模拟,连续时间,全并行,基于矢量吉尔伯特乘法器的可编程图像处理器

R. Dlugosz
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引用次数: 2

摘要

本文提出了模拟、超低功耗、全并行图像处理器的概念和CMOS实现。提出了一种基于吉尔伯特矢量乘法器实现二维FIR滤波器的电路。所提出的滤波器能够实现各种低通和高通二维FIR滤波器掩模。掩模尺寸和滤波器系数的值都可以用几十个数字信号和几个直流电流来编程。该图像处理器不使用时钟发生器,简化了整个电路的结构,降低了噪声水平。在CMOS 0.18 mum工艺中实现了一个示例(6times6)图像处理器,可以使用3times3掩模进行滤波。该电路每1 μ m并行计算36个像素,耗电约20 μ w。通过将许多设计的6倍6单元并行连接,可以很容易地扩大图像分辨率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analog, Continuous Time, Fully Parallel, Programmable Image Processor Based on Vector Gilbert Multiplier
A conception as well as a CMOS implementation of the analog, ultra low power and fully parallel image processor have been presented in this paper. Proposed circuit bases on the 2-D FIR filters realized using the Gilbert vector multiplier. Proposed filter enables realization of various lowpass and highpass 2-D FIR filter masks. Both the mask dimensions and values of the filter coefficients can be programmed using several dozen digital signals and several DC currents. Proposed image processor does not use the clock generator, what simplifies the overall circuit's structure and reduces the noise level. An example (6times6) image processor that enables filtering with a 3times3 mask has been implemented in CMOS 0.18 mum process. This circuit calculates 36 pixels in parallel every 1 mus, dissipating power about 20 muW. The image resolution can be easily enlarged by a parallel connection of many designed 6times6 cells.
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