DocumentCode
1458154
Title
Line-loss and size reduction techniques for millimeter-wave RF front-end boards by using a polyimide/alumina-ceramic multilayer configuration
Author
Nakatsugawa, Masashi ; Kanda, Atsushi ; Okazaki, Hiroshi ; Nishikawa, Kenjiro ; Muraguchi, Masahiro
Author_Institution
California Inst. of Technol., Pasadena, CA, USA
Volume
45
Issue
12
fYear
1997
fDate
12/1/1997 12:00:00 AM
Firstpage
2308
Lastpage
2315
Abstract
This paper proposes a concept for constructing low-loss and small-size millimeter-wave RF front-end boards by using a polyimide/alumina-ceramic multilayer configuration. The thick polyimide layer enables us to design low-loss wide microstrip lines (MS´s). Moreover, the board size can be reduced by compactly arranging all RF and dc lines in the intermediate layers of the polyimide/alumina-ceramic substrate. The size of a prototype board designed for the quasi-millimeter-wave region is 30 mm×30 mm. In experiments, it showed 23.2-dB linear gain and 7.4-dBm P-1 RF output power in transmitter (TX) mode, and 3.1-dB linear gain and -20.1-dBm P-1 IF output power in receiver (RX) mode. These performance levels agree well with predicted values. This paper further discusses applications to the integration of passive circuits fabricated in the substrate. The proposed configuration has enough potential to integrate all monolithic microwave integrated circuit (MMIC) chips, dc-bias integrated circuits (IC´s), and passive circuits, and can improve the total performance in terms of the RF characteristics, board size, and fabrication cost
Keywords
MMIC; alumina; ceramics; losses; microstrip lines; millimetre wave receivers; polymer films; radio transmitters; substrates; 23.2 dB; 3.1 dB; 30 mm; Al2O3; DC-bias integrated circuit; IF output power; MMIC chip; RF output power; linear gain; loss; microstrip line; millimeter-wave RF front-end board; passive circuit integration; polyimide/alumina-ceramic multilayer substrate; receiver; size; transmitter; Gain; MMICs; Microwave integrated circuits; Millimeter wave technology; Monolithic integrated circuits; Passive circuits; Polyimides; Power generation; Radio frequency; Radiofrequency integrated circuits;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/22.643834
Filename
643834
Link To Document