Chinese Journal of Lasers B, 1999, 8 (6): 543, 网络出版: 2006-08-08  

Optical Implementation of CMOS/SEED Optoelectronic Integrated Crossbar Interconnection Network

Optical Implementation of CMOS/SEED Optoelectronic Integrated Crossbar Interconnection Network
作者单位
National Lab. of Laser Technology, Huazhong University of Science and Technology, Wuhan 430074, China
摘要
Abstract
An optical implementation of CMOS/SEED optoelectronic integrated crossbar interconnection network is reported. The CMOS/SEED smart pixel arrays with O/E light windows are used as logical controlling switch nodes. High/lower modulating ratio of the output light density is about 1.4. The light beam is supplied by a 0.85 μm semiconductor laser diode. 8×2 spot arrays formed by a computer-generated phase grating are used as the pumping light beams for CMOS/SEED light modulators. High-precision 2-D optical fiber bundle arrays are used as the I/O access devices. 16×16 optical crossbar interconnection network is realized using our experimental setup. It is easy to couple with CMOS/SEED smart pixel arrays by using 2-D optical fiber bundle arrays as the I/O access devices. Compact in comparison with other optical interconnection systems.
参考文献

[1] F. A. P. Tooley. Optical interconnects do not require improved optoelectronic devices. SPIE, 1998, 3490:14~17

[2] A. L. Lentine, D. A. B. Miller. Evolution of the SEED Technology: Bistable Logic gates to Optoelectronic Smart Pixels. IEEE J Quantum Electron., 1993, 29(2):655~669

[3] Y. Liu. Smart pixel module development for free-space optical interconnect. SPIE, 1998, 3490:528~531

[4] A. V. Krishnamoorthy, A. L. Lentine, K. W. Goossen et al.. 3-D integration of MQW modulators over active submicron CMOS circuits: 375 Mb/s transimpedance receiver-transmitter circuit. IEEE Photon. Technol. Lett., 1995, 7(11):1288~1290

[5] K. W. Goossen, J. A. Walker, L. A. D'Asaro et al.. GaAs MQW modulators integrated with silcon CMOS. IEEE Photon. Technol. Lett., 1995, 7(4), 360~362

[6] F. B. Mccormick, F. A. P. Tooley, J. M. Sasian et al.. Parallel interconnection of two 64(32 symmetric self electro-optic effect device arrays. Electron. Lett., 1991, 27(20):1869~1871

[7] F. B. McCormick, T. J. Cloonan, A. L. Lentine et al.. Five-stage free-space opticalswitching network with field-effect transtor self-electro-optic-effect-device smart-pixelarrays. Appl. Opt., 1994, 33(8):1601~1617

[8] L. M. F. Chirovsky, A. L. Lentine, K. W. Goossen et al.. A high speed optoelectronic chip with 4352 optical inputs/outputs for a 256×256 ATM switching fabric. Kunio Tada, Proceeding of Photonics in Switching '96, Sendai, Japan:IEICE, 1996,70~71

[9] D. T. Neilson, S. M. Prince, D. A. Baillie et al.. Optical design of a 1024-channel free-space sorting demonstrator. Appl. Opt., 1997, 36(35):9243~9252

[10] Ted H. Szymanski, Albert Au, Myriam Lafreniere-Roula et al.. Terabit optical localarea networks for multiprocessing systems. Appl. Opt., 1998, 37(2):264~275

[11] J. M. Sasian. Fabrication of fiber bundle array for free-space photonic switching system. Opt. Eng., 1994, 33(9):2979~2985

LUO Fengguang, CAO Mingcui, WAN Anjun, XU Jun, HU Qiaoyan. Optical Implementation of CMOS/SEED Optoelectronic Integrated Crossbar Interconnection Network[J]. Chinese Journal of Lasers B, 1999, 8(6): 543. LUO Fengguang, CAO Mingcui, WAN Anjun, XU Jun, HU Qiaoyan. Optical Implementation of CMOS/SEED Optoelectronic Integrated Crossbar Interconnection Network[J]. 中国激光(英文版), 1999, 8(6): 543.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!