Design of 1.8-mW PLL-free 2.4-GHz receiver utilizing temperature-compensated FBAR resonator

K Wang, L Qiu, J Koo, R Ruby… - IEEE Journal of Solid …, 2018 - ieeexplore.ieee.org
This paper presents a 1.8-mW 2.4-GHz channelized receiver for ISM-band applications.
Unlike traditional ISM-band radios which typically require a phase-locked loop (PLL) for …

A fully on-chip 80-pJ/b OOK super-regenerative receiver with sensitivity-data rate tradeoff capability

VD Rezaei, K Entesari - IEEE Journal of Solid-State Circuits, 2018 - ieeexplore.ieee.org
This paper presents an ultra-low power superregenerative receiver suitable for ON-OFF
keying modulation and provides analytical insight into its design procedure. The receiver is …

A 220- W −83-dBm 5.8-GHz Third-Harmonic Passive Mixer-First LP-WUR for IEEE 802.11ba

J Im, HS Kim, DD Wentzloff - IEEE Transactions on Microwave …, 2019 - ieeexplore.ieee.org
A 40-nm CMOS IEEE 802.11 ba low-power wake-up receiver (LP-WUR) is presented. It
receives 802.11 ba messages generated by an 802.11 orthogonal frequency-division …

A− 40 dB EVM, 77 MHz dual-band tunable gain sub-sampling receiver front end in 65-nm CMOS

A Kale, S Popuri, M Koeberle, J Sturm… - … on Circuits and …, 2018 - ieeexplore.ieee.org
In this paper, the first dual-band sub-sampling receiver front end with sampling frequency
optimization to meet the ultimate receiver error vector magnitude (EVM) of-40 dB over wide …

A 0.4–1.8-GHz quarter-rate subsampling mixer-first direct down-conversion RF front-end

RV Rena, R Kammari… - IEEE Transactions on …, 2023 - ieeexplore.ieee.org
Subsampling down-conversion has not been a popular choice for mixer-first RF front-ends
for two interdependent reasons. One, the subsampling down-conversion is inherently …

Design of a 0.6-V, 429-MHz FSK transceiver using Q-enhanced and direct power transfer techniques in 90-nm CMOS

CY Chiu, ZC Zhang, TH Lin - IEEE Journal of Solid-State …, 2020 - ieeexplore.ieee.org
A 429-MHz ultra low-power frequency-shift keying (FSK) transceiver (TRX) that is operated
at 0.6 V at 200 kb/s is presented in this work. The receiver (RX) used in this work uses a …

Ultralow-power 2.4-GHz receiver with all passive sliding-IF mixer

S Lee, D Jeong, B Kim - IEEE Transactions on Microwave …, 2018 - ieeexplore.ieee.org
This paper presents a 2.4-GHz ISM band ultralow-power receiver with a passive sliding-IF
(SIF) mixer structure. A self-biased inverter-based low noise amplifier which has high FOM …

A 0.69-mw sub-sampling nb-iot receiver employing a linearized q-boosted lna

H Lu, AG Gadelkarim, J Huang… - IEEE Open Journal of …, 2024 - ieeexplore.ieee.org
This article presents a receiver for narrowband IoT (NB-IoT) that eliminates the need for an
RF local oscillator (LO) via a subsampling architecture. A pseudo-balun Q-boosted LNA …

0.4-1 GHz Subsampling Mixer-First RF Front-End With 50-dB HRR,+ 10-dBm IB-IIP3 in 65-nm CMOS

RV Rena, R Kammari - … on Very Large Scale Integration (VLSI …, 2023 - ieeexplore.ieee.org
Reconfigurable subsampling mixer-first RF front-end is a potential candidate for low-power
applications as it operates at a low clock frequency and hence consumes low power …

A 20–80 MHz continuously tunable Gm-C low-pass filter for ultra-low power WBAN receiver front-end

X Wang, CC Boon, K Yang, L Kong - IEEE Access, 2021 - ieeexplore.ieee.org
This paper presents a third-order Butterworth low-pass filter (LPF) with continuously tuning
capability to be used in the receiver front-end for Wireless Body Area Network (WBAN). To …