Title :
The Blixer, a Wideband Balun-LNA-I/Q-Mixer Topology
Author :
Blaakmeer, Stephan C. ; Klumperink, Eric A M ; Leenaerts, Domine M W ; Nauta, Bram
Author_Institution :
IC Design group, Univ. of Twente, Enschede, Netherlands
Abstract :
This paper proposes to merge an I/Q current-commutating mixer with a noise-canceling balun-LNA. To realize a high bandwidth, the real part of the impedance of all RF nodes is kept low, and the voltage gain is not created at RF but in baseband where capacitive loading is no problem. Thus a high RF bandwidth is achieved without using inductors for bandwidth extension. By using an I/Q mixer with 25% duty-cycle LO waveform the output IF currents have also 25% duty-cycle, causing 2 times smaller DC-voltage drop after IF filtering. This allows for a 2 times increase in the impedance level of the IF filter, rendering more voltage gain for the same supply headroom. The implemented balun-LNA-I/Q-mixer topology achieves > 18 dB conversion gain, a flat noise figure < 5.5 dB from 500 MHz to 7 GHz, IIP2 = +20 dBm and IIP3 = -3 dBm. The core circuit consumes only 16 mW from a 1.2 V supply voltage and occupies less than 0.01 mm2 in 65 nm CMOS.
Keywords :
CMOS integrated circuits; baluns; intermediate-frequency amplifiers; low noise amplifiers; Blixer; CMOS; DC-voltage drop; IF filtering; bandwidth extension; capacitive loading; conversion gain; core circuit; duty-cycle LO waveform; flat noise figure; output IF currents; size 65 nm; supply voltage; voltage gain; wideband balun-LNA-I/Q-mixer topology; Bandwidth; Baseband; Circuit topology; Filtering; Filters; Gain; Impedance; Inductors; Low voltage; Radio frequency; CMOS integrated circuits; RF transceiver; UHF integrated circuits; direct conversion; high-linearity mixer; linearity; low noise; low-noise amplifiers; low-power electronics; merged LNA and mixer; microwave integrated circuits; microwave receivers; multi-standard; noise canceling; noise cancellation; radio receivers; software defined radio; software radio; wideband LNA; wideband RF front-end; wideband matching; wideband receiver; zero IF;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2008.2004866