Characteristics of High Speed Optical Transmitter Module Fabricated by Using Laser welding Technique

레이저웰딩기술을 이용한 고속 광통신용 송신모듈 제작 및 특성 연구

  • Kang, Seung-Goo (Compound Semiconductor Dept., Electronics and Telecommunications Research Institute) ;
  • Song, Min-Kyu (Compound Semiconductor Dept., Electronics and Telecommunications Research Institute) ;
  • Jang, Dong-Hoon (Compound Semiconductor Dept., Electronics and Telecommunications Research Institute) ;
  • Pyun, Kwang-Eui (Compound Semiconductor Dept., Electronics and Telecommunications Research Institute)
  • 강승구 (한국전자통신연구소 화합물반도체연구부) ;
  • 송민규 (한국전자통신연구소 화합물반도체연구부) ;
  • 장동훈 (한국전자통신연구소 화합물반도체연구부) ;
  • 편광의 (한국전자통신연구소 화합물반도체연구부)
  • Published : 1995.11.18

Abstract

In long-haul high speed optical communications, the distance between a transmitter and a receiver depends on the amount of light coupled to a single mode optical fiber from the laser diode(LD) as well as the LD characteristic itself. And the transmitter module must have long lifetime. high reliability, and even simple structure. Such points have induced laser welding technique to be a first choice in opto-electronic module packaging because it can provide strong weld joint in a short time with very small coupling loss. In this paper, packaging considerations and characteristics for high speed LD modules are discussed. They include optical path design factors for larger aligning tolerance, and novel laser welding processes for component assembly. For low coupling loss after laser welding processes, the optical path for optimum coupling of a single mode optical fiber into the LD chip was designed with the GRIN lens system providing sufficiently large aligning tolerance both in the radial and axial directions. The measured sensitivity of the LD module was better than -33.7dBm(back to back) at a BER of $10^{-10}$ with a 2.5Gbps NRZ $2^{23}-1$ PRBS.

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