1. Field of the Invention
The present invention generally relates to an analog-digital converter chip, especially for an intelligent analog-digital converter chip, having a Universal Asynchronous Receiver/Transmitter (UART) interface to connect directly with a micro-controller or a personal computer (PC), The chip integrate the hardware and the software that are needed in the analog-digital transformation on single chip, which can be used for the application of computer, communication and consumer electronic products.
2. Description of the Related Art
Sympathetic nerves and parasympathetic nerves, both of which belong to human autonomic nervous system, are closely related to the daily operation of a human body. Autonomic imbalance may induce various acute and chronic diseases, for example, heart disease, hypertension, etc., and may even lead to a sudden death, if serious. Even healthy individuals suffering from autonomic disorders may have palpitation, dyspnea (shortness of breath), gastrointestinal disorders, insomnia, etc. Hence, the protection for autonomic nervous system is not only an important issue in medicine but also a personal concern to an individual everyday. Living quality depends on how well our autonomic nervous system functions. Signs and symptoms of certain severe diseases at an early stage are attributable to autonomic disorders. Hence, early detection of autonomic disorder in an individual or a patient is likely to lessen or even prevent tragedies.
A normal adult's heart rate is about 70 beats per minute. The regular beating originates in a pacemaking system of the heart, which comprises sinoatrial node (SA node), atrioventricular node (AV node) and various kinds of nerve fibers. The pacemaking system is very precise so as to maintain the most essential rhythm of life. Nevertheless, to cope with various environments inside outside human bodies, human bodies are equipped with the autonomic nervous system including the sympathetic nervous system and the parasympathetic nervous system for regulation of heart rate. The former increases the heart rate, whereas the latter decreases it. Owing to the interaction of the two nervous systems, heart rate is kept in an optimal state of equilibrium. In addition to their different effects, the two nervous systems function at different speeds. The sympathetic nerves work slowly, and the parasympathetic nerves (especially the vagus nerve, which controls heart rate) function fast. Mankind has known the discrepancy between the respective speeds of these two different kinds of nervous systems for a long time. However, in the past, the analytical instruments were not sophisticated enough to enable the evaluation of this characteristic or persuade people that it is worth using.
There are many kind of physiology signals within the body of human being, for example, heart beat, weight, body temperature, breathing and blood pressure etc. These signals are the important configuration of the healthy. Therefore, if these signals can be effectively transferred into digital, the applications of medicine, research and livehood can be effectively improved. Nowadays, most of the analog/digital converter sold in the market can be generally classified into parallel interface and series interface, wherein the series interface can be more divided into SPI or C2D system. Nevertheless, no matter the parallel interface or the series interface, it still needs the micro-controller transformation, i.e. transfer to UART or RS232, as connecting to the PC or micro-controller. Actually, it is not convenient for a PC user.
U.S. Pat. No. 7,250,880 issued to Hurrell et al., entitled “Analog to digital converter”, discloses that an analog to digital converter using a plurality of conversion engines acting in a co-operative state for a first part of a conversion cycle to allow multiple bits to be examined at each trial. However, it is not yet found the interface connection between to PC or micro-controller. According above problems, the related filed need a new amplifier to overcome the disadvantage of the prior art.
It is an objective of the present invention to provide an intelligent analog-digital converter chip, having a UART interface, that can be directly connected to the micro-controller and computer. It makes the program designer use the analog-digital function by using software instruction and connection of UART or RS232.
It is the second objective of the present invention to provide an apparatus with an intelligent analog-digital converter chip. It can be applied for any kinds of new type virtuality and performed the transportation and connection with long distance. It makes the loop full in digital, consume lower power, reduce of chip area and enhance the stability.
To achieve the above objectives, the present invention provides an intelligent analog-digital converter chip, having a UART interface to connect directly with a micro-controller or a computer, comprising an amplifier, a filter, an analog/digital converter, and a central processing unit, where the amplifier is electrically connected to an analog signal and used for receiving and amplifying the analog signal, the filter is electrically connected to the amplifier and used for filtering the noises of output signal of the amplifier, the analog/digital converter is electrically connected to the filter and used for converting the output signal of the filter from analog into digital, and the central processing unit is electrically connected to the analog/digital converter and used for computing the output signal of the analog/digital converter, outputting a resulting signal and receiving a control signal.
According to one aspect of the present invention, the output signal of the filter is digitized by using the settings of start, sampling frequency, channel number, output-data format, sampling-bit and end for the analog/digital convert.
According to one aspect of the present invention, the resulting signal further comprising: a data length, used for describing the length of the resulting signal; and a byte stream, used for describing the content of the resulting signal, wherein the length of the byte stream is assigned by the data length.
According to one aspect of the present invention, the resulting signal is output in the parallel form or series form.
According to one aspect of the present invention, the intelligent analog-digital converter chip is controlled by a control signal.
According to one aspect of the present invention, the control signal is provided by a central process unit and a micro-controller.
To achieve another above objectives, the present invention provides an apparatus with the intelligent analog-digital converter chip comprising a plurality of intelligent analog-digital converter chips, and a plurality of central processing units or a plurality of micro-controllers. At least one of the plurality of intelligent analog-digital converter chips has a UART interface to connect directly with a micro-controller or a computer. The plurality of intelligent analog-digital converter chips are used for analyzing the signal of analog-digital converter, outputting a plurality of resulting signals and receiving a plurality of control signals and electrically connected to the plurality of intelligent analog-digital converter chips, and the plurality of central processing units or the plurality of micro-controllers are used for receiving and computing the plurality of resulting signals which are output by the plurality of intelligent analog-digital converter chips, and outputting a plurality of control signals.
According to one aspect of the present invention, the plurality of intelligent analog-digital converter chips are realized by using the Bipolar Junction Transistor (BJT), Heterojunction Bipolar Transistor (HBT), High Electronic Mobility Transistor (HEMT), Pseudomorphic HEMT (PHEMT), Complementary Metal Oxide Semiconductor Filed Effect Transistor (CMOS) and Laterally Diffused Metal Oxide Semiconductor Filed Effect Transistor (LDMOS). According to one aspect of the present invention, the transistors are realized by using the 0.18 μm 0.13 μm 0.09 μm 0.045 μm or the advanced process.
All the objects, advantages, and novel features of the invention will become more apparent from the following detailed descriptions when taken in conjunction with the accompanying drawings.
Although the invention has been explained in relation to several preferred embodiments, the accompanying drawings and the following detailed descriptions are the preferred embodiment of the present invention. It is to be understood that the following disclosed descriptions will be examples of present invention, and will not limit the present invention into the drawings and the special embodiment.
To understand the spirit of the present invention, referring to
Now referring to
According to the present invention, the circuit of the intelligent analog-digital converter chip 120 can be implemented by using: Bipolar Junction Transistor (BJT), Heterojunction Bipolar Transistor (HBT), High Electronic Mobility Transistor (HEMT), Pseudomorphic HEMT (PHEMT), Complementary Metal Oxide Semiconductor Filed Effect Transistor (CMOS) and Laterally Diffused Metal Oxide Semiconductor Filed Effect Transistor (LDMOS). Preferably, PHEMT is suitable for the intelligent analog-digital converter chip 120 in the microwave to millimeter wave range. Semiconductor materials broadly applicable to the intelligent analog-digital converter chip include: silicon, silicon-on-insulator (SOI), silicon-germanium (SiGe), gallium arsenide (GaAs), indium phosphide (InP) and silicon-germanium-carbon (SiGe—C). Preferably, the intelligent analog-digital converter chip 120 is designed with resistive shunt-feedback PHEMT transistors on semiconductor substrate of Al—In—GaAs compound. Depending on the required noises and reliability of the intelligent analog-digital converter chip 120. Moreover, the transistors mentioned above can be realized by using the 0.18 μm 0.13 μm 0.09 μm 0.045 μm or the advanced process.
According to the present invention, refereeing to
The present invention further provides an apparatus 100 with the intelligent analog-digital converter chip 120. The apparatus 100 comprises a plurality of intelligent analog-digital converter chips and a plurality of central processing units or a plurality of micro-controllers, electrically connected to the plurality of intelligent analog-digital converter chips. The plurality of intelligent analog-digital converter chips are the disclosed intelligent analog-digital converter chip 120 in the first embodiment, used for used for analyzing the transformation of analog-digital process, outputting a plurality of resulting signals and receiving a plurality of control signals. The plurality of central processing units or the plurality of micro-controllers are used for receiving, computing the plurality of resulting signals, which are output by the plurality of intelligent analog-digital converter chips, and outputting the plurality of control signals. It is noted that at least one of the plurality of intelligent analog-digital converter chips has a UART interface to connect directly with a micro-controller or a computer.
According to the present invention, the apparatus with intelligent analog-digital converter chip can be implemented by using: Bipolar Junction Transistor (BJT), Heterojunction Bipolar Transistor (HBT), High Electronic Mobility Transistor (HEMT), Pseudomorphic HEMT (PHEMT), Complementary Metal Oxide Semiconductor Filed Effect Transistor (CMOS) and Laterally Diffused Metal Oxide Semiconductor Filed Effect Transistor (LDMOS). Preferably, PHEMT is suitable for the intelligent analog-digital converter chip 120 in the microwave to millimeter wave range. Semiconductor materials broadly applicable to the intelligent analog-digital converter chip include: silicon, silicon-on-insulator (SOI), silicon-germanium (SiGe), gallium arsenide (GaAs), indium phosphide (InP) and silicon-germanium-carbon (SiGe—C). Preferably, the intelligent analog-digital converter chip 120 is designed with resistive shunt-feedback PHEMT transistors on semiconductor substrate of Al—In—GaAs compound. Depending on the required noises and reliability of the intelligent analog-digital converter chip 120. Moreover, the transistors mentioned above can be realized by using the 0.18, μm 0.13 μm 0.09 μm 0.045 μm or the advanced process.
According to present invention, the advantage of the apparatus with intelligent analog-digital converter chip 100 can be directly connected to the micro-controller and computer. It makes the program designer can use the analog-digital function by a software instruction and a connection of UART or RS232.
Another advantage of the apparatus with intelligent analog-digital converter chip 100 is that it can be applied for any kinds of new type virtuality and performed the transportation and connection with long distance. The technology makes the loop full in digital, and possesses the advantages of lower power consumption, chip area reduction and stability enhancement.
Although the invention has been explained in relation to its preferred embodiment, it is not used to limit the invention. It is to be understood that many other possible modifications and variations can be made by those skilled in the art without departing from the spirit and scope of the invention as hereinafter claimed.
Number | Date | Country | Kind |
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098110647 | Mar 2009 | TW | national |