2006 Bipolar/BiCMOS Circuits and Technology Meeting 2006
DOI: 10.1109/bipol.2006.311132
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A 77 GHz (W-band) SiGe LNA with a 6.2 dB Noise Figure and Gain Adjustable to 33 dB

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Cited by 27 publications
(5 citation statements)
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“…Compared to previous work [4], this is the first improved single-ended cascode SiGe 77~79 GHz LNA. The input P 1dB is up to -20 dBm which is much higher than the latest reported result -40 dBm in [7]. The separate measurement of the mixer at 79 GHz shows 7 dB gain and 18.72 dB NF, the input P 1dB compression point is -12 dBm which covers the linear range of signal from LNA and shows better linearity than the reported result -30 dBm in [2].…”
Section: Measurement Resultscontrasting
confidence: 56%
“…Compared to previous work [4], this is the first improved single-ended cascode SiGe 77~79 GHz LNA. The input P 1dB is up to -20 dBm which is much higher than the latest reported result -40 dBm in [7]. The separate measurement of the mixer at 79 GHz shows 7 dB gain and 18.72 dB NF, the input P 1dB compression point is -12 dBm which covers the linear range of signal from LNA and shows better linearity than the reported result -30 dBm in [2].…”
Section: Measurement Resultscontrasting
confidence: 56%
“…In simulation, the LNA exhibits a noise figure of 5.8 dB while offering a gain of 9.5 dB. Comparing these simulations to literature [17], it can be seen that the LNA's performance is state of the art. As already discussed for the TX path, pad capacitance and bond wire inductance have been considered for matching the RX input.…”
Section: Circuit Designmentioning
confidence: 67%
“…The state-of-the-art demonstrates silicon circuits in W-band such as LNA, PA and mixer at 77GHz [4]- [7], and 94GHz [8]- [10], and 77GHz receivers and transmitters [11]- [15]. Concerning building block implementation, two kinds of design are reported: distributed [2] [4] [5] [11]- [14] and lumped [6] [10] [15].…”
Section: Introductionmentioning
confidence: 99%