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[미국특허] Folded cascode amplifier with rail-to-rail common-mode range 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H03F-003/45
출원번호 US-0124694 (1987-11-24)
발명자 / 주소
  • Hsu Wei-Chan (Plano TX) Krenik William R. (Dallas TX) Hellums James R. (Arlington TX)
출원인 / 주소
  • Texas Instruments Incorporated (Dallas TX 02)
인용정보 피인용 횟수 : 49  인용 특허 : 1

초록

A folded cascode amplifier with rail-to-rail common-mode range utilizes a fully differential input with two sets of input common source amplifier devices to allow rail-to-rail common-mode range. The first set of devices utilizes N-channel transistors (28) and (32) to provide operation in one directi

대표청구항

A folded cascode differential amplifier with rail-to-rail common-node range, comprising: a positive supply rail; a negative supply rail; first common source circuitry for converting a differential input voltage to a first differential current and operable to said positive rail; second common source

이 특허에 인용된 특허 (1)

  1. Hamley James P. (2922 Cottonwood Dr. South Mill Creek WA 98012), Audio amplifier.

이 특허를 인용한 특허 (49)

  1. Chen Marcellus R., Adaptive operational amplifier offset voltage trimming system.
  2. MacBeth Ian,GBX, Amplifier circuit.
  3. Bapat, Sumant; Bhatt, Ansuya P.; Sharma, Surya; Visweswaran, Gangaikondan Subramani, Apparatus and method for low power rail-to-rail operational amplifier.
  4. Wood,Neil E., Apparatus for biasing a complementary metal-oxide semiconductor differential amplifier.
  5. Zhang Michael Y. ; Bezzam Ignatius, CMOS rail-to-rail input/output amplifier.
  6. John W. Fattaruso ; Daramana G. Gata, Common mode feedback bias for low voltage opamps.
  7. Hojabri Peyman, Complementary CMOS differential amplifier circuit.
  8. Kennedy Joseph T. ; Mooney Stephen R. ; Martin Aaron K. ; Nair Rajendran, Complementary input self-biased differential amplifier with gain compensation.
  9. Michail Michel S. ; Pricer Wilbur David, Compound cascode amplifier.
  10. Hollis, Timothy; Keeth, Brent, Devices and methods for driving a signal off an integrated circuit.
  11. Hollis, Timothy; Keeth, Brent, Devices and methods for driving a signal off an integrated circuit.
  12. Mitarashi,Mutsumi, Differential input circuit.
  13. Wang, Shoujun; Tao, Yuming; Bereza, William; Kwasniewski, Tad, Dual-mode LVDS/CML transmitter methods and apparatus.
  14. McIntyre Harry J. (Los Angeles CA), Folded cascode amplifier.
  15. Graeme Jerald G. ; Kolluri Madhav V., Folded-cascode amplifier stage.
  16. Leung Ka Yin, Fully differential high gain cascode amplifier.
  17. Tran Hieu V. (San Jose CA), Fully differential output CMOS power amplifier.
  18. Graeme Jerald G., High-gain common-emitter output stage.
  19. Sauer Donald R., Input to output stage interface with virtual ground circuitry for rail to rail comparator.
  20. Ng,Bee Yee; Wong,Choong Kit; Ang,Boon Jin, LVDS output buffer pre-emphasis methods and apparatus.
  21. Lu,Chih Wen; Xiao,Peter H., Low DC power rail-to-rail buffer amplifier for liquid crystal display application.
  22. Chung, Kyu-young, Low power operational amplifier.
  23. Migliavacca Paolo,FRX, Low supply voltage comparator in BICMOS technology.
  24. To Hing Yan ; Javanifard Jahanshir J. ; Eng Michelle Y., Low voltage programmable complementary input stage sense amplifier.
  25. Mole,Peter J., Methods for extracting the mean (common mode) voltage of two input signals.
  26. Kindt,Willem Johannes, Offset trim circuit and method for a constant-transconductance rail-to-rail CMOS input circuit.
  27. Hiroyuki Yamauchi JP; Yutaka Terada JP, Offsetting comparator device and comparator circuit.
  28. Fumihiko Kato JP, Operational amplifier.
  29. Suzuki, Hisao, Operational amplifier circuit.
  30. Suzuki, Hisao, Operational amplifier circuit.
  31. Suzuki, Hisao, Operational amplifier circuit.
  32. Hirokazu Kasuya JP; Mituhiro Saitou JP, Operational amplifier designed to have increased output range.
  33. Krenik William R. (Garland TX) Izzi Louis J. (Plano TX), Output buffer circuits with controlled Miller effect capacitance.
  34. Ono, Koichi; Shimizu, Hirotaka; Takeda, Masashi, Parallel AD converter.
  35. Nguyen, Khai; Wang, Xiaobao; Kim, In Whan; Sung, Chiakang; Cliff, Richard G; Huang, Joseph; Wang, Bonnie I; Yeung, Wayne, Programmable logic integrated circuit devices with low voltage differential signaling capabilities.
  36. Nguyen,Khai; Wang,Xiaobao; Kim,In Whan; Sung,Chiakang; Cliff,Richard G; Huang,Joseph; Wang,Bonnie I; Yeung,Wayne, Programmable logic integrated circuit devices with low voltage differential signaling capabilities.
  37. King, Greg, Pseudo-differential output driver with high immunity to noise and jitter.
  38. King,Greg, Pseudo-differential output driver with high immunity to noise and jitter.
  39. Hasegawa, Kazuhiro, Rail-to-rail amplifier circuit and semiconductor device.
  40. Vadim V. Ivanov ; Gregory H. Johnson, Rail-to-rail input/output operational amplifier and method.
  41. Mole, Peter J., Rail-to-rail operational amplifier circuits to extract the mean (common mode) voltage of two input signals.
  42. Schulte Donald Joseph ; Strom James David, Self biased low-voltage differential signal detector.
  43. Masuda, Makoto, Signal conversion circuit and rail-to-rail circuit.
  44. Mooney, Stephen R.; Kennedy, Joseph T.; Chansungsan, Chaiyuth; Nag, Prantik K., Slew rate control circuit.
  45. Stephen R. Mooney ; Joseph T. Kennedy ; Chaiyuth Chansungsan ; Prantik K. Nag, Slew rate control circuit.
  46. Li, Zhongmin; Rasmussen, Bryce, Symmetric and complementary differential amplifier.
  47. Hong Kuk-Tae,KRX, Transconductance control circuit for rail-to-rail (RTR) differential input terminal.
  48. Hwang,Jong Tae; Kim,Dong Hwan; Lee,Yun Kee, Transconductance control circuit of rail-to-rail differential input stages.
  49. Boerstler David, Voltage controlled current source for low voltage applications.

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