Microchip ATA6560-GBQW-N, CAN Transceiver 5 Mbps, 8-Pin

Offre groupée disponible

Sous-total (1 paquet de 25 unités)*

9,65 €

(TVA exclue)

11,675 €

(TVA incluse)

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  • Expédition à partir du 22 mai 2026
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Unité
Prix par unité
le paquet*
25 - 250,386 €9,65 €
50 - 4750,378 €9,45 €
500 - 9750,353 €8,83 €
1000 - 24750,346 €8,65 €
2500 +0,339 €8,48 €

*Prix donné à titre indicatif

Options de conditionnement :
N° de stock RS:
234-3717
Référence fabricant:
ATA6560-GBQW-N
Fabricant:
Microchip
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Marque

Microchip

Maximum Data Rate

5Mbps

Product Type

CAN Transceiver

Number of Transceivers

1

Sub Type

CAN Transceiver

Power Down Mode

Standby

Supply Current

5mA

Pin Count

8

Minimum Supply Voltage

4.5V

Maximum Supply Voltage

5.5V

Minimum Operating Temperature

-40°C

ESD Protection

Yes

Maximum Operating Temperature

150°C

Standards/Approvals

No

Series

ATA6560

Automotive Standard

No

The Microchip ATA6560-GBQW-N is a 8 pin high-speed CAN transceiver that provides an Interface between a Controller Area Network (CAN) protocol controller and the physical two-wire CAN bus. The transceiver is designed for high-speed (up to 5 Mbps) CAN applications in the automotive industry, providing differential transmit and receive capability to (a microcontroller with) a CAN protocol controller. It offers improved Electromagnetic Compatibility (EMC) and ESD performance.

Fully ISO 11898-2, ISO 11898-5, and SAE J2284 Compliant

CAN FD Ready

Communication Speed up to 5 Mbps

Low Electromagnetic Emission (EME) and High Electromagnetic Immunity (EMI)

Differential receiver with wide common-mode range

ATA6560: Silent Mode (Receive Only)

Remote wake-up Capability via CAN Bus

Functional behaviour predictable under all supply conditions

Transceiver disengages from the Bus when not powered up

RXD recessive clamping detection

High Electrostatic Discharge (ESD) handling capability on the bus pins

Bus pins are protected against transients in automotive environments

Transmit Data (TXD) Dominant Time-Out Function

Under voltage detection on VCC and VIO pins

CANH/CANL short-circuit and over temperature protected

Liens connexes

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