Title :
A complete 400-Mb/s burst-mode data OEIC receiver
Author :
Mactaggart, I. Ross ; Bendett, Mark ; Taylor, Stewart S.
Author_Institution :
Honeywell System Res. Center, Bloomington, MN, USA
fDate :
10/1/1993 12:00:00 AM
Abstract :
A fully integrated burst-mode GaAs MESFET optoelectronic integrated circuit (OEIC) receiver, 215 mil×109 mil, that has been designed and implemented for point-to-point data links for application as a phased-array antenna controller is described. The chip provides a low-cost means for passing 400-Mb/s antenna control information using fiber optics with a very low bit-error rate (BER). Approximately 350 source-coupled FET logic gates are present on the chip. A new data coding and timing recovery scheme that is highly tolerant to jitter over a wide bandwidth has been developed. The OEIC uses an on-chip metal-semiconductor-metal (MSM) photodiode with 0.12-A/W responsivity measured at 780 nm and was fabricated in a 1.0-mm GaAs MESFET manufacturing technology. The low capacitance semi-insulating GaAs substrate minimizes the coupling between analog and digital circuitry. The circuit operates from a single 5-V supply, consumes 1 W of power, and provides an 8-b CMOS output bus together with various utility flags. Optical sensitivity is estimated at -20 dBm for 10-14 BER
Keywords :
III-V semiconductors; Schottky gate field effect transistors; data communication equipment; digital communication systems; field effect integrated circuits; gallium arsenide; integrated optoelectronics; optical receivers; 1 W; 1 micron; 400 Mbit/s; 5 V; 780 nm; GaAs; MESFET; OEIC receiver; antenna control information; bit-error rate; burst-mode data; data coding; fiber optics; low BER; onchip MSM photodiode; optoelectronic integrated circuit; phased-array antenna controller; point-to-point data links; single 5-V supply; source-coupled FET logic gates; timing recovery scheme; Application specific integrated circuits; Bit error rate; FETs; Gallium arsenide; MESFET integrated circuits; Optical control; Optical fibers; Optical receivers; Optoelectronic devices; Receiving antennas;
Journal_Title :
Solid-State Circuits, IEEE Journal of