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DS90C032 Datasheet, PDF (8/12 Pages) National Semiconductor (TI) – LVDS Quad CMOS Differential Line Receiver
Pin Descriptions
Pin No.
Name Description
(SOIC)
2, 6, RIN+ Non-inverting receiver input pin
10, 14
1, 7, 9, RIN− Inverting receiver input pin
15
3, 5, ROUT Receiver output pin
11, 13
4
EN Active high enable pin, OR-ed with
EN*
12 EN* Active low enable pin, OR-ed with EN
16
VCC Power supply pin, +5V ± 10%
8 GND Ground pin
Ordering Information
Operating
Package Type/ Order Number
Temperature
Number
−40˚C to +85˚C SOP/M16A
DS90C032TM
−55˚C to +125˚C LCC/E20A DS90C032E-QML
DS90C032E-QML (NSID)
5962-95834
(SMD)
Typical Performance Characteristics
Output High Voltage vs
Power Supply Voltage
Note 1: “Absolute Maximum Ratings” are those values beyond which the
safety of the device cannot be guaranteed. They are not meant to imply that
the devices should be operated at these limits. The table of “Electrical
Characteristics” specifies conditions of device operation.
Note 2: Current into device pins is defined as positive. Current out of device
pins is defined as negative. All voltages are referenced to ground unless
otherwise specified.
Note 3: All typicals are given for: VCC = +5.0V, TA = +25˚C.
Note 4: Generator waveform for all tests unless otherwise specified: f = 1
MHz, ZO = 50Ω, tr and tf (0%–100%) ≤ 1 ns for RIN and tr and tf ≤ 6 ns for EN
or EN*.
Note 5: Channel-to-Channel Skew is defined as the difference between the
propagation delay of one channel and that of the others on the same chip with
an event on the inputs.
Note 6: Chip to Chip Skew is defined as the difference between the mini-
mum and maximum specified differential propagation delays.
Note 7: ESD Rating:
HBM (1.5 kΩ, 100 pF) ≥ 3,500V
EIAJ (0Ω, 200 pF) ≥ 250V
Note 8: Output short circuit current (IOS) is specified as magnitude only,
minus sign indicates direction only. Only one output should be shorted at a
time, do not exceed maximum junction temperature specification.
Note 9: CL includes probe and jig capacitance.
Note 10: For DS90C032E propagation delay measurements are from 0V on
the input waveform to the 50% point on the output (ROUT).
Output High Voltage vs
Ambient Temperature
01194508
01194509
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