A 0.7-V sub-mW type-II phase-tracking Bluetooth low energy receiver in 28-nm CMOS

S Hu, P Chen, P Quinlan… - IEEE Transactions on …, 2021 - ieeexplore.ieee.org
We present an architecture of a Bluetooth low energy (BLE)-compliant receiver which, for the
first time ever, breaks the 1mW barrier of power consumption. It is based on a type-II phase …

An Ultra-Low-Cost High-Performance Bluetooth SoC in 0.11- CMOS

SCG Tan, F Song, R Zheng, J Cui… - IEEE journal of solid …, 2012 - ieeexplore.ieee.org
A highly integrated ultra-low-cost high-performance Bluetooth 3.0+ EDR SoC is
implemented in 0.11-μm digital CMOS technology. The transceiver has an integrated balun …

[引用][C] Bluetooth Transceiver

S Garg - 2004 - University of Wisconsin--Madison

A-90 dBm sensitivity 0.13 μm CMOS bluetooth transceiver operating in wide temperature range

K Agawa, H Majima, H Kobayashi… - 2007 IEEE Custom …, 2007 - ieeexplore.ieee.org
A 2.4 GHz 0.13 μm CMOS transceiver achieving high RX sensitivity and high-quality TX
signals between-40° C and+ 90° C is presented. A low-IF receiver and direct-conversion …

A Bluetooth low-energy transceiver with 3.7-mW all-digital transmitter, 2.75-mW high-IF discrete-time receiver, and TX/RX switchable on-chip matching network

FW Kuo, SB Ferreira, HNR Chen… - IEEE Journal of Solid …, 2017 - ieeexplore.ieee.org
We present an ultra-low-power Bluetooth low-energy (BLE) transceiver (TRX) for the Internet
of Things (IoT) optimized for digital 28-nm CMOS. A transmitter (TX) employs an all-digital …

A low-if rx two-point/spl sigma//spl delta/-modulation tx cmos single-chip bluetooth solution

C Durdodt, M Friedrich, C Grewing… - IEEE Transactions …, 2001 - ieeexplore.ieee.org
A new low-cost concept for a system-on-chip Bluetooth solution is proposed in this paper.
The single chip includes all necessary baseband and RF parts to achieve full Bluetooth …

[PDF][PDF] A low-power CMOS Bluetooth transceiver

F Beffa - 2003 - research-collection.ethz.ch
This work describes the design and implementation of a highly integrated, low-power
Bluetooth transceiver realized in a 0.18 µm CMOS technology. The target applications are …

A 55nm, 0.6mm2 Bluetooth SoC integrated in cellular baseband chip with enhanced coexistence

YS Shih, HL Chu, WK Hong, CC Hung… - 2013 IEEE Asian …, 2013 - ieeexplore.ieee.org
This paper describes a 55nm, 0.6 mm 2 Bluetooth SoC integrated in cellular baseband.
Several techniques are used to enhance co-existence performance of Bluetooth with cellular …

A Bluetooth low-energy (BLE) transceiver with TX/RX switchable on-chip matching network, 2.75 mW high-IF discrete-time receiver, and 3.6 mW all-digital transmitter

FW Kuo, SB Ferreira, M Babaie, R Chen… - … IEEE Symposium on …, 2016 - ieeexplore.ieee.org
We present a new ultra-low-power (ULP) transceiver for Internet-of-Things (IoT) optimized
for 28-nm CMOS. The receiver (RX) employs a high-rate (up to 10 GS/s) discrete-time (DT) …

A 0.85mm2 BLE Transceiver Using an On-Chip Harmonic-Suppressed RFIO Circuitry With T/R Switch

Z Sun, H Liu, H Huang, D Tang, D Xu… - … on Circuits and …, 2020 - ieeexplore.ieee.org
This article presents a small-area Bluetooth Low-Energy (BLE) transceiver (TRX) for short-
range Internet-of-Things (IoT) applications in 65-nm CMOS. An integrated Radio-Frequency …