Rear vision system for vehicle with dual purpose signal lines

Information

  • Patent Grant
  • 10232797
  • Patent Number
    10,232,797
  • Date Filed
    Tuesday, April 29, 2014
    10 years ago
  • Date Issued
    Tuesday, March 19, 2019
    5 years ago
Abstract
A vision system of a vehicle includes a camera disposed at a vehicle and having a field of view exterior of the vehicle. The camera is operable to capture image data. The camera includes a circuit board and an imager disposed at the circuit board. An image processor is disposed at the circuit board, which has circuitry disposed thereat. The image processor is operable to process image data captured by the camera. Signals to and from the image processor are provided on at least one shared line connected between an electrical connector of the camera and a vehicle control of the vehicle. The at least one shared line includes at least one combined camera control and camera programming line. Signals carried on the combined camera control and camera programming line (i) control operation of the camera and (ii) program the camera.
Description
FIELD OF THE INVENTION

The present invention relates generally to a vehicle vision system for a vehicle and, more particularly, to a vehicle vision system that utilizes one or more cameras at a vehicle.


BACKGROUND OF THE INVENTION

Use of imaging sensors in vehicle imaging systems is common and known. Examples of such known systems are described in U.S. Pat. Nos. 5,949,331; 5,670,935; and/or 5,550,677, which are hereby incorporated herein by reference in their entireties.


SUMMARY OF THE INVENTION

The present invention provides a collision avoidance system or vision system or imaging system for a vehicle that utilizes one or more cameras (preferably one or more CMOS cameras) to capture image data representative of images exterior of the vehicle, and provides shared lines that share control and program signals to and from the camera.


According to an aspect of the present invention, a vision system for a vehicle includes a camera disposed at the vehicle and having a field of view exterior of the vehicle, and an image processor operable to process image data captured by the camera. The signals to and from the image processor are provided on shared lines, such as first and second shared lines. For example, a first input control signal and a program clock signal are communicated along a first shared line, and a second input control signal and a program data signal are communicated along the second shared line.


These and other objects, advantages, purposes and features of the present invention will become apparent upon review of the following specification in conjunction with the drawings.





BRIEF DESCRIPTION OF THE DRAWINGS


FIG. 1 is a plan view of a vehicle with a vision system that incorporates cameras in accordance with the present invention;



FIG. 2 is a schematic of a camera with individual programming and input/output lines; and



FIG. 3 is a schematic of a camera with shared programming and input/output lines.





DESCRIPTION OF THE PREFERRED EMBODIMENTS

A vehicle vision system and/or driver assist system and/or object detection system and/or alert system operates to capture images exterior of the vehicle and may process the captured image data to display images and to detect objects at or near the vehicle and in the predicted path of the vehicle, such as to assist a driver of the vehicle in maneuvering the vehicle in a rearward direction. The vision system includes an image processor or image processing system that is operable to receive image data from one or more cameras and provide an output to a display device for displaying images representative of the captured image data. Optionally, the vision system may provide a top down or bird's eye or surround view display and may provide a displayed image that is representative of the subject vehicle, and optionally with the displayed image being customized to at least partially correspond to the actual subject vehicle.


Referring now to the drawings and the illustrative embodiments depicted therein, a vehicle 10 includes an imaging system or vision system 12 that includes at least one exterior facing imaging sensor or camera, such as a rearward facing imaging sensor or camera 14a (and the system may optionally include multiple exterior facing imaging sensors or cameras, such as a forwardly facing camera 14b at the front (or at the windshield) of the vehicle, and a sidewardly/rearwardly facing camera 14c, 14d at respective sides of the vehicle), which captures images exterior of the vehicle, with the camera having a lens for focusing images at or onto an imaging array or imaging plane or imager of the camera (FIG. 1). The vision system 12 includes a control or electronic control unit (ECU) or processor 18 that is operable to process image data captured by the cameras and may provide displayed images at a display device 16 for viewing by the driver of the vehicle (although shown in FIG. 1 as being part of or incorporated in or at an interior rearview mirror assembly 20 of the vehicle, the control and/or the display device may be disposed elsewhere at or in the vehicle). The data transfer or signal communication from the camera to the ECU may comprise any suitable data or communication link, such as a vehicle network bus or the like of the equipped vehicle. The signal communication is made via shared lines or wires or cables, whereby some of the individual wires or lines are shared to provide different communications therealong (such as data transfer and/or control and/or programming or the like), as discussed below.


Cameras without a standard vehicle bus interface typically require some other method to externally control functionality. This is usually provided in the form of a serial interface or general purpose input/output (I/O) line. In the case of general purpose I/O lines, additional lines may be required to program the camera.


To reduce the overall size of the printed circuit board (PCB) and connector of the camera, as well as the associated cost and complexity, the general purpose I/O lines can be multiplexed programming lines.


As shown in FIG. 2, the current design practice includes two general purpose I/O (GPIO) lines are used to toggle between various camera features. The camera also uses two separate lines for programming the external Serial Peripheral Interface (SPI) flash device with different features. The two operating modes (normal and programming mode) are separate in this design. Thus, and as can be seen in FIG. 2, the camera receives a voltage+ line, a voltage− or ground line, a video+ line, a video− line, a first input control line, a second input control line, a program clock line and a program data line, with the input and program lines being fed to an image processor of the camera.


The present invention provides shared lines. For example, and with reference to FIG. 3, a camera (such as, for example, London/Miami-Lite ReversAid™ camera or the like) includes GPIO lines that are multiplexed with the programming lines. By increasing the external supply voltage beyond the normal operating range, the lines are enabled for programming rather than GPIO. Conversely, reducing the supply voltage to the normal operating range will enable the lines for GPIO rather than programming.


Thus, and as can be seen in FIG. 3, the camera (which includes an imager or image sensing array and an image processor that processes image data captured by the imager) receives a voltage+ line, a voltage− or ground line, a video+ line, a video− line, a first shared line or combined control and programming line (shared by the first input control feed and the program clock feed) and a second shared line or combined control and programming line (shared by the second input control line and the program data line), with the shared lines being fed to or electrically connected with an image processor of the camera and with a control of the vehicle. Thus, for example, when the supply voltage is at or within its normal operating range, the shared lines may communicate first and second control lines or feeds or signals (such as to adjust or control various functions of the camera, such as pan or zoom or tilt of the camera or exposure or focus of the camera or the like), and when the supply voltage is increased beyond the normal operating range, the shared lines may communicate program clock and data feeds or lines or signals (such as for programming the camera, such as initial programming of the camera when the camera is installed at the vehicle to set the camera's settings at desired or selected levels or parameters for the particular vehicle at which the camera is installed and/or the particular application of the camera).


The camera or sensor may comprise any suitable camera or sensor. Optionally, the camera may comprise a “smart camera” that includes the imaging sensor array and associated circuitry and image processing circuitry and electrical connectors and the like as part of a camera module, such as by utilizing aspects of the vision systems described in International Publication Nos. WO 2013/081984 and/or WO 2013/081985, which are hereby incorporated herein by reference in their entireties.


The system includes an image processor operable to process image data captured by the camera or cameras, such as for detecting objects or other vehicles or pedestrians or the like in the field of view of one or more of the cameras. For example, the image processor may comprise an EyeQ2 or EyeQ3 image processing chip available from Mobileye Vision Technologies Ltd. of Jerusalem, Israel, and may include object detection software (such as the types described in U.S. Pat. Nos. 7,855,755; 7,720,580; and/or 7,038,577, which are hereby incorporated herein by reference in their entireties), and may analyze image data to detect vehicles and/or other objects. Responsive to such image processing, and when an object or other vehicle is detected, the system may generate an alert to the driver of the vehicle and/or may generate an overlay at the displayed image to highlight or enhance display of the detected object or vehicle, in order to enhance the driver's awareness of the detected object or vehicle or hazardous condition during a driving maneuver of the equipped vehicle.


The vehicle may include any type of sensor or sensors, such as imaging sensors or radar sensors or lidar sensors or ladar sensors or ultrasonic sensors or the like. The imaging sensor or camera may capture image data for image processing and may comprise any suitable camera or sensing device, such as, for example, a two dimensional array of a plurality of photosensor elements arranged in at least 640 columns and 480 rows (at least a 640×480 imaging array, such as a megapixel imaging array or the like), with a respective lens focusing images onto respective portions of the array. The photosensor array may comprise a plurality of photosensor elements arranged in a photosensor array having rows and columns. Preferably, the imaging array has at least 300,000 photosensor elements or pixels, more preferably at least 500,000 photosensor elements or pixels and more preferably at least 1 million photosensor elements or pixels. The imaging array may capture color image data, such as via spectral filtering at the array, such as via an RGB (red, green and blue) filter or via a red/red complement filter or such as via an RCC (red, clear, clear) filter or the like. The logic and control circuit of the imaging sensor may function in any known manner, and the image processing and algorithmic processing may comprise any suitable means for processing the images and/or image data.


For example, the vision system and/or processing and/or camera and/or circuitry may utilize aspects described in U.S. Pat. Nos. 7,005,974; 5,760,962; 5,877,897; 5,796,094; 5,949,331; 6,222,447; 6,302,545; 6,396,397; 6,498,620; 6,523,964; 6,611,202; 6,201,642; 6,690,268; 6,717,610; 6,757,109; 6,802,617; 6,806,452; 6,822,563; 6,891,563; 6,946,978; 7,859,565; 5,550,677; 5,670,935; 6,636,258; 7,145,519; 7,161,616; 7,230,640; 7,248,283; 7,295,229; 7,301,466; 7,592,928; 7,881,496; 7,720,580; 7,038,577; 6,882,287; 5,929,786 and/or 5,786,772, and/or International Publication Nos. WO 2011/028686; WO 2010/099416; WO 2012/061567; WO 2012/068331; WO 2012/075250; WO 2012/103193; WO 2012/0116043; WO 2012/0145313; WO 2012/0145501; WO 2012/145818; WO 2012/145822; WO 2012/158167; WO 2012/075250; WO 2012/0116043; WO 2012/0145501; WO 2012/154919; WO 2013/019707; WO 2013/016409; WO 2013/019795; WO 2013/067083; WO 2013/070539; WO 2013/043661; WO 2013/048994; WO 2013/063014, WO 2013/081984; WO 2013/081985; WO 2013/074604; WO 2013/086249; WO 2013/103548; WO 2013/109869; WO 2013/123161; WO 2013/126715; WO 2013/043661 and/or WO 2013/158592, and/or U.S. patent applications, Ser. No. 14/242,038, filed Apr. 1, 2014; Ser. No. 14/229,061, filed Mar. 28, 2014; Ser. No. 14/343,937, filed Mar. 10, 2014; Ser. No. 14/343,936, filed Mar. 10, 2014; Ser. No. 14/195,135, filed Mar. 3, 2014 P; Ser. No. 14/195,136, filed Mar. 3, 2014; Ser. No. 14/191,512, filed Feb. 27, 2014; Ser. No. 14/183,613, filed Feb. 19, 2014; Ser. No. 14/169,329, filed Jan. 31, 2014; Ser. No. 14/169,328, filed Jan. 31, 2014; Ser. No. 14/163,325, filed Jan. 24, 2014; Ser. No. 14/159,772, filed Jan. 21, 2014; Ser. No. 14/107,624, filed Dec. 16, 2013; Ser. No. 14/102,981, filed Dec. 11, 2013; Ser. No. 14/102,980, filed Dec. 11, 2013; Ser. No. 14/098,817, filed Dec. 6, 2013; Ser. No. 14/097,581, filed Dec. 5, 2013; Ser. No. 14/093,981, filed Dec. 2, 2013; Ser. No. 14/093,980, filed Dec. 2, 2013; Ser. No. 14/082,573, filed Nov. 18, 2013; Ser. No. 14/082,574, filed Nov. 18, 2013; Ser. No. 14/082,575, filed Nov. 18, 2013; Ser. No. 14/082,577, filed Nov. 18, 2013; Ser. No. 14/071,086, filed Nov. 4, 2013; Ser. No. 14/076,524, filed Nov. 11, 2013; Ser. No. 14/052,945, filed Oct. 14, 2013; Ser. No. 14/046,174, filed Oct. 4, 2013; Ser. No. 14/016,790, filed Oct. 3, 2013; Ser. No. 14/036,723, filed Sep. 25, 2013; Ser. No. 14/016,790, filed Sep. 3, 2013; Ser. No. 14/001,272, filed Aug. 23, 2013; Ser. No. 13/970,868, filed Aug. 20, 2013; Ser. No. 13/964,134, filed Aug. 12, 2013; Ser. No. 13/942,758, filed Jul. 16, 2013; Ser. No. 13/942,753, filed Jul. 16, 2013; Ser. No. 13/927,680, filed Jun. 26, 2013; Ser. No. 13/916,051, filed Jun. 12, 2013; Ser. No. 13/894,870, filed May 15, 2013; Ser. No. 13/887,724, filed May 6, 2013; Ser. No. 13/852,190, filed Mar. 28, 2013; Ser. No. 13/851,378, filed Mar. 27, 2013; Ser. No. 13/848,796, filed Mar. 22, 2012; Ser. No. 13/847,815, filed Mar. 20, 2013; Ser. No. 13/800,697, filed Mar. 13, 2013; Ser. No. 13/785,099, filed Mar. 5, 2013; Ser. No. 13/779,881, filed Feb. 28, 2013; Ser. No. 13/774,317, filed Feb. 22, 2013; Ser. No. 13/774,315, filed Feb. 22, 2013; Ser. No. 13/681,963, filed Nov. 20, 2012; Ser. No. 13/660,306, filed Oct. 25, 2012; Ser. No. 13/653,577, filed Oct. 17, 2012; and/or Ser. No. 13/534,657, filed Jun. 27, 2012 , and/or U.S. provisional applications, Ser. No. 61/972,708, filed Mar. 31, 2014; Ser. No. 61/972,707, filed Mar. 31, 2014; Ser. No. 61/969,474, filed Mar. 24, 2014; Ser. No. 61/955,831, filed Mar. 20, 2014; Ser. No. 61/952,335, filed Mar. 13, 2014; Ser. No. 61/952,334, filed Mar. 13, 2014; Ser. No. 61/950,261, filed Mar. 10, 2014; Ser. No. 61/950,261, filed Mar. 10, 2014; Ser. No. 61/947,638, filed Mar. 4, 2014; Ser. No. 61/947,053, filed Mar. 3, 2014; Ser. No. 61/942,568, filed Feb. 19, 2014; Ser. No. 61/935,485, filed Feb. 4, 2014; Ser. No. 61/935,057, filed Feb. 3, 2014; Ser. No. 61/935,056, filed Feb. 3, 2014; Ser. No. 61/935,055, filed Feb. 3, 2014; Ser. 61/931,811, filed Jan. 27, 2014; Ser. No. 61/919,129, filed Dec. 20, 2013; Ser. No. 61/919,130, filed Dec. 20, 2013; Ser. No. 61/919,131, filed Dec. 20, 2013; Ser. No. 61/919,147, filed Dec. 20, 2013; Ser. No. 61/919,138, filed Dec. 20, 2013, Ser. No. 61/919,133, filed Dec. 20, 2013; Ser. No. 61/918,290, filed Dec. 19, 2013; Ser. No. 61/915,218, filed Dec. 12, 2013; Ser. No. 61/912,146, filed Dec. 5, 2013; Ser. No. 61/911, 666, filed Dec. 4, 2013; Ser. No. 61/911,665, filed Dec. 4, 2013; Ser. No. 61/905,461, filed Nov. 18, 2013; Ser. No. 61/905,462, filed Nov. 18, 2013; Ser. No. 61/901,127, filed Nov. 7, 2013; Ser. No. 61/895,610, filed Oct. 25, 2013; Ser. No. 61/895,609, filed Oct. 25, 2013; Ser. No. 61/879,837, filed Sep. 19, 2013; Ser. No. 61/879,835, filed Sep. 19, 2013; Ser. No. 61/878,877, filed Sep. 17, 2013; Ser. No. 61/875,351, filed Sep. 9, 2013; Ser. No. 61/869,195, filed. Aug. 23, 2013; Ser. No. 61/864,835, filed Aug. 12, 2013; Ser. No. 61/864,836, filed Aug. 12, 2013; Ser. No. 61/864,837, filed Aug. 12, 2013; Ser. No. 61/864,838, filed Aug. 12, 2013; Ser. No. 61/856,843, filed Jul. 22, 2013, Ser. No. 61/845,061, filed Jul. 11, 2013; Ser. No. 61/844,630, filed Jul. 10, 2013; Ser. No. 61/844,173, filed Jul. 9, 2013; Ser. No. 61/844,171, filed Jul. 9, 2013; Ser. No. 61/842,644, filed Jul. 3, 2013; Ser. No. 61/840,542, filed Jun. 28, 2013; Ser. No. 61/838,619, filed Jun. 24, 2013; Ser. No. 61/838,621, filed Jun. 24, 2013; Ser. No. 61/837,955, filed Jun. 21, 2013; Ser. No. 61/836,900, filed Jun. 19, 2013; Ser. No. 61/836,380, filed Jun. 18, 2013; Ser. No. 61/833,080, filed Jun. 10, 2013; Ser. No. 61/830,375, filed Jun. 3, 2013; Ser. No. 61/830,377, filed Jun. 3, 2013; Ser. No. 61/825,752, filed May 21, 2013; Ser. No. 61/825,753, filed May 21, 2013; Ser. No. 61/823,648, filed May 15, 2013; Ser. No. 61/823,644, filed May 15, 2013; Ser. No. 61/821,922, filed May 10, 2013; Ser. No. 61/819,835, filed May 6, 2013; Ser. No. 61/819,033, filed May 3, 2013; Ser. No. 61/815,044, filed Apr. 23, 2013; Ser. No. 61/814,533, filed Apr. 22, 2013; Ser. No. 61/813,361, filed Apr. 18, 2013; and/or Ser. No. 61/810,407, filed Apr. 10, 2013; which are all hereby incorporated herein by reference in their entireties. The system may communicate with other communication systems via any suitable means, such as by utilizing aspects of the systems described in International Publication Nos. WO/2010/144900; WO 2013/043661 and/or WO 2013/081985, and/or U.S. patent application Ser. No. 13/202,005, filed Aug. 17, 2011 , which are hereby incorporated herein by reference in their entireties.


The imaging device and control and image processor and any associated illumination source, if applicable, may comprise any suitable components, and may utilize aspects of the cameras and vision systems described in U.S. Pat. Nos. 5,550,677; 5,877,897; 6,498,620; 5,670,935; 5,796,094; 6,396,397; 6,806,452; 6,690,268; 7,005,974; 7,937,667; 7,123,168; 7,004,606; 6,946,978; 7,038,577; 6,353,392; 6,320,176; 6,313,454; and/or 6,824,281, and/or International Publication Nos. WO 2010/099416; WO 2011/028686; and/or WO 2013/016409, and/or U.S. Pat. Publication No. US 2010-0020170, and/or U.S. patent application Ser. No. 13/534,657, filed Jun. 27, 2012, which are all hereby incorporated herein by reference in their entireties. The camera or cameras may comprise any suitable cameras or imaging sensors or camera modules, and may utilize aspects of the cameras or sensors described in U.S. Publication No. US-2009-0244361 and/or U.S. patent application Ser. No. 13/260,400, filed Sep. 26, 2011 , and/or U.S. Pat. Nos. 7,965,336 and/or 7,480,149, which are hereby incorporated herein by reference in their entireties. The imaging array sensor may comprise any suitable sensor, and may utilize various imaging sensors or imaging array sensors or cameras or the like, such as a CMOS imaging array sensor, a CCD sensor or other sensors or the like, such as the types described in U.S. Pat. Nos. 5,550,677; 5,670,935; 5,760,962; 5,715,093; 5,877,897; 6,922,292; 6,757,109; 6,717,610; 6,590,719; 6,201,642; 6,498,620; 5,796,094; 6,097,023; 6,320,176; 6,559,435; 6,831,261; 6,806,452; 6,396,397; 6,822,563; 6,946,978; 7,339,149; 7,038,577; 7,004,606; 7,720,580; and/or 7,965,336, and/or International Publication Nos. WO/2009/036176 and/or WO/2009/046268, which are all hereby incorporated herein by reference in their entireties.


The camera module and circuit chip or board and imaging sensor may be implemented and operated in connection with various vehicular vision-based systems, and/or may be operable utilizing the principles of such other vehicular systems, such as a vehicle headlamp control system, such as the type disclosed in U.S. Pat. Nos. 5,796,094; 6,097,023; 6,320,176; 6,559,435; 6,831,261; 7,004,606; 7,339,149; and/or 7,526,103, which are all hereby incorporated herein by reference in their entireties, a rain sensor, such as the types disclosed in commonly assigned U.S. Pat. Nos. 6,353,392; 6,313,454; 6,320,176; and/or 7,480,149, which are hereby incorporated herein by reference in their entireties, a vehicle vision system, such as a forwardly, sidewardly or rearwardly directed vehicle vision system utilizing principles disclosed in U.S. Pat. Nos. 5,550,677; 5,670,935; 5,760,962; 5,877,897; 5,949,331; 6,222,447; 6,302,545; 6,396,397; 6,498,620; 6,523,964; 6,611,202; 6,201,642; 6,690,268; 6,717,610; 6,757,109; 6,802,617; 6,806,452; 6,822,563; 6,891,563; 6,946,978; and/or 7,859,565, which are all hereby incorporated herein by reference in their entireties, a trailer hitching aid or tow check system, such as the type disclosed in U.S. Pat. No. 7,005,974, which is hereby incorporated herein by reference in its entirety, a reverse or sideward imaging system, such as for a lane change assistance system or lane departure warning system or for a blind spot or object detection system, such as imaging or detection systems of the types disclosed in U.S. Pat. Nos. 7,720,580; 7,038,577; 5,929,786 and/or 5,786,772, and/or U.S. patent applications, Ser. No. 11/239,980, filed Sep. 30, 2005, now U.S. Pat. No. 7,881,496, and/or U.S. provisional applications, Ser. No. 60/628,709, filed Nov. 17, 2004; Ser. No. 60/614,644, filed Sep. 30, 2004; Ser. No. 60/618,686, filed Oct. 14, 2004; Ser. No. 60/638,687, filed Dec. 23, 2004, which are hereby incorporated herein by reference in their entireties, a video device for internal cabin surveillance and/or video telephone function, such as disclosed in U.S. Pat. Nos. 5,760,962; 5,877,897; 6,690,268; and/or 7,370,983, and/or U.S. Publication No. US-2006-0050018, which are hereby incorporated herein by reference in their entireties, a traffic sign recognition system, a system for determining a distance to a leading or trailing vehicle or object, such as a system utilizing the principles disclosed in U.S. Pat. Nos. 6,396,397 and/or 7,123,168, which are hereby incorporated herein by reference in their entireties, and/or the like.


Optionally, the circuit board or chip may include circuitry for the imaging array sensor and or other electronic accessories or features, such as by utilizing compass-on-a-chip or EC driver-on-a-chip technology and aspects such as described in U.S. Pat. No. 7,255,451 and/or U.S. Pat. No. 7,480,149; and/or U.S. Publication No. US-2006-0061008 and/or U.S. patent application Ser. No. 12/578,732, filed Oct. 14, 2009 , which are hereby incorporated herein by reference in their entireties.


Optionally, the vision system may include a display for displaying images captured by one or more of the imaging sensors for viewing by the driver of the vehicle while the driver is normally operating the vehicle. Optionally, for example, the vision system may include a video display device disposed at or in the interior rearview mirror assembly of the vehicle, such as by utilizing aspects of the video mirror display systems described in U.S. Pat. No. 6,690,268 and/or U.S. patent application Ser. No. 13/333,337, filed Dec. 21, 2011 , which are hereby incorporated herein by reference in their entireties. The video mirror display may comprise any suitable devices and systems and optionally may utilize aspects of the compass display systems described in U.S. Pat. Nos. 7,370,983; 7,329,013; 7,308,341; 7,289,037; 7,249,860; 7,004,593; 4,546,551; 5,699,044; 4,953,305; 5,576,687; 5,632,092; 5,677,851; 5,708,410; 5,737,226; 5,802,727; 5,878,370; 6,087,953; 6,173,508; 6,222,460; 6,513,252; and/or 6,642,851, and/or European patent application, published Oct. 11, 2000 under Publication No. EP 0 1043566, and/or U.S. Publication No. US-2006-0061008, which are all hereby incorporated herein by reference in their entireties. Optionally, the video mirror display screen or device may be operable to display images captured by a rearward viewing camera of the vehicle during a reversing maneuver of the vehicle (such as responsive to the vehicle gear actuator being placed in a reverse gear position or the like) to assist the driver in backing up the vehicle, and optionally may be operable to display the compass heading or directional heading character or icon when the vehicle is not undertaking a reversing maneuver, such as when the vehicle is being driven in a forward direction along a road (such as by utilizing aspects of the display system described in International Publication No. WO 2012/051500, which is hereby incorporated herein by reference in its entirety).


Optionally, the vision system (utilizing the forward facing camera and a rearward facing camera and other cameras disposed at the vehicle with exterior fields of view) may be part of or may provide a display of a top-down view or birds-eye view system of the vehicle or a surround view at the vehicle, such as by utilizing aspects of the vision systems described in International Publication Nos. WO 2010/099416; WO 2011/028686; WO2012/075250; WO 2013/019795; WO 2012/075250; WO 2012/145822; WO 2013/081985; WO 2013/086249; and/or WO 2013/109869, and/or U.S. patent application Ser. No. 13/333,337, filed Dec. 21, 2011 , which are hereby incorporated herein by reference in their entireties.


Optionally, a video mirror display may be disposed rearward of and behind the reflective element assembly and may comprise a display such as the types disclosed in U.S. Pat. Nos. 5,530,240; 6,329,925; 7,855,755; 7,626,749; 7,581,859; 7,446,650; 7,370,983; 7,338,177; 7,274,501; 7,255,451; 7,195,381; 7,184,190; 5,668,663; 5,724,187 and/or 6,690,268, and/or in U.S. Publication Nos. US-2006-0061008 and/or US-2006-0050018, which are all hereby incorporated herein by reference in their entireties. The display is viewable through the reflective element when the display is activated to display information. The display element may be any type of display element, such as a vacuum fluorescent (VF) display element, a light emitting diode (LED) display element, such as an organic light emitting diode (OLED) or an inorganic light emitting diode, an electroluminescent (EL) display element, a liquid crystal display (LCD) element, a video screen display element or backlit thin film transistor (TFT) display element or the like, and may be operable to display various information (as discrete characters, icons or the like, or in a multi-pixel manner) to the driver of the vehicle, such as passenger side inflatable restraint (PSIR) information, tire pressure status, and/or the like. The mirror assembly and/or display may utilize aspects described in U.S. Pat. Nos. 7,184,190; 7,255,451; 7,446,924 and/or 7,338,177, which are all hereby incorporated herein by reference in their entireties. The thicknesses and materials of the coatings on the substrates of the reflective element may be selected to provide a desired color or tint to the mirror reflective element, such as a blue colored reflector, such as is known in the art and such as described in U.S. Pat. Nos. 5,910,854; 6,420,036; and/or 7,274,501, which are hereby incorporated herein by reference in their entireties.


Optionally, the display or displays and any associated user inputs may be associated with various accessories or systems, such as, for example, a tire pressure monitoring system or a passenger air bag status or a garage door opening system or a telematics system or any other accessory or system of the mirror assembly or of the vehicle or of an accessory module or console of the vehicle, such as an accessory module or console of the types described in U.S. Pat. Nos. 7,289,037; 6,877,888; 6,824,281; 6,690,268; 6,672,744; 6,386,742; and/or 6,124,886, and/or U.S. Publication No. US-2006-0050018, which are hereby incorporated herein by reference in their entireties.


Changes and modifications in the specifically described embodiments can be carried out without departing from the principles of the invention, which is intended to be limited only by the scope of the appended claims, as interpreted according to the principles of patent law including the doctrine of equivalents.

Claims
  • 1. A vision system of a vehicle, said vision system comprising: a camera disposed at a vehicle and having a field of view exterior of the vehicle, wherein said camera is operable to capture image data;wherein said camera comprises a circuit board and an imager disposed at said circuit board, wherein said imager comprises a two-dimensional photosensor array of photosensing pixels;an image processor disposed at said circuit board of said camera, wherein said circuit board has circuitry disposed thereat;wherein said image processor is operable to process image data captured by said camera;wherein signals to and from said image processor are provided on at least one shared line connected between an electrical connector of said camera and a vehicle control of the vehicle;wherein said at least one shared line comprises at least one combined camera control and camera programming line, and wherein signals carried on said combined camera control and camera programming line (i) control operation of said camera and (ii) program said camera; andwherein an external supply voltage level is adjusted to adjust the signals that are communicated along said at least one combined camera control and camera programming line.
  • 2. The vision system of claim 1, wherein said at least one shared line comprise first and second combined camera control and camera programming lines.
  • 3. The vision system of claim 2, wherein a first input control signal for controlling operation of said camera and a program clock signal for programming said camera are communicated along said first combined camera control and camera programming line.
  • 4. The vision system of claim 3, wherein a second input control signal for controlling operation of said camera and a program data signal for programming said camera are communicated along said second combined camera control and camera programming line.
  • 5. The vision system of claim 1; wherein, responsive to an increased supply voltage level, said first and second combined camera control and camera programming lines communicate said program clock signal and said program data signal, respectively.
  • 6. The vision system of claim 5, wherein, responsive to a decreased supply voltage level, said first and second combined camera control and camera programming lines communicate said first and second input control signals, respectively.
  • 7. The vision system of claim 5, wherein said increased supply voltage level comprises a supply voltage level that is above an operating voltage level of said camera.
  • 8. The vision system of claim 4, wherein said first and second input control signals control at least one of (i) focus of the camera, (ii) zoom of the camera, (iii) exposure of the camera, (iv) tilt of the camera.
  • 9. The vision system of claim 4, wherein said program clock signal and said program data signal program an external Serial Peripheral Interface flash device of said camera with different features.
  • 10. The vision system of claim 1, wherein an input control signal for controlling operation of said camera and a program signal for programming said camera are communicated along said at least one combined camera control and camera programming line.
  • 11. The vision system of claim 10, wherein a supply voltage level is adjusted to adjust the signal that is communicated along said at least one combined camera control and camera programming line.
  • 12. The vision system of claim 11, wherein, responsive to an increased supply voltage level, said at least one combined camera control and camera programming line communicates said program signal, and wherein, responsive to a decreased supply voltage level, said at least one combined camera control and camera programming line communicates said input control signal.
  • 13. The vision system of claim 12, wherein said increased supply voltage level comprises a supply voltage level that is above an operating voltage level of said camera.
  • 14. A vision system of a vehicle, said vision system comprising: a camera disposed at a vehicle and having a field of view exterior of the vehicle, wherein said camera is operable to capture image data;wherein said camera comprises a circuit board and an imager disposed at said circuit board, wherein said imager comprises a two-dimensional photosensor array of photosensing pixels;an image processor disposed at said circuit board of said camera, wherein said circuit board has circuitry disposed thereat;wherein said image processor is operable to process image data captured by said camera;wherein signals to and from said image processor are provided on first and second shared lines connected between an electrical connector of said camera and a vehicle control of the vehicle; andwherein said first shared line comprises a first combined camera control and camera programming line, and wherein signals carried on said first combined camera control and camera programming line (i) control operation of said camera and (ii) program said camera, and wherein said signals carried on said first combined camera control and camera programming line comprise (a) a first input control signal for controlling operation of said camera and (b) a program clock signal for programming said camera;wherein said second shared line comprises a second combined camera control and camera programming line, and wherein signals carried on said second combined camera control and camera programming line (i) control operation of said camera and (ii) program said camera, and wherein said signals carried on said second combined camera control and camera programming line comprise (a) a second input control signal for controlling operation of said camera and (b) a program data signal for programming said camera; andwherein an external supply voltage level is adjusted to adjust the signals that are communicated along said first and second combined camera control and camera programming lines.
  • 15. The vision system of claim 14, wherein, responsive to an increased supply voltage level, said first and second combined camera control and camera programming lines communicate said program clock signal and said program data signal, respectively, and wherein, responsive to a decreased supply voltage level, said first and second combined camera control and camera programming lines communicate said first and second input control signals, respectively.
  • 16. The vision system of claim 15, wherein said increased supply voltage level comprises a supply voltage level that is above an operating voltage level of said camera.
  • 17. The vision system of claim 14, wherein said first and second input control signals control at least one of (i) focus of the camera, (ii) zoom of the camera, (iii) exposure of the camera, (iv) tilt of the camera.
  • 18. A vision system of a vehicle, said vision system comprising: a camera disposed at a vehicle and having a field of view exterior of the vehicle, wherein said camera is operable to capture image data;wherein said camera comprises a circuit board and an imager disposed at said circuit board, wherein said imager comprises a two-dimensional photosensor array of photosensing pixels;an image processor disposed at said circuit board of said camera, wherein said circuit board has circuitry disposed thereat;wherein said image processor is operable to process image data captured by said camera;wherein signals to and from said image processor are provided on shared lines connected between an electrical connector of said camera and a vehicle control of the vehicle;wherein said shared lines comprise at least two combined camera control and camera programming lines, and wherein signals carried on said combined camera control and camera programming lines comprise (i) control signals that control operation of said camera and (ii) program signals that program said camera;wherein an external supply voltage level is adjusted to adjust the signals that are communicated along said combined camera control and camera programming lines;wherein, responsive to an increased external supply voltage level, said combined camera control and camera programming lines communicate said program signals, and wherein, responsive to a decreased external supply voltage level, said combined camera control and camera programming lines communicate said input control signals; andwherein said increased external supply voltage level comprises an external supply voltage level that is above an operating voltage level of said camera.
  • 19. The vision system of claim 18, wherein control signals for controlling operation of said camera and a program clock signal for programming said camera are communicated along one of said combined camera control and camera programming lines and wherein control signals for controlling operation of said camera and a program data signal for programming said camera are communicated along another of said combined camera control and camera programming lines.
CROSS REFERENCE TO RELATED APPLICATION

The present application is related to U.S. provisional application, Ser. No. 61/816,956, filed Apr. 29, 2013, which is hereby incorporated herein by reference in its entirety.

US Referenced Citations (318)
Number Name Date Kind
4987357 Masaki Jan 1991 A
4991054 Walters Feb 1991 A
5001558 Burley et al. Mar 1991 A
5003288 Wilhelm Mar 1991 A
5012082 Watanabe Apr 1991 A
5016977 Baude et al. May 1991 A
5027001 Torbert Jun 1991 A
5027200 Petrossian et al. Jun 1991 A
5044706 Chen Sep 1991 A
5055668 French Oct 1991 A
5059877 Teder Oct 1991 A
5064274 Alten Nov 1991 A
5072154 Chen Dec 1991 A
5086253 Lawler Feb 1992 A
5096287 Kakinami et al. Mar 1992 A
5097362 Lynas Mar 1992 A
5121200 Choi Jun 1992 A
5124549 Michaels et al. Jun 1992 A
5130709 Toyama et al. Jul 1992 A
5168378 Black Dec 1992 A
5170374 Shimohigashi et al. Dec 1992 A
5172235 Wilm et al. Dec 1992 A
5177685 Davis et al. Jan 1993 A
5182502 Slotkowski et al. Jan 1993 A
5184956 Langlais et al. Feb 1993 A
5189561 Hong Feb 1993 A
5193000 Lipton et al. Mar 1993 A
5204778 Bechtel Apr 1993 A
5208701 Maeda May 1993 A
5245422 Borcherts et al. Sep 1993 A
5276389 Levers Jan 1994 A
5285060 Larson et al. Feb 1994 A
5289182 Brillard et al. Feb 1994 A
5289321 Secor Feb 1994 A
5305012 Faris Apr 1994 A
5307136 Saneyoshi Apr 1994 A
5309137 Kajiwara May 1994 A
5313072 Vachss May 1994 A
5325096 Pakett Jun 1994 A
5325386 Jewell et al. Jun 1994 A
5329206 Slotkowski et al. Jul 1994 A
5331312 Kudoh Jul 1994 A
5336980 Levers Aug 1994 A
5341437 Nakayama Aug 1994 A
5351044 Mathur et al. Sep 1994 A
5355118 Fukuhara Oct 1994 A
5374852 Parkes Dec 1994 A
5386285 Asayama Jan 1995 A
5394333 Kao Feb 1995 A
5406395 Wilson et al. Apr 1995 A
5410346 Saneyoshi et al. Apr 1995 A
5414257 Stanton May 1995 A
5414461 Kishi et al. May 1995 A
5416313 Larson et al. May 1995 A
5416318 Hegyi May 1995 A
5416478 Morinaga May 1995 A
5424952 Asayama Jun 1995 A
5426294 Kobayashi et al. Jun 1995 A
5430431 Nelson Jul 1995 A
5434407 Bauer et al. Jul 1995 A
5440428 Hegg et al. Aug 1995 A
5444478 Lelong et al. Aug 1995 A
5451822 Bechtel et al. Sep 1995 A
5457493 Leddy et al. Oct 1995 A
5461357 Yoshioka et al. Oct 1995 A
5461361 Moore Oct 1995 A
5469298 Suman et al. Nov 1995 A
5471515 Fossum et al. Nov 1995 A
5475494 Nishida et al. Dec 1995 A
5498866 Bendicks et al. Mar 1996 A
5500766 Stonecypher Mar 1996 A
5510983 Iino Apr 1996 A
5515448 Nishitani May 1996 A
5521633 Nakajima et al. May 1996 A
5528698 Kamei et al. Jun 1996 A
5529138 Shaw et al. Jun 1996 A
5530240 Larson et al. Jun 1996 A
5530420 Tsuchiya et al. Jun 1996 A
5535314 Alves et al. Jul 1996 A
5537003 Bechtel et al. Jul 1996 A
5539397 Asanuma et al. Jul 1996 A
5541590 Nishio Jul 1996 A
5550677 Schofield et al. Aug 1996 A
5555555 Sato et al. Sep 1996 A
5568027 Teder Oct 1996 A
5574443 Hsieh Nov 1996 A
5581464 Woll et al. Dec 1996 A
5594222 Caldwell Jan 1997 A
5614788 Mullins Mar 1997 A
5619370 Guinosso Apr 1997 A
5632092 Blank et al. May 1997 A
5634709 Iwama Jun 1997 A
5642299 Hardin et al. Jun 1997 A
5648835 Uzawa Jul 1997 A
5650944 Kise Jul 1997 A
5660454 Mori et al. Aug 1997 A
5661303 Teder Aug 1997 A
5666028 Bechtel et al. Sep 1997 A
5670935 Schofield et al. Sep 1997 A
5677851 Kingdon et al. Oct 1997 A
5699044 Van Lente et al. Dec 1997 A
5724316 Brunts Mar 1998 A
5732379 Eckert et al. Mar 1998 A
5737226 Olson et al. Apr 1998 A
5760828 Cortes Jun 1998 A
5760931 Saburi et al. Jun 1998 A
5761094 Olson et al. Jun 1998 A
5765116 Wilson-Jones et al. Jun 1998 A
5765118 Fukatani Jun 1998 A
5781437 Wiemer et al. Jul 1998 A
5786772 Schofield et al. Jul 1998 A
5790403 Nakayama Aug 1998 A
5790973 Blaker et al. Aug 1998 A
5793308 Rosinski et al. Aug 1998 A
5793420 Schmidt Aug 1998 A
5796094 Schofield et al. Aug 1998 A
5835255 Miles Nov 1998 A
5837994 Stam et al. Nov 1998 A
5844505 Van Ryzin Dec 1998 A
5844682 Kiyomoto et al. Dec 1998 A
5845000 Breed et al. Dec 1998 A
5848802 Breed et al. Dec 1998 A
5850176 Kinoshita et al. Dec 1998 A
5850254 Takano et al. Dec 1998 A
5867591 Onda Feb 1999 A
5877707 Kowalick Mar 1999 A
5877897 Schofield et al. Mar 1999 A
5878357 Sivashankar et al. Mar 1999 A
5878370 Olson Mar 1999 A
5883739 Ashihara et al. Mar 1999 A
5884212 Lion Mar 1999 A
5890021 Onoda Mar 1999 A
5896085 Mori et al. Apr 1999 A
5899956 Chan May 1999 A
5915800 Hiwatashi et al. Jun 1999 A
5923027 Stam et al. Jul 1999 A
5924212 Domanski Jul 1999 A
5949331 Schofield et al. Sep 1999 A
5959555 Furuta Sep 1999 A
5963247 Banitt Oct 1999 A
5986796 Miles Nov 1999 A
5990469 Bechtel et al. Nov 1999 A
5990649 Nagao et al. Nov 1999 A
6020704 Buschur Feb 2000 A
6049171 Stam et al. Apr 2000 A
6066933 Ponziana May 2000 A
6084519 Coulling et al. Jul 2000 A
6097024 Stam et al. Aug 2000 A
6100799 Fenk Aug 2000 A
6115159 Baker Sep 2000 A
6144022 Tenenbaum et al. Nov 2000 A
6175300 Kendrick Jan 2001 B1
6178034 Allemand et al. Jan 2001 B1
6201642 Bos et al. Mar 2001 B1
6223114 Boros et al. Apr 2001 B1
6227689 Miller May 2001 B1
6266082 Yonezawa et al. Jul 2001 B1
6266442 Laumeyer et al. Jul 2001 B1
6285393 Shimoura et al. Sep 2001 B1
6294989 Schofield et al. Sep 2001 B1
6297781 Turnbull et al. Oct 2001 B1
6310611 Caldwell Oct 2001 B1
6317057 Lee Nov 2001 B1
6320282 Caldwell Nov 2001 B1
6333759 Mazzilli Dec 2001 B1
6353392 Schofield et al. Mar 2002 B1
6370329 Teuchert Apr 2002 B1
6392315 Jones et al. May 2002 B1
6396397 Bos et al. May 2002 B1
6404174 Boudreaux, Jr. Jun 2002 B1
6411204 Bloomfield et al. Jun 2002 B1
6424273 Gutta et al. Jul 2002 B1
6430303 Naoi et al. Aug 2002 B1
6442465 Breed et al. Aug 2002 B2
6477464 McCarthy et al. Nov 2002 B2
6497503 Dassanayake et al. Dec 2002 B1
6498620 Schofield et al. Dec 2002 B2
6534884 Marcus et al. Mar 2003 B2
6539306 Turnbull Mar 2003 B2
6547133 DeVries, Jr. et al. Apr 2003 B1
6553130 Lemelson et al. Apr 2003 B1
6574033 Chui et al. Jun 2003 B1
6589625 Kothari et al. Jul 2003 B1
6594583 Ogura et al. Jul 2003 B2
6611610 Stam et al. Aug 2003 B1
6636258 Strumolo Oct 2003 B2
6650455 Miles Nov 2003 B2
6672731 Schnell et al. Jan 2004 B2
6674562 Miles Jan 2004 B1
6680792 Miles Jan 2004 B2
6690268 Schofield et al. Feb 2004 B2
6700605 Toyoda et al. Mar 2004 B1
6704621 Stein et al. Mar 2004 B1
6710908 Miles et al. Mar 2004 B2
6711474 Treyz et al. Mar 2004 B1
6714331 Lewis et al. Mar 2004 B2
6717610 Bos et al. Apr 2004 B1
6735506 Breed et al. May 2004 B2
6741377 Miles May 2004 B2
6744353 Sjönell Jun 2004 B2
6762867 Lippert et al. Jul 2004 B2
6794119 Miles Sep 2004 B2
6795221 Urey Sep 2004 B1
6806452 Bos et al. Oct 2004 B2
6819231 Berberich et al. Nov 2004 B2
6823241 Shirato et al. Nov 2004 B2
6824281 Schofield et al. Nov 2004 B2
6850156 Bloomfield et al. Feb 2005 B2
6889161 Winner et al. May 2005 B2
6909753 Meehan et al. Jun 2005 B2
6946978 Schofield Sep 2005 B2
6975775 Rykowski et al. Dec 2005 B2
6989736 Berberich et al. Jan 2006 B2
7004606 Schofield Feb 2006 B2
7038577 Pawlicki et al. May 2006 B2
7062300 Kim Jun 2006 B1
7065432 Moisel et al. Jun 2006 B2
7079017 Lang et al. Jul 2006 B2
7085637 Breed et al. Aug 2006 B2
7092548 Laumeyer et al. Aug 2006 B2
7111968 Bauer et al. Sep 2006 B2
7116246 Winter et al. Oct 2006 B2
7123168 Schofield Oct 2006 B2
7136753 Samukawa et al. Nov 2006 B2
7145519 Takahashi et al. Dec 2006 B2
7149613 Stam et al. Dec 2006 B2
7161616 Okamoto et al. Jan 2007 B1
7195381 Lynam et al. Mar 2007 B2
7202776 Breed Apr 2007 B2
7227611 Hull et al. Jun 2007 B2
7365769 Mager Apr 2008 B1
7381089 Hosler, Sr. Jun 2008 B2
7460951 Altan Dec 2008 B2
7490007 Taylor et al. Feb 2009 B2
7526103 Schofield et al. Apr 2009 B2
7592928 Chinomi et al. Sep 2009 B2
7639149 Katoh Dec 2009 B2
7681960 Wanke et al. Mar 2010 B2
7720580 Higgins-Luthman May 2010 B2
7724962 Zhu et al. May 2010 B2
7855755 Weller et al. Dec 2010 B2
7881496 Camilleri et al. Feb 2011 B2
7952490 Fechner et al. May 2011 B2
7965336 Bingle et al. Jun 2011 B2
8013780 Lynam et al. Sep 2011 B2
8027029 Lu et al. Sep 2011 B2
8849495 Chundrlik, Jr. et al. Sep 2014 B2
8908039 De Wind Dec 2014 B2
9126525 Lynam et al. Sep 2015 B2
9210307 Gebauer et al. Dec 2015 B2
20020015153 Downs Feb 2002 A1
20020113873 Williams Aug 2002 A1
20020167589 Schofield et al. Nov 2002 A1
20030103141 Bechtel et al. Jun 2003 A1
20030137586 Lewellen Jul 2003 A1
20030222982 Hamdan et al. Dec 2003 A1
20040114381 Salmeen et al. Jun 2004 A1
20050093975 Hamdan May 2005 A1
20050190261 Hamdan Sep 2005 A1
20050200467 Au et al. Sep 2005 A1
20050209749 Ito Sep 2005 A1
20060017807 Lee et al. Jan 2006 A1
20060018511 Stam et al. Jan 2006 A1
20060018512 Stam et al. Jan 2006 A1
20060023105 Kostrzewski et al. Feb 2006 A1
20060064208 Lang Mar 2006 A1
20060091813 Stam et al. May 2006 A1
20060103727 Tseng May 2006 A1
20060164221 Jensen Jul 2006 A1
20060184297 Higgins-Luthman Aug 2006 A1
20060206243 Pawlicki et al. Sep 2006 A1
20060212624 Kim Sep 2006 A1
20060250501 Wildmann et al. Nov 2006 A1
20060254805 Scherer et al. Nov 2006 A1
20060290479 Akatsuka et al. Dec 2006 A1
20070104476 Yasutomi et al. May 2007 A1
20070201860 Schmid Aug 2007 A1
20070206835 Abe Sep 2007 A1
20070297784 Wong et al. Dec 2007 A1
20080042812 Dunsmoir et al. Feb 2008 A1
20090093938 Isaji et al. Apr 2009 A1
20090113509 Tseng et al. Apr 2009 A1
20090174765 Namba et al. Jul 2009 A1
20090177347 Breuer et al. Jul 2009 A1
20090195377 Chang Aug 2009 A1
20090237506 Hubert Sep 2009 A1
20090243824 Peterson et al. Oct 2009 A1
20090244361 Gebauer et al. Oct 2009 A1
20090265069 Desbrunes Oct 2009 A1
20100002081 Pawlicki et al. Jan 2010 A1
20100020170 Higgins-Luthman et al. Jan 2010 A1
20100045799 Lei et al. Feb 2010 A1
20100076621 Kubotani et al. Mar 2010 A1
20100080538 Inoue Apr 2010 A1
20100228437 Hanzawa et al. Sep 2010 A1
20110025489 Shimoda et al. Feb 2011 A1
20110074916 Demirdijian Mar 2011 A1
20110103650 Cheng et al. May 2011 A1
20110286544 Avudainayagam et al. Nov 2011 A1
20120044066 Mauderer et al. Feb 2012 A1
20120062743 Lynam et al. Mar 2012 A1
20120069184 Hottmann Mar 2012 A1
20120218412 Dellantoni et al. Aug 2012 A1
20120262340 Hassan et al. Oct 2012 A1
20120262578 Weng Oct 2012 A1
20130124052 Hahne May 2013 A1
20130129150 Saito May 2013 A1
20130131918 Hahne May 2013 A1
20130187445 Mutzabaugh Jul 2013 A1
20140067206 Pflug Mar 2014 A1
20140156157 Johnson et al. Jun 2014 A1
20140160291 Schaffner Jun 2014 A1
20140176711 Kirchner Jun 2014 A1
20140222280 Salomonsson Aug 2014 A1
20140313339 Diessner et al. Oct 2014 A1
20140362209 Ziegenspeck et al. Dec 2014 A1
20140379233 Chundrlik, Jr. et al. Dec 2014 A1
20150165909 Saito Jun 2015 A1
Foreign Referenced Citations (5)
Number Date Country
WO2010144900 Dec 2010 WO
WO2011028686 Mar 2011 WO
WO2010110957 Sep 2012 WO
WO2013043661 Mar 2013 WO
WO2013081985 Jun 2013 WO
Related Publications (1)
Number Date Country
20140320636 A1 Oct 2014 US
Provisional Applications (1)
Number Date Country
61816956 Apr 2013 US