Invention Grant
- Patent Title: Optical module
- Patent Title (中): 光模块
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Application No.: US13580238Application Date: 2011-02-23
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Publication No.: US08768122B2Publication Date: 2014-07-01
- Inventor: Tadahiro Yamaji , Nobuyuki Asashi , Hiroyuki Yagyu , Yutaka Kinugasa , Takuya Matsumoto , Tsutomu Niiho
- Applicant: Tadahiro Yamaji , Nobuyuki Asashi , Hiroyuki Yagyu , Yutaka Kinugasa , Takuya Matsumoto , Tsutomu Niiho
- Applicant Address: JP Osaka
- Assignee: Panasonic Corporation
- Current Assignee: Panasonic Corporation
- Current Assignee Address: JP Osaka
- Agency: Wenderoth, Lind & Ponack, L.L.P.
- Priority: JP2010-036777 20100223; JP2010-215529 20100927
- International Application: PCT/JP2011/001039 WO 20110223
- International Announcement: WO2011/105078 WO 20110901
- Main IPC: G02B6/26
- IPC: G02B6/26

Abstract:
Disclosed is an optical module which improves optical coupling efficiency either when configured to receive an optical signal from an optical fiber with a light receiving element or when configured to receive an optical signal from a light emitting element with an optical fiber. The optical module includes: a substrate (1) having in the surface thereof a first groove (1a) and a second groove (1b) formed, with this second groove (1b) being configured to have a substantially V-shaped cross section formed deeper than the first groove and being formed in continuation from the first groove; and an internal waveguide (16) provided within the first groove (1a) of the substrate (1). The optical further modules a mirror portion (15) for changing an optical path, provided at the front end of the first groove (1a); an optical element (12a) mounted on the surface of the substrate (1) so as to face the mirror portion (15), and configured to emit an optical signal to a core (17) of the internal waveguide (16) via the mirror portion (15). Moreover, the optical module further includes an optical fiber (2) having a fiber cladding (22) placed within the second groove (1b) and a fiber core (21) optically connected to the core (17) of the internal waveguide (16).
Public/Granted literature
- US20120321250A1 OPTICAL MODULE Public/Granted day:2012-12-20
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