EP1363328A2

Optical module and optical transceiver module

Abstract

An optical module includes a light-receiving or light-emitting sub-module (TM), wiring board (WB), and package (P). The light-receiving or light-emitting sub-module has a device portion (201) and guide portion. The device portion has a stem (211), a plurality of lead pins (223,224), and a semiconductor optical device. The wiring board (WB) is placed so that one end is located near the stem (211). Some lead pins extend straight and are connected to wirings on the wiring board. The package (P) accommodates the device portion (201) and wiring board (WB). Since the package is made of a metal, the leakage of signals transmitted through the device portion (201) and wiring board is suppressed. In addition, since the end of the wiring board (WB) is located near the stem (211), a short signal transmission path is formed between the wiring board and the optical device, thereby suppressing attenuation of the transmitted signals.

EP1363328A2, drawing sheet 1
Sheet 1 of 15

Term

Term ended

Projected expiry passed 13 May 2023, 3.4 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

16 claims: 6 independent, 10 dependent

  1. 1
    An optical module comprising:a semiconductor optical device;a stem having a mounting surface on which said semiconductor optical device is mounted, and a back surface opposite to the mounting surface;a plurality of lead pins inserted into said stem, each lead pin having a first end portion which is exposed on said mounting surface, and a second end portion protruding from said back surface;a sleeve having a first end portion to which said stem is fixed and a second end portion having an opening into which a ferrule is to be inserted;a wiring board having an end portion located near said back surface and a plurality of wirings extending to said end portion of said wiring board, said second end portions of said plurality of lead pins being connected to said wirings;and a package for enclosing said first end portion of said sleeve and said wiring board, said package having a base and a lid.
  2. 9
    A module according to any one of the preceding claims, wherein a pair of protrusions for fixing said base to an external board are provided on said base, said pair of protrusions being provided at only two positions 180° rotationally symmetric about a center of said base.
  3. 10
    A module according to any one of the preceding claims, wherein said base comprises:a substantially flat contact surface which abuts an external board when said base is fixed to said external board;and a pair of protrusions protruding in opposite directions from said base, each protrusion having a hole for fastening said base to said external board, and a bottom surface substantially flush with said contact surface, and    wherein said pair of protrusions is provided at only two positions 180° rotationally symmetric about an axis which is perpendicular to said contact surface and extends through a center of said package.
  4. 11
    A module according to any one of the preceding claims, wherein one of said plurality of lead pins is a signal pin for transmitting an output signal from said semiconductor optical device or an input signal to said semiconductor optical device,    wherein said wirings includes a signal wiring connected to said signal pin, and ground wirings provided on both sides of said signal wiring, and    wherein said wiring board further includes an auxiliary wiring member for electrically connecting said ground wirings to said stem.
  5. 12
    A module according to any one of the preceding claims, wherein said semiconductor optical device is a semiconductor light-receiving device for receiving an optical signal to generate a photocurrent corresponding to the optical signal, and    wherein said optical module further comprises:a preamplifier for receiving said photocurrent from said light-receiving device to generate an electric signal corresponding to said photocurrent, said preamplifier being placed on said mounting surface of said stem;and a main amplifier for amplifying the electric signal generated by said preamplifier, said main amplifier being placed on said wiring board, and    wherein said wiring on said wiring board extends from said main amplifier to an end portion of said wiring board which is located near said back surface of said stem.
  6. 14
    A module according to any one of the preceding claims, wherein said semiconductor optical device is a semiconductor light-emitting device for emitting light in response to an driving signal,    wherein said optical module further comprises a light-emitting device driving circuit which is placed on said wiring board and generates said driving signal for said light-emitting device, and    wherein said wiring on said wiring board extends from said driving circuit to an end portion of said wiring board which is located near said back surface of said stem.