2010Unpublished venueRequires access

An improved high gain and wide bandwidth operational amplifier for the SHA circuit in a pipelined ADC

Yu Wang, Haigang Yang, Zhenhua Ye, Hui Zhang, Fei Liu

Open publisher page 1 citations

Abstract

This paper presents a high gain and wide bandwidth fully differential operational amplifier (op amp) used in a sample and hold amplifier (SHA) circuit for a 12bit, 50Ms/s pipelined ADC. The gain-boosted technique is adopted to achieve a high gain without reduction of the output swing, while a new frequency compensation method is developed to compensate the bandwidth degradation caused by the gain-boosted structure. Simulation results show that the amplifier exhibits a gain of 114dB, unity gain bandwidth of 721MHz, and 2V output range from a single 3.3V supply. A sample and hold circuit employing the amplifier is implemented in a commercial 0.35μm CMOS process, the measurement results show that the amplifier should meet the requirement for the pipelined ADC operating at up to 50MHz sampling clock.

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What this paper is about

This paper presents a high gain and wide bandwidth fully differential operational amplifier (op amp) used in a sample and hold amplifier (SHA) circuit for a 12bit, 50Ms/s pipelined ADC. The gain-boosted technique is adopted to achieve a high gain without reduction of the output swing, while a new frequency compensation method is developed to compensate the bandwidth degradation caused by the gain-boosted structure. Simulation results show that the amplifier exhibits a gain of 114dB, unity gain bandwidth of 721MHz, and 2V output range from a single 3.3V supply. A sample and hold circuit employing the amplifier is implemented in a commercial 0.35μm CMOS process, the measurement results show that the amplifier should meet the requirement for the pipelined ADC operating at up to 50MHz sampling clock.

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Available abstract

This paper presents a high gain and wide bandwidth fully differential operational amplifier (op amp) used in a sample and hold amplifier (SHA) circuit for a 12bit, 50Ms/s pipelined ADC. The gain-boosted technique is adopted to achieve a high gain without reduction of the output swing, while a new frequency compensation method is developed to compensate the bandwidth degradation caused by the gain-boosted structure. Simulation results show that the amplifier exhibits a gain of 114dB, unity gain bandwidth of 721MHz, and 2V output range from a single 3.3V supply. A sample and hold circuit employing the amplifier is implemented in a commercial 0.35μm CMOS process, the measurement results show that the amplifier should meet the requirement for the pipelined ADC operating at up to 50MHz sampling clock.

Key concepts: Fully differential amplifier, Open-loop gain, Operational amplifier, Direct-coupled amplifier, Sample and hold, Gain–bandwidth product, Computer science, Electronic engineering

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