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Department of Electrical Engineering and Computer Science
Information and Communication Engineering Research Center
1. Journal Articles
A Low Switching-Loss W-Band Radiometer Utilizing a Single-Pole-Double-Throw Distributed Amplifier in 0.13-mu m SiGe BiCMOS
Bi, Xiaojun
;
Arasu, M. Annamalai.
;
Zhu, Yao
;
Je, Minkyu
Department of Electrical Engineering and Computer Science
Information and Communication Engineering Research Center
1. Journal Articles
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Title
A Low Switching-Loss W-Band Radiometer Utilizing a Single-Pole-Double-Throw Distributed Amplifier in 0.13-mu m SiGe BiCMOS
Issued Date
2016-01
Citation
IEEE Transactions on Microwave Theory and Techniques, v.64, no.1, pp.226 - 238
Type
Article
Author Keywords
BiCMOS
;
cascaded noise figure
;
single-pole-double-throw (SPDT) switch
;
sub-terahertz imaging
;
transmission line loss
Keywords
Noise Figure
;
Noise Performance
;
Poles
;
Radiometers
;
Semiconducting Silicon
;
SENSITIVITY
;
Silicon Alloys
;
Single-Pole-Double-Throw (SPDT) Switch
;
Single-Pole Double-Throw Switches
;
Single Pole Double Throw
;
Sub-Terahertz Imaging
;
Switching
;
SYSTemS
;
Transmission Line Loss
;
Two-Dimensional Imaging
;
Amplifiers (Electronic)
;
BiCMOS
;
Broadband Amplifiers
;
Cascaded Noise Figure
;
CMOS
;
DESIGN
;
Dicke Radiometers
;
Distributed Amplifier
;
GAIN
;
IMAGING RECEIVER
;
Imaging Systems
;
Integration Time
;
Low Noise Amplifiers
;
Noise Equivalent Temperature Difference
ISSN
0018-9480
Abstract
This paper presents a low switching-loss Dicke radiometer for W-band passive imaging systems. The equivalent switching loss introduced by the passive single-pole-double-throw (SPDT) switch in the conventional radiometer is significantly reduced by the proposed single-pole-double-throw distributed amplifier (SPDT-DA), which leads to radical improvement on the receiver's noise performance. The Dicke radiometer consisting of a SPDT-DA, a four-stage low noise amplifier (LNA) and a power detector is fully integrated in a 0.13-μ SiGe BiCMOS chip. With the 0.93-dB equivalent switching loss at 91 GHz of the SPDT-DA, the total noise figure (NF) of 8.4 dB at 91 GHz is achieved by the SPDT-DA followed by the LNA. With a power consumption of 28.5 mW, the radiometer obtains an overall RF gain of 42 dB and a noise equivalent temperature difference (NETD) of 0.21 K with 30-ms integration time. The two-dimensional imaging experiment with object distance of 0.7 m is successfully carried out with the radiometer chip. © 2015 IEEE.
URI
http://hdl.handle.net/20.500.11750/2559
DOI
10.1109/TMTT.2015.2504499
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
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