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VLSI design methodologies for application specific binary sensors

机译:VLSI应用特定二元传感器的设计方法

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As application specific sensors will only have small to medium fabrication runs, non-recurrent design time costs are a dominant factor in the production of CMOS custom VLSI. The ability to reduce these costs and partly deskill the process of full custom VLSI design is essential to the economic viability of such sensors. Any methodology implemented to simplify the design process must be flexible enough to enable the development of sensors with any particular resolution, combined simple processing functions and on-chip memory. The case studies show that the proposed methodology enables application specific binary sensors of differing array sizes and processing to be designed and laid out quickly and simply, using a library of cells. The generic bit-sliced library cells and full-custom logic are slower to produce initially, but their potential for repeated use in many designs makes this penalty worthwhile. Circuits for bit-sliced processing need to contain some redundant logic and buffering to make the cells as generic as possible, and so some functions are less efficient to implement in bit-sliced form. However, it has been discovered that this is compensated by an increase in packing density of bit-sliced cells of typically 16-21%, compared to auto-routed logic.
机译:由于应用特异性传感器仅为中等制造运行,因此非经常性设计时间成本是CMOS定制VLSI的生产中的主要因素。降低这些成本和部分桌面完整自定义VLSI设计的能力对于这种传感器的经济可行性至关重要。实现为简化设计过程的任何方法必须足够灵活,以便能够开发具有任何特定分辨率,组合简单的处理功能和片上存储器的传感器。案例研究表明,所提出的方法能够使用单元格库库快速而简单地设计和布置不同阵列尺寸和处理的应用特定二进制传感器。通用位切片的库单元和全定制逻辑较慢,最初产生较慢,但它们在许多设计中重复使用的可能性使得这种惩罚有价值。用于比特切片处理的电路需要包含一些冗余逻辑和缓冲,以使单元格尽可能通用,因此某些功能效率低于位切割形式。然而,已经发现,与自动路由逻辑相比,这通过比特切片单元的填充密度的增加来补偿,其比例为16-21%。

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