黄尊恺,研究员,博士生导师,中国科学院特聘骨干人才。2013年本科毕业于天津大学,2018年博士毕业于中国科学院大学,期间获国家留学基金委资助赴日本广岛大学开展联合研究。长期聚焦高维度全光交换芯片、硅基微显示芯片及高性能CMOS光电探测芯片的底层技术攻关。主持国家重点研发计划、工信部专项等10余项重大任务,发表高水平论文40余篇。深度践行产学研融合,与联影医疗、豪威集团、光迅科技等行业头部企业开展了深度的技术落地与产业化合作。
1. 全光网络与高维度空间光调制芯片
2. 超高分辨率硅基微显示驱动架构
3. 高性能CMOS光电探测与传感芯片
1. 中国科学院特聘研究岗位
2. 高研新锐人才
1.工信部高质量发展专项,“高维度全光交换芯片”,负责人,2025.07-2028.8
2.科技部国家重点研发计划,“高分辨率硅基光交换芯片”, 负责人,2022.02-2024.12
3.工信部高质量发展专项,“高性能光开关芯片”,负责人,2022.06-2024.12
4.科技部国家重点研发计划,“高性能CT探测器芯片”,负责人,2019.12 -2022.12
5.国家自然科学基金项目,“智能视觉芯片关键技术研究”,负责人,2021.1 -2023.12
6.中科院青促会项目,“高性能CMOS图像传感器研究”,负责人,2021.1 -2023.12
1. 文章:
1. High‐Linearity Remapping Scan With Genetic Algorithm for Digital Micro‐Displays, Electronics Letters, 2026.
2. Laser-induced boron-phosphorus co-doping in diamond enables enhanced carrier mobility and fabrication of n-type diamond, Diamond and Related Materials, 2026.
3. Seed-Driven FPGA Edge Node for Adaptive Seismic Intrusion Monitoring, IEEE Sensors Letters, 2026.
4. High-Quality Phase-Only Holography via Frequency-Domain Hybrid Encoding and Multi-Scale Complex Attention, IEEE Access, 2026.
5. An Offset-Cancelled Relaxation Oscillator with Voltage Averaging Feedback for LCoS Applications, IEEE Sensors Letters, 2026.
6. A 50 μW/Gbps/Lane Power-Efficient MIPI D-PHY Receiver With Architecture-Level Adaptive and Structural Optimizations for Micro-Displays, IEEE Transactions on Circuits and Systems I: Regular Papers, 2025.
7. A Control System for Real-Time Driving of LCoS SLM Based on FPGA, IEEE Embedded Systems Letters, 2025.
8. Visible light-modulated photoelectric synaptic transistor based on ITO and IGZO bilayer channel, Applied Surface Science, 2025.
9. Bit-Sparsity Aware Acceleration With Compact CSD Code on Generic Matrix Multiplication, IEEE Transactions on Computers, 2025,
10. High-Speed, Low-Power Bootstrapped Class-B Driver Amplifier for LCoS Applications, IEEE Sensors Letters, 2025.
2. 专利
1. Novel photodiode structure, preparation method, and circuit structure, US18/011,515.
2. 一种显示驱动方法、系统、存储介质及电子设备,CN2026103820062.
3. 瞬态增强缓冲器及伽马电压发生系统,CN2024114238216
4. 一种硅基液晶芯片控制系统及方法, CN2024114774389
弛豫振荡器、时钟电路及电子系统,CN2025107611555

