Results 121 to 130 of about 1,181 (174)
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Three-dimensional MMIC technology for low-cost millimeter-wave MMICs
IEEE Journal of Solid-State Circuits, 2001This paper highlights the key advantages of the three-dimensional (3-D) MMIC technology in the millimeter-wave frequency band and describes recently developed compact 3-D MMICs on GaAs and Si substrates. The 3-D MMIC technology offers high integration levels, compactness, simple design procedures, and short fabrication turn-around time, resulting in ...
Kenjiro Nishikawa +6 more
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Three-dimensional MMIC technology and application to millimeter-wave MMICs
1997 Topical Symposium on Millimeter Waves. Proceedings (Cat. No.97TH8274), 2002Three-dimensional MMIC is a significantly promising technology for accurate and easy design and low-cost fabrication of millimeter-wave MMICs. Passive circuit components and amplifiers in the 50 and 60-GHz bands are demonstrated.
T. Tokumitsu +4 more
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Application specific MMIC: a unique and affordable approach to MMIC development
IEEE 1988 Microwave and Millimeter-Wave Monolithic Circuits Symposium. Digest of Papers., 2003The authors argue that application-specific monolithic microwave integrated circuits (ASMMICs) promise to simplify the development process and hence reduce the development cost and risk for the high levels of integration possible with GaAs microwave integrated circuits.
E. Turner +6 more
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Development of MMIC rectenna at 24GHz
2013 IEEE Radio and Wireless Symposium, 2013Microwave Power Transmission (MPT) can be applied to a greater number of applications provided that higher frequency MPT systems are developed. In particular, we need high efficiency rectennas at higher frequencies. We developed a monolithic microwave integrated circuit (MMIC) rectenna with a resonant frequency of 24 GHz, with dimensions of 1 mm × 3 mm,
Ken Hatano +3 more
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MMIC technology for spectroscopy applications
SPIE Proceedings, 2010Millimeter-wave monolithic integrated circuit (MMIC) technology is now widely recognized as a key to many modern applications in safety and security, ranging from near and far-field imaging and sensing to non-invasive material inspection. In this paper, we apply our state-of-the-art MMIC technology to the analysis of gaseous media by spectroscopic ...
Kallfass, Ingmar +6 more
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International Journal of High Speed Electronics and Systems, 2003
In this paper, we describe two new DARPA initiatives addressing new concepts in compound semiconductor materials and architectures that will radically transform monolithic microwave integrated circuits (MMICs) technology to address future requirements for military and commercial sensors and mobile communication networks.
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In this paper, we describe two new DARPA initiatives addressing new concepts in compound semiconductor materials and architectures that will radically transform monolithic microwave integrated circuits (MMICs) technology to address future requirements for military and commercial sensors and mobile communication networks.
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Microelectronics Reliability, 2002
This paper presents a high performance RF CMOS technology with a complete portfolio of RF andbase band components for single-chip systems. Using an optimized0.13 lm CMOS topology, fT of 86 GHz and fmax of 73 GHz are obtained, in addition to a NFmin of 1.5 dB without ground-shielded signal pad.
Chun-Yen Chang 0002 +4 more
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This paper presents a high performance RF CMOS technology with a complete portfolio of RF andbase band components for single-chip systems. Using an optimized0.13 lm CMOS topology, fT of 86 GHz and fmax of 73 GHz are obtained, in addition to a NFmin of 1.5 dB without ground-shielded signal pad.
Chun-Yen Chang 0002 +4 more
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MMIC pioneers: A historical review of MMIC development at Raytheon
2009 IEEE MTT-S International Microwave Symposium Digest, 2009The latter part of the 20th century saw the birth and rapid development of monolithic microwave integrated circuit (MMIC) technology which dramatically changed the microwave industry. Raytheon Company was at the forefront of this development. This presentation gives a historical review of the pioneering MMIC technology work done at Raytheon.
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13th International Conference on Microwaves, Radar and Wireless Communications. MIKON - 2000. Conference Proceedings (IEEE Cat. No.00EX428), 2002
A new approach to the design of microwave monolithic integrated circuits (MMIC) is presented in this paper. The technology uses thick glass layers on the silicon in order to reduce parasitic capacitance introduced by metallic layers deposited on the dielectric layer of the MMIC.
W. Jablonski, J. Szczesny
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A new approach to the design of microwave monolithic integrated circuits (MMIC) is presented in this paper. The technology uses thick glass layers on the silicon in order to reduce parasitic capacitance introduced by metallic layers deposited on the dielectric layer of the MMIC.
W. Jablonski, J. Szczesny
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17th European Microwave Conference, 1987, 1987
Improved design and implementation techniques are proposed for microwave active transversal filters. The compact configuration is achieved by using only a single MESFET to produce the required gain and phase reversal. The realization is appropriate to discrete forms and, more importantly, to MMICs.
Michael Healy +2 more
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Improved design and implementation techniques are proposed for microwave active transversal filters. The compact configuration is achieved by using only a single MESFET to produce the required gain and phase reversal. The realization is appropriate to discrete forms and, more importantly, to MMICs.
Michael Healy +2 more
openaire +1 more source

