FIN1001 Fairchild Semiconductor, FIN1001 Datasheet

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FIN1001

Manufacturer Part Number
FIN1001
Description
3.3V LVDS 1-Bit High Speed Differential Driver
Manufacturer
Fairchild Semiconductor
Datasheet

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© 2002 Fairchild Semiconductor Corporation
FIN1001M5
FIN1001M5X
FIN1001
3.3V LVDS 1-Bit High Speed Differential Driver
General Description
This single driver is designed for high speed interconnects
utilizing Low Voltage Differential Signaling (LVDS) technol-
ogy. The driver translates LVTTL signal levels to LVDS lev-
els with a typical differential output swing of 350 mV which
provides low EMI at ultra low power dissipation even at
high frequencies. This device is ideal for high speed trans-
fer of clock or data.
The FIN1001 can be paired with its companion receiver,
the FIN1002, or with any other LVDS receiver.
Ordering Code:
Pin Descriptions
Function Table
H = HIGH Logic Level
Order Number
Pin Name
Input
D
D
D
GND
V
D
H
OUT+
OUT−
NC
L
IN
CC
IN
Package Number
L = LOW Logic Level
D
MA05B
MA05B
OUT+
LVTTL Data Input
Non-inverting LVDS Driver Output
Inverting LVDS Driver Output
Power Supply
Ground
No Connect
H
L
Outputs
Description
5-Lead SOT23, JEDEC MO-178, 1.6mm [250 Units on Tape and Reel]
5-Lead SOT23, JEDEC MO-178, 1.6mm [3000 Units on Tape and Reel]
D
OUT−
H
L
DS500721
Features
I Greater than 600Mbs data rate
I 3.3V power supply operation
I 0.5ns maximum differential pulse skew
I 1.5ns maximum propagation delay
I Low power dissipation
I Power-Off protection
I Meets or exceeds the TIA/EIA-644 LVDS standard
I Flow-through pinout simplifies PCB layout
I 5-Lead SOT23 package saves space
Connection Diagram
Package Description
Pin Assignment for SOT23
(Top View)
December 2001
Revised January 2002
www.fairchildsemi.com

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FIN1001 Summary of contents

Page 1

... EMI at ultra low power dissipation even at high frequencies. This device is ideal for high speed trans- fer of clock or data. The FIN1001 can be paired with its companion receiver, the FIN1002, or with any other LVDS receiver. Ordering Code: Order Number ...

Page 2

Absolute Maximum Ratings Supply Voltage ( Input Voltage ( Output Voltage (D ) OUT Driver Short Circuit Current (I ) OSD Storage Temperature Range (T ) STG Max Junction Temperature ( Lead ...

Page 3

FIGURE 1. Differential Driver DC Test Circuit FIGURE 3. AC Waveforms Note A: All input pulses have frequency = 10 MHz Note B: C includes all probe and fixture capacitances L FIGURE 2. Differential Driver Propagation Delay and ...

Page 4

Typical Performance Curves FIGURE 4. Output High Voltage vs. Power Supply Voltage FIGURE 6. Output Short Circuit Current vs. Power Supply Voltage FIGURE 8. Differential Output Voltage vs. Load Resistor www.fairchildsemi.com FIGURE 5. Output Low Voltage vs. ...

Page 5

Typical Performance Curves FIGURE 10. Power Supply Current vs. Frequency FIGURE 12. Power Supply Current vs. Ambient Temperature FIGURE 14. Differential Propagation Delay vs. Ambient Temperature (Continued) FIGURE 11. Power Supply Current vs. Power Supply Voltage FIGURE ...

Page 6

Typical Performance Curves FIGURE 16. Differential Pulse Skew (t PLH Ambient Temperature www.fairchildsemi.com (Continued vs. FIGURE 17. Transition Time vs. PHL Power Supply Voltage FIGURE 18. Transition Time vs. Ambient Temperature 6 ...

Page 7

Physical Dimensions inches (millimeters) unless otherwise noted 5-Lead SOT23, JEDEC MO-178, 1.6mm Fairchild does not assume any responsibility for use of any circuitry described, no circuit patent licenses are implied and Fairchild reserves the right at any time without notice ...

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