A wideband noise-cancelling low-noise amplifier (LNA) combining resistor feedback and source-follower feedback (SFF) is proposed. The SFF facilitates upsizing of the feedback resistor to improve the gain and noise figure (NF), without compromising the input-impedance matching. Another benefit is that the noise contributions of both the feedback resistor and noise-cancelling transistors are significantly reduced. Fabricated in 65-nm CMOS, the LNA exhibits a voltage gain of 16.8 dB, and a flat NF of 3.3 ± 0.45 dB over a −3-dB bandwidth of 0.5 to 7 GHz. The power consumption is 11.3 mW at 1.2 V, and the die area is 0.044 mm2MOE (Min. of Education, S’pore)Accepted versio
Abstract—A wide-band (10~18GHz) low noise amplifier(LNA) is presented. With transformer feedback in ...
LNA's (Low Noise Amplifier) are widely used in wireless portable personal communication systems; the...
In this paper, a wide-band noise-canceling (NC) current conveyor (CC)-based CMOS low-noise amplifier...
Currently, wideband receiver had become a highly popular research topic because of its capability to...
Well-known elementary wide band amplifiers suffer from a fundamental trade-off between noise factor ...
A noise-cancelling technique in a wideband LNA achieves low noise figure (NF) and source impedance m...
In recent decades, the demands for radio frequency (RF) front-ends supporting a multiplicity of band...
Copyright © 2015 ISSR Journals. This is an open access article distributed under the Creative Common...
The attempt made in the paper shows an innovative designing for the enhancement and reliability in C...
[[abstract]]This paper presents a noise suppression technique that is based on the feedback topology...
Abstract—Known elementary wide-band amplifiers suffer from a fundamental tradeoff between noise figu...
A 3-10 GHz self-biased low-noise amplifier (LNA) implemented in Global Foundries 65 nm CMOS process ...
[[abstract]]This paper presents a wideband low-noise amplifier (LNA) based on the cascode configurat...
Modern fully integrated receiver architectures, require inductorless circuits to achieve their poten...
[[abstract]]This paper presents a wideband low-noise amplifier (LNA) based on the cascode configurat...
Abstract—A wide-band (10~18GHz) low noise amplifier(LNA) is presented. With transformer feedback in ...
LNA's (Low Noise Amplifier) are widely used in wireless portable personal communication systems; the...
In this paper, a wide-band noise-canceling (NC) current conveyor (CC)-based CMOS low-noise amplifier...
Currently, wideband receiver had become a highly popular research topic because of its capability to...
Well-known elementary wide band amplifiers suffer from a fundamental trade-off between noise factor ...
A noise-cancelling technique in a wideband LNA achieves low noise figure (NF) and source impedance m...
In recent decades, the demands for radio frequency (RF) front-ends supporting a multiplicity of band...
Copyright © 2015 ISSR Journals. This is an open access article distributed under the Creative Common...
The attempt made in the paper shows an innovative designing for the enhancement and reliability in C...
[[abstract]]This paper presents a noise suppression technique that is based on the feedback topology...
Abstract—Known elementary wide-band amplifiers suffer from a fundamental tradeoff between noise figu...
A 3-10 GHz self-biased low-noise amplifier (LNA) implemented in Global Foundries 65 nm CMOS process ...
[[abstract]]This paper presents a wideband low-noise amplifier (LNA) based on the cascode configurat...
Modern fully integrated receiver architectures, require inductorless circuits to achieve their poten...
[[abstract]]This paper presents a wideband low-noise amplifier (LNA) based on the cascode configurat...
Abstract—A wide-band (10~18GHz) low noise amplifier(LNA) is presented. With transformer feedback in ...
LNA's (Low Noise Amplifier) are widely used in wireless portable personal communication systems; the...
In this paper, a wide-band noise-canceling (NC) current conveyor (CC)-based CMOS low-noise amplifier...