仕様
| 属性 | 値 |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| Series | Automotive, AEC-Q100 |
| ProductStatus | Active |
| Type | Transceiver |
| Protocol | CANbus |
| NumberofDrivers/Receivers | 1/1 |
| Duplex | Half |
| DataRate | 5Mbps |
| Voltage-Supply | 4.75V ~ 5.25V |
| OperatingTemperature | -40°C ~ 150°C |
| MountingType | Surface Mount |
| Package/Case | 8-SOIC (0.154, 3.90mm Width) |
概要
Description
The NCV7344D13R2G is a high-speed CAN transceiver designed for automotive and industrial applications. It conforms to the ISO 11898-2 standard, ensuring reliable communication in Controller Area Network (CAN) systems. This transceiver supports data rates up to 5 Mbps, making it suitable for modern applications that require high-speed data exchange.
Key features of the NCV7344D13R2G include dominant time-out functionality to prevent bus lock-up, thermal protection, and short-circuit protection, enhancing its robustness and reliability. The device operates over a wide voltage range and is optimized for low electromagnetic emissions, which is crucial in automotive environments to minimize interference with other electronic systems.
With its compact package and low power consumption, the NCV7344D13R2G is ideal for space-constrained applications. It also includes a low-power standby mode, which reduces power usage when the transceiver is not active. Overall, the NCV7344D13R2G is a versatile and reliable component for ensuring efficient CAN communication in demanding environments.
Key features of the NCV7344D13R2G include dominant time-out functionality to prevent bus lock-up, thermal protection, and short-circuit protection, enhancing its robustness and reliability. The device operates over a wide voltage range and is optimized for low electromagnetic emissions, which is crucial in automotive environments to minimize interference with other electronic systems.
With its compact package and low power consumption, the NCV7344D13R2G is ideal for space-constrained applications. It also includes a low-power standby mode, which reduces power usage when the transceiver is not active. Overall, the NCV7344D13R2G is a versatile and reliable component for ensuring efficient CAN communication in demanding environments.
Equivalent
The NCV7344D13R2G is a LIN (Local Interconnect Network) transceiver. Equivalent products include:
1. TJA1021 by NXP Semiconductors
2. TH8056 by Melexis
3. ATA6624 by Microchip Technology
4. TLIN1029 by Texas Instruments
These alternatives offer similar functionalities for automotive communication networks, though specific features and performance may vary. Always review the datasheets to ensure compatibility with your specific application needs.
1. TJA1021 by NXP Semiconductors
2. TH8056 by Melexis
3. ATA6624 by Microchip Technology
4. TLIN1029 by Texas Instruments
These alternatives offer similar functionalities for automotive communication networks, though specific features and performance may vary. Always review the datasheets to ensure compatibility with your specific application needs.
Features
The NCV7344D13R2G is a high-speed CAN (Controller Area Network) transceiver designed for automotive and industrial applications. It enables robust communication in harsh environments, featuring a wide supply voltage range from 3 V to 5.25 V. The device offers excellent electromagnetic compatibility (EMC) and low electromagnetic emission (EME), making it suitable for automotive networks. It supports data rates up to 1 Mbps for high-speed CAN applications.
Key features include thermal shutdown protection, bus pins with voltage protection up to ±36 V, and low current consumption in standby mode, enhancing energy efficiency. The transceiver's ESD protection ensures durability against electrostatic discharge, enhancing device reliability. Additionally, the device supports fail-safe features like a dominant timeout function to prevent bus lock-up situations.
With its compact SOIC-8 package, the NCV7344D13R2G is ideal for space-constrained applications. The transceiver complies with the ISO 11898-2 standard, ensuring compatibility with other CAN devices. Overall, it provides reliable, high-speed communication while maintaining robustness in challenging environments.
Key features include thermal shutdown protection, bus pins with voltage protection up to ±36 V, and low current consumption in standby mode, enhancing energy efficiency. The transceiver's ESD protection ensures durability against electrostatic discharge, enhancing device reliability. Additionally, the device supports fail-safe features like a dominant timeout function to prevent bus lock-up situations.
With its compact SOIC-8 package, the NCV7344D13R2G is ideal for space-constrained applications. The transceiver complies with the ISO 11898-2 standard, ensuring compatibility with other CAN devices. Overall, it provides reliable, high-speed communication while maintaining robustness in challenging environments.
Pinout
The NCV7344D13R2G is an integrated circuit designed for automotive and industrial CAN (Controller Area Network) communication applications. It is manufactured by ON Semiconductor. This device is a high-speed CAN transceiver that operates as the interface between the CAN controller and the physical bus.
The critical specifications for the NCV7344D13R2G include:
- Pin Count: This device is housed in an 8-pin SOIC (Small Outline Integrated Circuit) package.
- Functionality: The transceiver provides the differential transmit and receive capability to a CAN bus, supporting communication speeds of up to 1 Mbps. It serves to convert the single-ended CAN controller signals to the differential signals used on the CAN bus, and vice versa, while also providing protection features such as thermal shutdown, short circuit protection, and overvoltage protection.
This device is commonly used in automotive networks where reliable and robust communication is critical, and it adheres to the ISO 11898-2 standard.
The critical specifications for the NCV7344D13R2G include:
- Pin Count: This device is housed in an 8-pin SOIC (Small Outline Integrated Circuit) package.
- Functionality: The transceiver provides the differential transmit and receive capability to a CAN bus, supporting communication speeds of up to 1 Mbps. It serves to convert the single-ended CAN controller signals to the differential signals used on the CAN bus, and vice versa, while also providing protection features such as thermal shutdown, short circuit protection, and overvoltage protection.
This device is commonly used in automotive networks where reliable and robust communication is critical, and it adheres to the ISO 11898-2 standard.
Manufacturer
The NCV7344D13R2G is manufactured by ON Semiconductor, now known as onsemi. onsemi is a leading semiconductor company that specializes in energy-efficient innovations, providing a comprehensive portfolio of products for various applications, including automotive, industrial, cloud power, and Internet of Things (IoT). The company's products and solutions are designed to improve energy efficiency and provide sustainable solutions across multiple sectors.
Application
The NCV7344D13R2G is a high-speed CAN transceiver commonly used in automotive applications. It is suitable for in-vehicle networking, facilitating communication between various electronic control units (ECUs) in cars. This enables functions such as engine control, transmission control, and anti-lock braking systems (ABS). Outside of automotive, it is used in industrial automation and control systems, where reliable high-speed communication is essential. Additionally, it can be applied in building and home automation systems to support communication in systems like HVAC and security. Its robust design and compliance with automotive standards make it ideal for environments requiring high reliability and noise resistance.
Package
The NCV7344D13R2G is a transceiver IC typically used in automotive communication systems. It is housed in a small SOIC-8 package, which is a type of Surface-Mount Device (SMD) package with 8 pins. This package type is suitable for compact applications and allows for efficient mounting on printed circuit boards.