Features: • Integrated Photodetector/Transimpedance Amplifier Optimized for High-Speed Optical Communications Applications• Integrated AGC• Fibre Channel/Gigabit Ethernet Compatible• High Bandwidth• Low Input Noise Equivalent Power• Large Optically Active Area...
VSC7810: Features: • Integrated Photodetector/Transimpedance Amplifier Optimized for High-Speed Optical Communications Applications• Integrated AGC• Fibre Channel/Gigabit Ethernet Compatibl...
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Symbol |
Parameter |
Limits |
VSS |
Power Supply | 6V |
TSTG |
Storage Temperature | -55 to 125 (case temperature under bias) |
HSTG |
Storage Humidity | 5 to 95% R.H. (including condensation) |
HOP |
Operating Humidity | 8 to 80% R.H. (excluding condensation) |
PINC |
Incident Optical Power | +3dBm |
IS |
Impact Shock | 500 G. Half Sine Wave Pulse Duration 1 +/-0.5 ms 3 blows in each direction |
VIB |
Vibration | 20 > 2000 > 20 Hz, 10 Minutes 10 G. Peak Acceleration 4 Complete Cycles, 3 Perpendicular Axes |
VESD |
ESD Voltage on DOUTP, DOUTN, VSS, GND |
1500V |
The VSC7810 integrated Photodetector/Transimpedance Amplifier provides a highly integrated solution for converting light from a fiber optic communications channel into a differential output voltage. The benefits of Vitesse Semiconductor's Gallium Arsenide H-GaAs process are fully utilized to provide very high bandwidth and low noise in a product with a large optically active area for easy alignment. The sensitivity, duty cycle distortion and jitter meet or exceed all Fibre Channel and Gigabit Ethernet application requirements. Parts are available in either die form, flat-windowed packages or in ball-lens packages.
By using a metal-semiconductor-metal (MSM) photodetector with a monolithic integrated transimpedance amplifier, the input capacitance is lowered which allows for a larger optically active area than in discrete photodetectors. Integration also allows superior tracking over process, temperature and voltage between the photodetector and the amplifier, resulting in higher performance. This part can easily be used in developing Fibre Channel Electro-Optic Receivers which exhibit very high performance and ease of use.