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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >A 12-bit, 1 MS/s SAR-ADC for a CZT-based multi-channel gamma-ray imager using a new digital calibration method
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A 12-bit, 1 MS/s SAR-ADC for a CZT-based multi-channel gamma-ray imager using a new digital calibration method

机译:使用新的数字校准方法的基于CZT的多通道伽马射线成像仪的12位,1 MS / s SAR-ADC

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摘要

The successive approximation register-analog to digital converter (SAR-ADC) is widely used in the CdZnTe-based gamma-ray imager because of its outstanding characteristics of low power consumption, relatively high resolution, and small die size. This study proposes a digital bit-by-bit calibration method using an input ramp signal to further improve the conversion precision and power consumption of an SAR-ADC. The proposed method is based on the sub-radix-2 redundant architecture and the perturbation technique. The proposed calibration algorithm is simpler, more stable, and faster than traditional approaches. The prototype chip of the 12-bit, 1 MS/s radiation-hardened SAR-ADC has been designed and fabricated using the TSMC 0:35 μm~2P4M CMOS process. This SAR-ADC consumes 3mWpower and occupies a core area of 856×802μm~2. The digital bit-by-bit calibration algorithm is implemented via MATLAB for testing flexibility. The effective number of bits for this digitally calibrated SAR-ADC reaches 11.77 bits. The converter exhibits high conversion precision, low power consumption, and radiation-hardened design. Therefore, this SAR-ADC is suitable for multi-channel gamma-ray imager applications.
机译:逐次逼近寄存器模数转换器(SAR-ADC)由于其低功耗,相对高分辨率和小芯片尺寸等突出特性而被广泛用于基于CdZnTe的伽马射线成像仪中。这项研究提出了一种使用输入斜坡信号的数字逐位校准方法,以进一步提高SAR-ADC的转换精度和功耗。所提出的方法基于sub-radix-2冗余体系结构和微扰技术。所提出的校准算法比传统方法更简单,更稳定,更快。采用TSMC 0:35μm〜2P4M CMOS工艺设计和制造了12位,1 MS / s辐射硬化SAR-ADC的原型芯片。该SAR-ADC功耗为3mW,核心面积为856×802μm〜2。通过MATLAB实现数字逐位校准算法,以测试灵活性。此数字校准SAR-ADC的有效位数达到11.77位。该转换器具有高转换精度,低功耗和辐射硬化设计。因此,该SAR-ADC适用于多通道伽马射线成像仪应用。

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