56 results on '"Allen, B.R."'
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2. High-linearity, low DC power monolithic GaAs HBT broadband amplifiers to 11 GHz.
3. A quenchable GaAs HBT X-band VCO for switched band synthesizer architectures.
4. A single-chip W-band transceiver with front-end switching receiver for FMCW radar applications.
5. A class of monolithic HBT multipliers.
6. Development of low phase noise millimeter-wave sources using MMIC technology.
7. A novel W-band monolithic push-pull power amplifier.
8. W-band monolithic single sideband transceiver for automotive radar applications.
9. A monolithic 1/spl times/2 W-band four-stage low noise amplifier array [for antennas and FPA].
10. High-linearity, low DC power GaAs HBT broadband amplifiers to 11 GHz.
11. 12-40 GHz low harmonic distortion and phase noise performance of GaAs heterojunction bipolar transistors.
12. Low phase noise millimeter-wave frequency sources using InP based HBT technology.
13. MMIC-based W-band Dicke switched direct-detection receiver.
14. Monolithic millimeter-wave Schottky-diode-based frequency converters with low drive requirements using an InP HBT-compatible process.
15. A W-band direct-detection radiometric imaging array.
16. A novel monolithic balanced switching low noise amplifier.
17. Low phase noise millimeter-wave frequency sources using InP-based HBT MMIC technology.
18. Novel W-band monolithic push-pull power amplifiers.
19. A monolithic Ka-band 0.25 mu m GaAs MESFET transmitter for high volume production.
20. A W-band source module using MMIC's.
21. Novel monolithic multifunctional balanced switching low-noise amplifiers.
22. Cryogenic characteristics of wide-band pseudomorphic HEMT MMIC low-noise amplifiers.
23. A W-band image-rejection downconverter.
24. High-performance in W-band monolithic pseudomorphic InGaAs HEMT LNA's and design/analysis methodology.
25. A Ka-band monolithic single-chip transceiver using sub-harmonic mixer.
26. 160-190-GHz monolithic low-noise amplifiers.
27. A 62-GHz monolithic InP-based HBT VCO.
28. A 94-GHz monolithic balanced power amplifier using 0.1-/spl mu/m gate GaAs-based HEMT MMIC production process technology.
29. Monolithic 23.5 to 94 GHz frequency quadrupler using 0.1 /spl mu/m pseudomorphic AlGaAs/InGaAs/GaAs HEMT technology.
30. High-yield W-band monolithic HEMT low-noise amplifier and image rejection downconverter chips.
31. A 6-21-GHz monolithic HEMT 2*3 matrix distributed amplifier.
32. A W-band monolithic 175-mW power amplifier
33. High-linearity, low DC power monolithic GaAs HBT broadband amplifiers to 11 GHz
34. A novel W-band monolithic push-pull power amplifier
35. A single-chip W-band transceiver with front-end switching receiver for FMCW radar applications
36. Wideband AlGaN/GaN HEMT low noise.amplifier for highly survivable receiver electronics
37. A single-chip W-band transceiver with front-end switching receiver for FMCW radar applications
38. W-band monolithic single sideband transceiver for automotive radar applications
39. MMIC-based W-band Dicke switched direct-detection receiver
40. Monolithic millimeter-wave Schottky-diode-based frequency converters with low drive requirements using an InP HBT-compatible process
41. Low phase noise millimeter-wave frequency sources using InP based HBT technology
42. A monolithic W-band high-gain LNA/detector for millimeter wave radiometric imaging applications
43. Hot carrier effect on power performance in GaAs PHEMT MMIC power amplifiers.
44. Wideband AlGaN/GaN HEMT low noise amplifier for highly survivable receiver electronics.
45. A high efficiency V-band monolithic HEMT power amplifier.
46. Testability and yield of MMICs.
47. 120 and 60 GHz monolithic InP-based HEMT diode sub-harmonic mixer.
48. An advanced single-chip Ka-band transceiver.
49. Large scale W-band focal plane array for passive radiometric imaging.
50. A W-band source module using MMICs.
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