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Design of a focal plane array with analog neural preprocessing

机译:具有模拟神经预处理的焦平面阵列设计

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Abstract: The design of a CMOS focal plane array with 128 by 128 pixels and analog neural preprocessing is presented. Optical input to the array is provided by substrate-well photodiodes. A two-dimensional neural grid wIth next- neighbor connectivity, implemented as differential current- mode circuit, is capable of spatial low-pass filtering combined with contrast enhancement or binarization. The gain, spatial filter and nonlinearity parameters of the neural network are controlled externally using analog currents. This allows the multipliers and sigmoid transducers to be operated in weak inversion for a wide parameter sweep range as well as in moderate or strong inversion for a larger signal to pattern-noise ratio. The cell outputs are sequentially read out by an offset compensated differential switched-capacitor multiplexer with column preamplifiers. The analog output buffer is designed for pixel rates up to 1 pixel/microsecond and 2 by 100 pF load capacitance. All digital clocks controlling the analog data path are generated on-chip. The clock timing is programmable via a serial computer interface. Using 1 micrometer double-poly double-metal CMOS process, one pixel cell occupies 96 by 96 micrometer$+2$/ and the total chip size is about 2.3 cm$+2$/. Operating the neural network in weak inversion, the power dissipation of the analog circuitry is less than 100 mW. !13
机译:摘要:提出了128×128像素和模拟神经预处理的CMOS焦平面阵列的设计。对阵列的光输入由基板阱光电二极管提供。具有作为差分电流模式电路的下邻连接的二维神经网格,其能够与对比度增强或二值化相结合的空间低通滤波。使用模拟电流在外部控制神经网络的增益,空间滤波器和非线性参数。这允许乘法器和矩形换能器在宽的参数扫描范围内以弱反转操作以及适度或强的反转,以便更大的信号达到图案噪声比。通过具有列前置放大器的偏移补偿差分开关 - 电容器多路复用器顺序读出电池输出。模拟输出缓冲器设计用于最多1像素/微秒和2乘100 PF负载电容的像素速率。控制模拟数据路径的所有数字时钟都是在片上生成的。时钟定时可通过串行计算机接口进行编程。采用1微米双多金属双金属CMOS工艺,一个像素电池占96×96微米$ + 2 $ /,总芯片尺寸约为2.3厘米$ + 2 $ /。在弱反转中操作神经网络,模拟电路的功耗小于100 MW。 !13

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