DS3650
DS3650 is Quad Differential Line Receivers manufactured by National Semiconductor.
Description
The DS3650 is TTL patible quad high speed circuits intended primarily for line receiver applications. Switching speeds have been enhanced over conventional line receivers by the use of Schottky technology, and TRI-STATE ® strobing is incorporated offering a high impedance output state for bussed organizations. The DS3650 has active pull-up outputs and offers a TRI-STATE strobe.
Features n n n n n n High speed TTL patible Input sensitivity: ± 25 m V TRI-STATE outputs for high speed busses Standard supply voltages: ± 5V Pin and function patible with MC3450
Connection Diagram
Dual-In-Line Package
Wired “OR” Data Selecting Using TRI-STATE Logic
DS005782-1
Top View Order Number DS3650M or DS3650N See NS Package Number M16A or N16A For plete Military 883 Specifications, see RETS Data Sheet. Input Strobe Output DS3650 VD ≥ 25 m V
- 25 m V ≤ VID ≤ 25 m V VID ≤
- 25 m V L H L H L H
L = Low Logic State Open = TRI-STATE H = High Logic State X = Indeterminate State
DS005782-3
H Open X Open L Open
TRI-STATE ® is a registered trademark of National Semiconductor Corporation.
© 1999 National Semiconductor Corporation
DS005782
.national.
Absolute Maximum Ratings (Note 2)
If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. Power Supply Voltages VCC VEE Differential-Mode Input Signal Voltage Range, VIDR mon-Mode Input Voltage Range, VICR Strobe Input Voltage, VI(S) Storage Temperature Range Lead Temperature (Soldering, 4 seconds) Maximum Power Dissipation (Note 1) at 25˚C Cavity Package Molded DIP Package +7.0 VDC
- 7.0 VDC
SO Package
1051 m W
Operating Conditions
Supply Voltage, VCC Supply Voltage, VEE Operating Temperature, TA Output Load Current, IOL Differential-Mode Input Voltage Range, VIDR mon-Mode Input Voltage Range, VICR Input Voltage Range Input to GND, VIR Min 4.75
- 4.75 0 Max 5.25
- 5.25 +70 16 +5.0 +3.0 +3.0 Units VDC VDC ˚C m A VDC VDC VDC
± 6.0...