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DS92LV010A_13 Datasheet, PDF (1/17 Pages) Texas Instruments – Bus LVDS 3.3/5.0V Single Transceiver
DS92LV010A
www.ti.com
SNLS007E – MAY 1998 – REVISED APRIL 2013
DS92LV010A Bus LVDS 3.3/5.0V Single Transceiver
Check for Samples: DS92LV010A
FEATURES
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•2 Bus LVDS Signaling (BLVDS)
• Designed for Double Termination Applications
• Balanced Output Impedance
• Lite Bus Loading 5pF Typical
• Glitch Free Power Up/Down (Driver Disabled)
• 3.3V or 5.0V Operation
• ±1V Common Mode Range
• ±100mV Receiver Sensitivity
• High Signaling Rate Capability (Above 100
Mbps)
• Low Power CMOS Design
• Product Offered in 8 Lead SOIC Package
• Industrial Temperature Range Operation
DESCRIPTION
The DS92LV010A is one in a series of transceivers
designed specifically for the high speed, low power
proprietary bus backplane interfaces. The device
operates from a single 3.3V or 5.0V power supply
and includes one differential line driver and one
receiver. To minimize bus loading the driver outputs
and receiver inputs are internally connected. The
logic interface provides maximum flexibility as 4
separate lines are provided (DIN, DE, RE, and
ROUT). The device also features flow through which
allows easy PCB routing for short stubs between the
bus pins and the connector. The driver has 10 mA
drive capability, allowing it to drive heavily loaded
backplanes, with impedance as low as 27 Ohms.
The driver translates between TTL levels (single-
ended) to Low Voltage Differential Signaling levels.
This allows for high speed operation, while
consuming minimal power with reduced EMI. In
addition the differential signaling provides common
mode noise rejection of ±1V.
The receiver threshold is ±100mV over a ±1V
common mode range and translates the low voltage
differential levels to standard (CMOS/TTL) levels.
CONNECTION DIAGRAM
BLOCK DIAGRAM
Figure 1. SOIC Package
See Package Number D0008A
Figure 2.
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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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