DocumentCode :
1553771
Title :
An ultra-broad-band reflection-type phase-shifter MMIC with series and parallel LC circuits
Author :
Miyaguchi, Kenichi ; Hieda, Morishige ; Nakahara, Kazuhiko ; Kurusu, Hitoshi ; Nii, Masatoshi ; Kasahara, Michiaki ; Takagi, Tadashi ; Urasaki, Shuji
Author_Institution :
Inf. Technol. Res. & Dev. Center, Mitsubishi Electr. Corp., Kamakura, Japan
Volume :
49
Issue :
12
fYear :
2001
fDate :
12/1/2001 12:00:00 AM
Firstpage :
2446
Lastpage :
2452
Abstract :
An ultra-broad-band reflection-type phase shifter is proposed. Theoretically, the proposed phase shifter has frequency-independent characteristics in the case of 180° phase shift. The phase shifter is composed of a 3-dB hybrid coupler and a pair of novel reflective terminating circuits. The reflective terminating circuit switches two states of series and parallel LC circuits. Using an ideal circuit model without parasitic circuit elements, we have derived the determining condition of frequency independence of circuit elements. Extending the concept, we can also obtain a broad-band phase shifter for other phase difference as well. In this case, for a given phase difference and an operating frequency, we also derive a condition to obtain minimum variation of phase difference around the operating frequency. This enables the broad-band characteristics for arbitrary phase difference. The fabricated 180° reflective terminating circuit monolithic microwave integrated circuit (MMIC) has achieved a phase difference of 183° ± 3 over 0.5-30 GHz. The 180° phase-shifter MMIC has demonstrated a phase shift of 187° ± 7° over 0.5-20 GHz. The 90° reflective terminating circuit MMIC has performed a phase difference of 93° ± 7° over 4-12 GHz
Keywords :
MMIC phase shifters; equivalent circuits; field effect MMIC; 0.5 to 30 GHz; arbitrary phase difference; frequency-independent characteristics; hybrid coupler; ideal circuit model; parallel LC circuits; phase shifter MMIC; reflective terminating circuits; series LC circuits; ultra-broad-band reflection-type phase shifter; Coupling circuits; Frequency; Impedance; MMICs; Microwave integrated circuits; Monolithic integrated circuits; Phase shifters; Switches; Switching circuits; Wideband;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/22.971634
Filename :
971634
Link To Document :
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