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公开(公告)号:GB2147412B
公开(公告)日:1987-06-03
申请号:GB8422229
申请日:1984-09-03
Applicant: UNITED TECHNOLOGIES CORP
Inventor: MELTZ GERALD , ALLEN LOUIS BENTON , FERRAR CARL MCALVAY
Abstract: An integrated optical pressure transducer having a diaphragm fabricated from a low-loss glass is positioned at the location where pressure changes are to be measured. An optical waveguide loop formed on one surface of the diaphragm acts as a ring cavity in which the difference between the resonating frequencies varies with pressure but not with temperature. Light energy is coupled into the waveguide loop from an optical source through a tangentially located input waveguide. An output waveguide, also tangentially located, couples light energy from the waveguide loop to a broadband detector so that the changes in frequency spectrum of the resonating frequencies within the waveguide loop can be monitored.
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公开(公告)号:GB2147412A
公开(公告)日:1985-05-09
申请号:GB8422229
申请日:1984-09-03
Applicant: UNITED TECHNOLOGIES CORP
Inventor: MELTZ GERALD , ALLEN LOUIS BENTON , FERRAR CARL MCALVAY
Abstract: An integrated optical pressure transducer having a diaphragm fabricated from a low-loss glass is positioned at the location where pressure changes are to be measured. An optical waveguide loop formed on one surface of the diaphragm acts as a ring cavity in which the difference between the resonating frequencies varies with pressure but not with temperature. Light energy is coupled into the waveguide loop from an optical source through a tangentially located input waveguide. An output waveguide, also tangentially located, couples light energy from the waveguide loop to a broadband detector so that the changes in frequency spectrum of the resonating frequencies within the waveguide loop can be monitored.
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公开(公告)号:AU3301684A
公开(公告)日:1985-07-04
申请号:AU3301684
申请日:1984-09-13
Applicant: UNITED TECHNOLOGIES CORP
Inventor: MELTZ GERALD , ALLEN LOUIS BENTON , FERRAR CARL MCALVAY
Abstract: An integrated optical pressure transducer having a diaphragm fabricated from a low-loss glass is positioned at the location where pressure changes are to be measured. An optical waveguide loop formed on one surface of the diaphragm acts as a ring cavity in which the difference between the resonating frequencies varies with pressure but not with temperature. Light energy is coupled into the waveguide loop from an optical source through a tangentially located input waveguide. An output waveguide, also tangentially located, couples light energy from the waveguide loop to a broadband detector so that the changes in frequency spectrum of the resonating frequencies within the waveguide loop can be monitored.
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