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A power-efficient 12-bit analog-to-digital converter with a novel constant-resistance CMOS input sampling switch
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作者 景鑫 庄奕琪 +4 位作者 汤华莲 戴力 杜永乾 张丽 段宏波 《Journal of Semiconductors》 EI CAS CSCD 2014年第2期102-111,共10页
Apower-efficient 12-bit40-MS/spipelineanalog-to-digitalconverter(ADC)implementedina0.13 μm CMOS technology is presented. A novel CMOS bootstrapping switch, which offers a constant on-resistance over the entire inpu... Apower-efficient 12-bit40-MS/spipelineanalog-to-digitalconverter(ADC)implementedina0.13 μm CMOS technology is presented. A novel CMOS bootstrapping switch, which offers a constant on-resistance over the entire input signal range, is used at the sample-and-hold front-end to enhance the dynamic performance of the pipelined ADC. By implementing with 2.5-bit-per-stage and a simplified amplifier sharing architecture between two successive pipeline stages, a very competitive power consumption and small die area can be achieved. Meanwhile, the substrate-biasing-effect attenuated T-type switches are introduced to reduce the crosstalk between the two op- amp sharing successive stages. Moreover, a two-stage gain boosted recycling folded cascode (RFC) amplifier with hybrid frequency compensation is developed to further reduce the power consumption and maintain the ADC's performance simultaneously. The measured results imply that the ADC achieves a spurious-free dynamic range (SFDR) of 75.7 dB and a signal-to-noise-plus-distortion ratio (SNDR) of 62.74 dB with a 4.3 MHz input signal; the SNDR maintains over 58.25 dB for input signals up to 19.3MHz. The measured differential nonlinearity (DNL) and integral nonlinearity (INL) are -0.43 to +0.48 LSB and -1.62 to + 1.89 LSB respectively. The prototype ADC consumes 28.4 mW under a 1.2-V nominal power supply and 40 MHz sampling rate, transferring to a figure- of-merit (FOM) of 0.63 pJ per conversion-step. 展开更多
关键词 analog-to-digital convert PIPELINE op-amp sharing cmos bootstrapping switch hybrid compensation LOW-VOLTAGE
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Testability Analysis at Switch Level for CMOS Circuits
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作者 沈理 《Journal of Computer Science & Technology》 SCIE EI CSCD 1990年第2期197-202,共6页
In this paper we propose a controllability and observability measure at switch level for CMOS circuits based on the cost analysis approach.The complexity of the algorithm is nearly linear.
关键词 NNI ES NODE Testability Analysis at switch Level for cmos Circuits NPI ED EN DOWN DCG cmos
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A high linearity downconverter for digital broadcasting system
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作者 李松亭 李建成 +2 位作者 谷晓忱 王宏义 庄钊文 《Journal of Semiconductors》 EI CAS CSCD 2014年第12期114-122,共9页
An integrated downconverter with high linearity for digital broadcasting system receivers is implemented in a 0.13 m CMOS process with an active area of 0.1 mm2. The current-mode scheme is adopted to improve linearity... An integrated downconverter with high linearity for digital broadcasting system receivers is implemented in a 0.13 m CMOS process with an active area of 0.1 mm2. The current-mode scheme is adopted to improve linearity performance by avoiding voltage fluctuation. A passive CMOS switching pair is utilized to improve the even-order linearity of the downconverter. A current amplifier is used to provide low input impedance which will easily lead to a wide operating bandwidth and high linearity. Moreover, a current-mode Sallen-Key low-pass filter is adopted for effective rejection of out-of-band interferers and also low input impedance. The digital-assisted DC offset calibration improves the second-order distortion of the downconverter. This design achieves a maximum gain of 40 dB and a dynamic range of 10 dB. Measured noise figure is 8.2 dB, an IIP2 of 63 dBm, an IIP3 of 17 dBm at the minimum gain of 30 dB. The downconverter consumes about 7.7 m A under a supply of 1.2 V. 展开更多
关键词 current-mode downconverter cmos switching pair DC offset calibration direct conversion receiver LINEARITY Sallen-Key low-pass filter
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