Zobrazeno 1 - 10
of 14
pro vyhledávání: '"Fang-Jyun Liou"'
Autor:
Konthoujam James Singh, Yu-Ming Huang, Tanveer Ahmed, An-Chen Liu, Sung-Wen Huang Chen, Fang-Jyun Liou, Tingzhu Wu, Chien-Chung Lin, Chi-Wai Chow, Gong-Ru Lin, Hao-Chung Kuo
Publikováno v:
Applied Sciences, Vol 10, Iss 20, p 7384 (2020)
Visible Light Communication (VLC) technology is an emerging technology using visible light modulation that, in the modern world, will mainly facilitate high-speed internet connectivity. VLC provides tremendous advantages compared to conventional radi
Externí odkaz:
https://doaj.org/article/f590eee9068e47f3aaf41ef112c81577
Autor:
Chi-Wai Chow, Yun-Han Chang, G.-H. Chang, Chien-Hung Yeh, Fang-Jyun Liou, Hao-Chung Kuo, Wahyu Hendra Gunawan, Yu-Ming Huang, Yang Liu
Publikováno v:
IEEE Photonics Journal. 13:1-4
A record 4.343 Gbit/s green color micro-light-emitting-diode (μ-LED) based visible-light-communication (VLC) is demonstrated. We designed and fabricated the InGaN/GaN μ-LED array with modulation bandwidth >1.1 GHz. The micro-LED was grown on semipo
Autor:
Fang-Jyun Liou, Chien-Chung Lin, Yu-Hau Liou, Hao-Chung Kuo, Tanveer Ahmed, Yiming Li, Konthoujam James Singh, An-Chen Liu, Chao-Cheng Ting, Yu-Ming Huang, Seiji Samukawa
Publikováno v:
IEEE Nanotechnology Magazine. 15:18-34
MICRO-LEDs ( n-LEDs) HAVE been engaged in the next-generation display technology and evolved for various applications from several electronics manufacturers and institutions. The area of n-LEDs (less than 10 # 10 nm2) is desired for the high pixelspe
Autor:
Hao-Chung Kuo, Jung Han, Ray-Hua Horng, Yue Lin, Yun-Han Chang, Tingzhu Wu, Chien-Chung Lin, Yu-Ming Huang, Sung-Wen Huang Chen, Yu-Chien Hsu, Jie Song, Fang-Jyun Liou, Chi-Wai Chow, Joowon Choi, Zhong Chen
Publikováno v:
ACS Photonics. 7:2228-2235
Light-emitting diodes (LEDs) have been regarded as promising candidates for visible light communication (VLC); however, strong internal polarization fields in common c-plane LEDs, especially green ...
Autor:
Yun-Han Chang, Fang-Jyun Liou, Yu-Ming Huang, Wahyu Hendra Gunawan, Chi-Wai Chow, Hao-Chung Kuo, Yang Liu, Chien-Hung Yeh
Publikováno v:
Optical Fiber Communication Conference (OFC) 2022.
We demonstrate a record 2.473-Gbit/s white-light visible-light-communication (VLC) using semipolar (20-21) blue InGaN/GaN μ-LED with yellow-phosphor. The measured 3-dB-bandwidth of blue and white lights are 1042.5 MHz and 772.4 MHz respectively.
Autor:
Chien-Hung Yeh, Po-Hui Yang, Fang-Jyun Liou, Chi-Wai Chow, Tsung-Chi Hsu, Hao-Chung Kuo, Yang Liu, Yun-Han Chang
Publikováno v:
Optics express. 29(23)
We propose and demonstrate a green semipolar (20-21) micro-light emitting diode (LED) acting as a high speed visible light communication (VLC) photodiode (PD). The micro-LED PD has the optical-to-electrical (OE) response of 228 MHz. A record data rat
Autor:
Ching-Wei Peng, Yang Liu, Guan-Hao Chang, Yun-Han Chang, Chi-Wai Chow, Wahyu Hendra Gunawan, Fang-Jyun Liou, Chien-Hung Yeh, Hao-Chung Kuo
Publikováno v:
OFC
We propose and demonstrate 3.129 Gbit/s orthogonal-frequency-division-multiplexing (OFDM) visible-light-communication (VLC) system using 550 nm wavelength green semipolar (20-21) InGaN/GaN μ-LED-array. The produced μ-LED-array has a high 3-dB bandw
Autor:
Jung Han, Jie Song, Yu-Chien Hsu, Fang-Jyun Liou, Sung-Wen Huang Chen, Joowon Choi, Hao-Chung Kuo
Publikováno v:
Conference on Lasers and Electro-Optics.
High-quality semipolar GaN is crucial in realizing high-performance optoelectronic devices and overcome quantum confined Stark effect. The green light VLC-LED achieves 667 MHz bandwidth due to a high quality and stacking-faults free semipolar epitaxi
Autor:
Zhong Chen, Fang-Jyun Liou, Chun-Ho Lin, Xiaotong Fan, Jr-Hau He, Tingzhu Wu, Tom Wu, Konthoujam James Singh, Annada Sankar Sadhu, Hao-Chung Kuo, Yu-Jung Lu
Publikováno v:
Photonics Research. 9:2341
We propose a flexible white-light system for high-speed visible-light communication (VLC) applications, which consists of a semipolar blue InGaN/GaN single-quantum-well micro-light-emitting diode (LED) on a flexible substrate pumping green CsPbBr 3 p