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首页> 外文期刊>IEEE Transactions on Nuclear Science >A 32-Channel 13-b ADC for Space Applications
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A 32-Channel 13-b ADC for Space Applications

机译:用于太空应用的32通道13b ADC

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This paper presents a 13-b, 2.56- μs conversion time, 2 V input range, 32-channel single slope analog-to-digital converter (ADC) called OWB-1 and implemented in a 0.35- μm CMOS commercial technology. It is based on an improved Wilkinson architecture. An interpolator composed by a delay lock loop is used to increase the time resolution of the counter by a factor of 32, while keeping a low power consumption and ensuring the high dynamic performance of the ADC. Measurements performed on the ADC have shown that the noise is better than 0.86 LSB over the full conversion range, its differential nonlinearity is in the range of −0.28/+0.31 LSB and its integral nonlinearity is within −1.3/+2.1 LSB. The total power consumption of the chip is 57 mW for 32 active channels. A new temperature compensation system based on a servo loop has also been integrated into the chip to compensate for temperature effects in the −40 °C to +40 °C range. Special design techniques have been used to make the ASIC immune to single event latchup. OWB-1 readout is optimized for a new low power microgamma camera (Caliste-MC2) with digital output based on a 32 × 32 CdTe or CdZnTe pixel matrix.
机译:本文介绍了一种13b,2.56-μs的转换时间,2V输入范围,称为OWB-1的32通道单斜率模数转换器(ADC),并以0.35-μmCMOS商业技术实现。它基于改进的Wilkinson体系结构。由延迟锁定环组成的内插器用于将计数器的时间分辨率提高32倍,同时保持低功耗并确保ADC的高动态性能。在ADC上进行的测量表明,在整个转换范围内,噪声优于0.86 LSB,其微分非线性在-0.28 / + 0.31 LSB范围内,其积分非线性在-1.3 / + 2.1 LSB范围内。 32个活动通道的芯片总功耗为57 mW。芯片中还集成了基于伺服回路的新型温度补偿系统,以补偿−40°C至+40°C范围内的温度影响。已经使用特殊的设计技术使ASIC免受单事件闩锁的影响。 OWB-1读数针对具有32×32 CdTe或C​​dZnTe像素矩阵的数字输出的新型低功耗微伽马相机(Caliste-MC2)进行了优化。

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