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A LOW-POWER 12-BIT 250 KS/S CYCLIC ADC FOR LONG LINE ARRAY INFRARED SENSORS READOUT CIRCUIT

机译:用于长线阵列红外传感器读出电路的低功耗12位250 KS / S循环ADC

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摘要

A 12-bit cyclic analog to digital converter (ADC) used in long line array infrared sensors readout circuit is presented. The architecture of a low-power amplifier shared with two groups of switched capacitors is used to reduce power consumption. By adding cross-connected switches, the amplifier's offset is effectively canceled out. The improved redundant signed digit (RSD) correction technique is employed to compensate for the error resulting from the comparator's offset in sub-ADC, and the correction technique can tolerate high level of switched capacitor mismatch error, as well. The converter manufactured with Chartered 0.35 μm CMOS process exhibits 0.92 LSB maximum differential nonlinearity (DNL) and 1.5 LSB maximum integral nonlinearity (INL). The ADC has a 69.3dB signal to noise and distortion ratio (SNDR) at 250kS/s sample rate and 3 MHz clock frequency. It dissipates 0.8 mW with 3.3 V supply and occupies 0.22×0.9 mm~2.
机译:提出了一种用于长线阵列红外传感器读出电路的12位循环模数转换器(ADC)。与两组开关电容器共享的低功率放大器的体系结构用于降低功耗。通过添加交叉连接的开关,可以有效抵消放大器的失调。改进的冗余符号数字(RSD)校正技术用于补偿子ADC中比较器偏移产生的误差,并且该校正技术也可以承受较高的开关电容器失配误差。采用特许0.35μmCMOS工艺制造的转换器具有0.92 LSB的最大微分非线性(DNL)和1.5 LSB的最大积分非线性(INL)。 ADC在250kS / s的采样率和3 MHz的时钟频率下具有69.3dB的信噪比和失真比(SNDR)。在3.3 V电源下的功耗为0.8 mW,占地为0.22×0.9 mm〜2。

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