Rainbow Electronics DS92LV040A User Manual
General description, Features, Simplified functional diagram
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DS92LV040A
4 Channel Bus LVDS Transceiver
General Description
The DS92LV040A is one in a series of Bus LVDS transceiv-
ers designed specifically for high speed, low power back-
plane or cable interfaces. The device operates from a single
3.3V power supply and includes four differential line drivers
and four receivers. To minimize bus loading, the driver out-
puts and receiver inputs are internally connected. The device
also features a flow through pin out which allows easy PCB
routing for short stubs between its pins and the connector.
The driver translates 3V LVTTL levels (single-ended) to dif-
ferential Bus LVDS (BLVDS) output levels. This allows for
high speed operation while consuming minimal power and
reducing EMI. In addition, the differential signaling provides
common mode noise rejection greater than
±
1V.
The receiver threshold is less than +0/−70 mV. The receiver
translates the differential Bus LVDS to standard (LVTTL/
LVCMOS) levels. (See Applications Information Section for
more details.)
Features
n
Bus LVDS Signaling
n
Propagation delay: Driver 2.3ns max, Receiver 3.2ns
max
n
Low power CMOS design
n
100% Transition time 1ns driver typical, 1.3ns receiver
typical
n
High Signaling Rate Capability (above 155 Mbps)
n
0.1V to 2.3V Common Mode Range for V
ID
= 200mV
n
70 mV Receiver Sensitivity
n
Supports open and terminated failsafe on port pins
n
3.3V operation
n
Glitch free power up/down (Driver & Receiver disabled)
n
Light Bus Loading (5 pF typical) per Bus LVDS load
n
Designed for Double Termination Applications
n
Balanced Output Impedance
n
Product offered in 44 pin LLP (Leadless Leadframe
Package) package
n
High impedance Bus pins on power off (V
CC
= 0V)
Simplified Functional Diagram
10133601
August 2002
DS92L
V040A
4
Channel
Bus
L
VDS
T
ransceiver
© 2002 National Semiconductor Corporation
DS101336
www.national.com
Document Outline
- DS92LV040A
- General Description
- Features
- Simplified Functional Diagram
- Absolute Maximum Ratings
- Recommended Operating Conditions
- DC Electrical Characteristics
- AC Electrical Characteristics
- Applications Information
- Test Circuits and Timing Waveforms
- FIGURE 1. Differential Driver DC Test Circuit
- FIGURE 2. Differential Driver Propagation Delay and Transition Time Test Circuit
- FIGURE 3. Differential Driver Propagation Delay and Transition Time Waveforms
- FIGURE 4. Driver TRI-STATE Delay Test Circuit
- FIGURE 5. Driver TRI-STATE Delay Waveforms
- FIGURE 6. Receiver Propagation Delay and Transition Time Test Circuit
- FIGURE 7. Receiver Propagation Delay and Transition Time Waveforms
- FIGURE 8. Receiver TRI-STATE Delay Test Circuit
- FIGURE 9. Receiver TRI-STATE Delay Waveforms
- Typical Bus Application Configurations
- Connection Diagram
- Pinout Description
- Physical Dimensions