This paper discusses the design, analysis and performance of a 2.4 GHz fully integrated low-power current-reused receiver front-end implemented in 0.18 μm CMOS technology. The front-end is composed of a single-to-differential low-noise amplifier (LNA), using high-Q differential transformers and inductors and a coupled switching mixer stage. The mixer transconductor and LNA share the same DC current. Measurements of performance show a conversion gain of 28.5 dB, noise figure of 6.6 dB, 1 dB compression point of −32.8 dBm and IIP3 of −23.3 dBm at a 250 kHz intermediate frequency, while dissipating 1.45 mA from a 1.2 V supply.Peer Reviewe
A low power transceiver architecture for the 2.4 GHz ISM band using a 1.0 V supply is presented. It ...
Abstract—Mobile devices demand low-powerWiFi receivers for extended battery lifetime. This paper pre...
This paper describes a fully integrated low noise amplifier (LNA) + mixer + first filtering stage, s...
This work gives a design perspective on low-power and wideband RF-to-Baseband current-reuse receiver...
This paper addresses the design of high-Q passive inductors and differential transformers in a low-p...
[[abstract]]A low-power 2.4-GHz SiGe HBT receiver front-end for wireless sensor networks utilizing c...
[[abstract]]A low-power 2.4-GHz SiGe HBT receiver front-end for wireless sensor networks utilizing c...
A 2.4GHz receiver with +6dBm out-of-band IIP3 with only 2.4 mA current consumption is demonstrated. ...
This paper presents a 2.2 GHz receiver front-end capable of an extreme current reuse, where the low-...
A wideband and low-power RF-to-baseband (BB) current-reuse receiver (CRR) front-end is proposed, and...
In this paper, ultra-low-voltage and ultra-low-power circuit techniques are presented for CMOS RF fr...
A new topology of transformer based low noise amplifier is presented. The structure realizes a low n...
A low power transceiver architecture for the 2.4 GHz ISM band using a 1.0 V supply is presented. It ...
A2.4 GHz radio frequency receiver front end with an on-chip transformer compliant with IEEE802.11b/g...
In this paper, the design and analysis of a 28 GHz CMOS Low noise differential amplifier is discusse...
A low power transceiver architecture for the 2.4 GHz ISM band using a 1.0 V supply is presented. It ...
Abstract—Mobile devices demand low-powerWiFi receivers for extended battery lifetime. This paper pre...
This paper describes a fully integrated low noise amplifier (LNA) + mixer + first filtering stage, s...
This work gives a design perspective on low-power and wideband RF-to-Baseband current-reuse receiver...
This paper addresses the design of high-Q passive inductors and differential transformers in a low-p...
[[abstract]]A low-power 2.4-GHz SiGe HBT receiver front-end for wireless sensor networks utilizing c...
[[abstract]]A low-power 2.4-GHz SiGe HBT receiver front-end for wireless sensor networks utilizing c...
A 2.4GHz receiver with +6dBm out-of-band IIP3 with only 2.4 mA current consumption is demonstrated. ...
This paper presents a 2.2 GHz receiver front-end capable of an extreme current reuse, where the low-...
A wideband and low-power RF-to-baseband (BB) current-reuse receiver (CRR) front-end is proposed, and...
In this paper, ultra-low-voltage and ultra-low-power circuit techniques are presented for CMOS RF fr...
A new topology of transformer based low noise amplifier is presented. The structure realizes a low n...
A low power transceiver architecture for the 2.4 GHz ISM band using a 1.0 V supply is presented. It ...
A2.4 GHz radio frequency receiver front end with an on-chip transformer compliant with IEEE802.11b/g...
In this paper, the design and analysis of a 28 GHz CMOS Low noise differential amplifier is discusse...
A low power transceiver architecture for the 2.4 GHz ISM band using a 1.0 V supply is presented. It ...
Abstract—Mobile devices demand low-powerWiFi receivers for extended battery lifetime. This paper pre...
This paper describes a fully integrated low noise amplifier (LNA) + mixer + first filtering stage, s...