Title :
Bidirectional single fiber low-cost optoelectronic interconnect for automotive applications
Author :
Lopez-Lagunas, A. ; Sek Meng Chai ; Cross, J. ; Buchannan, B. ; Carastro, L.A. ; Wang, S. ; Wills, D.S. ; Jokerst, N.M. ; Brocke, M.A. ; Ingram, M.A.
Author_Institution :
Sch. of Electr. & Comput. Eng., Georgia Inst. of Technol., Atlanta, GA, USA
Abstract :
Current trends in vehicular technology reflect an increase in the number of electronic modules, leading to more complicated and expensive wiring. The use of optic fibers offers a low-cost alternative to traditional copper-wire harnesses. This paper presents a bidirectional, alignment-tolerant optoelectronic interconnect for automotive applications. The proposed interconnect offers a low manufacturing potential cost because it uses inexpensive alignment tolerant large core plastic fiber for ease of connector alignment. The optoelectronic interface chip uses time-division multiplexing to combine several information sources into a serial data stream that can be easily decoded by a microcontroller. By using a colocated small emitter in the middle of a large detector, the system achieves both bidirectional communication on a single fiber and alignment tolerant capabilities. Results show that this optoelectronic interconnect is a feasible replacement for wire harnesses in automobiles.
Keywords :
CMOS digital integrated circuits; automobiles; fibre optic sensors; integrated optoelectronics; microcontrollers; optical fibres; optical interconnections; time division multiplexing; CMOS VLSI; alignment-tolerant optoelectronic interconnect; automotive applications; bidirectional communication; bidirectional single fiber interconnect; colocated small emitter; data stream; electronic modules; large core plastic fiber; large detector; low-cost optoelectronic interconnect; microcontroller; optic fibers; optoelectronic interface chip; time-division multiplexing; vehicular technology; Automotive applications; Connectors; Costs; Manufacturing; Optical fiber communication; Optical fibers; Optical interconnections; Plastics; Vehicular and wireless technologies; Wiring;
Journal_Title :
Vehicular Technology, IEEE Transactions on