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Integrated sensor and range-finding analog signal processor

机译:集成传感器和测距模拟信号处理器

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The authors present experimental results from an array of cells, each of which contains a photodiode and the analog signal-processing circuitry needed for light-stripe range finding. Prototype circuits were fabricated through MOSIS in a 2- mu m CMOS p-well double-metal, double-poly process. This design builds on some of the ideas that have been developed for ICs that integrate signal-processing circuitry with photosensors. In the case of light-stripe range finding, the increase in cell complexity from sensing only to sensing and processing makes the modification of the operational principle of range finding practical, which in turn results in a dramatic improvement in performance. The IC array of photosensor and analog signal processor cells that acquires 1000 frames of light-stripe range data per second-two orders of magnitude faster than conventional light-stripe range-finding methods. The highly parallel range-finding algorithm used requires that the output of each photosensor site be continuously monitored. Prototype high-speed range-finding systems have been built using a 5*5 array and a 28*32 array of these sensing elements.
机译:作者展示了一组细胞的实验结果,每个细胞都包含一个光电二极管和光条测距所需的模拟信号处理电路。原型电路是通过MOSIS在2微米CMOS p阱双金属双多晶硅工艺中制造的。该设计基于已为将信号处理电路与光电传感器集成在一起的IC开发的一些想法。在光条测距的情况下,从仅感测到感测和处理的单元复杂性的增加使得对测距的操作原理的修改变得切实可行,进而导致性能的显着提高。光电传感器和模拟信号处理器单元的IC阵列,每秒钟可获取1000帧的光条测距数据,比传统的光条测距方法快两个数量级。使用高度并行的测距算法需要对每个光电传感器站点的输出进行连续监控。原型高速测距系统是使用5 * 5阵列和28 * 32阵列的这些传感元件构建的。

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