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Low-power buffer with voltage boosting and improved frequency compensation for liquid crystal display source drivers

机译:具有升压功能和改进频率补偿功能的低功耗缓冲器,用于液晶显示源驱动器

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A pair of complementary class-A buffers with voltage boosting method and improved frequency compensation is proposed. The buffer driving capabilities are enhanced by adding small auxiliary transistors to pull-up/pull-down the gate voltages of the buffer output transistors to improve the transient response. The auxiliary transistors are turned off for power saving in the steady-state operation. The proposed frequency compensation is more area-efficient than the Miller compensation method and hence maintains the high output voltage slew rate of the buffer. The measured static current of each buffer with the proposed circuits consumes 3 μA under a supply voltage of 5 V. The buffer settling times of the rising and the falling edges with a capacitance of 600 pF for an input swing of 5 V are 3.3 and 1.7 μs, respectively. The core size of the buffers including the compensation capacitance is 82 × 101 μm2 and the buffer can be stable when a load capacitance changes from 5 to 600 PF. Hence, the proposed output buffers concurrently achieve a fast response and are suitable for a wide range of load capacitances.
机译:提出了一对具有升压方法和改进的频率补偿的互补A类缓冲器。通过添加小型辅助晶体管来上拉/下拉缓冲器输出晶体管的栅极电压,以改善瞬态响应,从而增强了缓冲器驱动能力。在稳态操作中,为了节省功率,辅助晶体管被关闭。所提出的频率补偿比Miller补偿方法具有更高的面积效率,因此可以保持缓冲器的高输出电压压摆率。在5 V的电源电压下,使用所建议的电路测得的每个缓冲器的静态电流消耗3μA。对于5 V的输入摆幅,电容为600 pF的上升沿和下降沿的缓冲器建立时间分别为3.3和1.7分别为μs。包括补偿电容的缓冲器的核心尺寸为82×101μm 2 ,并且当负载电容从5 PF变为600 PF时,缓冲器可以保持稳定。因此,提出的输出缓冲器可同时实现快速响应,并适用于各种负载电容。

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