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首页> 外文期刊>IEEE Transactions on Consumer Electronics >An Area and Power Efficient Interpolation Scheme Using Variable Current Control for 10-Bit Data Drivers in Mobile Active-Matrix LCDs
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An Area and Power Efficient Interpolation Scheme Using Variable Current Control for 10-Bit Data Drivers in Mobile Active-Matrix LCDs

机译:使用移动矩阵LCDS中的10位数据驱动程序的可变电流控制的区域和功率高效插值方案

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摘要

This paper presents an area and power efficient interpolation scheme using variable current control (VCC) for 10-bit data drivers in mobile active-matrix LCDs. The VCC interpolation can be embedded in buffer amplifiers as sub-digital-to-analog converters (DACs), reducing the DAC area without requiring additional power and conversion time. Moreover, interpolation errors due to transistor nonlinearity can be compensated through delicate current ratio control, optimizing both accuracy and area efficiency of the high-resolution data driver. The prototype 10-bit data driver with a 6-bit resistor DAC and a 4-bit interpolation sub-DAC occupies the chip area of 460 mu m x 14 mu m per channel, which is 10.7% smaller than the conventional 8bit data driver. The data driver consumes static current of 1 mu A/channel without dissipating additional power for interpolation. The measured integral nonlinearity and differential nonlinearity are 0.4 LSB and 0.7 LSB, respectively. The proposed scheme has competitive performance in terms of driving accuracy, chip size shrinkage, and static power consumption for high-resolution data drivers.
机译:本文介绍了使用可变电流控制(VCC)的区域和功率高效插值方案,用于移动有源矩阵LCD中的10位数据驱动程序。 VCC插值可以嵌入缓冲放大器中作为子数字到模拟转换器(DAC),减少DAC区域而不需要额外的功率和转换时间。此外,可以通过精细的电流比控制来补偿由于晶体管非线性引起的插值误差,优化了高分辨率数据驱动器的精度和面积效率。具有6位电阻DAC的原型10位数据驱动器和4位插值子DAC占据每通道460μm×14μm的芯片面积,比传统的8位数据驱动器小10.7%。数据驱动器消耗1μA/频道的静态电流,而不会消散用于插值的额外电源。测得的整体非线性和差分非线性分别为0.4LSB和0.7LSB。该方案在推动精度,芯片尺寸收缩和高分辨率数据驱动器的静态功耗方面具有竞争性绩效。

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