Energy-Efficient Optical Transceiver Circuits Enabled by 3D Heterogeneous Integration
- Author(s)
- Chang, Po-Hsuan; Yan, Peng; Samanta, Anirban; Fu, Mingye; Zhang, Yu; On, Mehmet Berkay; Kumar, Ankur; Kang, Hyungryul; Yi, Il-Min; Annabattuni, Dedeepya; Scott, David; Patti, Robert; Fan, Yang-Hang; Zhu, Yuanming; Ben Yoo, S.J.; Palermo, Samuel
- Type
- Conference Paper
- Citation
- 2024 IEEE Silicon Photonics Conference, SiPhotonics 2024
- Issued Date
- 2024-04-15
- Abstract
- An optical transceiver architecture based on 12nm FinFET front-end circuits that are co-designed with silicon photonic microdisk modulators and drop filters achieves sub-500fJ/b operation at 18Gb/s. The optical transmitter utilizes a low-power quarter-rate architecture, while the receiver employs a variable-bandwidth transimpedance amplifier for improved sensitivity. © 2024 IEEE.
- Publisher
- IEEE Computer Society
- Conference Place
- JA
Tokyo
- URI
- https://scholar.gist.ac.kr/handle/local/34160
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