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Bio-inspired CMOS vision chip for edge detection with electronic switches for low-power consumption

机译:受生物启发的CMOS视觉芯片,用于通过电子开关进行边缘检测,从而降低了功耗

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Numerical increment of analog circuits causes power consumption to increase and requires a larger chip area. In designing an analog complementary-metal-oxide-semiconductor(CMOS) vision chip for edge detection, power consumption should be considered. It restricts the number of the edge detection circuit which is based on the edge detection mechanism of vertebrate retina. In this paper, we applied electronic switches to an analog CMOS vision chip for edge detection to reduce the power consumption. Also, we propose a method to implement vision chip with higher resolution, which is to separate pixels for edge detection into a 128x128 photodetector array and a 1x128 edge detection driving circuit array. The capability to minimize power consumption was investigated by SPICE. Estimated power consumption with 128x128 pixels was below 20mW.
机译:模拟电路的数字增量导致功耗增加,并且需要更大的芯片面积。在设计用于边缘检测的模拟互补金属氧化物半导体(CMOS)视觉芯片时,应考虑功耗。它限制了基于脊椎动物视网膜边缘检测机制的边缘检测电路的数量。在本文中,我们将电子开关应用于模拟CMOS视觉芯片以进行边缘检测,以降低功耗。此外,我们提出了一种实现高分辨率视觉芯片的方法,该方法将用于边缘检测的像素分离为128x128光电检测器阵列和1x128边缘检测驱动电路阵列。 SPICE研究了将功耗降至最低的能力。 128x128像素的估计功耗低于20mW。

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