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DS90C032_16 Datasheet, PDF (1/18 Pages) Texas Instruments – Quad CMOS Differential Line Receiver
DS90C032
www.ti.com
SNLS094D – JUNE 1998 – REVISED APRIL 2013
DS90C032 LVDS Quad CMOS Differential Line Receiver
Check for Samples: DS90C032
FEATURES
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•2 >155.5 Mbps (77.7 MHz) switching rates
• Accepts small swing (350 mV) differential
signal levels
• Ultra low power dissipation
• 600 ps maximum differential skew (5V, 25°C)
• 6.0 ns maximum propagation delay
• Industrial operating temperature range
• Military operating temperature range option
• Available in surface mount packaging (SOIC)
and (LCCC)
• Pin compatible with DS26C32A, MB570
(PECL), and 41LF (PECL)
• Supports OPEN input fail-safe
• Supports short and terminated input fail-safe
with the addition of external failsafe biasing
• Compatible with IEEE 1596.3 SCI LVDS
standard
• Conforms to ANSI/TIA/EIA-644 LVDS standard
• Available to Standard Microcircuit Drawing
(SMD) 5962-95834
DESCRIPTION
TheDS90C032 is a quad CMOS differential line
receiver designed for applications requiring ultra low
power dissipation and high data rates. The device
supports data rates in excess of 155.5 Mbps (77.7
MHz) and uses Low Voltage Differential Signaling
(LVDS) technology.
TheDS90C032 accepts low voltage (350 mV)
differential input signals and translates them to
CMOS (TTL compatible) output levels. The receiver
supports a TRI-STATE function that may be used to
multiplex outputs. The receiver also supports OPEN,
shorted, and terminated (100Ω) input Failsafe with
the addition of external failsafe biasing. Receiver
output will be HIGH for both Failsafe conditions.
TheDS90C032 and companion line driver
(DS90C031) provide a new alternative to high power
pseudo-ECL devices for high speed point-to-point
interface applications.
Connection Diagram
Dual-In-Line
Figure 1. See Package Number D (R-PDSO-G16)
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2
PRODUCTION DATA information is current as of publication date.
Products conform to specifications per the terms of the Texas
Instruments standard warranty. Production processing does not
necessarily include testing of all parameters.
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