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首页> 外文期刊>IEEE Transactions on Nuclear Science >A 5.2 μA Quiescent Current LDO Regulator With High Stability and Wide Load Range for CZT Detectors
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A 5.2 μA Quiescent Current LDO Regulator With High Stability and Wide Load Range for CZT Detectors

机译:具有高稳定性和宽负载范围的5.2μA静态电流LDO稳压器,用于CZT检测器

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Cadmium zinc telluride detectors are the highly considered for room-temperature hard X-ray and gamma-ray detection. The readout systems are needed in the detectors to output the detecting data. The features of power supplies are very important for the readout circuits. In this paper, a low-dropout (LDO) regulator with very low power consumption and wide load variation is presented. A combining compensation method which includes partially controlled load-tracking technique and equivalent series resistance compensation technique are proposed to enhance the loop stability of the LDO regulator. Meanwhile, high dc gain is obtained to improve the power supply ripple rejection (PSRR), which can decrease the noise from the power supply. The prototype LDO chip has been fabricated and tested with a standard 0.18- μm CMOS technology. The measured results show that the LDO regulator can provide up to 150 mA load current with a stable output voltage of 2.8 V under an input voltage scope from 2.9 to 3.6 V. The measured PSRR is up to −60 dB. The output noise spectral densities are 1.16 μVRMS/Hz−−−√ and 211 nVRMS/s Hz−−−√ at 1 and 100 kHz, respectively, at load current of 150 mA. Especially, the ultralow quiescent currents of 5.2 μA at no load and 18.2 μA at full load bring great benefit to the ultralow power integrated readout systems.
机译:碲化镉锌检测器是室温硬X射线和伽马射线检测的高度考虑。检测器中需要读出系统以输出检测数据。电源的功能对于读出电路非常重要。本文提出了一种具有非常低功耗和宽负载变化的低压差(LDO)稳压器。为了提高LDO稳压器的环路稳定性,提出了一种组合补偿方法,该方法包括部分控制负载跟踪技术和等效串联电阻补偿技术。同时,获得高的直流增益以改善电源纹波抑制比(PSRR),从而可以降低电源噪声。 LDO原型芯片已通过标准0.18-μmCMOS技术进行制造和测试。测量结果表明,在2.9至3.6 V的输入电压范围内,LDO稳压器可提供高达150 mA的负载电流和2.8 V的稳定输出电压。测得的PSRR高达-60 dB。在150 mA的负载电流下,在1 kHz和100 kHz时,输出噪声频谱密度分别为1.16μVRMS/ Hz ---√和211 nVRMS / s Hz ---√。特别是,空载时为5.2μA的超低静态电流,满载时为18.2μA的超低静态电流,为超低功耗集成式读出系统带来了巨大好处。

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