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KAI-16000-AXA-JP-AE Datasheet(PDF) 4 Page - ON Semiconductor |
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KAI-16000-AXA-JP-AE Datasheet(HTML) 4 Page - ON Semiconductor |
4 / 28 page KAI−16000 www.onsemi.com 4 DEVICE DESCRIPTION Architecture Figure 2. Sensor Architecture 4872 (H) x 3248 (V) Active Pixels G G R B G G R B G G R B G G R B Pixel 1,1 16 Buffer Rows 16 Buffer Rows 40 Gray Rows Dual Output or Video L Video R 12 28 16 4872 16 28 Single 12 28 16 2436 2436 16 28 12 Fast Line Dump Left − 2480 4 Gray Rows Fast Line Dump Right − 2480 There are 40 light shielded gray rows followed 3280 photoactive rows and finally 4 more light shielded gray rows. The first 16 and the last 16 photoactive rows are buffer rows giving a total of 3248 lines of image data. In the single output mode all pixels are clocked out of the Video L output in the lower left corner of the sensor. The first 12 empty pixels of each line do not receive charge from the vertical shift register. The next 28 pixels receive charge from the left light shielded edge followed by 4904 photosensitive pixels and finally 28 more light shielded pixels from the right edge of the sensor. The first 16 and last 16 photosensitive pixels are buffer pixels giving a total of 4872 pixels of image data. In the dual output mode the clocking of the right half of the horizontal CCD is reversed. The left half of the image is clocked out Video L and the right half of the image is clocked out Video R. For the Video L each row consists of 12 empty pixels followed by 28 light shielded pixels followed by 2452 photosensitive pixels. For the Video R each row consists of 12 empty pixels followed by 28 light shielded pixels followed by 2452 photosensitive pixels. When reconstructing the image, data from Video R will have to be reversed in a line buffer and appended to the Video L data. The gray rows are not entirely dark and so should not be used for a dark reference level. Use the dark columns on the left or right side of the image sensor as a dark reference. Of the dark columns, the first and last dark columns should not be used for determining the zero signal level. Some light does leak into the first and last dark columns. |
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