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A fully integrated 10-bit 100 MS/s SAR ADC with metastability elimination for the high energy physics experiments

机译:一种完全集成的10位100 MS / S SAR ADC,具有用于高能物理实验的亚稳性消除

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This paper presents a fully integrated 10-bit 100 MS/s successive approximation register (SAR) ADC for the high energy physics experiments. The ADC uses a non-binary weighted capacitor digital-to-analog converter (C-DAC) network and a hybrid capacitor switching procedure to increase conversion accuracy and speed. A metastability elimination technique is employed to avoid comparator metastability, and then reduce the conversion error rate (CER) at high-speed asynchronous operations. The full custom static logic is used to improve the radiation hardness. The ADC was designed and fabricated in a 40 nm CMOS process. It occupies 0.078 mm~2 active area, including a reference generator, with a core area of 0.037 mm~2. The measured ADC core power consumption and the total power consumption are 1.32 mW and 8.5 mW respectively, including the reference generator at a 1.1 V supply. The resulting figure-of-merit (FOM), for sampling rate 100 MS/s, is 130 fJ/conversion-step. It achieves a good dynamic performance with ~9.3-bit effective number of bits (ENOB) at 100 MS/s with 14.97 MHz input signal. The measured spurious free dynamic range (SFDR), total harmonic distortion (THD) and signal-to-noise ratio (SNR) are 72.6 dB, -69.2 dB, 58.3 dB, respectively. The measured differential nonlinearity (DNL) and integral nonlinearity (INL) are +0.62/-0.4 LSB and +0.67/-0.54 LSB respectively.
机译:本文介绍了高能物理实验的完全集成的10位100ms / S连续近似寄存器(SAR)ADC。 ADC使用非二进制加权电容数模型转换器(C-DAC)网络和混合电容器切换程序,以提高转换精度和速度。采用稳定性消除技术来避免比较器稳定性,然后降低高速异步操作的转换误差率(CER)。完整的自定义静态逻辑用于提高辐射硬度。 ADC在40nm CMOS工艺中设计和制造。它占用0.078 mm〜2有源区域,包括参考发生器,核心面积为0.037 mm〜2。测量的ADC核心功耗和总功耗分别为1.32 MW和8.5兆瓦,包括1.1 V电源的参考发电机。用于采样率100 ms / s的结果的优点(FOM)是130 FJ /转换步骤。它具有良好的动态性能,具有〜9.3位有效数量的位(ENOB),100 ms / s,具有14.97 MHz输入信号。测量的虚假自由动态范围(SFDR),总谐波失真(THD)和信噪比(SNR)分别为72.6 dB,-69.2dB,58.3dB。测量的差分非线性(DNL)和整体非线性(INL)分别为+ 0.62 / -0.4LSB和+ 0.67 / -0.54LSB。

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