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onsemi NCV7349D13R2GRoHS

Manufacturer
MPN
NCV7349D13R2G
LCSC Part #
C893047
Packaging
SOIC-8
Customer #
Key Attributes
High Speed Low Power CAN Transceiver
Datasheetpdf icononsemi NCV7349D13R2G
In-Stock: 170
170 In stock, ships now
Add to BOM List
QtyUnit PriceTotal Amount
1+$ 1.2817$ 1.28
10+$ 1.0628$ 10.63
30+$ 0.9423$ 28.27
100+$ 0.8059$ 80.59
500+$ 0.7456$ 372.80
1,000+$ 0.7186$ 718.60
Standard Packaging3000/Full Reel
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Products Specifications

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TypeDescription
CategoryIntegrated Circuits (ICs)/Interface/Drivers, Receivers, Transceivers
Manufactureronsemi
PackagingSOIC-8
TypeCAN Transceiver
Voltage - Supply4.75V~5.25V
number of channels-
Data Rate1Mbps
Operating Temperature-40℃~+150℃
FeaturesLow-power mode;Wake-up function;TXD dominant timeout;Thermal shutdown protection;Undervoltage Protection;Bus fault protection;ESD protection;Integrated level shifting
Supply Current75mA
Quiescent Supply Current10uA

Additional Information

TypeDetails
Minimum1
Multiple1
Standard Packaging3000
Sales UnitPiece

Introduction

AI Translation

The NCV7349 CAN transceiver is the interface between a controller area network (CAN) protocol controller and the physical bus. The transceiver provides differential transmit capability to the bus and differential receive capability to the CAN controller. The NCV7349 is a new addition to the CAN high−speed transceiver family complementing NCV734x CAN family and previous generations of CAN transceivers such as AMIS42665, AMIS3066x, etc. Due to the wide common−mode voltage range of the receiver inputs and other design features, the NCV7349 is able to reach outstanding levels of electromagnetic susceptibility (EMS). Similarly, very low electromagnetic emission (EME) is achieved by the excellent matching of the output signals.

Features

AI Translation
  • Compatible with the ISO 11898−5 Standard
  • High Speed (up to 1 Mbps)
  • VIO Pin on NCV7349−3 Version Allowing Direct Interfacing with 3 V to 5 V Microcontrollers
  • Very Low Current Standby Mode with Wake−up via the Bus
  • Low Electromagnetic Emission (EME) and Extremely High Electromagnetic Immunity
  • Very Low EME without Common−mode (CM) Choke
  • No Disturbance of the Bus Lines with an Un−powered Node
  • Transmit Data (TxD) Dominant Time−out Function
  • Under All Supply Conditions the Chip Behaves Predictably
  • Very High ESD Robustness of Bus Pins, > 10 kV System ESD Pulses
  • Thermal Protection
  • Bus Pins Short Circuit Proof to Supply Voltage and Ground
  • Bus Pins Protected Against Transients in an Automotive
  • These are Pb −Free Devices

Applications

AI Translation
  • Automotive
  • Industrial Networks