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Comparison of Binary and Multi-level Logic Processing for an Optical Encoder

机译:光学编码器二进制和多级逻辑处理的比较

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The measurement of rotation is required for many sensor systems. Rotary optical encoders are a rugged option for such measurements and gray code systems help prevent ambiguous values during transitions. A complex interface task is selected to compare binary and multi-level logic implementations in which a five-bit, encoder gray code maps to seven-segment displays. An optimized binary gate implementation is compared to a functional equivalent using a multi-level, memory-based logic approach. CMOS circuit implementations are compared with respect to transistor count, propagation delay, and power usage. The suitability of the multi-level, memory-based approach for low-power, dedicated instrumentation is discussed.
机译:许多传感器系统都需要旋转测量。旋转式光学编码器是此类测量的坚固选择,并且格雷码系统有助于防止过渡期间的模棱两可的值。选择一个复杂的接口任务来比较二进制和多级逻辑实现,其中五位编码器格雷码映射到七段显示器。使用多级,基于存储器的逻辑方法,将优化的二进制门实现与功能等效进行比较。比较CMOS电路实现的晶体管数量,传播延迟和功耗。讨论了基于多级存储器的低功耗专用仪器的适用性。

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