DocumentCode
898863
Title
Submillimeter-Wave Phasor Beam-Pattern Measurement Based on Two-Stage Heterodyne Mixing With Unitary Harmonic Difference
Author
Yuh-Jing Hwang ; Ramprasad Rao ; Ming-Tang Chen ; Tah-Hsiung Chu
Author_Institution
Acad. Sinica Taipei, Taipei
Volume
55
Issue
6
fYear
2007
fDate
6/1/2007 12:00:00 AM
Firstpage
1200
Lastpage
1208
Abstract
A near-field phasor beam measurement system is developed for the characterization of heterodyne receiver optics at submillimeter-wave frequencies. The system synthesizes a pair of submillimeter-wave signals as the RF and local oscillator (LO) sources from common reference sources. The synthesized harmonic numbers of the RF and LO sources are arranged with difference by one, which makes this a new configuration with a unitary harmonic difference. The coherent RF and LO signal are down-converted by the receiver under test, then mixed with the microwave-frequency common reference signal to generate the second-order IF signal around 100 MHz for amplitude and phase comparison. The amplitude and phase fluctuation of the measurement system at 683 GHz is within plusmn0.2 dB and plusmn4deg in a 1-h period, respectively. The system dynamic range at 683 and 250 GHz can be as high as 43 and 47 dB, respectively. The system is then used to measure the receiver beam patterns at 683 and 250 GHz with different RF transmitting probe antennas.
Keywords
measurement systems; phase measurement; submillimetre wave measurement; submillimetre wave oscillators; submillimetre wave receivers; RF oscillator sources; RF transmitting probe antennas; frequency 250 GHz; frequency 683 GHz; heterodyne receiver optics; local oscillator sources; microwave-frequency common reference signal; phasor beam measurement system; receiver beam patterns; submillimeter-wave phasor beam-pattern measurement; submillimeter-wave signals; time 1 h; two-stage heterodyne mixing; unitary harmonic difference; Frequency measurement; Local oscillators; Microwave generation; Optical mixing; Optical receivers; RF signals; Radio frequency; Signal synthesis; Submillimeter wave measurements; Testing; Frequency conversion; Gaussian beams; phase measurement; submillimeter-wave receivers;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2007.897843
Filename
4231336
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