Datasheet

DS92LV090A
www.ti.com
SNLS025D APRIL 2000REVISED APRIL 2013
DS92LV090A 9 Channel Bus LVDS Transceiver
Check for Samples: DS92LV090A
1
FEATURES
DESCRIPTION
The DS92LV090A is one in a series of Bus LVDS
2
Bus LVDS Signaling
transceivers designed specifically for the high speed,
3.2 Nanosecond Propagation Delay Max
low power proprietary backplane or cable interfaces.
Chip to Chip Skew ±800ps
The device operates from a single 3.3V power supply
and includes nine differential line drivers and nine
Low Power CMOS Design
receivers. To minimize bus loading, the driver outputs
High Signaling Rate Capability (Above 100
and receiver inputs are internally connected. The
Mbps)
separate I/O of the logic side allows for loop back
0.1V to 2.3V Common Mode Range for V
ID
=
support. The device also features a flow through pin
200mV
out which allows easy PCB routing for short stubs
between its pins and the connector.
±100 mV Receiver Sensitivity
The driver translates 3V TTL levels (single-ended) to
Supports Open and Terminated Failsafe on
differential Bus LVDS (BLVDS) output levels. This
Port Pins
allows for high speed operation, while consuming
3.3V Operation
minimal power with reduced EMI. In addition, the
Glitch Free Power Up/Down (Driver & Receiver
differential signaling provides common mode noise
Disabled)
rejection of ±1V.
Light Bus Loading (5 pF Typical) per Bus
The receiver threshold is less than ±100 mV over a
LVDS Load
±1V common mode range and translates the
differential Bus LVDS to standard (TTL/CMOS)
Designed for Double Termination Applications
levels. (See Applications Information Section for more
Balanced Output Impedance
details.)
Product Offered in 64 Pin LQFP Package
High Impedance Bus Pins on Power off (V
CC
=
0V)
Driver Channel to Channel Skew (Same
Device) 230ps Typical
Receiver Channel to Channel Skew (Same
Device) 370ps Typical
Simplified Functional Diagram
Figure 1.
1
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PRODUCTION DATA information is current as of publication date.
Copyright © 2000–2013, Texas Instruments Incorporated
Products conform to specifications per the terms of the Texas
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necessarily include testing of all parameters.

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