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A Low-Power 16-Channel SiPM Readout Front-end with a Shared SAR ADC in 180 nm CMOS

机译:低功耗16通道SIPM读出前端,其中180nm CMOS中的共享SAR ADC

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This paper reports a low-power and high-timing resolution silicon photomultiplier (SiPM) readout front-end in a 180 nm CMOS technology. A low-input impedance current buffer employing current feedback is developed to achieve direct charge integration without the use of power-hungry charge-sensitive amplifiers (CSAs). A customized 10-bit SAR ADC is designed for energy digitization. The ADC is shared among 16 readout channels to reduce the chip area and improve power efficiency. The SAR ADC reuses the charge integration capacitor in each readout channel as the ADC sampling capacitor to further lower the power consumption. To reduce the SiPM noise-induced timing measurement error, an on-chip high-pass filter (HPF) based fast pulse generation approach is developed to sharpen the long-tailed SiPM current pulses into fast pulses. With a 1.8 V power supply, the SAR ADC consumes 743 µW at 16 MS/s, and achieves a SNDR of 56.48 dB and a SFDR of 62.53 dB. The on-chip fast pulse generation brings a 35 ps improvement in timing resolution without increasing the number of I/O pin counts. Including the front-end current buffer, current mirrors, charge integrator and the shared ADC, each channel of the readout system consumes 3.8 mW of power with a conversion period of 1 µs.
机译:本文报告了180nm CMOS技术中的低功率和高正序分辨率硅光电倍增管(SIPM)读出前端。开发采用电流反馈的低输入阻抗电流缓冲器以实现直接电荷集成而不使用耗电充电敏感放大器(CSA)。定制的10位SAR ADC专为能量数字化而设计。 ADC在16个读数通道之间共享,以减少芯片区域并提高功率效率。 SAR ADC在每个读出通道中重用电荷积分电容作为ADC采样电容,以进一步降低功耗。为了降低SIPM噪声引起的定时测量误差,开发了一种基于片上的高通滤波器(HPF)的快速脉冲产生方法,以将长尾的SIPM电流脉冲锐化到快速脉冲中。使用1.8 V电源,SAR ADC在16毫秒的56.48 dB和62.53 dB的SND中消耗743μW,并实现SNDR。片上快速脉冲产生在不增加I / O引脚计数的数量的情况下,在时序分辨率上提高了35 PS改进。包括前端电流缓冲器,电流镜,电荷积分器和共享ADC,每个读出系统的通道消耗3.8兆瓦的功率,转换周期为1μs。

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