal from the inverter in the associated array before transferring power to inverter.
The above methodology for monitoring, control and analysis of the DC power sources 701 may be implemented on solar panels or on strings or arrays of solar panels or for other power sources such as batteries and fuel cells.
The innovative monitoring described so far may be implemented in any solar panel installation, but is particularly beneficial for residential and relatively small installations. On the other hand, for large installations, such as, e.g., 025 megawatt solar field and larger, implementing monitoring on each panel may prove to be prohibitively expensive. Accordingly, the monitoring solution provided herein may be modified for such applications.
With the arrangement of
Additionally, rather than utilizing complicated master slave arrangement, in this embodiment the monitors 925 send the data using the power line communication via uni-directional communication method as explained above with respect to
Embodiments of the invention, such as those described above, provide a greater degree of fault tolerance, maintenance and serviceability by monitoring, controlling, logging and/or communicating the performance of each solar panel 501, or strings of solar panels 503. A microcontroller used in the MPPT circuit of the converter 505, may include the monitoring module 300 of
The present invention has been described in relation to particular examples, which are intended in all respects to be illustrative rather than restrictive. Those skilled in the art will appreciate that many different combinations of hardware, software, and firmware will be suitable for practicing the present invention. Moreover, other implementations of the invention will be apparent to those skilled in the art from consideration of the specification and practice of the invention disclosed herein. It is intended that the specification and examples be considered as exemplary only, with a true scope and spirit of the invention being indicated by the following claims and their equivalents.
This Application is a continuation of U.S. patent application Ser. No. 15/480,574 filed Apr. 6, 2017, titled “Monitoring of Distributed Power Harvesting Systems Using DC Power Sources,” which is a continuation of U.S. patent application Ser. No. 14/513,877 filed Oct. 14, 2014, titled “Monitoring of Distributed Power Harvesting Systems Using DC Power Sources,” now U.S. Pat. No. 9,644,993, which is a continuation of U.S. patent application Ser. No. 13/901,890 filed May 24, 2013, titled “Monitoring of Distributed Power Harvesting Systems Using DC Power Sources,” now U.S. Pat. No. 8,903,681, which is a continuation of U.S. patent application Ser. No. 11/951,419 filed Dec. 6, 2007, titled “Monitoring of Distributed Power Harvesting Systems Using DC Power Sources”, now U.S. Pat. No. 8,473,250, which claims priority to U.S. Provisional Patent Applications, Ser. No. 60/868,851, filed Dec. 6, 2006, and titled “Distributed Solar Array Monitoring, Management and Maintenance,” Ser. No. 60/868,893, filed Dec. 6, 2006, and titled “Distributed Power Harvesting System for Distributed Power Sources,” Ser. No. 60/868,962, filed Dec. 7, 2006, and titled “System, Method and Apparatus for Chemically Independent Battery,” Ser. No. 60/908,095, filed Mar. 26, 2007, and titled “System and Method for Power Harvesting from Distributed Power Sources,” and Ser. No. 60/916,815, filed May 9, 2007, and titled “Harvesting Power from Direct Current Power Sources. The entire contents of the above-identified applications are incorporated herein by reference. Further, this Application is related to U.S. patent application Ser. No. 11/950,224, filed Dec. 4, 2007, titled “Current Bypass for Distributed Power Harvesting Systems Using DC Power Sources,” patent application Ser. No. 11/950,271, filed Dec. 4, 2007, titled “Distributed Power Harvesting Systems Using DC Power Sources,” patent application Ser. No. 11/950,307, filed Dec. 4, 2007, titled “Method for Distributed Power Harvesting Systems Using DC Power Sources,” patent application Ser. No. 11/951,485, filed Dec. 6, 2007, titled “Removable Component Cartridge for Increasing Reliability in Power Harvesting Systems,” and patent application Ser. No. 11/951,562, filed Dec. 6, 2007, titled “Battery Power Delivery Module,” in which the entire contents of the above-identified applications are incorporated herein by reference.
Number | Name | Date | Kind |
---|---|---|---|
2367925 | Brown | Jan 1945 | A |
2758219 | Miller | Aug 1956 | A |
2852721 | Harders et al. | Sep 1958 | A |
3369210 | Manickella | Feb 1968 | A |
3392326 | Lamberton | Jul 1968 | A |
3566143 | Paine et al. | Feb 1971 | A |
3696286 | Ule | Oct 1972 | A |
3740652 | Burgener | Jun 1973 | A |
3958136 | Schroeder | May 1976 | A |
3982105 | Eberle | Sep 1976 | A |
4060757 | McMurray | Nov 1977 | A |
4101816 | Shepter | Jul 1978 | A |
4104687 | Zulaski | Aug 1978 | A |
4129788 | Chavannes | Dec 1978 | A |
4146785 | Neale | Mar 1979 | A |
4161771 | Bates | Jul 1979 | A |
4171861 | Hohorst | Oct 1979 | A |
4183079 | Wachi | Jan 1980 | A |
4257087 | Cuk | Mar 1981 | A |
4296461 | Mallory et al. | Oct 1981 | A |
4321581 | Tappeiner et al. | Mar 1982 | A |
4346341 | Blackburn et al. | Aug 1982 | A |
4367557 | Stern et al. | Jan 1983 | A |
4375662 | Baker | Mar 1983 | A |
4404472 | Steigerwald | Sep 1983 | A |
4412142 | Ragonese et al. | Oct 1983 | A |
4452867 | Conforti | Jun 1984 | A |
4453207 | Paul | Jun 1984 | A |
4460232 | Sotolongo | Jul 1984 | A |
4479175 | Gille et al. | Oct 1984 | A |
4481654 | Daniels et al. | Nov 1984 | A |
4488136 | Hansen et al. | Dec 1984 | A |
4545997 | Wong et al. | Oct 1985 | A |
4549254 | Kissel | Oct 1985 | A |
4554502 | Rohatyn | Nov 1985 | A |
4554515 | Burson et al. | Nov 1985 | A |
4580090 | Bailey et al. | Apr 1986 | A |
4591965 | Dickerson | May 1986 | A |
4598330 | Woodworth | Jul 1986 | A |
4602322 | Merrick | Jul 1986 | A |
4604567 | Chetty | Aug 1986 | A |
4623753 | Feldman et al. | Nov 1986 | A |
4626983 | Harada et al. | Dec 1986 | A |
4631565 | Tihanyi | Dec 1986 | A |
4637677 | Barkus | Jan 1987 | A |
4639844 | Gallios et al. | Jan 1987 | A |
4641042 | Miyazawa | Feb 1987 | A |
4641079 | Kato et al. | Feb 1987 | A |
4644458 | Harafuji et al. | Feb 1987 | A |
4649334 | Nakajima | Mar 1987 | A |
4652770 | Kumano | Mar 1987 | A |
4683529 | Bucher, II | Jul 1987 | A |
4685040 | Steigerwald et al. | Aug 1987 | A |
4686617 | Colton | Aug 1987 | A |
4706181 | Mercer | Nov 1987 | A |
4719553 | Hinckley | Jan 1988 | A |
4720667 | Lee et al. | Jan 1988 | A |
4720668 | Lee et al. | Jan 1988 | A |
4736151 | Dishner | Apr 1988 | A |
4746879 | Ma et al. | May 1988 | A |
4772994 | Harada et al. | Sep 1988 | A |
4783728 | Hoffman | Nov 1988 | A |
4819121 | Saito et al. | Apr 1989 | A |
RE33057 | Clegg et al. | Sep 1989 | E |
4864213 | Kido | Sep 1989 | A |
4868379 | West | Sep 1989 | A |
4873480 | Lafferty | Oct 1989 | A |
4888063 | Powell | Dec 1989 | A |
4888702 | Gerken et al. | Dec 1989 | A |
4899269 | Rouzies | Feb 1990 | A |
4903851 | Slough | Feb 1990 | A |
4906859 | Kobayashi et al. | Mar 1990 | A |
4910518 | Kim et al. | Mar 1990 | A |
4951117 | Kasai | Aug 1990 | A |
4978870 | Chen et al. | Dec 1990 | A |
4987360 | Thompson | Jan 1991 | A |
5001415 | Watkinson | Mar 1991 | A |
5027051 | Lafferty | Jun 1991 | A |
5027059 | de Montgolfier et al. | Jun 1991 | A |
5045988 | Gritter et al. | Sep 1991 | A |
5081558 | Mahler | Jan 1992 | A |
5138422 | Fujii et al. | Aug 1992 | A |
5144222 | Herbert | Sep 1992 | A |
5155670 | Brian | Oct 1992 | A |
5191519 | Kawakami | Mar 1993 | A |
5196781 | Jamieson et al. | Mar 1993 | A |
5210519 | Moore | May 1993 | A |
5237194 | Takahashi | Aug 1993 | A |
5268832 | Kandatsu | Dec 1993 | A |
5280133 | Nath | Jan 1994 | A |
5280232 | Kohl et al. | Jan 1994 | A |
5287261 | Ehsani | Feb 1994 | A |
5289361 | Vinciarelli | Feb 1994 | A |
5289998 | Bingley et al. | Mar 1994 | A |
5327071 | Frederick et al. | Jul 1994 | A |
5329222 | Gyugyi et al. | Jul 1994 | A |
5345375 | Mohan | Sep 1994 | A |
5379209 | Goff | Jan 1995 | A |
5381327 | Yan | Jan 1995 | A |
5402060 | Erisman | Mar 1995 | A |
5404059 | Loffler | Apr 1995 | A |
5412558 | Sakurai et al. | May 1995 | A |
5413313 | Mutterlein et al. | May 1995 | A |
5446645 | Shirahama et al. | Aug 1995 | A |
5460546 | Kunishi et al. | Oct 1995 | A |
5477091 | Fiorina et al. | Dec 1995 | A |
5493154 | Smith et al. | Feb 1996 | A |
5497289 | Sugishima et al. | Mar 1996 | A |
5501083 | Kim | Mar 1996 | A |
5504418 | Ashley | Apr 1996 | A |
5504449 | Prentice | Apr 1996 | A |
5517378 | Asplund et al. | May 1996 | A |
5530335 | Decker et al. | Jun 1996 | A |
5539238 | Malhi | Jul 1996 | A |
5548504 | Takehara | Aug 1996 | A |
5563780 | Goad | Oct 1996 | A |
5565855 | Knibbe | Oct 1996 | A |
5576941 | Nguyen et al. | Nov 1996 | A |
5585749 | Pace et al. | Dec 1996 | A |
5604430 | Decker et al. | Feb 1997 | A |
5616913 | Litterst | Apr 1997 | A |
5636107 | Lu et al. | Jun 1997 | A |
5644219 | Kurokawa | Jul 1997 | A |
5646501 | Fishman et al. | Jul 1997 | A |
5648731 | Decker et al. | Jul 1997 | A |
5659465 | Flack et al. | Aug 1997 | A |
5677833 | Bingley | Oct 1997 | A |
5684385 | Guyonneau et al. | Nov 1997 | A |
5686766 | Tamechika | Nov 1997 | A |
5703390 | Itoh | Dec 1997 | A |
5708576 | Jones et al. | Jan 1998 | A |
5719758 | Nakata et al. | Feb 1998 | A |
5722057 | Wu | Feb 1998 | A |
5726615 | Bloom | Mar 1998 | A |
5731603 | Nakagawa et al. | Mar 1998 | A |
5734565 | Mueller et al. | Mar 1998 | A |
5747967 | Muljadi et al. | May 1998 | A |
5773963 | Blanc et al. | Jun 1998 | A |
5777515 | Kimura | Jul 1998 | A |
5777858 | Rodulfo | Jul 1998 | A |
5780092 | Agbo et al. | Jul 1998 | A |
5793184 | O'Connor | Aug 1998 | A |
5798631 | Spee et al. | Aug 1998 | A |
5801519 | Midya et al. | Sep 1998 | A |
5804894 | Leeson et al. | Sep 1998 | A |
5812045 | Ishikawa et al. | Sep 1998 | A |
5814970 | Schmidt | Sep 1998 | A |
5821734 | Faulk | Oct 1998 | A |
5822186 | Bull et al. | Oct 1998 | A |
5838148 | Kurokami et al. | Nov 1998 | A |
5847549 | Dodson, III | Dec 1998 | A |
5859772 | Hilbert | Jan 1999 | A |
5869956 | Nagao et al. | Feb 1999 | A |
5873738 | Shimada et al. | Feb 1999 | A |
5886882 | Rodulfo | Mar 1999 | A |
5886890 | Ishida et al. | Mar 1999 | A |
5892354 | Nagao et al. | Apr 1999 | A |
5898585 | Sirichote et al. | Apr 1999 | A |
5903138 | Hwang et al. | May 1999 | A |
5905645 | Cross | May 1999 | A |
5917722 | Singh | Jun 1999 | A |
5919314 | Kim | Jul 1999 | A |
5923100 | Lukens et al. | Jul 1999 | A |
5923158 | Kurokami et al. | Jul 1999 | A |
5929614 | Copple | Jul 1999 | A |
5930128 | Dent | Jul 1999 | A |
5930131 | Feng | Jul 1999 | A |
5932994 | Jo et al. | Aug 1999 | A |
5933327 | Leighton et al. | Aug 1999 | A |
5945806 | Faulk | Aug 1999 | A |
5946206 | Shimizu et al. | Aug 1999 | A |
5949668 | Schweighofer | Sep 1999 | A |
5961739 | Osborne | Oct 1999 | A |
5963010 | Hayashi et al. | Oct 1999 | A |
5963078 | Wallace | Oct 1999 | A |
5986909 | Hammond et al. | Nov 1999 | A |
5990659 | Frannhagen | Nov 1999 | A |
6002290 | Avery et al. | Dec 1999 | A |
6021052 | Unger et al. | Feb 2000 | A |
6031736 | Takehara et al. | Feb 2000 | A |
6037720 | Wong et al. | Mar 2000 | A |
6038148 | Farrington et al. | Mar 2000 | A |
6046470 | Williams et al. | Apr 2000 | A |
6046919 | Madenokouji et al. | Apr 2000 | A |
6050779 | Nagao et al. | Apr 2000 | A |
6058035 | Madenokouji et al. | May 2000 | A |
6064086 | Nakagawa et al. | May 2000 | A |
6078511 | Fasullo et al. | Jun 2000 | A |
6081104 | Kern | Jun 2000 | A |
6082122 | Madenokouji et al. | Jul 2000 | A |
6087738 | Hammond | Jul 2000 | A |
6091329 | Newman | Jul 2000 | A |
6093885 | Takehara et al. | Jul 2000 | A |
6094129 | Baiatu | Jul 2000 | A |
6101073 | Takehara | Aug 2000 | A |
6105317 | Tomiuchi et al. | Aug 2000 | A |
6111188 | Kurokami et al. | Aug 2000 | A |
6111391 | Cullen | Aug 2000 | A |
6111767 | Handleman | Aug 2000 | A |
6130458 | Takagi et al. | Oct 2000 | A |
6150739 | Baumgartl et al. | Nov 2000 | A |
6151234 | Oldenkamp | Nov 2000 | A |
6163086 | Choo | Dec 2000 | A |
6166455 | Li | Dec 2000 | A |
6166527 | Dwelley et al. | Dec 2000 | A |
6169678 | Kondo et al. | Jan 2001 | B1 |
6175219 | Imamura et al. | Jan 2001 | B1 |
6175512 | Hagihara et al. | Jan 2001 | B1 |
6191456 | Stoisiek et al. | Feb 2001 | B1 |
6215286 | Scoones et al. | Apr 2001 | B1 |
6219623 | Wills | Apr 2001 | B1 |
6225793 | Dickmann | May 2001 | B1 |
6255360 | Domschke et al. | Jul 2001 | B1 |
6255804 | Herniter et al. | Jul 2001 | B1 |
6256234 | Keeth et al. | Jul 2001 | B1 |
6259234 | Perol | Jul 2001 | B1 |
6262558 | Weinberg | Jul 2001 | B1 |
6268559 | Yamawaki | Jul 2001 | B1 |
6281485 | Siri | Aug 2001 | B1 |
6285572 | Onizuka et al. | Sep 2001 | B1 |
6292379 | Edevold et al. | Sep 2001 | B1 |
6301128 | Jang et al. | Oct 2001 | B1 |
6304065 | Wittenbreder | Oct 2001 | B1 |
6307749 | Daanen et al. | Oct 2001 | B1 |
6311137 | Kurokami et al. | Oct 2001 | B1 |
6316716 | Hilgrath | Nov 2001 | B1 |
6320769 | Kurokami et al. | Nov 2001 | B2 |
6331670 | Takehara et al. | Dec 2001 | B2 |
6339538 | Randleman | Jan 2002 | B1 |
6346451 | Simpson et al. | Feb 2002 | B1 |
6350944 | Sherif et al. | Feb 2002 | B1 |
6351130 | Preiser et al. | Feb 2002 | B1 |
6369461 | Jungreis et al. | Apr 2002 | B1 |
6369462 | Siri | Apr 2002 | B1 |
6380719 | Underwood et al. | Apr 2002 | B2 |
6396170 | Laufenberg et al. | May 2002 | B1 |
6396239 | Benn et al. | May 2002 | B1 |
6425248 | Tonomura et al. | Jul 2002 | B1 |
6429546 | Ropp et al. | Aug 2002 | B1 |
6429621 | Arai | Aug 2002 | B1 |
6433522 | Siri | Aug 2002 | B1 |
6433978 | Neiger et al. | Aug 2002 | B1 |
6441597 | Lethellier | Aug 2002 | B1 |
6445599 | Nguyen | Sep 2002 | B1 |
6448489 | Kimura et al. | Sep 2002 | B2 |
6452814 | Wittenbreder | Sep 2002 | B1 |
6469919 | Bennett | Oct 2002 | B1 |
6472254 | Cantarini et al. | Oct 2002 | B2 |
6483203 | McCormack | Nov 2002 | B1 |
6493246 | Suzui et al. | Dec 2002 | B2 |
6501362 | Hoffman et al. | Dec 2002 | B1 |
6507176 | Wittenbreder, Jr. | Jan 2003 | B2 |
6509712 | Landis | Jan 2003 | B1 |
6515215 | Mimura | Feb 2003 | B1 |
6519165 | Koike | Feb 2003 | B2 |
6528977 | Arakawa | Mar 2003 | B2 |
6531848 | Chitsazan et al. | Mar 2003 | B1 |
6545211 | Mimura | Apr 2003 | B1 |
6548205 | Leung et al. | Apr 2003 | B2 |
6560131 | vonBrethorst | May 2003 | B1 |
6587051 | Takehara et al. | Jul 2003 | B2 |
6590793 | Nagao et al. | Jul 2003 | B1 |
6590794 | Carter | Jul 2003 | B1 |
6593520 | Kondo et al. | Jul 2003 | B2 |
6593521 | Kobayashi | Jul 2003 | B2 |
6603672 | Deng et al. | Aug 2003 | B1 |
6608468 | Nagase | Aug 2003 | B2 |
6611130 | Chang | Aug 2003 | B2 |
6611441 | Kurokami et al. | Aug 2003 | B2 |
6628011 | Droppo et al. | Sep 2003 | B2 |
6633824 | Dollar, II | Oct 2003 | B2 |
6650031 | Goldack | Nov 2003 | B1 |
6650560 | MacDonald et al. | Nov 2003 | B2 |
6653549 | Matsushita et al. | Nov 2003 | B2 |
6657419 | Renyolds | Dec 2003 | B2 |
6672018 | Shingleton | Jan 2004 | B2 |
6678174 | Suzui et al. | Jan 2004 | B2 |
6690590 | Stamenic et al. | Feb 2004 | B2 |
6693327 | Priefert et al. | Feb 2004 | B2 |
6693781 | Kroker | Feb 2004 | B1 |
6708507 | Sem et al. | Mar 2004 | B1 |
6709291 | Wallace et al. | Mar 2004 | B1 |
6731136 | Knee | May 2004 | B2 |
6738692 | Schienbein et al. | May 2004 | B2 |
6744643 | Luo et al. | Jun 2004 | B2 |
6765315 | Hammerstrom et al. | Jul 2004 | B2 |
6768047 | Chang et al. | Jul 2004 | B2 |
6768180 | Salama et al. | Jul 2004 | B2 |
6788033 | Vinciarelli | Sep 2004 | B2 |
6788146 | Forejt et al. | Sep 2004 | B2 |
6795318 | Haas et al. | Sep 2004 | B2 |
6800964 | Beck | Oct 2004 | B2 |
6801442 | Suzui et al. | Oct 2004 | B2 |
6807069 | Nieminen et al. | Oct 2004 | B2 |
6809942 | Madenokouji et al. | Oct 2004 | B2 |
6810339 | Wills | Oct 2004 | B2 |
6812396 | Makita et al. | Nov 2004 | B2 |
6828503 | Yoshikawa et al. | Dec 2004 | B2 |
6837739 | Gorringe et al. | Jan 2005 | B2 |
6838611 | Kondo et al. | Jan 2005 | B2 |
6842354 | Tallam et al. | Jan 2005 | B1 |
6850074 | Adams et al. | Feb 2005 | B2 |
6856102 | Lin et al. | Feb 2005 | B1 |
6882131 | Takada et al. | Apr 2005 | B1 |
6888728 | Takagi et al. | May 2005 | B2 |
6914418 | Sung | Jul 2005 | B2 |
6919714 | Delepaut | Jul 2005 | B2 |
6927955 | Suzui et al. | Aug 2005 | B2 |
6933627 | Wilhelm | Aug 2005 | B2 |
6933714 | Fasshauer et al. | Aug 2005 | B2 |
6936995 | Kapsokavathis et al. | Aug 2005 | B2 |
6940735 | Deng et al. | Sep 2005 | B2 |
6949843 | Dubovsky | Sep 2005 | B2 |
6950323 | Achleitner et al. | Sep 2005 | B2 |
6963147 | Kurokami et al. | Nov 2005 | B2 |
6966184 | Toyomura et al. | Nov 2005 | B2 |
6970365 | Turchi | Nov 2005 | B2 |
6980783 | Liu et al. | Dec 2005 | B2 |
6984967 | Notman | Jan 2006 | B2 |
6984970 | Capel | Jan 2006 | B2 |
6987444 | Bub et al. | Jan 2006 | B2 |
6996741 | Pittelkow et al. | Feb 2006 | B1 |
7030597 | Bruno et al. | Apr 2006 | B2 |
7031176 | Kotsopoulos et al. | Apr 2006 | B2 |
7038430 | Itabashi et al. | May 2006 | B2 |
7042195 | Tsunetsugu et al. | May 2006 | B2 |
7045991 | Nakamura et al. | May 2006 | B2 |
7046531 | Zocchi et al. | May 2006 | B2 |
7053506 | Alonso et al. | May 2006 | B2 |
7061211 | Satoh et al. | Jun 2006 | B2 |
7061214 | Mayega et al. | Jun 2006 | B2 |
7064967 | Ichinose et al. | Jun 2006 | B2 |
7068017 | Willner et al. | Jun 2006 | B2 |
7072194 | Nayar et al. | Jul 2006 | B2 |
7078883 | Chapman et al. | Jul 2006 | B2 |
7079406 | Kurokami et al. | Jul 2006 | B2 |
7087332 | Harris | Aug 2006 | B2 |
7090509 | Gilliland et al. | Aug 2006 | B1 |
7091707 | Cutler | Aug 2006 | B2 |
7097516 | Werner et al. | Aug 2006 | B2 |
7099169 | West et al. | Aug 2006 | B2 |
7126053 | Kurokami et al. | Oct 2006 | B2 |
7126294 | Minami et al. | Oct 2006 | B2 |
7138786 | Ishigaki et al. | Nov 2006 | B2 |
7142997 | Widner | Nov 2006 | B1 |
7148669 | Maksimovic et al. | Dec 2006 | B2 |
7157888 | Chen et al. | Jan 2007 | B2 |
7158359 | Bertele et al. | Jan 2007 | B2 |
7158395 | Deng et al. | Jan 2007 | B2 |
7161082 | Matsushita et al. | Jan 2007 | B2 |
7174973 | Lysaght | Feb 2007 | B1 |
7176667 | Chen et al. | Feb 2007 | B2 |
7183667 | Colby et al. | Feb 2007 | B2 |
7193872 | Siri | Mar 2007 | B2 |
7202653 | Pai | Apr 2007 | B2 |
7218541 | Price et al. | May 2007 | B2 |
7248946 | Bashaw et al. | Jul 2007 | B2 |
7256566 | Bhavaraju et al. | Aug 2007 | B2 |
7259474 | Blanc | Aug 2007 | B2 |
7262979 | Wai et al. | Aug 2007 | B2 |
7276886 | Kinder et al. | Oct 2007 | B2 |
7277304 | Stancu et al. | Oct 2007 | B2 |
7281141 | Elkayam et al. | Oct 2007 | B2 |
7282814 | Jacobs | Oct 2007 | B2 |
7282924 | Wittner | Oct 2007 | B1 |
7291036 | Daily et al. | Nov 2007 | B1 |
RE39976 | Schiff et al. | Jan 2008 | E |
7315052 | Alter | Jan 2008 | B2 |
7319313 | Dickerson et al. | Jan 2008 | B2 |
7324361 | Sid | Jan 2008 | B2 |
7336004 | Lai | Feb 2008 | B2 |
7336056 | Dening | Feb 2008 | B1 |
7339287 | Jepsen et al. | Mar 2008 | B2 |
7348802 | Kasanyal et al. | Mar 2008 | B2 |
7352154 | Cook | Apr 2008 | B2 |
7361952 | Miura et al. | Apr 2008 | B2 |
7371963 | Suenaga et al. | May 2008 | B2 |
7372712 | Stancu et al. | May 2008 | B2 |
7385380 | Ishigaki et al. | Jun 2008 | B2 |
7385833 | Keung | Jun 2008 | B2 |
7388348 | Mattichak | Jun 2008 | B2 |
7391190 | Rajagopalan | Jun 2008 | B1 |
7394237 | Chou et al. | Jul 2008 | B2 |
7405117 | Zuniga et al. | Jul 2008 | B2 |
7414870 | Rottger et al. | Aug 2008 | B2 |
7420354 | Cutler | Sep 2008 | B2 |
7420815 | Love | Sep 2008 | B2 |
7432691 | Cutler | Oct 2008 | B2 |
7435134 | Lenox | Oct 2008 | B2 |
7435897 | Russell | Oct 2008 | B2 |
7443052 | Wendt et al. | Oct 2008 | B2 |
7443152 | Utsunomiya | Oct 2008 | B2 |
7450401 | Iida | Nov 2008 | B2 |
7456523 | Kobayashi | Nov 2008 | B2 |
7463500 | West | Dec 2008 | B2 |
7466566 | Fukumoto | Dec 2008 | B2 |
7471014 | Lum et al. | Dec 2008 | B2 |
7471524 | Batarseh et al. | Dec 2008 | B1 |
7479774 | Wai et al. | Jan 2009 | B2 |
7482238 | Sung | Jan 2009 | B2 |
7485987 | Mori et al. | Feb 2009 | B2 |
7495419 | Ju | Feb 2009 | B1 |
7504811 | Watanabe et al. | Mar 2009 | B2 |
7518346 | Prexl et al. | Apr 2009 | B2 |
7538451 | Nomoto | May 2009 | B2 |
7560915 | Ito et al. | Jul 2009 | B2 |
7589437 | Henne et al. | Sep 2009 | B2 |
7595616 | Prexl et al. | Sep 2009 | B2 |
7599200 | Tomonaga | Oct 2009 | B2 |
7600349 | Liebendorfer | Oct 2009 | B2 |
7602080 | Hadar et al. | Oct 2009 | B1 |
7605498 | Ledenev et al. | Oct 2009 | B2 |
7612283 | Toyomura et al. | Nov 2009 | B2 |
7626834 | Chisenga et al. | Dec 2009 | B2 |
7646116 | Batarseh et al. | Jan 2010 | B2 |
7649434 | Xu et al. | Jan 2010 | B2 |
7701083 | Savage | Apr 2010 | B2 |
7709727 | Roehrig et al. | May 2010 | B2 |
7719140 | Ledenev et al. | May 2010 | B2 |
7723865 | Kitanaka | May 2010 | B2 |
7733069 | Toyomura et al. | Jun 2010 | B2 |
7748175 | Liebendorfer | Jul 2010 | B2 |
7759575 | Jones et al. | Jul 2010 | B2 |
7763807 | Richter | Jul 2010 | B2 |
7780472 | Lenox | Aug 2010 | B2 |
7782031 | Qiu et al. | Aug 2010 | B2 |
7783389 | Yamada et al. | Aug 2010 | B2 |
7787273 | Lu et al. | Aug 2010 | B2 |
7804282 | Bertele | Sep 2010 | B2 |
7807919 | Powell et al. | Oct 2010 | B2 |
7808125 | Sachdeva et al. | Oct 2010 | B1 |
7812701 | Lee et al. | Oct 2010 | B2 |
7821225 | Chou et al. | Oct 2010 | B2 |
7839022 | Wolfs | Nov 2010 | B2 |
7843085 | Ledenev et al. | Nov 2010 | B2 |
7864497 | Quardt et al. | Jan 2011 | B2 |
7868599 | Rahman et al. | Jan 2011 | B2 |
7880334 | Evans et al. | Feb 2011 | B2 |
7883808 | Norimatsu et al. | Feb 2011 | B2 |
7884278 | Powell et al. | Feb 2011 | B2 |
7893346 | Nachamkin et al. | Feb 2011 | B2 |
7898112 | Powell et al. | Mar 2011 | B2 |
7900361 | Adest et al. | Mar 2011 | B2 |
7906870 | Ohm | Mar 2011 | B2 |
7919952 | Fahrenbruch | Apr 2011 | B1 |
7919953 | Porter et al. | Apr 2011 | B2 |
7925552 | Tarbell et al. | Apr 2011 | B2 |
7944191 | Xu | May 2011 | B2 |
7945413 | Krein | May 2011 | B2 |
7948221 | Watanabe et al. | May 2011 | B2 |
7952897 | Nocentini et al. | May 2011 | B2 |
7960650 | Richter et al. | Jun 2011 | B2 |
7960950 | Glovinsky | Jun 2011 | B2 |
7969133 | Zhang et al. | Jun 2011 | B2 |
7977810 | Choi et al. | Jul 2011 | B2 |
8003885 | Richter et al. | Aug 2011 | B2 |
8004113 | Sander et al. | Aug 2011 | B2 |
8004116 | Ledenev et al. | Aug 2011 | B2 |
8004117 | Adest et al. | Aug 2011 | B2 |
8004866 | Bucella et al. | Aug 2011 | B2 |
8013472 | Adest et al. | Sep 2011 | B2 |
8018748 | Leonard | Sep 2011 | B2 |
8039730 | Hadar et al. | Oct 2011 | B2 |
8050804 | Kernahan | Nov 2011 | B2 |
8058747 | Avrutsky et al. | Nov 2011 | B2 |
8058752 | Erickson, Jr. et al. | Nov 2011 | B2 |
8067855 | Mumtaz et al. | Nov 2011 | B2 |
8077437 | Mumtaz et al. | Dec 2011 | B2 |
8089780 | Mochikawa et al. | Jan 2012 | B2 |
8089785 | Rodriguez | Jan 2012 | B2 |
8090548 | Abdennadher et al. | Jan 2012 | B2 |
8093756 | Porter et al. | Jan 2012 | B2 |
8093757 | Wolfs | Jan 2012 | B2 |
8098055 | Avrutsky et al. | Jan 2012 | B2 |
8102074 | Hadar et al. | Jan 2012 | B2 |
8102144 | Capp et al. | Jan 2012 | B2 |
8111052 | Glovinsky | Feb 2012 | B2 |
8116103 | Zacharias et al. | Feb 2012 | B2 |
8138631 | Allen et al. | Mar 2012 | B2 |
8138914 | Wong et al. | Mar 2012 | B2 |
8158877 | Klein et al. | Apr 2012 | B2 |
8179147 | Dargatz et al. | May 2012 | B2 |
8184460 | O'Brien et al. | May 2012 | B2 |
8204709 | Presher, Jr. et al. | Jun 2012 | B2 |
8212408 | Fishman | Jul 2012 | B2 |
8212409 | Bettenwort et al. | Jul 2012 | B2 |
8271599 | Eizips et al. | Sep 2012 | B2 |
8274172 | Hadar et al. | Sep 2012 | B2 |
8279644 | Zhang et al. | Oct 2012 | B2 |
8289742 | Adest et al. | Oct 2012 | B2 |
8304932 | Ledenev et al. | Nov 2012 | B2 |
8310101 | Amaratunga et al. | Nov 2012 | B2 |
8310102 | Raju | Nov 2012 | B2 |
8314375 | Arditi et al. | Nov 2012 | B2 |
8325059 | Rozenboim | Dec 2012 | B2 |
8369113 | Rodriguez | Feb 2013 | B2 |
8405248 | Mumtaz et al. | Mar 2013 | B2 |
8405349 | Kikinis et al. | Mar 2013 | B2 |
8405367 | Chisenga et al. | Mar 2013 | B2 |
8410950 | Takehara et al. | Apr 2013 | B2 |
8415552 | Hadar et al. | Apr 2013 | B2 |
8415937 | Hester | Apr 2013 | B2 |
8436592 | Saitoh | May 2013 | B2 |
8461809 | Rodriguez | Jun 2013 | B2 |
8473250 | Adest et al. | Jun 2013 | B2 |
8509032 | Rakib | Aug 2013 | B2 |
8570017 | Perichon et al. | Oct 2013 | B2 |
8581441 | Rotzoll et al. | Nov 2013 | B2 |
8653689 | Rozenboim | Feb 2014 | B2 |
8669675 | Capp et al. | Mar 2014 | B2 |
8686333 | Arditi et al. | Apr 2014 | B2 |
8751053 | Hadar et al. | Jun 2014 | B2 |
8773236 | Makhota et al. | Jul 2014 | B2 |
8796884 | Naiknaware et al. | Aug 2014 | B2 |
8811047 | Rodriguez | Aug 2014 | B2 |
8823218 | Hadar et al. | Sep 2014 | B2 |
8823342 | Williams | Sep 2014 | B2 |
8841916 | Avrutsky | Sep 2014 | B2 |
8853886 | Avrutsky et al. | Oct 2014 | B2 |
8854193 | Makhota et al. | Oct 2014 | B2 |
8860241 | Hadar et al. | Oct 2014 | B2 |
8860246 | Hadar et al. | Oct 2014 | B2 |
8922061 | Arditi | Dec 2014 | B2 |
8933321 | Hadar et al. | Jan 2015 | B2 |
9362743 | Gazit et al. | Jun 2016 | B2 |
9466737 | Ledenev | Oct 2016 | B2 |
9647442 | Yoscovich et al. | May 2017 | B2 |
9831916 | Behrends | Nov 2017 | B2 |
9865411 | Friebe et al. | Jan 2018 | B2 |
9991717 | Rowe et al. | Jun 2018 | B1 |
10032939 | Ledenev et al. | Jul 2018 | B2 |
20010023703 | Kondo et al. | Sep 2001 | A1 |
20010032664 | Takehara et al. | Oct 2001 | A1 |
20010034982 | Naga et al. | Nov 2001 | A1 |
20010035180 | Kimura et al. | Nov 2001 | A1 |
20010048605 | Kurokami et al. | Dec 2001 | A1 |
20010050102 | Matsumi et al. | Dec 2001 | A1 |
20010054881 | Watanabe | Dec 2001 | A1 |
20020002040 | Kline et al. | Jan 2002 | A1 |
20020014262 | Matsushita et al. | Feb 2002 | A1 |
20020034083 | Ayyanar et al. | Mar 2002 | A1 |
20020038667 | Kondo et al. | Apr 2002 | A1 |
20020041505 | Suzui et al. | Apr 2002 | A1 |
20020044473 | Toyomura et al. | Apr 2002 | A1 |
20020047309 | Droppo et al. | Apr 2002 | A1 |
20020056089 | Houston | May 2002 | A1 |
20020063552 | Arakawa | May 2002 | A1 |
20020078991 | Nagao et al. | Jun 2002 | A1 |
20020080027 | Conley | Jun 2002 | A1 |
20020105765 | Kondo et al. | Aug 2002 | A1 |
20020113689 | Gehlot et al. | Aug 2002 | A1 |
20020118559 | Kurokami et al. | Aug 2002 | A1 |
20020134567 | Rasmussen et al. | Sep 2002 | A1 |
20020148497 | Sasaoka et al. | Oct 2002 | A1 |
20020149950 | Takebayashi | Oct 2002 | A1 |
20020165458 | Carter et al. | Nov 2002 | A1 |
20020177401 | Judd et al. | Nov 2002 | A1 |
20020179140 | Toyomura | Dec 2002 | A1 |
20020180408 | McDaniel et al. | Dec 2002 | A1 |
20030025594 | Akiyama et al. | Feb 2003 | A1 |
20030038615 | Elbanhawy | Feb 2003 | A1 |
20030058593 | Bertele et al. | Mar 2003 | A1 |
20030058662 | Baudelot et al. | Mar 2003 | A1 |
20030066076 | Minahan | Apr 2003 | A1 |
20030066555 | Hui et al. | Apr 2003 | A1 |
20030075211 | Makita et al. | Apr 2003 | A1 |
20030080741 | LeRow et al. | May 2003 | A1 |
20030085621 | Potega | May 2003 | A1 |
20030090233 | Browe | May 2003 | A1 |
20030094931 | Renyolds | May 2003 | A1 |
20030107352 | Downer et al. | Jun 2003 | A1 |
20030121514 | Davenport et al. | Jul 2003 | A1 |
20030127126 | Yang | Jul 2003 | A1 |
20030156439 | Ohmichi et al. | Aug 2003 | A1 |
20030164695 | Fasshauer et al. | Sep 2003 | A1 |
20030185026 | Matsuda et al. | Oct 2003 | A1 |
20030193821 | Krieger et al. | Oct 2003 | A1 |
20030201674 | Droppo et al. | Oct 2003 | A1 |
20030214274 | Lethellier | Nov 2003 | A1 |
20030223257 | Onoe | Dec 2003 | A1 |
20040004402 | Kippley | Jan 2004 | A1 |
20040027112 | Kondo et al. | Feb 2004 | A1 |
20040041548 | Perry | Mar 2004 | A1 |
20040056768 | Matsushita et al. | Mar 2004 | A1 |
20040061527 | Knee | Apr 2004 | A1 |
20040076028 | Achleitner et al. | Apr 2004 | A1 |
20040117676 | Kobayashi et al. | Jun 2004 | A1 |
20040118446 | Toyomura | Jun 2004 | A1 |
20040123894 | Erban | Jul 2004 | A1 |
20040124816 | DeLepaut | Jul 2004 | A1 |
20040125618 | De Rooij et al. | Jul 2004 | A1 |
20040140719 | Vulih et al. | Jul 2004 | A1 |
20040164718 | McDaniel et al. | Aug 2004 | A1 |
20040165408 | West et al. | Aug 2004 | A1 |
20040167676 | Mizumaki | Aug 2004 | A1 |
20040169499 | Huang et al. | Sep 2004 | A1 |
20040170038 | Ichinose et al. | Sep 2004 | A1 |
20040189090 | Yanagida et al. | Sep 2004 | A1 |
20040189432 | Yan et al. | Sep 2004 | A1 |
20040201279 | Templeton | Oct 2004 | A1 |
20040201933 | Blanc | Oct 2004 | A1 |
20040207366 | Sung | Oct 2004 | A1 |
20040211458 | Gui et al. | Oct 2004 | A1 |
20040223351 | Kurokami et al. | Nov 2004 | A1 |
20040230343 | Zalesski | Nov 2004 | A1 |
20040233685 | Matsuo et al. | Nov 2004 | A1 |
20040246226 | Moon | Dec 2004 | A1 |
20040255999 | Matsushita et al. | Dec 2004 | A1 |
20040258141 | Tustison et al. | Dec 2004 | A1 |
20040262998 | Kunow et al. | Dec 2004 | A1 |
20040263119 | Meyer et al. | Dec 2004 | A1 |
20040264225 | Bhavaraju et al. | Dec 2004 | A1 |
20050002214 | Deng et al. | Jan 2005 | A1 |
20050005785 | Poss et al. | Jan 2005 | A1 |
20050006958 | Dubovsky | Jan 2005 | A1 |
20050017697 | Capel | Jan 2005 | A1 |
20050017701 | Hsu | Jan 2005 | A1 |
20050030772 | Phadke | Feb 2005 | A1 |
20050040800 | Sutardja | Feb 2005 | A1 |
20050057214 | Matan | Mar 2005 | A1 |
20050057215 | Matan | Mar 2005 | A1 |
20050068012 | Cutler | Mar 2005 | A1 |
20050068820 | Radosevich et al. | Mar 2005 | A1 |
20050099138 | Wilhelm | May 2005 | A1 |
20050103376 | Matsushita et al. | May 2005 | A1 |
20050105224 | Nishi | May 2005 | A1 |
20050105306 | Deng et al. | May 2005 | A1 |
20050110454 | Tsai et al. | May 2005 | A1 |
20050121067 | Toyomura et al. | Jun 2005 | A1 |
20050122747 | Gaksch | Jun 2005 | A1 |
20050135031 | Colby et al. | Jun 2005 | A1 |
20050139258 | Liu et al. | Jun 2005 | A1 |
20050162018 | Realmuto et al. | Jul 2005 | A1 |
20050163063 | Kuchler et al. | Jul 2005 | A1 |
20050172995 | Rohrig et al. | Aug 2005 | A1 |
20050179420 | Satoh et al. | Aug 2005 | A1 |
20050194937 | Jacobs | Sep 2005 | A1 |
20050201397 | Petite | Sep 2005 | A1 |
20050213272 | Kobayashi | Sep 2005 | A1 |
20050225090 | Wobben | Oct 2005 | A1 |
20050226017 | Kotsopoulos et al. | Oct 2005 | A1 |
20050242795 | Al-Kuran et al. | Nov 2005 | A1 |
20050257827 | Gaudiana et al. | Nov 2005 | A1 |
20050269988 | Thrap | Dec 2005 | A1 |
20050275386 | Jepsen et al. | Dec 2005 | A1 |
20050275527 | Kates | Dec 2005 | A1 |
20050275979 | Xu | Dec 2005 | A1 |
20050281064 | Olsen et al. | Dec 2005 | A1 |
20050286510 | Nakajima et al. | Dec 2005 | A1 |
20060001406 | Matan | Jan 2006 | A1 |
20060017327 | Siri et al. | Jan 2006 | A1 |
20060034106 | Johnson | Feb 2006 | A1 |
20060038692 | Schnetker | Feb 2006 | A1 |
20060043792 | Hjort et al. | Mar 2006 | A1 |
20060053447 | Krzyzanowski et al. | Mar 2006 | A1 |
20060066349 | Murakami | Mar 2006 | A1 |
20060068239 | Norimatsu et al. | Mar 2006 | A1 |
20060077046 | Endo | Apr 2006 | A1 |
20060103360 | Cutler | May 2006 | A9 |
20060108979 | Daniel et al. | May 2006 | A1 |
20060113843 | Beveridge | Jun 2006 | A1 |
20060113979 | Ishigaki et al. | Jun 2006 | A1 |
20060116968 | Arisawa | Jun 2006 | A1 |
20060118162 | Saelzer et al. | Jun 2006 | A1 |
20060125449 | Unger | Jun 2006 | A1 |
20060132102 | Harvey | Jun 2006 | A1 |
20060149396 | Templeton | Jul 2006 | A1 |
20060162772 | Presher et al. | Jul 2006 | A1 |
20060163946 | Henne et al. | Jul 2006 | A1 |
20060164065 | Hoouk et al. | Jul 2006 | A1 |
20060171182 | Siri et al. | Aug 2006 | A1 |
20060174939 | Matan | Aug 2006 | A1 |
20060176029 | McGinty et al. | Aug 2006 | A1 |
20060176031 | Forman et al. | Aug 2006 | A1 |
20060176036 | Flatness et al. | Aug 2006 | A1 |
20060176716 | Balakrishnan et al. | Aug 2006 | A1 |
20060185727 | Matan | Aug 2006 | A1 |
20060192540 | Balakrishnan et al. | Aug 2006 | A1 |
20060208660 | Shinmura et al. | Sep 2006 | A1 |
20060222916 | Norimatsu et al. | Oct 2006 | A1 |
20060227578 | Datta et al. | Oct 2006 | A1 |
20060231132 | Neussner | Oct 2006 | A1 |
20060232220 | Melis | Oct 2006 | A1 |
20060237058 | McClintock et al. | Oct 2006 | A1 |
20060261751 | Okabe et al. | Nov 2006 | A1 |
20060290317 | McNulty et al. | Dec 2006 | A1 |
20070001653 | Xu | Jan 2007 | A1 |
20070013349 | Bassett | Jan 2007 | A1 |
20070019613 | Frezzolini | Jan 2007 | A1 |
20070024257 | Boldo | Feb 2007 | A1 |
20070027644 | Bettenwort et al. | Feb 2007 | A1 |
20070030068 | Motonobu et al. | Feb 2007 | A1 |
20070035975 | Dickerson et al. | Feb 2007 | A1 |
20070040540 | Cutler | Feb 2007 | A1 |
20070044837 | Simburger et al. | Mar 2007 | A1 |
20070075689 | Kinder et al. | Apr 2007 | A1 |
20070075711 | Blanc et al. | Apr 2007 | A1 |
20070081364 | Andreycak | Apr 2007 | A1 |
20070103108 | Capp et al. | May 2007 | A1 |
20070103297 | Armstrong et al. | May 2007 | A1 |
20070107767 | Hayden et al. | May 2007 | A1 |
20070115635 | Low et al. | May 2007 | A1 |
20070119718 | Gibson et al. | May 2007 | A1 |
20070121648 | Hahn | May 2007 | A1 |
20070133241 | Mumtaz et al. | Jun 2007 | A1 |
20070133421 | Young | Jun 2007 | A1 |
20070147075 | Bang | Jun 2007 | A1 |
20070158185 | Andelman et al. | Jul 2007 | A1 |
20070159866 | Siri | Jul 2007 | A1 |
20070164612 | Wendt et al. | Jul 2007 | A1 |
20070164750 | Chen et al. | Jul 2007 | A1 |
20070165347 | Wendt et al. | Jul 2007 | A1 |
20070205778 | Fabbro et al. | Sep 2007 | A1 |
20070209656 | Lee | Sep 2007 | A1 |
20070211888 | Corcoran et al. | Sep 2007 | A1 |
20070223165 | Itri et al. | Sep 2007 | A1 |
20070227574 | Cart | Oct 2007 | A1 |
20070235071 | Work et al. | Oct 2007 | A1 |
20070236187 | Wai et al. | Oct 2007 | A1 |
20070246546 | Yoshida | Oct 2007 | A1 |
20070247877 | Kwon et al. | Oct 2007 | A1 |
20070271006 | Golden et al. | Nov 2007 | A1 |
20070273339 | Haines | Nov 2007 | A1 |
20070273342 | Kataoka et al. | Nov 2007 | A1 |
20070273351 | Matan | Nov 2007 | A1 |
20070284451 | Uramoto | Dec 2007 | A1 |
20070290636 | Beck et al. | Dec 2007 | A1 |
20070290656 | Lee Tai Keung | Dec 2007 | A1 |
20080021707 | Bou-Ghazale et al. | Jan 2008 | A1 |
20080024098 | Hojo | Jan 2008 | A1 |
20080036440 | Garmer | Feb 2008 | A1 |
20080055941 | Victor et al. | Mar 2008 | A1 |
20080080177 | Chang | Apr 2008 | A1 |
20080088184 | Tung et al. | Apr 2008 | A1 |
20080089277 | Alexander et al. | Apr 2008 | A1 |
20080097655 | Hadar et al. | Apr 2008 | A1 |
20080106250 | Prior et al. | May 2008 | A1 |
20080111529 | Shah et al. | May 2008 | A1 |
20080115823 | Kinsey | May 2008 | A1 |
20080121272 | Besser et al. | May 2008 | A1 |
20080122449 | Besser et al. | May 2008 | A1 |
20080122518 | Besser et al. | May 2008 | A1 |
20080136367 | Adest et al. | Jun 2008 | A1 |
20080143188 | Adest et al. | Jun 2008 | A1 |
20080143462 | Belisle et al. | Jun 2008 | A1 |
20080144294 | Adest et al. | Jun 2008 | A1 |
20080147335 | Adest et al. | Jun 2008 | A1 |
20080149167 | Liu | Jun 2008 | A1 |
20080150366 | Adest et al. | Jun 2008 | A1 |
20080150484 | Kimball et al. | Jun 2008 | A1 |
20080164766 | Adest et al. | Jul 2008 | A1 |
20080179949 | Besser et al. | Jul 2008 | A1 |
20080186004 | Williams | Aug 2008 | A1 |
20080191560 | Besser et al. | Aug 2008 | A1 |
20080191675 | Besser et al. | Aug 2008 | A1 |
20080192510 | Falk | Aug 2008 | A1 |
20080198523 | Schmidt et al. | Aug 2008 | A1 |
20080205096 | Lai et al. | Aug 2008 | A1 |
20080218152 | Bo | Sep 2008 | A1 |
20080224652 | Zhu et al. | Sep 2008 | A1 |
20080236647 | Gibson et al. | Oct 2008 | A1 |
20080236648 | Klein et al. | Oct 2008 | A1 |
20080238195 | Shaver et al. | Oct 2008 | A1 |
20080238372 | Cintra et al. | Oct 2008 | A1 |
20080246460 | Smith | Oct 2008 | A1 |
20080246463 | Sinton et al. | Oct 2008 | A1 |
20080252273 | Woo et al. | Oct 2008 | A1 |
20080264470 | Masuda et al. | Oct 2008 | A1 |
20080266919 | Mallwitz | Oct 2008 | A1 |
20080291707 | Fang | Nov 2008 | A1 |
20080294472 | Yamada | Nov 2008 | A1 |
20080297963 | Lee et al. | Dec 2008 | A1 |
20080303503 | Wolfs | Dec 2008 | A1 |
20080304296 | NadimpalliRaju et al. | Dec 2008 | A1 |
20080304298 | Toba et al. | Dec 2008 | A1 |
20090012917 | Thompson et al. | Jan 2009 | A1 |
20090014050 | Haaf | Jan 2009 | A1 |
20090015071 | Iwata et al. | Jan 2009 | A1 |
20090020151 | Fornage | Jan 2009 | A1 |
20090021877 | Fornage et al. | Jan 2009 | A1 |
20090039833 | Kitagawa | Feb 2009 | A1 |
20090039852 | Fishelov et al. | Feb 2009 | A1 |
20090066357 | Fornage | Mar 2009 | A1 |
20090066399 | Chen et al. | Mar 2009 | A1 |
20090069950 | Kurokami et al. | Mar 2009 | A1 |
20090073726 | Babcock | Mar 2009 | A1 |
20090080226 | Fornage | Mar 2009 | A1 |
20090084570 | Gherardini et al. | Apr 2009 | A1 |
20090097172 | Bremicker et al. | Apr 2009 | A1 |
20090097283 | Krein et al. | Apr 2009 | A1 |
20090101191 | Beck et al. | Apr 2009 | A1 |
20090102440 | Coles | Apr 2009 | A1 |
20090114263 | Powell et al. | May 2009 | A1 |
20090120485 | Kikinis | May 2009 | A1 |
20090121549 | Leonard | May 2009 | A1 |
20090133736 | Powell et al. | May 2009 | A1 |
20090140715 | Adest et al. | Jun 2009 | A1 |
20090141522 | Adest et al. | Jun 2009 | A1 |
20090145480 | Adest et al. | Jun 2009 | A1 |
20090146667 | Adest et al. | Jun 2009 | A1 |
20090146671 | Gazit | Jun 2009 | A1 |
20090147554 | Adest et al. | Jun 2009 | A1 |
20090150005 | Hadar et al. | Jun 2009 | A1 |
20090179500 | Ragonese et al. | Jul 2009 | A1 |
20090179662 | Moulton et al. | Jul 2009 | A1 |
20090182532 | Stoeber et al. | Jul 2009 | A1 |
20090184746 | Fahrenbruch | Jul 2009 | A1 |
20090189456 | Skutt | Jul 2009 | A1 |
20090190275 | Gilmore et al. | Jul 2009 | A1 |
20090195081 | Quardt et al. | Aug 2009 | A1 |
20090206666 | Sella et al. | Aug 2009 | A1 |
20090207543 | Boniface et al. | Aug 2009 | A1 |
20090217965 | Dougal et al. | Sep 2009 | A1 |
20090224817 | Nakamura et al. | Sep 2009 | A1 |
20090234692 | Powell et al. | Sep 2009 | A1 |
20090237042 | Glovinski | Sep 2009 | A1 |
20090237043 | Glovinsky | Sep 2009 | A1 |
20090242011 | Proisy et al. | Oct 2009 | A1 |
20090243547 | Andelfinger | Oct 2009 | A1 |
20090273241 | Gazit et al. | Nov 2009 | A1 |
20090278496 | Nakao et al. | Nov 2009 | A1 |
20090282755 | Abbott et al. | Nov 2009 | A1 |
20090283129 | Foss | Nov 2009 | A1 |
20090283130 | Gilmore et al. | Nov 2009 | A1 |
20090284232 | Zhang et al. | Nov 2009 | A1 |
20090284240 | Zhang et al. | Nov 2009 | A1 |
20090284998 | Zhang et al. | Nov 2009 | A1 |
20090295225 | Asplund et al. | Dec 2009 | A1 |
20090322494 | Lee | Dec 2009 | A1 |
20100001587 | Casey et al. | Jan 2010 | A1 |
20100002349 | La Scala et al. | Jan 2010 | A1 |
20100013452 | Tang et al. | Jan 2010 | A1 |
20100026097 | Avrutsky et al. | Feb 2010 | A1 |
20100043781 | Jones et al. | Feb 2010 | A1 |
20100052735 | Burkland et al. | Mar 2010 | A1 |
20100057267 | Liu et al. | Mar 2010 | A1 |
20100060000 | Scholte-Wassink | Mar 2010 | A1 |
20100085670 | Palaniswami et al. | Apr 2010 | A1 |
20100115093 | Rice | May 2010 | A1 |
20100124027 | Handelsman et al. | May 2010 | A1 |
20100127570 | Hadar | May 2010 | A1 |
20100127571 | Hadar et al. | May 2010 | A1 |
20100132757 | He et al. | Jun 2010 | A1 |
20100132758 | Gilmore | Jun 2010 | A1 |
20100133911 | Williams et al. | Jun 2010 | A1 |
20100139734 | Hadar et al. | Jun 2010 | A1 |
20100139743 | Hadar et al. | Jun 2010 | A1 |
20100141153 | Recker et al. | Jun 2010 | A1 |
20100176773 | Capel | Jul 2010 | A1 |
20100181957 | Goeltner | Jul 2010 | A1 |
20100191383 | Gaul | Jul 2010 | A1 |
20100195357 | Fornage et al. | Aug 2010 | A1 |
20100207764 | Muhlberger et al. | Aug 2010 | A1 |
20100207770 | Thiemann | Aug 2010 | A1 |
20100208501 | Matan et al. | Aug 2010 | A1 |
20100213897 | Tse | Aug 2010 | A1 |
20100214808 | Rodriguez | Aug 2010 | A1 |
20100229915 | Ledenev et al. | Sep 2010 | A1 |
20100241375 | Kumar et al. | Sep 2010 | A1 |
20100244575 | Coccia et al. | Sep 2010 | A1 |
20100246223 | Xuan | Sep 2010 | A1 |
20100264736 | Mumtaz et al. | Oct 2010 | A1 |
20100269430 | Haddock | Oct 2010 | A1 |
20100277001 | Wagoner | Nov 2010 | A1 |
20100282290 | Schwarze et al. | Nov 2010 | A1 |
20100286836 | Shaver, II et al. | Nov 2010 | A1 |
20100288327 | Lisi et al. | Nov 2010 | A1 |
20100289337 | Stauth et al. | Nov 2010 | A1 |
20100294528 | Sella et al. | Nov 2010 | A1 |
20100294903 | Shmukler et al. | Nov 2010 | A1 |
20100295680 | Dumps | Nov 2010 | A1 |
20100297860 | Shmukler et al. | Nov 2010 | A1 |
20100301991 | Sella et al. | Dec 2010 | A1 |
20100308662 | Schatz et al. | Dec 2010 | A1 |
20100309692 | Chisenga et al. | Dec 2010 | A1 |
20100321148 | Gevorkian | Dec 2010 | A1 |
20100326809 | Lang et al. | Dec 2010 | A1 |
20100327657 | Kuran | Dec 2010 | A1 |
20100327659 | Lisi et al. | Dec 2010 | A1 |
20100332047 | Arditi et al. | Dec 2010 | A1 |
20110006743 | Fabbro | Jan 2011 | A1 |
20110012430 | Cheng et al. | Jan 2011 | A1 |
20110019444 | Dargatz et al. | Jan 2011 | A1 |
20110025130 | Hadar et al. | Feb 2011 | A1 |
20110031816 | Buthker et al. | Feb 2011 | A1 |
20110031946 | Egan et al. | Feb 2011 | A1 |
20110037600 | Takehara et al. | Feb 2011 | A1 |
20110043172 | Dearn | Feb 2011 | A1 |
20110045802 | Bland et al. | Feb 2011 | A1 |
20110049990 | Amaratunga et al. | Mar 2011 | A1 |
20110050190 | Avrutsky | Mar 2011 | A1 |
20110056533 | Kuan | Mar 2011 | A1 |
20110061713 | Powell et al. | Mar 2011 | A1 |
20110062784 | Wolfs | Mar 2011 | A1 |
20110079263 | Avrutsky | Apr 2011 | A1 |
20110083733 | Marroquin et al. | Apr 2011 | A1 |
20110084553 | Adest et al. | Apr 2011 | A1 |
20110088741 | Dunton et al. | Apr 2011 | A1 |
20110114154 | Lichy et al. | May 2011 | A1 |
20110115295 | Moon et al. | May 2011 | A1 |
20110121441 | Halstead et al. | May 2011 | A1 |
20110121652 | Sella et al. | May 2011 | A1 |
20110125431 | Adest et al. | May 2011 | A1 |
20110132424 | Rakib | Jun 2011 | A1 |
20110133552 | Binder et al. | Jun 2011 | A1 |
20110139213 | Lee | Jun 2011 | A1 |
20110140536 | Adest et al. | Jun 2011 | A1 |
20110141644 | Hastings et al. | Jun 2011 | A1 |
20110161722 | Makhota et al. | Jun 2011 | A1 |
20110172842 | Makhota et al. | Jul 2011 | A1 |
20110173276 | Eizips et al. | Jul 2011 | A1 |
20110181251 | Porter et al. | Jul 2011 | A1 |
20110181340 | Gazit | Jul 2011 | A1 |
20110183537 | Fornage et al. | Jul 2011 | A1 |
20110210610 | Mitsuoka et al. | Sep 2011 | A1 |
20110210611 | Ledenev et al. | Sep 2011 | A1 |
20110210612 | Leutwein | Sep 2011 | A1 |
20110218687 | Hadar et al. | Sep 2011 | A1 |
20110227411 | Arditi | Sep 2011 | A1 |
20110232714 | Bhavaraju et al. | Sep 2011 | A1 |
20110240100 | Lu et al. | Oct 2011 | A1 |
20110245989 | Makhota et al. | Oct 2011 | A1 |
20110246338 | Eich | Oct 2011 | A1 |
20110254372 | Haines et al. | Oct 2011 | A1 |
20110260866 | Avrutsky et al. | Oct 2011 | A1 |
20110267721 | Chaintreuil et al. | Nov 2011 | A1 |
20110267859 | Chapman | Nov 2011 | A1 |
20110271611 | Maracci et al. | Nov 2011 | A1 |
20110273015 | Adest et al. | Nov 2011 | A1 |
20110273016 | Adest et al. | Nov 2011 | A1 |
20110273302 | Fornage et al. | Nov 2011 | A1 |
20110285205 | Ledenev et al. | Nov 2011 | A1 |
20110285375 | Deboy | Nov 2011 | A1 |
20110290317 | Naumovitz et al. | Dec 2011 | A1 |
20110291486 | Adest et al. | Dec 2011 | A1 |
20110301772 | Zuercher et al. | Dec 2011 | A1 |
20110304204 | Avrutslcy et al. | Dec 2011 | A1 |
20110304213 | Avrutslcy et al. | Dec 2011 | A1 |
20110304215 | Avrutslcy et al. | Dec 2011 | A1 |
20110316346 | Porter et al. | Dec 2011 | A1 |
20120007434 | Perreault et al. | Jan 2012 | A1 |
20120007613 | Gazit | Jan 2012 | A1 |
20120019966 | DeBoer | Jan 2012 | A1 |
20120032515 | Ledenev et al. | Feb 2012 | A1 |
20120033463 | Rodriguez | Feb 2012 | A1 |
20120039099 | Rodriguez | Feb 2012 | A1 |
20120043818 | Stratakos et al. | Feb 2012 | A1 |
20120043823 | Stratakos et al. | Feb 2012 | A1 |
20120044014 | Stratakos et al. | Feb 2012 | A1 |
20120048325 | Matsuo et al. | Mar 2012 | A1 |
20120049627 | Matsuo et al. | Mar 2012 | A1 |
20120049801 | Chang | Mar 2012 | A1 |
20120056483 | Capp et al. | Mar 2012 | A1 |
20120081009 | Shteynberg et al. | Apr 2012 | A1 |
20120081934 | Garrity et al. | Apr 2012 | A1 |
20120087159 | Chapman et al. | Apr 2012 | A1 |
20120091810 | Aiello et al. | Apr 2012 | A1 |
20120098344 | Bergveld et al. | Apr 2012 | A1 |
20120104861 | Kojori et al. | May 2012 | A1 |
20120113554 | Paoletti et al. | May 2012 | A1 |
20120119584 | Hadar et al. | May 2012 | A1 |
20120134058 | Pamer et al. | May 2012 | A1 |
20120146420 | Wolfs | Jun 2012 | A1 |
20120146583 | Gaul et al. | Jun 2012 | A1 |
20120161526 | Huang et al. | Jun 2012 | A1 |
20120161528 | Mumtaz et al. | Jun 2012 | A1 |
20120169124 | Nakashima et al. | Jul 2012 | A1 |
20120174961 | Larson et al. | Jul 2012 | A1 |
20120187769 | Spannhake et al. | Jul 2012 | A1 |
20120199172 | Avrutsky | Aug 2012 | A1 |
20120200311 | Chaintreuil | Aug 2012 | A1 |
20120215367 | Eizips et al. | Aug 2012 | A1 |
20120217973 | Avrutsky | Aug 2012 | A1 |
20120240490 | Gangemi | Sep 2012 | A1 |
20120253533 | Eizips et al. | Oct 2012 | A1 |
20120253541 | Arditi et al. | Oct 2012 | A1 |
20120255591 | Arditi et al. | Oct 2012 | A1 |
20120271576 | Kamel et al. | Oct 2012 | A1 |
20120274145 | Taddeo | Nov 2012 | A1 |
20120274264 | Mun et al. | Nov 2012 | A1 |
20120280571 | Hargis | Nov 2012 | A1 |
20120299380 | Haupt | Nov 2012 | A1 |
20120318320 | Robbins | Dec 2012 | A1 |
20130026839 | Grana | Jan 2013 | A1 |
20130026840 | Arditi et al. | Jan 2013 | A1 |
20130026842 | Arditi et al. | Jan 2013 | A1 |
20130026843 | Arditi et al. | Jan 2013 | A1 |
20130063119 | Lubomirsky | Mar 2013 | A1 |
20130094112 | Burghardt et al. | Apr 2013 | A1 |
20130094262 | Avrutsky | Apr 2013 | A1 |
20130134790 | Amaratunga et al. | May 2013 | A1 |
20130181533 | Capp et al. | Jul 2013 | A1 |
20130192657 | Hadar et al. | Aug 2013 | A1 |
20130194706 | Har-Shai et al. | Aug 2013 | A1 |
20130222144 | Hadar et al. | Aug 2013 | A1 |
20130229834 | Garrity et al. | Sep 2013 | A1 |
20130229842 | Garrity | Sep 2013 | A1 |
20130234518 | Mumtaz et al. | Sep 2013 | A1 |
20130235637 | Rodriguez | Sep 2013 | A1 |
20130279210 | Chisenga et al. | Oct 2013 | A1 |
20130285459 | Jaoui et al. | Oct 2013 | A1 |
20130294126 | Garrity et al. | Nov 2013 | A1 |
20130307556 | Ledenev et al. | Nov 2013 | A1 |
20130320778 | Hopf et al. | Dec 2013 | A1 |
20130332093 | Adest et al. | Dec 2013 | A1 |
20130335861 | Laschinski et al. | Dec 2013 | A1 |
20140062206 | Bryson | Mar 2014 | A1 |
20140169053 | Ilic et al. | Jun 2014 | A1 |
20140191583 | Chisenga et al. | Jul 2014 | A1 |
20140233136 | Heerdt | Aug 2014 | A1 |
20140246915 | Mumtaz | Sep 2014 | A1 |
20140246927 | Mumtaz | Sep 2014 | A1 |
20140252859 | Chisenga et al. | Sep 2014 | A1 |
20140265551 | Willis | Sep 2014 | A1 |
20140265579 | Mumtaz | Sep 2014 | A1 |
20140293491 | Robbins | Oct 2014 | A1 |
20140306543 | Garrity et al. | Oct 2014 | A1 |
20140327313 | Arditi et al. | Nov 2014 | A1 |
20140327995 | Panjwani et al. | Nov 2014 | A1 |
20150022006 | Garrity et al. | Jan 2015 | A1 |
20150028683 | Hadar et al. | Jan 2015 | A1 |
20150028692 | Makhota et al. | Jan 2015 | A1 |
20150061409 | Dunton et al. | Mar 2015 | A1 |
20150131187 | Krein et al. | May 2015 | A1 |
20150318410 | Higuma | Nov 2015 | A1 |
20150381108 | Hoft et al. | Dec 2015 | A1 |
20150381111 | Nicolescu et al. | Dec 2015 | A1 |
20160006392 | Hoft | Jan 2016 | A1 |
20160126367 | Dunton et al. | May 2016 | A1 |
20160181802 | Jacobson et al. | Jun 2016 | A1 |
20160226252 | Kravtiz et al. | Aug 2016 | A1 |
20160270245 | Linderman | Sep 2016 | A1 |
20160329715 | Orr et al. | Nov 2016 | A1 |
20170104413 | Busch et al. | Apr 2017 | A1 |
20170179876 | Freeman et al. | Jun 2017 | A1 |
20170207746 | Yoscovich et al. | Jul 2017 | A1 |
20170211190 | Glasscock et al. | Jul 2017 | A1 |
20170278375 | Galin et al. | Sep 2017 | A1 |
20180191292 | Ehlmann | Jul 2018 | A1 |
20190379279 | Adest et al. | Dec 2019 | A1 |
Number | Date | Country |
---|---|---|
2073800 | Sep 2000 | AU |
2005262278 | Jan 2006 | AU |
1183574 | Mar 1985 | CA |
2063243 | Dec 1991 | CA |
2301657 | Mar 1999 | CA |
2394761 | Jun 2001 | CA |
2658087 | Jun 2001 | CA |
2443450 | Mar 2005 | CA |
2572452 | Jan 2006 | CA |
2613038 | Jan 2007 | CA |
2704605 | May 2009 | CA |
1106523 | Aug 1995 | CN |
2284479 | Jun 1998 | CN |
1188453 | Jul 1998 | CN |
2305016 | Jan 1999 | CN |
1262552 | Aug 2000 | CN |
1064487 | Apr 2001 | CN |
1309451 | Aug 2001 | CN |
1362655 | Aug 2002 | CN |
2514538 | Oct 2002 | CN |
1122905 | Oct 2003 | CN |
2579063 | Oct 2003 | CN |
1551377 | Dec 2004 | CN |
1185782 | Jan 2005 | CN |
2672938 | Jan 2005 | CN |
1201157 | May 2005 | CN |
1614854 | May 2005 | CN |
1245795 | Mar 2006 | CN |
1787717 | Jun 2006 | CN |
1794537 | Jun 2006 | CN |
1841254 | Oct 2006 | CN |
1841823 | Oct 2006 | CN |
1892239 | Jan 2007 | CN |
1902809 | Jan 2007 | CN |
1929276 | Mar 2007 | CN |
1930925 | Mar 2007 | CN |
101030752 | Sep 2007 | CN |
101050770 | Oct 2007 | CN |
100371843 | Feb 2008 | CN |
101136129 | Mar 2008 | CN |
100426175 | Oct 2008 | CN |
201203438 | Mar 2009 | CN |
101488271 | Jul 2009 | CN |
101523230 | Sep 2009 | CN |
101647172 | Feb 2010 | CN |
101672252 | Mar 2010 | CN |
101697462 | Apr 2010 | CN |
101779291 | Jul 2010 | CN |
101847939 | Sep 2010 | CN |
201601477 | Oct 2010 | CN |
201623478 | Nov 2010 | CN |
201623651 | Nov 2010 | CN |
101953060 | Jan 2011 | CN |
102084584 | Jun 2011 | CN |
202103601 | Jan 2012 | CN |
102386259 | Mar 2012 | CN |
102474112 | May 2012 | CN |
102771017 | Nov 2012 | CN |
202871823 | Apr 2013 | CN |
105075046 | Nov 2015 | CN |
105164915 | Dec 2015 | CN |
3236071 | Jan 1984 | DE |
3525630 | Jan 1987 | DE |
3729000 | Mar 1989 | DE |
4019710 | Jan 1992 | DE |
4032569 | Apr 1992 | DE |
9312710 | Oct 1993 | DE |
4232356 | Mar 1994 | DE |
4325436 | Feb 1995 | DE |
4328511 | Mar 1995 | DE |
19515786 | Nov 1995 | DE |
19502762 | Aug 1996 | DE |
19614861 | Jul 1997 | DE |
19609189 | Sep 1997 | DE |
19618882 | Nov 1997 | DE |
19701897 | Jul 1998 | DE |
19718046 | Nov 1998 | DE |
19732218 | Mar 1999 | DE |
19737286 | Mar 1999 | DE |
19838230 | Feb 2000 | DE |
19846818 | Apr 2000 | DE |
19859732 | Jun 2000 | DE |
19904561 | Aug 2000 | DE |
19928809 | Jan 2001 | DE |
019937410 | Feb 2001 | DE |
19961705 | Jul 2001 | DE |
10064039 | Dec 2001 | DE |
10060108 | Jun 2002 | DE |
10103431 | Aug 2002 | DE |
10136147 | Feb 2003 | DE |
10222621 | Nov 2003 | DE |
202004001246 | Apr 2004 | DE |
10345302 | Apr 2005 | DE |
102004043478 | Apr 2005 | DE |
69734495 | Jul 2006 | DE |
69735169 | Aug 2006 | DE |
102005018173 | Oct 2006 | DE |
102005030907 | Jan 2007 | DE |
102005032864 | Jan 2007 | DE |
102006023563 | Nov 2007 | DE |
102006026073 | Dec 2007 | DE |
602004011201 | Dec 2008 | DE |
102007050031 | Apr 2009 | DE |
102008042199 | Apr 2010 | DE |
102008057874 | May 2010 | DE |
0027405 | Apr 1981 | EP |
169673 | Jan 1986 | EP |
0178757 | Apr 1986 | EP |
0206253 | Dec 1986 | EP |
0231211 | Aug 1987 | EP |
0293219 | Nov 1988 | EP |
0340006 | Nov 1989 | EP |
419093 | Mar 1991 | EP |
420295 | Apr 1991 | EP |
0895146 | Feb 1992 | EP |
0521467 | Jan 1993 | EP |
0576271 | Dec 1993 | EP |
0577334 | Jan 1994 | EP |
604777 | Jul 1994 | EP |
0628901 | Dec 1994 | EP |
0642199 | Mar 1995 | EP |
653692 | May 1995 | EP |
677749 | Oct 1995 | EP |
0677749 | Jan 1996 | EP |
756178 | Jan 1997 | EP |
0756372 | Jan 1997 | EP |
0780750 | Jun 1997 | EP |
0809293 | Nov 1997 | EP |
827254 | Mar 1998 | EP |
0906660 | Apr 1999 | EP |
0947905 | Oct 1999 | EP |
1012886 | Jun 2000 | EP |
1024575 | Aug 2000 | EP |
1034465 | Sep 2000 | EP |
1035640 | Sep 2000 | EP |
1039620 | Sep 2000 | EP |
1039621 | Sep 2000 | EP |
1047179 | Oct 2000 | EP |
1130770 | Sep 2001 | EP |
1143594 | Oct 2001 | EP |
1187291 | Mar 2002 | EP |
1235339 | Aug 2002 | EP |
1239573 | Sep 2002 | EP |
1239576 | Sep 2002 | EP |
1254505 | Nov 2002 | EP |
1271742 | Jan 2003 | EP |
1330009 | Jul 2003 | EP |
1339153 | Aug 2003 | EP |
1369983 | Dec 2003 | EP |
1376706 | Jan 2004 | EP |
1388774 | Feb 2004 | EP |
1400988 | Mar 2004 | EP |
1407534 | Apr 2004 | EP |
1418482 | May 2004 | EP |
1429393 | Jun 2004 | EP |
1442473 | Aug 2004 | EP |
1447561 | Aug 2004 | EP |
1457857 | Sep 2004 | EP |
1463188 | Sep 2004 | EP |
1475882 | Nov 2004 | EP |
1503490 | Feb 2005 | EP |
1521345 | Apr 2005 | EP |
1526633 | Apr 2005 | EP |
1531542 | May 2005 | EP |
1531545 | May 2005 | EP |
1532727 | May 2005 | EP |
1552563 | Jul 2005 | EP |
1562281 | Aug 2005 | EP |
1580862 | Sep 2005 | EP |
1603212 | Dec 2005 | EP |
1610571 | Dec 2005 | EP |
1623495 | Feb 2006 | EP |
1657557 | May 2006 | EP |
1657797 | May 2006 | EP |
1691246 | Aug 2006 | EP |
1706937 | Oct 2006 | EP |
1708070 | Oct 2006 | EP |
1716272 | Nov 2006 | EP |
1728413 | Dec 2006 | EP |
1750193 | Feb 2007 | EP |
1766490 | Mar 2007 | EP |
1782146 | May 2007 | EP |
1785800 | May 2007 | EP |
1837985 | Sep 2007 | EP |
1842121 | Oct 2007 | EP |
1609250 | Jan 2008 | EP |
1887675 | Feb 2008 | EP |
1901419 | Mar 2008 | EP |
1902349 | Mar 2008 | EP |
1911101 | Apr 2008 | EP |
2048679 | Apr 2009 | EP |
2054944 | May 2009 | EP |
2061088 | May 2009 | EP |
2092625 | Aug 2009 | EP |
2092631 | Aug 2009 | EP |
2135348 | Dec 2009 | EP |
2144133 | Jan 2010 | EP |
2179451 | Apr 2010 | EP |
2206159 | Jul 2010 | EP |
2232690 | Sep 2010 | EP |
2234237 | Sep 2010 | EP |
2315328 | Apr 2011 | EP |
2374190 | Oct 2011 | EP |
2393178 | Dec 2011 | EP |
2395648 | Dec 2011 | EP |
2495766 | Sep 2012 | EP |
2533299 | Dec 2012 | EP |
2549635 | Jan 2013 | EP |
2561596 | Feb 2013 | EP |
2621045 | Jul 2013 | EP |
2666222 | Nov 2013 | EP |
2722979 | Apr 2014 | EP |
2779251 | Sep 2014 | EP |
2139104 | Oct 2017 | EP |
2249147 | Mar 2006 | ES |
2249149 | Mar 2006 | ES |
2796216 | Jan 2001 | FR |
2819653 | Jul 2002 | FR |
1211885 | Nov 1970 | GB |
1261838 | Jan 1972 | GB |
1571681 | Jul 1980 | GB |
1597508 | Sep 1981 | GB |
2327208 | Jan 1999 | GB |
2339465 | Jan 2000 | GB |
2376801 | Dec 2002 | GB |
2399463 | Sep 2004 | GB |
2399465 | Sep 2004 | GB |
2415841 | Jan 2006 | GB |
2419968 | May 2006 | GB |
2421847 | Jul 2006 | GB |
2476508 | Jun 2011 | GB |
2480015 | Nov 2011 | GB |
2480015 | Dec 2011 | GB |
2482653 | Feb 2012 | GB |
2483317 | Mar 2012 | GB |
2485527 | May 2012 | GB |
2486408 | Jun 2012 | GB |
2487368 | Jul 2012 | GB |
2497275 | Jun 2013 | GB |
2498365 | Jul 2013 | GB |
2498790 | Jul 2013 | GB |
2498791 | Jul 2013 | GB |
2499991 | Sep 2013 | GB |
61065320 | Apr 1986 | JP |
S62154122 | Jul 1987 | JP |
H01311874 | Dec 1989 | JP |
H04219982 | Aug 1992 | JP |
H04364378 | Dec 1992 | JP |
8009557 | Jan 1996 | JP |
H0897460 | Apr 1996 | JP |
H08116628 | May 1996 | JP |
H08185235 | Jul 1996 | JP |
H08227324 | Sep 1996 | JP |
H08316517 | Nov 1996 | JP |
H08317664 | Nov 1996 | JP |
H094692 | Jan 1997 | JP |
H09148611 | Jun 1997 | JP |
H09275644 | Oct 1997 | JP |
2676789 | Nov 1997 | JP |
H1017445 | Jan 1998 | JP |
H1075580 | Mar 1998 | JP |
H10201086 | Jul 1998 | JP |
H10201105 | Jul 1998 | JP |
11041832 | Feb 1999 | JP |
H1146457 | Feb 1999 | JP |
11103538 | Apr 1999 | JP |
2892183 | May 1999 | JP |
11206038 | Jul 1999 | JP |
H11266545 | Sep 1999 | JP |
11289891 | Oct 1999 | JP |
11318042 | Nov 1999 | JP |
H11332088 | Nov 1999 | JP |
2000020150 | Jan 2000 | JP |
2000051074 | Feb 2000 | JP |
3015512 | Mar 2000 | JP |
2000-112545 | Apr 2000 | JP |
2000-116010 | Apr 2000 | JP |
2000160789 | Jun 2000 | JP |
2000166097 | Jun 2000 | JP |
2000174307 | Jun 2000 | JP |
2000232791 | Aug 2000 | JP |
2000232793 | Aug 2000 | JP |
2000316282 | Nov 2000 | JP |
2000324852 | Nov 2000 | JP |
2000339044 | Dec 2000 | JP |
2000341974 | Dec 2000 | JP |
2000347753 | Dec 2000 | JP |
2000358330 | Dec 2000 | JP |
2001060120 | Mar 2001 | JP |
2001075662 | Mar 2001 | JP |
2001178145 | Jun 2001 | JP |
2001189476 | Jul 2001 | JP |
2001224142 | Aug 2001 | JP |
2001238466 | Aug 2001 | JP |
2001250964 | Sep 2001 | JP |
2002073184 | Mar 2002 | JP |
2002238246 | Aug 2002 | JP |
2002-262461 | Sep 2002 | JP |
2002270876 | Sep 2002 | JP |
2002300735 | Oct 2002 | JP |
2002339591 | Nov 2002 | JP |
2002354677 | Dec 2002 | JP |
2003102134 | Apr 2003 | JP |
2003124492 | Apr 2003 | JP |
2003134661 | May 2003 | JP |
2003134667 | May 2003 | JP |
2003289674 | Oct 2003 | JP |
2004055603 | Feb 2004 | JP |
2004-096090 | Mar 2004 | JP |
2004111754 | Apr 2004 | JP |
2004-147465 | May 2004 | JP |
2004194500 | Jul 2004 | JP |
2004260944 | Sep 2004 | JP |
2004312994 | Nov 2004 | JP |
2004334704 | Nov 2004 | JP |
2005-151662 | Jun 2005 | JP |
3656531 | Jun 2005 | JP |
2005192314 | Jul 2005 | JP |
2005251039 | Sep 2005 | JP |
2005-276942 | Oct 2005 | JP |
2005-312287 | Nov 2005 | JP |
2006041440 | Feb 2006 | JP |
2006271083 | Oct 2006 | JP |
2007058845 | Mar 2007 | JP |
2010-146047 | Jul 2010 | JP |
2010245532 | Oct 2010 | JP |
2012511299 | May 2012 | JP |
20010044490 | Jun 2001 | KR |
20040086088 | Oct 2004 | KR |
100468127 | Jan 2005 | KR |
200402282 | Nov 2005 | KR |
100725755 | May 2007 | KR |
100912892 | Aug 2009 | KR |
1011483 | Sep 2000 | NL |
8202134 | Jun 1982 | WO |
1982002134 | Jun 1982 | WO |
1984003402 | Aug 1984 | WO |
1988004801 | Jun 1988 | WO |
1992007418 | Apr 1992 | WO |
1993013587 | Jul 1993 | WO |
0670915 | Sep 1995 | WO |
1996007130 | Mar 1996 | WO |
1996013093 | May 1996 | WO |
1998023021 | May 1998 | WO |
1999028801 | Jun 1999 | WO |
0000839 | Jan 2000 | WO |
0021178 | Apr 2000 | WO |
0042689 | Jul 2000 | WO |
0075947 | Dec 2000 | WO |
0077522 | Dec 2000 | WO |
01047095 | Jun 2001 | WO |
0231517 | Apr 2002 | WO |
02056126 | Jul 2002 | WO |
0278164 | Oct 2002 | WO |
02078164 | Oct 2002 | WO |
02093655 | Nov 2002 | WO |
03012569 | Feb 2003 | WO |
2003012569 | Feb 2003 | WO |
2003050938 | Jun 2003 | WO |
2003071655 | Aug 2003 | WO |
03084041 | Oct 2003 | WO |
2004001942 | Dec 2003 | WO |
2004006342 | Jan 2004 | WO |
2004008619 | Jan 2004 | WO |
2004023278 | Mar 2004 | WO |
2004053993 | Jun 2004 | WO |
2004090993 | Oct 2004 | WO |
2004098261 | Nov 2004 | WO |
2004100344 | Nov 2004 | WO |
2004100348 | Nov 2004 | WO |
2004107543 | Dec 2004 | WO |
2005015584 | Feb 2005 | WO |
2005027300 | Mar 2005 | WO |
2005053189 | Jun 2005 | WO |
2005069096 | Jul 2005 | WO |
2005076444 | Aug 2005 | WO |
2005076445 | Aug 2005 | WO |
2005089030 | Sep 2005 | WO |
2005112551 | Dec 2005 | WO |
2005119609 | Dec 2005 | WO |
2005124498 | Dec 2005 | WO |
2006002380 | Jan 2006 | WO |
2006005125 | Jan 2006 | WO |
2006007198 | Jan 2006 | WO |
2006011071 | Feb 2006 | WO |
2006011359 | Feb 2006 | WO |
2006013600 | Feb 2006 | WO |
2006033143 | Mar 2006 | WO |
2006048688 | May 2006 | WO |
2006048689 | May 2006 | WO |
2006071436 | Jul 2006 | WO |
2006078685 | Jul 2006 | WO |
2006079503 | Aug 2006 | WO |
2006089778 | Aug 2006 | WO |
2006110613 | Oct 2006 | WO |
2007006564 | Jan 2007 | WO |
2007007360 | Jan 2007 | WO |
2007010326 | Jan 2007 | WO |
2007048421 | May 2007 | WO |
2007072517 | Jun 2007 | WO |
2007073951 | Jul 2007 | WO |
2007080429 | Jul 2007 | WO |
2007084196 | Jul 2007 | WO |
2007090476 | Aug 2007 | WO |
2007113358 | Oct 2007 | WO |
2007124518 | Nov 2007 | WO |
2007129808 | Nov 2007 | WO |
2008008528 | Jan 2008 | WO |
2008026207 | Mar 2008 | WO |
2008077473 | Jul 2008 | WO |
2008097591 | Aug 2008 | WO |
2008125915 | Oct 2008 | WO |
2008132551 | Nov 2008 | WO |
2008132553 | Nov 2008 | WO |
2008142480 | Nov 2008 | WO |
2009006879 | Jan 2009 | WO |
2009007782 | Jan 2009 | WO |
2009020917 | Feb 2009 | WO |
2009046533 | Apr 2009 | WO |
2009051221 | Apr 2009 | WO |
2009051222 | Apr 2009 | WO |
2009051853 | Apr 2009 | WO |
2009056957 | May 2009 | WO |
2009059028 | May 2009 | WO |
2009064683 | May 2009 | WO |
2009072075 | Jun 2009 | WO |
2009073867 | Jun 2009 | WO |
2009072077 | Jun 2009 | WO |
2009073868 | Jun 2009 | WO |
2009073995 | Jun 2009 | WO |
2009114341 | Sep 2009 | WO |
2009118682 | Oct 2009 | WO |
2009118683 | Oct 2009 | WO |
2009136358 | Nov 2009 | WO |
2009155392 | Dec 2009 | WO |
2010002960 | Jan 2010 | WO |
2010003941 | Jan 2010 | WO |
2010014116 | Feb 2010 | WO |
2010037393 | Apr 2010 | WO |
2010056777 | May 2010 | WO |
2010062662 | Jun 2010 | WO |
2010065043 | Jun 2010 | WO |
2010065388 | Jun 2010 | WO |
2010072717 | Jul 2010 | WO |
2010078303 | Jul 2010 | WO |
2010091025 | Aug 2010 | WO |
2010094012 | Aug 2010 | WO |
2010120315 | Oct 2010 | WO |
2010134057 | Nov 2010 | WO |
20100134057 | Nov 2010 | WO |
2011005339 | Jan 2011 | WO |
2011011711 | Jan 2011 | WO |
2011014275 | Feb 2011 | WO |
2011017721 | Feb 2011 | WO |
2011023732 | Mar 2011 | WO |
2011028456 | Mar 2011 | WO |
2011028457 | Mar 2011 | WO |
2011059067 | May 2011 | WO |
2011074025 | Jun 2011 | WO |
2011085259 | Jul 2011 | WO |
2011109746 | Sep 2011 | WO |
2011119587 | Sep 2011 | WO |
2011133843 | Oct 2011 | WO |
2011133928 | Oct 2011 | WO |
2011151672 | Dec 2011 | WO |
2013015921 | Jan 2013 | WO |
2013019899 | Feb 2013 | WO |
2013130563 | Sep 2013 | WO |
Entry |
---|
Aug. 9, 2010, Hong, Wei, et al., “Charge Equalization of Battery POwer Modules in Series” The 2010 International Power Electronics Conference, IEEE, p. 1568-1572. |
Jun. 6, 2018—EP Search Report EP App No. 18151594.1. |
Jun. 29, 2018—EP Search Report—EP App No. 18175980.4. |
Jan. 29, 2019—European Search Report for EP App No. 18199117.5. |
Ciobotaru, et al., Control of single-stage single-phase PV inverter, Aug. 7, 2006. |
International Search Report and Written Opinion for PCT/IB2007/004591 dated Jul. 5, 2010. |
European Communication for EP07873361.5 dated Jul. 12, 2010. |
European Communication for EP07874022.2 dated Oct. 18, 2010. |
European Communication for EP07875148.4 dated Oct. 18, 2010. |
Chen, et al., “A New Low-Stress Buck-Boost Converter for Universal-Input PFC Applications”, IEEE Applied Power Electronics Conference, Feb. 2001, Colorado Power Electronics Center Publications. |
Chen, et al., “Buck-Boost PWM Converters Having Two Independently Controlled Switches”, IEEE Power Electronics Specialists Conference, Jun. 2001, Colorado Power Electronics Center Publications. |
Esram, et al., “Comparison of Photovoltaic Array Maximum Power Point Tracking Techniques”, IEEE Transactions on Energy Conversion, vol. 22, No. 2, Jun. 2007, pp. 439-449. |
Walker, et al., “Photovoltaic DC-DC Module Integrated Converter for Novel Cascaded and Bypass Grid Connection Topologies-Design and Optimisation”, 37th IEEE Power Electronics Specialists Conference, Jun. 18-22, 2006, Jeju, Korea. |
Geoffrey R. Walker Affidavit re: U.S. Appl. No. 11/950,307, submitted in an IDS for U.S. Appl. No. 11/950,271 on Mar. 9, 2010. |
Geoffrey R. Walker Affidavit re: U.S. Appl. No. 11/950,271, submitted in an IDS for U.S. Appl. No. 11/950,271 on Mar. 9, 2010. |
International Search Report for PCT/IB2007/004610 dated Feb. 23, 2009. |
International Search Report for PCT/IB2007/004584 dated Jan. 28, 2009. |
International Search Report for PCT/IB2007/004586 dated Mar. 5, 2009. |
International Search Report for PCT/IB2007/004643 dated Jan. 30, 2009. |
International Search Report for PCT/US2008/085736 dated Jan. 28, 2009. |
International Search Report for PCT/US2008/085754 dated Feb. 9, 2009. |
International Search Report for PCT/US2008/085755 dated Feb. 3, 2009. |
Kajihara, et al., “Model of Photovoltaic Cell Circuits Under Partial Shading”, 2005 IEEE, pp. 866-870. |
Knaupp, et al., “Operation of a 10 KW PV Fagade with 100 W AC Photovoltaic Modules”, 1996 IEEE, 25th PVSC, May 13-17, 1996, pp. 1235-1238, Washington, DC. |
Alonso, et al., “Cascaded H-Bridge Multilevel Converter for Grid Connected Photovoltaic Generators with Independent Maximum Power Point Tracking of Each Solar Array”, 2003 IEEE 34th, Annual Power Electronics Specialists Conference, Acapulco, Mexico, Jun. 15-19, 2003, pp. 731-735, vol. 2. |
Myrzik, et al., “String and Module Integrated Inverters for Single-Phase Grid Connected Photovoltaic Systems—A Review”, Power Tech Conference Proceedings, 2003 IEEE Bologna, Jun. 23-26, 2003, p. 8, vol. 2. |
Chen, et al., “Predictive Digital Current Programmed Control”, IEEE Transactions on Power Electronics, vol. 18, Issue 1, Jan. 2003. |
Wallace, et al., “DSP Controlled Buck/Boost Power Factor Correction for Telephony Rectifiers”, Telecommunications Energy Conference 2001, INTELEC 2001, Twenty-Third International, Oct. 18, 2001, pp. 132-138. |
Alonso, “A New Distributed Converter Interface for PV Panels”, 20th European Photovoltaic Solar Energy Conference, Jun. 6-10, 2005, Barcelona, Spain, pp. 2288-2291. |
Alonso, “Experimental Results of Intelligent PV Module for Grid-Connected PV Systems”, 21st European Photovoltaic Solar Energy Conference, Sep. 4-8, 2006, Dresden, Germany, pp. 2297-2300. |
Enslin, “Integrated Photovoltaic Maximum Power Point Tracking Converter”, IEEE Transactions on Industrial Electronics, vol. 44, No. 6, Dec. 1997, pp. 769-773. |
Sep. 7-9, 1999—Lindgren, “Topology for Decentralised Solar Energy Inverters with a Low Voltage AC-Bus”, Chalmers University of Technology, Department of Electrical Power Engineering, EPE '99—Lausanne. |
Jun. 20-25, 2004—Nikraz, “Digital Control of a Voltage Source Inverter in a Photovoltaic Applications”, 2004 35th Annual IEEE Power Electronics Specialists Conference, Aachen, Germany, 2004, pp. 3266-3271. |
Orduz, “Evaluation Test Results of a New Distributed MPPT Converter”, 22nd European Photovoltaic Solar Energy Conference, Sep. 3-7, 2007, Milan, Italy. |
Jun. 17-21, 2007—Palma, “A Modular Fuel Cell, Modular DC-DC Converter Concept for High Performance and Enhanced Reliability”, IEEE 2007, pp. 2633-2638. |
Sep. 16-19, 1996—Quaschning, “Cost Effectiveness of Shadow Tolerant Photovoltaic Systems”, Berlin University of Technology, Institute of Electrical Energy Technology, Renewable Energy Section. EuroSun '96, pp. 819-824. |
Roman, “Intelligent PV Module for Grid-Connected PV Systems”, IEEE Transactions on Industrial Electronics, vol. 52, No. 4, Aug. 2006, pp. 1066-1073. |
Roman, “Power Line Communications in Modular PV Systems”, 20th European Photovoltaic Solar Energy Conference, Jun. 6-10, 2005, Barcelona, Spain, pp. 2249-2252. |
Uriarte, “Energy Integrated Management System for PV Applications”, 20th European Photovoltaic Solar Energy Conference, Jun. 6-10, 2005, Barcelona, Spain, pp. 2292-2295. |
Walker, “Cascaded DC-DC Converter Connection of Photovoltaic Modules”, IEEE Transactions on Power Electronics, vol. 19, No. 4, Jul. 2004, pp. 1130-1139. |
Oct. 3-7, 1999—Matsui, et al., “A New Maximum Photovoltaic Power Tracking Control Scheme Based on Power Equilibrium at DC Link”, IEEE, 1999, pp. 804-809. |
Hou, et al., Application of Adaptive Algorithm of Solar Cell Battery Charger, Apr. 2004. |
Sep. 15-22, 2000—Stamenic, et al., “Maximum Power Point Tracking for Building Integrated Photovoltaic Ventilation Systems”. |
International Preliminary Report on Patentability for PCT/IB2008/055092 dated Jun. 8, 2010. |
International Search Report for PCT/IB2008/055092 dated Sep. 8, 2009. |
International Search Report and Opinion of International Patent Application WO2009136358 (PCT/IB2009/051831), dated Sep. 16, 2009. |
Informal Comments to the International Search Report dated Dec. 3, 2009. |
PCT/IB2010/052287 International Search Report and Written Opinion dated Sep. 2, 2010. |
UK Intellectual Property office, Combined Search and Examination Report for GB1100450.4 under Sections 17 and 18(3), dated Jul. 14, 2011. |
Jain, et aL, “A Single-Stage Grid Connected Inverter Topology for Solar PV Systems with Maximum Power Point Tracking”, IEEE Transactions on Power Electronics, vol. 22, No. 5, Sep. 2007, pp. 1928-1940. |
Lynch, et al., “Flexible DER Utility Interface System: Final Report”, Sep. 2004-May 2006, Northern Power Systems, Inc., Waitsfield, Vermont B. Kroposki, et al. National Renewable Energy Laboratory Golden, Colorado Technical Report NREL/TP-560-39876, Aug. 2006. |
Schimpf, et al., “Grid Connected Converters for Photovoltaic, State of the Art, Ideas for improvement of Transformerless Inverters”, NORPIE/2008, Nordic Workshop on Power and Industrial Electronics, Jun. 9-11, 2008. |
Sandia Report SAND96-2797 I UC-1290 Unlimited Release, Printed Dec. 1996, “Photovoltaic Power Systems and The National Electrical Code: Suggested Practices”, by John Wiles, Southwest Technology Development Institute New Mexico State University Las Cruces, NM. |
United Kingdom Intellectual Property Office, Combined Search and Examination Report Under Sections 17 and 18(3), GB10208621.7, dated Jun. 16, 2011. |
GB Combined Search and Examination Report—GB1203763.6—dated Jun. 25, 2012. |
Mohammad Reza Amini et al., “Quasi Resonant DC Link Inverter with a Simple Auxiliary Circuit”, Journal of Power Electronics, vol. 11, No. 1, Jan. 2011. |
Khairy Fathy et al., “A Novel Quasi-Resonant Snubber-Assisted ZCS-PWM DC-DC Converter with High Frequency Link”, Journal of Power Electronics, vol. 7, No. 2, Apr. 2007. |
May 22, 1998—Cheng K.W.E., “New Generation of Switched Capacitor Converters”, Department of Electrical Engineering, The Hong Kong Polytechnic University, Hung Hom, Hong Kong, Power Electronics Conference, PESC 98. |
1999—Per Karlsson, “Quasi Resonant DC Link Converters—Analysis and Design for a Battery Charger Application”, Universitetstryckeriet, Lund University, 1999, ISBN 91-88934-14-4; Added to Lund University Publications on Jun. 4, 2012. |
Hsiao Sung-Hsin et al., “ZCS Switched-Capacitor Bidirectional Converters with Secondary Output Power Amplifier for Biomedical Applications”, Power Electronics Conference (IPEC) Jun. 21, 2010. |
Nov. 27-30, 2007—Yuang-Shung Lee et al.,“A Novel QR ZCS Switched-Capacitor Bidirectional Converter”, IEEE, 2007. |
Antti Tolvanen et al., “Seminar on Solar Simulation Standards and Measurement Principles”, May 9, 2006 Hawaii. |
J.A. Eikelboom and M.J. Jansen, “Characterisation of PV Modules of New Generations—Results of tests and simulations”, Jun. 2000. |
Yeong-Chau Kuo et al., “Novel Maximum-Power-Point-Tracking Controller for Photovoltaic Energy Conversion System”, IEEE Transactions on Industrial Electronics, vol. 48, No. 3, Jun. 2001. |
C. Liu et al., “Advanced Algorithm for MPPT Control of Photovoltaic Systems”, Canadian Solar Buildings Conference, Montreal, Aug. 20-24, 2004. |
May 22, 1998—Chihchiang Hua and Chihming Shen, “Study of Maximum Power Tracking Techniques and Control of DC/DC Converters for Photovoltaic Power System”, IEEE. |
Tore Skjellnes et al., “Load sharing for parallel inverters without communication”, Nordic Workshop in Power and Industrial Electronics, Aug. 12-14, 2002. |
Jun. 23, 2000—Giorgio Spiazzi at el., “A New Family of Zero-Current-Switching Variable Frequency DC-DC Converters”, IEEE. |
Nayar, C.V., M. Ashari and W.W.L Keerthiphala, “A Grid Interactive Photovoltaic Uninterruptible Power Supply System Using Battery Storage and a Back up Diesel Generator”, IEEE Transactions on Energy Conversion, vol. 15, No. 3, Sep. 2000, pp. 348?353. |
Ph. Strauss et al., “AC coupled PV Hybrid systems and Micro Grids-state of the art and future trends”, 3rd World Conference on Photovoltaic Energy Conversion, Osaka, Japan May 11-18, 2003. |
Jul. 16-20, 2000—Nayar, C.V., abstract, Power Engineering Society Summer Meeting, 2000. IEEE, 2000, pp. 1280-1282 vol. 2. |
Mar. 15, 2004—D. C. Martins et al., “Analysis of Utility Interactive Photovoltaic Generation System using a Single Power Static Inverter”, Asian J. Energy Environ., vol. 5, Issue 2, (2004), pp. 115-137. |
Rafael C. Beltrame et al., “Decentralized Multi String PV System With Integrated ZVT Cell”, Congresso Brasileiro de Automática / Sep. 12-16, 2010, Bonito-MS. |
Sergio Busquets-Monge et al., “Multilevel Diode-clamped Converter for Photovoltaic Generators With Independent Voltage Control of Each Solar Array”, IEEE Transactions on Industrial Electronics, vol. 55, No. 7, Jul. 2008. |
Soeren Baekhoej Kjaer et al., “A Review of Single-Phase Grid-Connected Inverters for Photovoltaic Modules”, IEEE Transactions on Industry Applications, vol. 41, No. 5, Sep./Oct. 2005. |
Office Action—JP 2011-539491—dated Mar. 26, 2013. |
Supplementary European Search Report—EP08857456—dated Dec. 6, 2013. |
Extended European Search Report—EP14151651.8—dated Feb. 25, 2014. |
Iyomori H et al: “Three-phase bridge power block module type auxiliary resonant AC link snubber-assisted soft switching inverter for distributed AC power supply”, Intelec 2003. 25th. International Telecommunications Energy Conference. Yokohama, Japan, Oct. 19-23, 2003; Tokyo, IEICE, JP, Oct. 23, 2003 (Oct. 23, 2003), pp. 650-656, XP031895550, ISBN: 978-4-88552-196-6. |
Yuqing Tang: “High Power Inverter EMI characterization and Improvement Using Auxiliary Resonant Snubber Inverter”, Dec. 17, 1998 (Dec. 17, 1998), XP055055241, Blacksburg, Virginia Retrieved from the Internet: URL:http:jjscholar.lib.vt.edu/theses/available/etd-012299-165108/unrestricted/THESIS.PDF, [retrieved on Mar. 5, 2013]. |
Yoshida M et al: “Actual efficiency and electromagnetic noises evaluations of a single inductor resonant AC link snubber-assisted three-phase soft-switching inverter”, Intelec 2003. 25th. International Telecommunications Energy Conference. Yokohama, Japan, Oct. 19-23, 2003; Tokyo, IEICE, JP, Oct. 23, 2003 (Oct. 23, 2003), pp. 721-726, XP031895560, ISBN: 978-4-88552-196-6. |
Third party observation—EP07874025.5—dated Aug. 6, 2011. |
Extended European Search Report—EP 13152967.9—dated Aug. 28, 2014. |
Extended European Search Report'EP 14159696—dated Jun. 20, 2014. |
Gow Ja A et al: “A Modular DC-DC Converter and Maximum Power Tracking Controller For Medium to Large Scale Photovoltaic Generating Plant” 8<SUP>th </SUP> European Conference on Power Electronics and Applications. Lausaane, CH, Sep. 7-9, 1999, EPE. European Conference on Power Electronics and Applications, Brussls: EPE Association, BE, vol. Conf. 8, Sep. 7, 1999, pp. 1-8, XP000883026. |
Chihchiang Hua et al: “Comparative Study of Peak Power Tracking Techniques for Solar Storage System” Applied Power Electronics Conference and Exposition, 1998. APEC '98. Conference Proceedings 1998, Thirteenth Annual Anaheim, CA USA Feb. 15-19, 1998, New York, NY, USA, IEEE, US, Feb. 15, 1998, pp. 679-685, XP010263666. |
Matsuo H et al: “Novel Solar Cell Power Supply System Using the Miltiple-input DC-DC Converter” 20<SUP>th</SUP> International telecommunications Energy Conference. Intelec '98 San Francisco, CA, Oct. 4-8, 1998, Intelec International Telecommunications Energy Conference, New York, NY: IEEE, US, Oct. 4, 1998, pp. 797-802, XP000896384. |
Chihchiang Hua et al: “DSP-based controller application in battery storage of photovoltaic system” Industrial Electronics, Control, and Instrumentation, 1996, Proceedings of the 1996 IEEE IECON 22<SUP>nd</SUP> International Conference on Taipei, Taiwan Aug. 5-10, 1996, New York, NY, USA, IEEE, US, Aug. 5, 1996, pp. 1705-1710, XP010203239. |
Hua C et al: “Implementation of a DSP-Controlled Photovoltaic System with Peak Power Tracking” IEEE Transactions on industrial Electronics, IEEE, Inc. New York, US, vol. 45, No. 1, Feb. 1, 1998, pp. 99-107, XP000735209. |
I. Weiss et al.: “A new PV system technology—the development of a magnetic power transmission from the PV module to the power bus” 16th European Photovoltaic Solar Energy Conference, vol. III, May 1-5, 2000, pp. 2096-2099, XP002193468 Glasgow,UK. |
Basso, Tim, “IEEE Standard for Interconnecting Distributed Resources With the Electric Power System,” IEEE PES Meeting, Jun. 9, 2004. |
Feb. 11, 2003—Boostbuck.com, “The Four Boostbuck Topologies,” located at http://www.boostbuck.com/ TheFourTopologies.html. |
Apr. 2002—Gautam, Nalin K. et al., “An Efficient Algorithm to Simulate the Electrical Performance of Solar Photovoltaic Arrays,” Energy, vol. 27, No. 4, pp. 347-361, 2002. |
Nordmann, T. et al., “Performance of PV Systems Under Real Conditions,” European Workshop on Life Cycle Analysis and Recycling of Solar Modules, The “Waste” Challenge, Brussels, Belgium, Mar. 18-19, 2004. |
Wiles, John, “Photovoltaic Power Systems and the National Electrical Code: Suggested Practices,” Sandia National Laboratories, document No. SAND2001-0674, Mar. 2001. |
Hewes, J. “Relays,” located at http://web.archive.org/web/20030816010159/www.kpsec.freeuk.com/components- /relay.htm, Aug. 16, 2003. |
Advanced Energy Group, “The Basics of Solar Power Systems,” located at http://web.archive.org/web/20010331044156/http://www.solar4power.com/solar-power-basics.html, Mar. 31, 2001. |
International Patent Application No. PCT/AU2005/001017, International Search Report and Written Opinion, dated Aug. 18, 2005. |
Baek, Ju-Won et al., “High Boost Converter using Voltage Multiplier,” 2005 IEEE Conference, IECON 05, pp. 567-572, Nov. 2005. |
Wikimedia Foundation, Inc., “Electric Power Transmission,” located at http://web.archive.org/web/20041210095723/en.wikipedia.org/wiki/Electric-power-transmission, Nov. 17, 2004. |
Jacobsen, K.S., “Synchronized Discrete Multi-Tone (SDMT) Modulation for Cable Modems: Making the Most of the Scarce Reverse Channel Bandwidth,” Conference Proceedings of Wescon/97, pp. 374-380, Nov. 4, 1997. |
Loyola, L. et al., “A Multi-Channel Infrastructure based on DCF Access Mechanism for Wireless LAN Mesh Networks Compliant with IEEE 802.11,” 2005 Asia-Pacific Conference on Communications, pp. 497-501, Oct. 5, 2005. |
Storfer, Lior, “Enhancing Cable Modem TCP Performance,” Texas Instruments Inc. white paper, Jul. 2003. |
International Preliminary Report on Patentability Issued in corresponding international application No. PCT/US04/16668, filed May 27, 2004. |
Jul. 12, 2019—European Search Report—EP 19170538.3. |
QT Technical Application Papers, “ABB Circuit-Breakers for Direct current Applications”, ABB Sage S.p.A., An ABB Group Company, L.V. Breakers, Via Baioni, 35, 24123 Bergamo-Italy, Tel.: +39 035.395.111—Telefax: +39 035.395.306-433, Sep. 2007. |
Woyte, et al., “Mains Monitoring and Protection in a European Context”, 17th European Photovoltaic Solar Energy Conference and Exhibition, Munich, Germany, Oct. 22-26, 2001, Achim, Woyte, et al., pp. 1-4. |
“Implementation and testing of Anti-Islanding Algorithms for IEEE 929-2000 Compliance of Single Phase Photovoltaic Inverters”, Raymond M. Hudson, Photovoltaic Specialists Conference, 2002. Conference Record of the Twenty-Ninth IEEE, May 19-24, 2002. |
Fairchild Semiconductor, Application Note 9016, IGBT Basics 1, by K.S. OH Feb. 1, 2001. |
“Disconnect Switches in Photovoltaic Applications”, ABB, Inc., Low Voltage Control Products & Systems, 1206 Hatton Road, Wichita Falls, TX 86302, Phone 888-385-1221, 940-397-7000, Fax: 940-397-7085, 1SXU301197B0201, Nov. 2009. |
Walker, “A DC Circuit Breaker for an Electric Vehicle Battery Pack”, Australasian Universities Power Engineering Conference and IEAust Electric Energy Conference, Sep. 26-29, 1999. |
Combined Search and Examination Report for GB1018872.0 dated Apr. 15, 2011, 2 pages. |
International Search Report and Opinion of International Patent Application PCT/2009/051221, dated Oct. 19, 2009. |
International Search Report and Opinion of International Patent Application PCT/2009/051222, dated Oct. 7, 2009. |
Communication in EP07874025.5 dated Aug. 17, 2011. |
IPRP for PCT/IB2008/055095 dated Jun. 8, 2010, with Written Opinion. |
ISR for PCT/IB2008/055095 dated Apr. 30, 2009. |
ISR for PCT/IL07/01064 dated Mar. 25, 2008. |
IPRP for PCT/IB2007/004584 dated Jun. 10, 2009, with Written Opinion. |
IPRP for PCT/IB2007/004591 dated Jul. 13, 2010, with Written Opinion. |
IPRP for PCT/IB2007/004643 dated Jun. 10, 2009, with Written Opinion. |
Written Opinion for PCT/IB2008/055092 submitted with IPRP dated Jun. 8, 2010. |
IPRP for PCT/US2008/085754 dated Jun. 8, 2010, with Written Opinion dated Jan. 21, 2009. |
IPRP for PCT/US2008/085755 dated Jun. 8, 2010, with Written Opinion dated Jan. 20, 2009. |
IPRP for PCT/IB2009/051221 dated Sep. 28, 2010, with Written Opinion. |
IPRP for PCT/IB2009/051222 dated Sep. 28, 2010, with Written Opinion. |
IPRP for PCT/IB2009/051831 dated Nov. 9, 2010, with Written Opinion. |
IPRP for PCT/US2008/085736 dated Jun. 7, 2011, with Written Opinion. |
IPRP for PCT/IB2010/052287 dated Nov. 22, 2011, with Written Opinion. |
ISR for PCT/IB2010/052413 dated Sep. 7, 2010. |
UK Intellectual Property Office, Application No. GB1109618.7, Patents Act 1977, Examination Report 18(3), Sep. 16, 2011. |
UK Intellectual Property Office, Patents Act 1977: Patents Rules Notification of Grant: Patent Serial No. GB2480015, Nov. 29, 2011. |
Walker, et al. “PV String Per-Module Maximum Power Point Enabling Converters”, School of Information Technology and Electrical Engineering The University of Queensland, Sep. 28, 2003. |
Walker, “Cascaded DC-DC Converter Connection of Photovoltaic Modules”, 33rd Annual IEEE Power Electronics Specialists Conference. PESC 2002. Conference Proceedings. Cairns, Queensland, Australia, Jun. 23-27, 2002; [Annual Power Electronics Specialists Conference], New York, NY: IEEE US, vol. 1, Jun. 23, 2002, pp. 24-29, XP010596060 ISBN: 978-0-7803-7262-7, figure 1. |
Baggio, “Quasi-ZVS Activity Auxiliary Commutation Circuit for Two Switches Forward Converter”, 32nd Annual IEEE Power Electronics Specialists Conference. PESC 2001. Conference Proceedings. Vancouver, Canada, Jun. 17-21, 2001; [Annual Power Electronics Specialists Conference] New York, NY: IEEE, US. |
Ilic, “Interleaved Zero-Current-Transition Buck Converter”, IEEE Transactions on Industry Applications, IEEE Service Center, Piscataway, NJ, US, vol. 43, No. 6, Nov. 1, 2007, pp. 1619-1627, XP011197477 ISSN: 0093-9994, pp. 1619-1922. |
Lee: “Novel Zero-Voltage-Transition and Zero-Current-Transition Pulse-Width-Modulation Converters”, Power Electronics Specialists Conference, 1997, PESC '97, Record, 28th Annual IEEE St. Louis, MO, USA, Jun. 22-27, 1997, New York, NY, USA IEEE, US, vol. 1, Jun. 22, 1997, pp. 233-239, XP010241553, ISBN: 978-0-7803-3840-1, pp. 233-236. |
Sakamoto, “Switched Snubber for High-Frequency Switching Converters”, Electronics & Communications in Japan, Part 1—Communications, Wiley, Hoboken, NJ, US, vol. 76, No. 2, Feb. 1, 1993, pp. 30-38, XP000403018 ISSN: 8756-6621, pp. 30-35. |
Duarte, “A Family of ZVX-PWM Active-Clamping DC-to-DC Converters: Synthesis, Analysis and Experimentation”, Telecommunications Energy Conference, 1995, INTELEC '95, 17th International The Hague, Netherlands, Oct. 29-Nov. 1, 1995, New York, NY, US, IEEE, US, Oct. 29, 1995, pp. 502-509, XP010161283 ISBN: 978-0-7803-2750-4 p. 503-504. |
IPRP for PCT/IL2007/001064 dated Mar. 17, 2009, with Written Opinion dated Mar. 25, 2008. |
IPRP for PCT/IB2007/004586 dated Jun. 10, 2009, with Written Opinion. |
Gao, et al., “Parallel-Connected Solar PV System to Address Partial and Rapidly Fluctuating Shadow Conditions”, IEEE Transactions on Industrial Electronics, vol. 56, No. 5, May 2009, pp. 1548-1556. |
IPRP PCT/IB2007/004610—date of issue Jun. 10, 2009. |
Extended European Search Report—EP12176089.6—dated Nov. 8, 2012. |
Gwon-Jong Yu et al: “Maximum power point tracking with temperature compensation of photovoltaic for air conditioning system with fuzzy controller”, May 13, 1996; May 13, 1996-May 17, 1996, May 13, 1996 (May 13, 1996), pp. 1429-1432, XP010208423. |
Extended European Search Report—EP12177067.1—dated Dec. 7, 2012. |
GB Combined Search and Examination Report—GB1200423.0—dated Apr. 30, 2012. |
GB Combined Search and Examination Report—GB1201499.9—dated May 28, 2012. |
GB Combined Search and Examination Report—GB1201506.1—dated May 22, 2012. |
“Study of Energy Storage Capacitor Reduction for Single Phase PWM Rectifier”, Ruxi Wang et al., Virginia Polytechnic Institute and State University, Feb. 2009. |
“Multilevel Inverters: A Survey of Topologies, Controls, and Applications”, José Rodríguez et al., IEEE Transactions on Industrial Electronics, vol. 49, No. 4, Aug. 2002. |
Extended European Search Report—EP 08878650.4—dated Mar. 28, 2013. |
Satcon Solstice—Satcon Solstice 100 kW System Solution Sheet—2010. |
John Xue, “PV Module Series String Balancing Converters”, University of Queensland—School of Information Technology & Electrical Engineering, Nov. 6, 2002. |
Robert W. Erickson, “Future of Power Electronics for Photovoltaics”, IEEE Applied Power Electronics Conference, Feb. 2009. |
International Application No. PCT/US13/27965, International Preliminary Examination Report, dated Sep. 2, 2014. |
International Patent Application PCT/US13/027965, International Search Report and Written Opinion, dated Jun. 2, 2013. |
International Application No. PCT/US12/44045, International Preliminary Examination Report, dated Jan. 28, 2014. |
International Patent Application No. PCT/US2012/044045, International Search Report and Written Opinion, dated Jan. 2, 2013. |
International Patent Application No. PCT/US2009/047734, International Search Report and Written Opinion, dated May 4, 2010. |
Linares, Leonor et al., “Improved Energy Capture in Series String Photovoltaics via Smart Distributed Power Electronics,” 24th Annual IEEE Applied Power Electronics Conference and Exposition, pp. 904-910, Feb. 15, 2009. |
International Patent Application No. PCT/US2010/029929, International Search Report and Written Opinion, dated Oct. 27, 2010. |
International Patent Application No. PCT/US2011/020591, International Search Report and Written Opinion, dated Aug. 8, 2011. |
International Patent Application No. PCT/US2011/033544, International Search Report and Written Opinion, dated Nov. 24, 2011. |
J. Keller and B. Kroposki, titled, “Understanding Fault Characteristics of Inverter-Based Distributed Energy Resources”, in a Technical Report NREL/TP-550-46698, published Jan. 2010, pp. 1 through 48. |
International Patent Application No. PCT/US2008/081827, International Search Report and Written Opinion, dated Jun. 24, 2009. |
International Patent Application No. PCT/US2010/046274 International Search Report and Written Opinion, dated Apr. 22, 2011. |
International Patent Application No. PCT/US2011/033658, International Search Report and Written Opinion, dated Jan. 13, 2012. |
International Patent Application No. PCT/US2011/029392, International Search Report and Written Opinion, dated Oct. 24, 2011. |
European Patent Application No. 09829487.9, Extended Search Report, dated Apr. 21, 2011. |
International Patent Application No. PCT/US2009/062536, International Search Report and Written Opinion, dated Jun. 17, 2010. |
International Patent Application No. PCT/US2010/022915, International Search Report and Written Opinion, dated Aug. 23, 2010. |
International Patent Application No. PCT/US2010/046272, International Search Report and Written Opinion, dated Mar. 31, 2011. |
International Patent Application No. PCT/US2010/029936, International Search Report and Written Opinion, dated Nov. 12, 2010. |
International Patent Application No. PCT/US08/75127, International Search Report and Written Opinion, dated Apr. 28, 2009. |
International Patent Application No. PCT/US09/35890, International Search Report and Written Opinion, dated Oct. 1, 2009. |
European Patent Appilcation No. 08845104.2, Extended Search Report, dated Jul. 31, 2014. |
European Patent Application No. 11772811.3, Extended Search Report, dated Dec. 15, 2014. |
International Patent Application No. PCT/US2008/082935, International Search Report and Written Opinion, dated Jun. 25, 2009. |
Jun. 6-10, 2004—Rodriguez, C., and G. A. J. Amaratunga. “Dynamic stability of grid-connected photovoltaic systems.” Power Engineering Society General Meeting, 2004. IEEE, pp. 2194-2200. |
Nov. 3-Dec. 29, 1999—Kikuchi, Naoto, et al. “Single phase amplitude modulation inverter for utility interaction photovoltaic system.” Industrial Electronics Society, 1999. IECON'99 Proceedings. The 25th Annual Conference of the IEEE. vol. 1. IEEE, 1999. |
Oct. 7-12, 1990—Nonaka, Sakutaro, et al. “Interconnection system with single phase IGBT PWM CSI between photovoltaic arrays and the utility line.” Industry Applications Society Annual Meeting, 1990., Conference Record of the 1990 IEEE. |
Jun. 23-27, 2002—Calais, Martina, et al. “Inverters for single-phase grid connected photovoltaic systems—an overview.” Power Electronics Specialists Conference, 2002. pesc 02. 2002 IEEE 33rd Annual. vol. 4. IEEE, 2002. |
Jul. 1999—Marra, Enes Goncalves, and José Antenor Pomilio. “Self-excited induction generator controlled by a VS-PWM bidirectional converter for rural applications.” Industry Applications, IEEE Transactions on 35.4 (1999): 877-883. |
Apr. 2-5, 2002—Xiaofeng Sun, Weiyang Wu, Xin Li, Qinglin Zhao: A Research on Photovoltaic Energy Controlling System with Maximum Power Point Tracking:; Proceedings of the Power Conversion Conference—Osaka 2002 (Cat. No. 02TH8579) IEEE—Piscataway, NJ, USA, ISBN 0-7803-7156-9, vol. 2, p. 822-826, XP010590259: the whole document. |
International Search Report for corresponding PCT/GB2005/050198 completed Jun. 28, 2006 by C. Wirner of the EPO. |
Brunello, Gustavo, et al., “Shunt Capacitor Bank Fundamentals and Protection,” 2003 Conference for Protective Relay Engineers, Apr. 8-10, 2003, pp. 1-17, Texas A&M University, College Station, TX, USA. |
Cordonnier, Charles-Edouard, et al., “Application Considerations for Sensefet Power Devices,” PCI Proceedings, May 11, 1987, pp. 47-65. |
Jun. 9-11, 2003—Kotsopoulos, Andrew, et al., “Predictive DC Voltage Control of Single-Phase PV Inverters with Small DC Link Capacitance,” IEEE International Symposium, Month Unknown, 2003, pp. 793-797. |
Meinhardt, Mike, et al., “Multi-String-Converter with Reduced Specific Costs and Enhanced Functionality,” Solar Energy, May 21, 2001, pp. 217-227, vol. 69, Elsevier Science Ltd. |
Mar. 6-10, 2005—Kimball, et al.: “Analysis and Design of Switched Capacitor Converters”; Grainger Center for Electric Machinery and Electromechanics, University of Illinois at Urbana-Champaign, 1406 W. Green St, Urbana, IL 61801 USA, © 2005 IEEE; pp. 1473-1477. |
Martins, et al.: “Interconnection of a Photovoltaic Panels Array to a Single-Phase Utility Line From a Static Conversion System”; Power Electronics Specialists Conference, 2000. PESC 00. 2000 IEEE 31st Annual; Jun. 18, 2000-Jun. 23, 2000; ISSN: 0275-9306; pp. 1207-1211, vol. 3. |
International Search Report for corresponding PCT/GB2005/050197, completed Dec. 20, 2005 by K-R Zettler of the EPO. |
Kjaer, Soeren Baekhoej, et al., “Design Optimization of a Single Phase Inverter for Photovoltaic Applications,” IEEE 34th Annual Power Electronics Specialist Conference, Jun. 15-19, 2003, pp. 1183-1190, vol. 3, IEEE. |
Jun. 23-27, 2002—Shimizu, Toshihisa, et al., “A Flyback-type Single Phase Utility Interactive Inverter with Low-frequency Ripple Current Reduction on the DC Input for an AC Photovoltaic Module System,” IEEE 33rd Annual Power Electronics Specialist Conference, Month Unknown, 2002, pp. 1483-1488, vol. 3, IEEE. |
Written Opinion of PCT/GB2005/050197, dated Feb. 14, 2006 (mailing date), Enecsys Limited. |
Jun. 17-21, 2001—Yatsuki, Satoshi, et al., “A Novel AC Photovoltaic Module System based on the Impedance-Admittance Conversion Theory,” IEEE 32nd Annual Power Electronics Specialists Conference, Month Unknown, 2001, pp. 2191-2196, vol. 4, IEEE. |
International Search Report for corresponding PCT/GB2004/001965, completed Aug. 16, 2004 by A. Roider. |
Mar. 5-9, 1995—Naik et al., A Novel Grid Interface for Photovoltaic, Wind-Electric, and Fuel-Cell Systems With a Controllable Power Factor or Operation, IEEE, 1995, pp. 995-998. |
Petkanchin, Processes following changes of phase angle between current and voltage in electric circuits, Aug. 1999, Power Engineering Review, IEEE vol. 19, Issue 8, pp. 59-60. |
Mumtaz, Asim, et al., “Grid Connected PV Inverter Using a Commercially Available Power IC,” PV in Europe Conference, Oct. 2002, 3 pages, Rome, Italy. |
Koutroulis, Eftichios, et al., “Development of a Microcontroller-Based, Photovoltaic Maximum Power Point Tracking Control System,” IEEE Transactions on Power Electronics, Jan. 2001, pp. 46-54, vol. 16, No. 1, IEEE. |
European Search Report—EP App. 14159457.2—dated Jun. 12, 2015. |
European Search Report and Written Opinion—EP Appl. 12150819.6—dated Jul. 6, 2015. |
Alonso, O. et al. “Cascaded H-Bridge Multilevel Converter for Grid Connected Photovoltaic Generators With Independent Maximum Power Point Tracking of Each Solar Array.” IEEE 34th Annual Power Electronics Specialists Conference. vol. 2, Jun. 15, 2003. |
Nov. 27, 2009—European Search Report—3567562. |
Baocheng, DC to AC Inverter with Improved One Cycle Control, 2003. |
Brekken, Utility-Connected Power Converter for Maximizing Power Transfer From a Photovoltaic Source While Drawing Ripple-Free Current, 2002. |
Cramer, Modulorientierter Stromrichter Geht in Serienfertigung , SPVSE, 1994. |
Cramer, Modulorientierter Stromrichter, Juelich, Dec. 31, 1995. |
Cramer, String-Wechselrichter Machen Solarstrom Billiger, Elektronik, Sep. 1996. |
Dehbonei, A Combined Voltage Controlled and Current Controlled “Dual Converter” for a Weak Grid Connected Photovoltaic System with Battery Energy Storage, 2002. |
Engler, Begleitende Untersuchungen zur Entwicklung eines Multi-String-Wechselrichters, SPVSE, Mar. 2002. |
Geipel, Untersuchungen zur Entwicklung modulorientierter Stromrichter Modulorientierter Stromrichter fü hetzgekoppelte Photovoltaik-Anlagen, SPVSE, 1995. |
Hoor, DSP-Based Stable Control Loops Design for a Single Stage Inverter, 2006. |
Isoda, Battery Charging Characteristics in Small Scaled Photovoltaic System Using Resonant DC-DC Converter With Electric Isolation, 1990. |
Jones, Communication Over Aircraft Power lines, Dec. 2006/ Jan. 2007. |
Kalaivani, A Novel Control Strategy for the Boost DC-AC Inverter, 2006. |
Lee, Powering the Dream, IET Computing & Control Engineering, Dec. 2006/ Jan. 2007. |
Lee, A Novel Topology for Photovoltaic Series Connected DC/DC Converter with High Efficiency Under Wide Load Range, Jun. 2007. |
Lin, LLC DC/DC Resonant Converter with PLL Control Scheme, 2007. |
Niebauer, Solarenergie Optimal Nutzen, Stromversorgung, Elektronik, 1996. |
Rodrigues, Experimental Study of Switched Modular Series Connected DC-DC Converters, 2001. |
Sanchis, Buck-Boost DC-AC Inverter: Proposal for a New Control Strategy, 2004. |
Sen, A New DC-TO-AC Inverter With Dynamic Robust Performance, 1998. |
Shaojun, Research on a Novel Inverter Based on DC/DC Converter Topology, 2003. |
Siri, Sequentially Controlled Distributed Solar-Array Power System with Maximum Power Tracking, 2004. |
Walko, Poised for Power, IEE Power Engineer, Feb./ Mar. 2005. |
White, Electrical Isolation Requirements in Power-Over-Ethernet (PoE) Power Sourcing Equipment (PSE), 2006. |
Yu, Power Conversion and Control Methods for Renewable Energy Sources, May 2005. |
Zacharias, Modularisierung in der PV-Systemtechnik -Schnittstellen zur Standardisierung der Komponenten, Institut für Solare Energieversorgungstechnik (ISET), 1996. |
Dec. 24, 2019—CN Office Action—CN Application 201610946835.5. |
Jan. 30, 2020—EP Office Action—EP 18204177.2. |
Feb. 3, 2020—Chinese Office Action—201710749388.9. |
Apr. 20, 2020—European Search Report—EP 20151729.9. |
Apr. 23, 2020—European Search Report—EP 19217486.0. |
Dec. 31, 2020—CN Invalidation Decision—CN 200780045351.2. |
Dec. 31, 2020—CN Invalidation Decision—CN 201210253614.1. |
Sep. 17, 2020—Extended European Search Report—EP Application 20176744.9. |
Nov. 12, 2020—Preliminary Opinion by EPO—EP 12188944.8. |
Sep. 4, 2019—Extended European Search Report—EP 19181247.8. |
Aug. 6, 2019—Notice of Opposition of European Patent 2232663—Fronius International GmbH. |
Sep. 5, 2019—Notice of Opposition of European Patent 2549635—Huawei Technologies Co. |
Sep. 5, 2019—Notice of Opposition of European Patent 2549635—Fronius International GmbH. |
Solide Arbeit, Heinz Neuenstein, Dec. 2007. |
Spitzenwirkungsgrad mit drei Spitzen, Heinz Neuenstien and Andreas Schlumberger, Jan. 2007. |
Technical Information, Temperature Derating for Sunny Boy, Sunny Mini Central, Sunny Tripower, Aug. 9, 2019. |
Prinout from Energy Matters online Forum, Jul. 2011. |
Wayback Machine Query for Energy Matters Online Forum Jul. 2011. |
Oct. 12, 2020—CN Office Action—CN 201610946835.5. |
Number | Date | Country | |
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20190146016 A1 | May 2019 | US |
Number | Date | Country | |
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60916815 | May 2007 | US | |
60908095 | Mar 2007 | US | |
60868962 | Dec 2006 | US | |
60868893 | Dec 2006 | US | |
60868851 | Dec 2006 | US |
Number | Date | Country | |
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Parent | 15480574 | Apr 2017 | US |
Child | 16250200 | US | |
Parent | 14513877 | Oct 2014 | US |
Child | 15480574 | US | |
Parent | 13901890 | May 2013 | US |
Child | 14513877 | US | |
Parent | 11951419 | Dec 2007 | US |
Child | 13901890 | US |