DS90LV017ATM/NOPB National Semiconductor, DS90LV017ATM/NOPB Datasheet

IC DRIVER SINGLE HS DIFF 8-SOIC

DS90LV017ATM/NOPB

Manufacturer Part Number
DS90LV017ATM/NOPB
Description
IC DRIVER SINGLE HS DIFF 8-SOIC
Manufacturer
National Semiconductor
Type
Driverr
Datasheet

Specifications of DS90LV017ATM/NOPB

Number Of Drivers/receivers
1/0
Protocol
RS644
Voltage - Supply
3 V ~ 3.6 V
Mounting Type
Surface Mount
Package / Case
8-SOIC (3.9mm Width)
Supply Current
10mA
Supply Voltage Range
3V To 3.6V
Driver Case Style
SOIC
No. Of Pins
8
Operating Temperature Range
-40°C To +85°C
Msl
MSL 1 - Unlimited
Data Rate Max
600Mbps
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
*DS90LV017ATM
*DS90LV017ATM/NOPB
DS90LV017ATM
© 2005 National Semiconductor Corporation
DS90LV017A
LVDS Single High Speed Differential Driver
General Description
The DS90LV017A is a single LVDS driver device optimized
for high data rate and low power applications. The
DS90LV017A is a current mode driver allowing power dissi-
pation to remain low even at high frequency. In addition, the
short circuit fault current is also minimized. The device is
designed to support data rates in excess of 600Mbps
(300MHz) utilizing Low Voltage Differential Signaling (LVDS)
technology.
The device is in a 8-lead small outline package. The
DS90LV017A has a flow-through design for easy PCB lay-
out. The differential driver outputs provides low EMI with its
typical low output swing of 355 mV. The DS90LV017A can be
paired with its companion single line receiver, the
DS90LV018A, or with any of National"s LVDS receivers, to
provide a high-speed point-to-point LVDS interface.
Connection Diagram
Functional Diagram
TRI-STATE
®
is a registered trademark of National Semiconductor Corporation.
DS100101
See NS Package Number M08A
Order Number DS90LV017ATM
Dual-In-Line
Features
n
n 0.3 ns typical differential skew
n 0.7 ns maximum differential skew
n 1.5 ns maximum propagation delay
n 3.3V power supply design
n
n Low power dissipation (23 mW
n Flow-through design simplifies PCB layout
n Interoperable with existing 5V LVDS devices
n Power Off Protection (outputs in high impedance)
n Conforms to TIA/EIA-644 Standard
n 8-Lead SOIC package saves space
n Industrial temperature operating range
>
±
(−40˚C to +85˚C)
355 mV differential signaling
600 Mbps (300 MHz) switching rates
10010102
10010101
@
3.3V static)
www.national.com
August 2005

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DS90LV017ATM/NOPB Summary of contents

Page 1

... DS90LV018A, or with any of National"s LVDS receivers, to provide a high-speed point-to-point LVDS interface. Connection Diagram Functional Diagram TRI-STATE ® registered trademark of National Semiconductor Corporation. © 2005 National Semiconductor Corporation Features > 600 Mbps (300 MHz) switching rates n n 0.3 ns typical differential skew n 0 ...

Page 2

... Absolute Maximum Ratings If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. Supply Voltage ( Input Voltage (DI) ± Output Voltage (DO ) Maximum Package Power Dissipation M Package Derate M Package 9.5 mW/˚C above +25˚C Storage Temperature Range Lead Temperature Range Soldering (4 sec ...

Page 3

Switching Characteristics Note 6: Generator waveform for all tests unless otherwise specified MHz, Z Note 7: The DS90LV017A is a current mode device and only function with datasheet specification when a resistive load is applied to the ...

Page 4

Application Information Pin # Typical Performance Curves Output High Voltage vs Power Supply Voltage Output Short Circuit Current vs Power Supply Voltage www.national.com TABLE 1. Device Pin Descriptions Name Description DI1 ...

Page 5

Typical Performance Curves Differential Output Voltage vs Load Resistor Power Supply Current vs Frequency (Continued) Offset Voltage vs Power Supply Voltage 10010111 Power Supply Current vs Power Supply Voltage 10010113 5 10010112 10010114 www.national.com ...

Page 6

Typical Performance Curves Power Supply Current vs Ambient Temperature Differential Propagation Delay vs Ambient Temperature www.national.com (Continued) Differential Propagation Delay vs Power Supply Voltage 10010115 Differential Skew vs Power Supply Voltage 10010119 6 10010116 10010117 ...

Page 7

Typical Performance Curves Differential Skew vs Ambient Temperature Transition Time vs Ambient Temperature (Continued) Transition Time vs Power Supply Voltage 10010120 10010121 7 10010118 www.national.com ...

Page 8

... BANNED SUBSTANCE COMPLIANCE National Semiconductor manufactures products and uses packing materials that meet the provisions of the Customer Products Stewardship Specification (CSP-9-111C2) and the Banned Substances and Materials of Interest Specification (CSP-9-111S2) and contain no ‘‘Banned Substances’’ as defined in CSP-9-111S2. ...

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