A 5-Gb/s Automatic Gain Control Amplifier With Temperature Compensation

J. Solid-State Circuits(2012)

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摘要
This paper presents an automatic gain control (AGC) amplifier with temperature compensation for high-speed applications. The proposed AGC consists of a folded Gilbert variable gain amplifier (VGA), a dc offset canceller, inductorless post amplifiers, a linear open-loop peak detector (PD), an integrator, a symmetrical exponential voltage generator, and a compensation block for temperature stability. The novel temperature compensation scheme ensures the AGC stability and accuracy over -20°C-200°C by predicting the integrator biasing voltage based on the crucial blocks duplication technique. The proposed linear open loop PD combined with the linear-in-dB VGA manages the dB-linear error of less than 0.3 dB for the received signal strength indication (RSSI). The AGC chip is fabricated using a 0.13-μm SiGe BiCMOS technology. Consuming a power of 72 mW from a 1.2-V supply voltage, the fabricated circuit exhibits a voltage gain of 40 dB and a 3-dB bandwidth of 7.5 GHz. With a 215 - 1 pseudo-random bit sequence at 5-Gb/s, the measured peak-to-peak jitter is less than 40pspp across the -20°C-200°C temperature range. The low linear-in-dB error and the wide operating temperature range achieving the high-speed data input signal indicate the suitability of the proposed techniques for high-speed AGC amplifiers.
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wide operating temperature range,automatic gain control amplifier,linear-in-db gain characteristic,linear open loop pd,peak detectors,sige bicmos technology,microwave amplifiers,folded gilbert variable gain amplifier,sige,voltage 1.2 v,symmetrical exponential voltage generator,automatic gain control (agc),compensation block,bit rate 5 gbit/s,temperature compensation,variable gain control (vga),linear open-loop peak detector,temperature -20 degc to -200 degc,power 72 mw,rssi,integrator biasing voltage,bicmos integrated circuits,high-speed techniques,high-speed applications,automatic gain control,db-linear error,symmetric exponential voltage generator,agc chip,bandwidth 7.5 ghz,high-speed agc amplifiers,peak-to-peak jitter,circuit fabrication,linear-in-db vga,received signal strength indication,vga,pseudorandom bit sequence,ge-si alloys,dc offset canceller,compensation,integrator,crucial blocks duplication technique,stability,high-speed data input signal,size 0.13 mum,agc stability,temperature stability,inductorless post amplifiers,open loop systems,gain 40 db,variable gain amplifier,temperature control,gain,gain control,chip,generators
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