35ghz光纤硅光子学链路的实验演示

Vijay Kumar, S. Selvaraja, G. Saravanan, S. Bhalke
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引用次数: 0

摘要

本文介绍了利用互补金属氧化物半导体(CMOS)兼容硅光子学技术设计并演示了一种35ghz光纤射频通信链路发射机。该概念的验证解决了高频集成的挑战,并使用制造的宽带硅光子微环调制器,驱动放大器实现,并使用50 Ω传输线集成在Kovar衬底上。集成测试装置表明,测量的电光(S21)带宽为35 GHz,最大增益为12.4 dB,驱动放大器输入的RF匹配范围为- 5 dB至- 42 dB,微环调制器输入的光学匹配范围为- 8 dB至- 21 dB,负载为50 Ω,带宽为35 GHz。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Demonstration of 35 GHz RF -over-Fiber Silicon- Photonics Link
This paper presents the design and demonstration of a 35 GHz transmitter for RF-over-fiber (RFoF) communication link using complementary metal-oxide-semiconductor (CMOS) compatible silicon-photonics technology. This proof of the concept has addressed the high-frequency integration challenges and been realized using a fabricated broadband silicon-photonics microring modulator, driver amplifier, and were integrated on Kovar substrate using 50 Ω transmission line. The integrated test set-up has demonstrated the measured electro-optical (S21) bandwidth of 35 GHz, maximum gain of 12.4 dB, RF matching at driver amplifier input in the range of −5 dB to −42 dB and optical matching at microring modulator input in the range of −8 dB to −21 dB for 50 Ω load across 35 GHz frequency bandwidth.
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