DS90C402M/NOPB National Semiconductor, DS90C402M/NOPB Datasheet

IC REC LVDS DUAL DIFF SGNL 8SOIC

DS90C402M/NOPB

Manufacturer Part Number
DS90C402M/NOPB
Description
IC REC LVDS DUAL DIFF SGNL 8SOIC
Manufacturer
National Semiconductor
Type
Receiverr
Datasheet

Specifications of DS90C402M/NOPB

Number Of Drivers/receivers
0/2
Protocol
RS644
Voltage - Supply
4.5 V ~ 5.5 V
Mounting Type
Surface Mount
Package / Case
8-SOIC (3.9mm Width)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
*DS90C402M
*DS90C402M/NOPB
DS90C402M

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
DS90C402M/NOPB
Manufacturer:
NSC
Quantity:
650
© 2005 National Semiconductor Corporation
DS90C402
Dual Low Voltage Differential Signaling (LVDS) Receiver
General Description
The DS90C402 is a dual receiver device optimized for high
data rate and low power applications. This device along with
the DS90C401 provides a pair chip solution for a dual high
speed point-to-point interface. The device is in a PCB space
saving 8 lead small outline package. The receiver offers
±
noise protection.
Connection Diagram
Functional Diagram
TRI-STATE
100 mV threshold sensitivity, in addition to common-mode
®
is a registered trademark of National Semiconductor Corporation.
DS100006
See NS Package Number M08A
Order Number DS90C402M
Features
n Ultra Low Power Dissipation
n Operates above 155.5 Mbps
n Standard TIA/EIA-644
n 8 Lead SOIC Package saves PCB space
n V
n
10000601
±
CM
100 mV Receiver Sensitivity
10000602
±
1V center around 1.2V
www.national.com
August 2005

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DS90C402M/NOPB Summary of contents

Page 1

... Connection Diagram Functional Diagram TRI-STATE ® registered trademark of National Semiconductor Corporation. © 2005 National Semiconductor Corporation Features n Ultra Low Power Dissipation n Operates above 155.5 Mbps n Standard TIA/EIA-644 n 8 Lead SOIC Package saves PCB space ± ...

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 ( IN+ IN− Output Voltage (R ) OUT Maximum Package Power Dissipation M Package Derate M Package Storage Temperature Range Lead Temperature Range Soldering (4 sec ...

Page 3

Parameter Measurement Information FIGURE 1. Receiver Propagation Delay and Transition Time Test Circuit FIGURE 2. Receiver Propagation Delay and Transition Time Waveforms Typical Application Applications Information LVDS drivers and receivers are intended to be primarily used in an uncomplicated point-to-point ...

Page 4

Applications Information 1. Open Input Pins. The DS90C402 is a dual receiver device, and if an application requires only one receiver, the unused channel(s) inputs should be left OPEN. Do not tie unused receiver inputs to ground or any other ...

Page 5

Typical Performance Characteristics Output High Voltage vs Power Supply Voltage Output Low Voltage vs Power Supply Voltage Output High Voltage vs Ambient Temperature 10000609 Output Low Voltage vs Ambient Temperature 10000611 5 10000610 10000612 www.national.com ...

Page 6

Typical Performance Characteristics Output Short Circuit Current vs Power Supply Voltage Differential Propagation Delay vs Power Supply Voltage www.national.com (Continued) Output Short Circuit Current vs Ambient Temperature 10000613 Differential Propagation Delay vs Ambient Temperature 10000615 6 10000614 10000616 ...

Page 7

Typical Performance Characteristics Differential Skew vs Power Supply Voltage Transition Time vs Power Supply Voltage (Continued) Differential Skew vs Ambient Temperature 10000617 Transition Time vs Ambient Temperature 10000619 7 10000618 10000620 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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