- 专利标题: OPTICAL MICROPHONE ASSEMBLY
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申请号: US17441947申请日: 2020-03-20
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公开(公告)号: US20220167096A1公开(公告)日: 2022-05-26
- 发明人: Matthieu LaColle , Håkon Sagberg , Jakob Vennerød
- 申请人: SensiBel AS
- 申请人地址: NO Oslo
- 专利权人: SensiBel AS
- 当前专利权人: SensiBel AS
- 当前专利权人地址: NO Oslo
- 优先权: GB1904005.4 20190322
- 国际申请: PCT/GB2020/050765 WO 20200320
- 主分类号: H04R23/00
- IPC分类号: H04R23/00 ; H04R1/02 ; B81B3/00
摘要:
An optical microphone assembly including a micro-electromechanical system (MEMS) component, a semiconductor chip, and an outer housing including at least part of a non-MEMS supporting structure and defining an aperture. The MEMS component includes an interferometric arrangement which includes a membrane and at least one optical element spaced from the membrane. The semiconductor chip includes at least one photo detector and a light source. The MEMS component is mounted on the non-MEMS supporting structure and sealed to the outer housing such that the MEMS component closes the aperture. The semiconductor chip is mounted separately from the MEMS component on the non-MEMS supporting structure in a spaced relationship with the MEMS component such that the MEMS component is displaced relative to the semiconductor chip in a direction perpendicular to a reflecting surface of the membrane. The light source is arranged to provide light to the interferometric arrangement such that a first portion of the light propagates along a first optical path via the interferometric arrangement, and a second portion of the light propagates along a second, different optical path via the interferometric arrangement such that at least one of the first and second portions is reflected by the reflecting surface of the membrane, thereby giving rise to an optical path difference between the first and second optical paths which depends on a distance between the membrane and the optical element. The at least one photo detector is arranged to detect at least part of an interference pattern generated by the first and second portions of light dependent on the optical path difference.
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