In this paper we present a transmit and receive MMIC for FMCW radar. The transmitter consisting of a frequency multiplier-by-three and a power amplifier featuring a high output power of 7dBm with a 60 GHz 3-dB RF-bandwidth. The receiver is designed to be highly linear over a LO and RF bandwidth from 235 to 285 GHz. It employs a frequency tripler and a power amplifier as driver stage for a passive I/Q downconverter which enables an image reject architecture. To ensure linear operation and improve the overall receiver noise an input amplifier stage with an input referred 1-dB compression point exceeding -3dBm is also integrated. The chipset is realized in a 35nm metamorphic high electron mobility transistor technology
In this paper, we present the development of a W-band power amplifier (PA) circuit and a G-band low-...
Wireless data communication is pushing towards 60 GHz and will most likely be served by SiGe and Com...
Two fully integrated H-band (220–325 GHz) submillimeter-wave monolithic integrated circuit (S-MMIC)h...
In this paper, we present the development of a millimeter-wave monolithic integrated circuit (MMIC) ...
In this paper, a compact 94 GHz frequency-modulated continuous-wave (FMCW) radar monolithic microwav...
In this paper, a compact 94 GHz frequency-modulated continuous-wave (FMCW) radar monolithic microwav...
In this paper, we present the development of advanced W-band and G-band millimeter-wave monolithic i...
For the next generation of sensors and communication systems operating at frequencies up to 600 GHz ...
We present a solution where one single LO chain is used to feed a homodyne FMCW radar transceiver. A...
We present a solution where one single LO chain is used to feed a homodyne FMCW radar transceiver. A...
In this paper a monostatic frequency-modulated continuous-wave (FMCW) radar system around a center f...
W-band radar systems for automotive applications have focused interest on cost effective integrated ...
Two H-band frequency multiplier MMICs, a frequency doubler and tripler, are presented. Both circuits...
In this paper we present coplanar MMICs based on both, metamorphic (MHEMT) and pseudomorphic (PHEMT)...
For broadband radar applications in the W-Band or beyond we present a frequency multiplier-by-twelve...
In this paper, we present the development of a W-band power amplifier (PA) circuit and a G-band low-...
Wireless data communication is pushing towards 60 GHz and will most likely be served by SiGe and Com...
Two fully integrated H-band (220–325 GHz) submillimeter-wave monolithic integrated circuit (S-MMIC)h...
In this paper, we present the development of a millimeter-wave monolithic integrated circuit (MMIC) ...
In this paper, a compact 94 GHz frequency-modulated continuous-wave (FMCW) radar monolithic microwav...
In this paper, a compact 94 GHz frequency-modulated continuous-wave (FMCW) radar monolithic microwav...
In this paper, we present the development of advanced W-band and G-band millimeter-wave monolithic i...
For the next generation of sensors and communication systems operating at frequencies up to 600 GHz ...
We present a solution where one single LO chain is used to feed a homodyne FMCW radar transceiver. A...
We present a solution where one single LO chain is used to feed a homodyne FMCW radar transceiver. A...
In this paper a monostatic frequency-modulated continuous-wave (FMCW) radar system around a center f...
W-band radar systems for automotive applications have focused interest on cost effective integrated ...
Two H-band frequency multiplier MMICs, a frequency doubler and tripler, are presented. Both circuits...
In this paper we present coplanar MMICs based on both, metamorphic (MHEMT) and pseudomorphic (PHEMT)...
For broadband radar applications in the W-Band or beyond we present a frequency multiplier-by-twelve...
In this paper, we present the development of a W-band power amplifier (PA) circuit and a G-band low-...
Wireless data communication is pushing towards 60 GHz and will most likely be served by SiGe and Com...
Two fully integrated H-band (220–325 GHz) submillimeter-wave monolithic integrated circuit (S-MMIC)h...