This paper presents the first quadrature RF receiver front-end where, in a single stage, low-noise amplifier (LNA), mixer and voltage-controlled oscillator (VCO) share the same bias current. The new structure exploits the intrinsic mixing functionality of a classical LC tank oscillator providing a compact and low-power solution compatible with low-voltage technologies. A 0.13-mu m CMOS prototype tailored to the GPS application is presented. The experimental results exhibit a noise figure of 4.8 dB, a gain of 36 dB, an IIp3 of -19 dBm with a total power consumption of only 5.4 mW from a voltage supply of 1.2 V
Abstract—The thorough analysis and the design of a complete 2.2 GHz quadrature receiver front-end su...
This paper describes a new switching topology of a sampling mixer for SAW-less GPS (L1 band) receive...
With the proliferation of wireless standards and frequency bands, the manufacturers of consumer elec...
This paper presents the first quadrature RF receiver front-end where, in a single stage, low-noise a...
This paper presents the first quadrature RF receiver front-end where, in a single stage, low-noise a...
This paper presents the first quadrature RF receiver front-end where, in a single stage, low-noise a...
Abstract—This paper presents a low-power, single-stage, and variable-gain controlled double-balanced...
This paper proposes three kinds of single stage RF front-end, called quadrature LMVs (QLMVs), by mer...
A GPS RF front-end combines the LNA, mixer, and VCO in a single stage and can operate from a 1.2V su...
This paper proposes three kinds of single stage RF front-end, called quadrature LMVs (QLMVs), by mer...
This article presents the theory and implementation of a quadrature and differential RF front-end re...
This paper proposes three types of single stage low-power RF front-end, called double-balanced LMVs,...
The thorough analysis and the design of a complete 2.2 GHz quadrature receiver front-end suited for ...
The mass production of integrated circuits for digital electronics has made CMOS technology the most...
In the design of a single chip for wireless-sensor-network and WPAN applications (e.g., IEEE 802.15....
Abstract—The thorough analysis and the design of a complete 2.2 GHz quadrature receiver front-end su...
This paper describes a new switching topology of a sampling mixer for SAW-less GPS (L1 band) receive...
With the proliferation of wireless standards and frequency bands, the manufacturers of consumer elec...
This paper presents the first quadrature RF receiver front-end where, in a single stage, low-noise a...
This paper presents the first quadrature RF receiver front-end where, in a single stage, low-noise a...
This paper presents the first quadrature RF receiver front-end where, in a single stage, low-noise a...
Abstract—This paper presents a low-power, single-stage, and variable-gain controlled double-balanced...
This paper proposes three kinds of single stage RF front-end, called quadrature LMVs (QLMVs), by mer...
A GPS RF front-end combines the LNA, mixer, and VCO in a single stage and can operate from a 1.2V su...
This paper proposes three kinds of single stage RF front-end, called quadrature LMVs (QLMVs), by mer...
This article presents the theory and implementation of a quadrature and differential RF front-end re...
This paper proposes three types of single stage low-power RF front-end, called double-balanced LMVs,...
The thorough analysis and the design of a complete 2.2 GHz quadrature receiver front-end suited for ...
The mass production of integrated circuits for digital electronics has made CMOS technology the most...
In the design of a single chip for wireless-sensor-network and WPAN applications (e.g., IEEE 802.15....
Abstract—The thorough analysis and the design of a complete 2.2 GHz quadrature receiver front-end su...
This paper describes a new switching topology of a sampling mixer for SAW-less GPS (L1 band) receive...
With the proliferation of wireless standards and frequency bands, the manufacturers of consumer elec...