发明公开
EP2688203A2 Multiple-output transconductance amplifier based instrumentation amplifier 审中-公开
Instrumentenverstärkerauf der Grundlage eines Transkonduktanz-Verstärkersmit Mehrfachausgabe

  • 专利标题: Multiple-output transconductance amplifier based instrumentation amplifier
  • 专利标题(中): Instrumentenverstärkerauf der Grundlage eines Transkonduktanz-Verstärkersmit Mehrfachausgabe
  • 申请号: EP13174997.0
    申请日: 2013-07-03
  • 公开(公告)号: EP2688203A2
    公开(公告)日: 2014-01-22
  • 发明人: Werking, Paul M.
  • 申请人: Honeywell International Inc.
  • 申请人地址: Patent Services M/S AB/2 101 Columbia Road P.O Box 2245 Morristown, NJ 07962-2245 US
  • 专利权人: Honeywell International Inc.
  • 当前专利权人: Honeywell International Inc.
  • 当前专利权人地址: Patent Services M/S AB/2 101 Columbia Road P.O Box 2245 Morristown, NJ 07962-2245 US
  • 代理机构: Houghton, Mark Phillip
  • 优先权: US201213553503 20120719
  • 主分类号: H03F3/45
  • IPC分类号: H03F3/45
Multiple-output transconductance amplifier based instrumentation amplifier
摘要:
This disclosure is directed to devices and integrated circuits for instrumentation amplifiers. In one example, an instrumentation amplifier device uses two non-inverted outputs of a first multiple-output transconductance amplifier, and a non-inverted output and an inverted output of a second multiple-output transconductance amplifier. Both multiple-output transconductance amplifiers have a non-inverted output connected to an inverting input, and a noninverting input connected to a respective input voltage terminal. A first resistor is connected between the inverting inputs of both multiple-output transconductance amplifiers. The outputs of both multiple-output transconductance amplifiers are connected together, connected through a second resistor to ground, and connected to an output voltage terminal. In other examples, two pairs of outputs from triple-output transconductance amplifiers are connected to provide two voltage output terminals, and may also be connected to buffers or a differential amplifier. These provide various advantages over traditional instrumentation amplifiers.
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