Title :
A 14b 60 MS/s Pipelined ADC Adaptively Cancelling Opamp Gain and Nonlinearity
Author :
Miyahara, Y. ; Sano, Makoto ; Koyama, Koichi ; Suzuki, Takumi ; Hamashita, K. ; Bang-Sup Song
Author_Institution :
Asahi Kasei Microdevices, Atsugi, Japan
Abstract :
Opamp gain and nonlinearity are adaptively cancelled in a pipelined ADC that features global zero-forcing LMS feedback. Two unique circuit concepts are incorporated into the design. One is a programmable gain element that adjusts the opamp gain and nonlinearity error, and the other is a digitally implemented oversampling quantizer that detects the error polarity with high precision. The total opamp-induced error is removed using an opamp input error monitoring algorithm, which also eliminates the opamp noise and offset. The proposed nonlinearity-cancelled bottom-plate sampling helps to realize accurate inter-stage residue transfer and to alleviate the stringent requirement in the design of high-gain wideband opamps. A 60 MS/s pipelined ADC is prototyped in 0.18 μm CMOS. The chip exhibits a 14b INL with a 91 dB SFDR at 1.6 V using a plain un-cascoded two-stage opamp.
Keywords :
CMOS integrated circuits; analogue-digital conversion; least mean squares methods; operational amplifiers; wideband amplifiers; CMOS; error monitoring; error polarity; high-gain wideband opamps; inter-stage residue transfer; nonlinearity-cancelled bottom-plate sampling; opamp gain; opamp noise; opamp nonlinearity; opamp offset; oversampling quantizer; pipelined ADC; plain uncascoded opamp; programmable gain element; size 0.18 mum; stringent requirement; two-stage opamp; voltage 1.6 V; word length 14 bit; zero-forcing LMS feedback; Accuracy; Capacitors; Gain; Least squares approximations; Linearity; Measurement uncertainty; Switches; Adaptive cancellation; background calibration; bottom-plate sampling; capacitor-array multiplying digital-to-analog converter (MDAC); digital calibration; opamp gain and nonlinearity calibration; pipelined analog-to-digital converter (ADC); switched-capacitor amplifier;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2013.2289902