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首页> 外文期刊>Components, Packaging and Manufacturing Technology, IEEE Transactions on >Design and Implementation of a High-Coupling and Multichannel Optical Transceiver With a Novel Packaging Structure
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Design and Implementation of a High-Coupling and Multichannel Optical Transceiver With a Novel Packaging Structure

机译:具有新型封装结构的高耦合多通道光收发器的设计与实现

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摘要

Short-reach optical interconnection mainly focuses on the power consumption, the cost, and the volume. According to these requirements, the design and implementation of a multichannel transceiver are presented in this paper. In this paper, a high-coupling method without the 90° beam deflection is proposed so as to reduce the total power consumption to 0.9 W. Moreover, only the mature and low-cost packaging methods such as wire bonding and flip chip are adopted to satisfy the requirement of the optical coupling, which reduces the cost. Finally, the designed transceiver retains a small size of $28times 16 ,, times $ 3 mm3. To ensure normal function of the transceiver, the organic substrate is carefully designed, and the post-design simulation is conducted to characterize the electrical performance. At last, the test results show that the optical transceiver with this novel packaging structure is able to transmit the data at 10 Gb/s per channel successfully.
机译:短距离光互连主要关注功耗,成本和体积。根据这些要求,本文提出了一种多通道收发器的设计和实现。本文提出了一种没有90°光束偏转的高耦合方法,以将总功耗降低到0.9W。此外,仅采用了成熟且低成本的封装方法,如引线键合和倒装芯片。满足光耦合的要求,降低了成本。最后,所设计的收发器保留小尺寸$ 28×16乘以$ 3 mm 3 。为了确保收发器的正常功能,精心设计了有机基板,并进行了设计后仿真来表征电性能。最后,测试结果表明,具有这种新颖封装结构的光收发器能够成功以每通道10 Gb / s的速度传输数据。

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