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FIN1002M5X Schematic ( PDF Datasheet ) - Fairchild Semiconductor

Teilenummer FIN1002M5X
Beschreibung LVDS 1-Bit High Speed Differential Receiver
Hersteller Fairchild Semiconductor
Logo Fairchild Semiconductor Logo 




Gesamt 7 Seiten
FIN1002M5X Datasheet, Funktion
February 2002
Revised February 2002
FIN1002
LVDS 1-Bit High Speed Differential Receiver
General Description
This single receiver is designed for high speed intercon-
nects utilizing Low Voltage Differential Signaling (LVDS)
technology. The receiver translates LVDS levels, with a typ-
ical differential input threshold of 100 mV, to LVTTL signal
levels. LVDS provides low EMI at ultra low power dissipa-
tion even at high frequencies. This device is ideal for high
speed transfer of clock or data.
The FIN1002 can be paired with its companion driver, the
FIN1001, or with any other LVDS driver.
Features
s Greater than 400Mbs data rate
s 3.3V power supply operation
s 0.4ns maximum pulse skew
s 2.5ns maximum propagation delay
s Bus pin ESD (HBM) protection exceeds 10kV
s Power-Off over voltage tolerant input and output
s Fail safe protection for open-circuit and non-driven,
shorted or terminated conditions
s High impedance output at VCC < 1.5V
s Meets or exceeds the TIA/EIA-644 LVDS standard
s 5-Lead SOT23 package saves space
Ordering Code:
Order Number
FIN1002M5
FIN1002M5X
Package Number
Package Description
MA05B
5-Lead SOT23, JEDEC MO-178, 1.6mm [250 Units on Tape and Reel]
MA05B
5-Lead SOT23, JEDEC MO-178, 1.6mm [3000 Units on Tape and Reel]
Pin Descriptions
Pin Name
ROUT
RIN+
RIN
VCC
GND
NC
Description
LVTTL Data Output
Non-inverting Driver Input
Inverting Driver Input
Power Supply
Ground
No Connect
Connection Diagram
Pin Assignment for SOT package
Function Table
Input
RIN+
RIN
LH
HL
Fail Safe Condition
H = HIGH Logic Level
L = LOW Logic Level
Fail Safe = Open, Shorted, Terminated
Outputs
ROUT
L
H
H
Top View
© 2002 Fairchild Semiconductor Corporation DS500730
www.fairchildsemi.com






FIN1002M5X Datasheet, Funktion
DC / AC Typical Performance Curves (Continued)
FIGURE 15. Transition Time vs.
Ambient Temperature
FIGURE 16. Differential Propagation Delay vs.
Load
FIGURE 17. Differential Propagation Delay vs.
Load
FIGURE 18. Transition Time vs.
Load
FIGURE 19. Transition Time vs.
Load
www.fairchildsemi.com
FIGURE 20. Power Supply Current vs.
Power Supply Voltage
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