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A dB-Linear Programmable Gain Amplifier With Mixed-Signal Control for Wide-Gain Range and Low-Power Applications
Journal article   Peer reviewed

A dB-Linear Programmable Gain Amplifier With Mixed-Signal Control for Wide-Gain Range and Low-Power Applications

Aasish Boora, Bharatha Kumar Thangarasu and Kiat Seng Yeo
IEEE transactions on circuits and systems. I, Regular papers, Vol.72(1), pp.61-70
01/2025

Abstract

Amplifier analog gain control baseband Circuits DC-offset cancellation (DCOC) decibel (dB)-linear digital gain control Electronics packaging Gain Logic gates low power miniature design programmable gain amplifier (PGA) Transistors Tuning Voltage control
A robust, cascaded unit cell-based programmable gain amplifier (PGA) with precise and accurate dB-linear characteristics using the exponential approximation of the MOS transistor is presented. The exponential function is precisely generated for the desired gain range by exploiting the sub-threshold characteristics of load transistors in the proposed unit-cell. The proposed PGA has dual-mode gain tunability using analog voltage control and 5-bit digital control. The proposed PGA achieves a gain range from −37 dB to +39 dB with wide bandwidth and very low power consumption. The proposed dB-linear PGA is designed and fabricated in a standard 40nm CMOS technology. The measurements demonstrate that the proposed PGA can achieve a wide dB-linear gain range of 76 dB for 32 digital gain settings and a gain error of less than ±0.5 dB. At the maximum gain setting, the PGA exhibits a bandwidth of 1.1 MHz, input referred noise of 29.8 nV/ \surd Hz, output P1dB of −4.7 dBm, and consumes only 167~\mu W of power from a 1.1 V supply. The core area occupied by the PGA is only 0.003 mm2.

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