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TJA1040T/CM
+BOMCAN Interface IC TJA1040T/SO8//CM/REEL 13 Q1/T1 *STANDARD MARK SMD
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제조업체 부품 #TJA1040T/CM
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데이터시트 TJA1040T/CM DataSheet
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사양
| 속성 | 가치 |
개요
Description
Key features of the TJA1040T/CM include low electromagnetic emissions (EME) and high electromagnetic immunity (EMI), crucial for reliable communication in harsh environments. It supports data rates up to 1 Mbps, ensuring swift and efficient data exchange. The device includes a standby mode, reducing power consumption when the bus is inactive.
The TJA1040T/CM also incorporates thermal protection and short-circuit protection to safeguard against potential damage due to overheating or electrical issues. It is designed to be fully compliant with the ISO 11898 standard, ensuring compatibility with other CAN devices. The transceiver is housed in a small package, making it suitable for space-constrained applications. Its robust performance and reliability make it a popular choice for automotive and industrial CAN network implementations.
Equivalent
1. NXP TJA1040 series
2. Microchip MCP2551
3. Texas Instruments SN65HVD230
4. ON Semiconductor AMIS-30660
5. Infineon TLE6250
These alternatives provide similar functionalities, such as high-speed communication, low power consumption, and robust performance suitable for automotive and industrial applications. Always check the specific datasheets for compatibility with your application requirements.
Features
1. High-Speed Communication: Supports data rates up to 1 Mbps, complying with ISO 11898-2 standard.
2. Low Power Consumption: Offers low power standby and sleep modes, minimizing energy usage.
3. Enhanced EMC Performance: Optimized for electromagnetic compatibility to ensure reliable performance in noisy environments.
4. Bus Failure Management: Integrates features like short-circuit protection, over-temperature protection, and dominant-recessive state management.
5. Wide Operating Voltage: Operates within a wide supply voltage range, enhancing flexibility in various applications.
6. Thermal Protection: Includes thermal shutdown feature to prevent damage from overheating.
7. Silent Mode: Supports listen-only mode to reduce power consumption while monitoring the bus.
8. Differential Receiver: Provides robust signal integrity and noise immunity.
These features make the TJA1040T/CM suitable for use in automotive networks, industrial control systems, and other high-speed communication applications.
Pinout
1. TXD (Transmit Data Input): Connects to the microcontroller to send data.
2. RXD (Receive Data Output): Connects to the microcontroller to receive data.
3. VCC (Supply Voltage): Power supply input, typically 4.75V to 5.25V.
4. GND (Ground): Ground reference for the device.
5. CANH (CAN High): High-level voltage of the CAN bus line.
6. CANL (CAN Low): Low-level voltage of the CAN bus line.
7. STB (Standby): Used to switch the transceiver to standby mode to reduce power consumption.
8. RTH (Termination Resistor High): Provides an option for a high-side termination resistor connection.
These pins enable the TJA1040T/CM to interface seamlessly with microcontrollers and the CAN bus, facilitating robust communication in CAN networks.
Manufacturer
NXP is known for its focus on innovation in the areas of secure connectivity and infrastructure. The company provides solutions that enable secure connections for a smarter world, advancing innovations in the automotive sector, cybersecurity, and the Internet of Things (IoT). As one of the leading suppliers in the semiconductor industry, NXP serves a diverse range of industries and has a significant presence worldwide.
Application
1. Automotive Systems: Used in vehicle networking for engine management, body control, and infotainment systems.
2. Industrial Automation: Employed in factory automation for robust and efficient machine communication.
3. Building Automation: Utilized in smart building systems for managing HVAC, lighting, and security.
4. Medical Equipment: Supports communication in medical devices requiring reliable data exchange.
5. Transportation: Used in various transportation systems for efficient network communication.
These applications benefit from its low power consumption, high-speed data transfer, and robust performance.