首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >A Low-Voltage-Driven High-Voltage SRAM Pixel Circuit for Power Reduction in a Digital Micro-Display Panel
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A Low-Voltage-Driven High-Voltage SRAM Pixel Circuit for Power Reduction in a Digital Micro-Display Panel

机译:用于数字微显示面板的功率降低的低压驱动的高压SRAM像素电路

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A new SRAM-based pixel circuit is presented for use in a high-voltage digitally-driven pixel array in a micro-display panel. The pixel circuit is based on the standard 6T SRAM structure, but uses two more transistors of which gate dc-bias is controlled to adjust the pull-up strength of the inverters in the SRAM. This allows the pixel circuit to be operated with low-voltage row- and column-line signals while holding the stored logic in a high-voltage level. As a result, power and area of the pixel driving circuits are greatly reduced. The added two transistors do not necessitate area overhead if the pixels are to be individually separated with rectangular shape, which is true in many cases. To verify proper operation and power reduction efficacy of the proposed SRAM pixel circuit, a simple 100x200 digital pixel array, together with row- and column-line drivers, is implemented using a 0.13-mu m CMOS technology and 1.5-V/3.3-V supplies. The measurement results show that, with the optimum bias for the two added transistors, total power dissipation including pixel array and driver power can be reduced by about as much as 78 %, which is very close to the theoretical limit of 79 % (= (1.5/3.3)2).
机译:提出了一种新的SRAM基像素电路,用于微显示面板中的高压数字驱动像素阵列。像素电路基于标准的6T SRAM结构,但是使用两个更多的晶体管,其被控制在栅极DC偏压中以调节SRAM中逆变器的上拉强度。这允许在高压电平保持存储的逻辑的同时用低压行和列线信号操作像素电路。结果,像素驱动电路的功率和面积大大降低。如果像素被用矩形形状单独分离,则添加的两个晶体管不需要区域开销,这在许多情况下是真实的。为了验证所提出的SRAM像素电路的正确操作和功率降低功效,使用0.13-MU M CMOS技术和1.5 V / 3.3-V,实现简单的100x200数字像素阵列与行和列线驱动器一起实现。补给品。测量结果表明,随着两个添加的晶体管的最佳偏置,包括像素阵列和驱动器电源的总功耗可以减少约78%,这非常接近79%的理论限制(=( 1.5 / 3.3)2)。

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