High Precision Adaptive Calibration Feedback in RF Front-end for Digital Pre-distortion Application
Creators
- 1. TUBITAK BILGEM, Integrated Circuit Design & Training Lab TUTEL, Kocaeli, Turkiye
- 2. Univ Calif Los Angeles, Dept Elect & Comp Engn, Los Angeles, CA USA
- 3. Istanbul Tech Univ, Dept Elect & Commun Engn, Istanbul, Turkiye
- 4. Bogazici Univ, Dept Elect & Elect Engn, Istanbul, Turkiye
Description
This paper introduces an adaptive feedback calibration circuit designed for use in V2X (Vehicle-to-Everything) systems operating at 5.9 GHz within 5G NR systems. The adaptive loop comprises the observation receiver, functioning in the n47 frequency band (5855-5925 MHz), and the digital pre-distorter, both situated on the same die as the RF Power Amplifier. The TX signal, featuring a bandwidth of up to 40 MHz and a PAPR of 8 to 10 dB, undergoes digitization by a receiver with a notably high bandwidth, such as 120 MHz. Subsequently, the digitized signal is input into the digital pre-distortion circuit with a 10-bit high precision. Circuit characteristics obtained from post-layout simulations, as of the publication date, have been incorporated into a comprehensive model. Simulations assessing EVM and ACLR of the TX signal at the Front-end module output have been executed. The EVM value enhances from 5.2% RMS when the adaptive DPD is deactivated to 1.5% RMS when activated. Moreover, the ACLR decreases from -30 dBc to better than -40 dBc. The observation receiver of the calibration feedback system, designed using 130-nm SOI CMOS technology, possesses dimensions of 1750 mu m x 3200 mu m. The DPD circuit, situated on a separate die but utilizing the same process, features dimensions of 5980 mu m x 6430 mu m.
Files
bib-cbdb538a-fcd6-4a23-9e44-51d2913c8789.txt
Files
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