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A 10b 50MS/s Low-Power Skinny-Type 0.13um CMOS ADC for CIS Applications

Jung-Eun Song,Dong-Hyun Hwang, Won-Seok Hwang, Kwang-Soo Kim,Seunghoon Lee

Journal of the Institute of Electronics Engineers of Korea(2011)

Cited 22|Views8
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Abstract
This work proposes a skinny-type 10b 50MS/s 0.13um CMOS three-step pipeline ADC for CIS applications. Analog circuits for CIS applications commonly employ a high supply voltage to acquire a sufficiently acceptable dynamic range, while digital circuits use a low supply voltage to minimize power consumption. The proposed ADC converts analog signals in a wide-swing range to low voltage-based digital data using both of the two supply voltages. An op-amp sharing technique employed in residue amplifiers properly controls currents depending on the amplification mode of each pipeline stage, optimizes the performance of op-amps, and improves the power efficiency. In three FLASH ADCs, the number of input stages are reduced in half by the interpolation technique while each comparator consists of only a latch with low kick-back noise based on pull-down switches to separate the input nodes and output nodes. Reference circuits achieve a required settling time only with on-chip low-power drivers and digital correction logic has two kinds of level shifter depending on signal-voltage levels to be processed. The prototype ADC in a 0.13um CMOS to support 0.35um thick-gate-oxide transistors demonstrates the measured DNL and INL within 0.42LSB and 1.19LSB, respectively. The ADC shows a maximum SNDR of 55.4dB and a maximum SFDR of 68.7dB at 50MS/s, respectively. The ADC with an active die area of 0.53 consumes 15.6mW at 50MS/s with an analog voltage of 2.0V and two digital voltages of 2.8V () and 1.2V ().
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Key words
adc,cmos,10b 50ms/s,low-power low-power,skinny-type
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