사양
| 속성 | 가치 |
| Package / Case | Tape & Reel (TR),Cut Tape (CT),Bulk |
| Series | Automotive, AEC-Q100 |
| Part Status | Active |
| Type | Transceiver |
| Protocol | LINbus |
| Number of Drivers/Receivers | 1/1 |
| Duplex | Half |
| Data Rate | 20kbps |
| Voltage - Supply | 7V ~ 27V |
| Operating Temperature | -40°C ~ 125°C |
| Mounting Type | Surface Mount |
개요
Description
The SN65HVDA195QDRQ1 is an automotive-qualified LIN (Local Interconnect Network) transceiver designed by Texas Instruments. It serves as a bridge between the LIN protocol controller and the physical bus line, facilitating communication within automotive networks. Key features include compliance with LIN 2.0, 2.1, and SAE J2602 standards, ensuring compatibility with various automotive communication systems.
Operating with a supply voltage range of 7 V to 27 V, the device includes numerous protection features like over-temperature shutdown, undervoltage lockout, and bus terminal ESD protection, enhancing reliability in harsh automotive environments. The transceiver supports baud rates up to 20 kbps, making it suitable for data transmission in lower-speed networks commonly used for body electronics, climate control, and lighting systems.
In terms of packaging, the SN65HVDA195QDRQ1 is commonly available in an 8-pin SOIC (Small Outline Integrated Circuit) package, which is space-efficient and easy to integrate into automotive electronic modules. Its robust design and compliance with automotive standards make it a reliable choice for LIN-based communication in vehicles.
Operating with a supply voltage range of 7 V to 27 V, the device includes numerous protection features like over-temperature shutdown, undervoltage lockout, and bus terminal ESD protection, enhancing reliability in harsh automotive environments. The transceiver supports baud rates up to 20 kbps, making it suitable for data transmission in lower-speed networks commonly used for body electronics, climate control, and lighting systems.
In terms of packaging, the SN65HVDA195QDRQ1 is commonly available in an 8-pin SOIC (Small Outline Integrated Circuit) package, which is space-efficient and easy to integrate into automotive electronic modules. Its robust design and compliance with automotive standards make it a reliable choice for LIN-based communication in vehicles.
Equivalent
The SN65HVDA195QDRQ1 is a LIN transceiver from Texas Instruments. Equivalent products include:
1. NXP TJA1021
2. Microchip ATA6628
3. Infineon TLE7259-2GE
4. ON Semiconductor NCV7321
5. STMicroelectronics L9616
These alternatives offer similar functionalities for LIN communication in automotive applications. Always verify the specific requirements and electrical characteristics for compatibility.
1. NXP TJA1021
2. Microchip ATA6628
3. Infineon TLE7259-2GE
4. ON Semiconductor NCV7321
5. STMicroelectronics L9616
These alternatives offer similar functionalities for LIN communication in automotive applications. Always verify the specific requirements and electrical characteristics for compatibility.
Features
The SN65HVDA195QDRQ1 is an automotive-qualified CAN transceiver developed by Texas Instruments. It is designed to interface between the Controller Area Network (CAN) protocol controller and the physical wires of the CAN bus. Key features include:
1. High-Speed CAN Transceiver: Compliant with ISO 11898-2, supporting data rates up to 1 Mbps.
2. Automotive Qualification: AEC-Q100 qualified for automotive applications.
3. Wide Voltage Range: Operates over a wide voltage range from 4.5V to 5.5V.
4. Thermal and Short Circuit Protection: Built-in protection mechanisms to safeguard against thermal overloads and short circuits.
5. Low Power Modes: Includes a low-power standby mode to reduce power consumption when the bus is idle.
6. Electromagnetic Compatibility: Designed for low electromagnetic emissions, enhancing signal integrity and reducing interference.
7. Wake-Up Functionality: Offers wake-up capability via a dominant signal on the CAN bus.
8. Bus Fault Protection: Protects against faults such as loss of ground and battery short circuits.
These features make the SN65HVDA195QDRQ1 suitable for robust and reliable in-vehicle networking applications.
1. High-Speed CAN Transceiver: Compliant with ISO 11898-2, supporting data rates up to 1 Mbps.
2. Automotive Qualification: AEC-Q100 qualified for automotive applications.
3. Wide Voltage Range: Operates over a wide voltage range from 4.5V to 5.5V.
4. Thermal and Short Circuit Protection: Built-in protection mechanisms to safeguard against thermal overloads and short circuits.
5. Low Power Modes: Includes a low-power standby mode to reduce power consumption when the bus is idle.
6. Electromagnetic Compatibility: Designed for low electromagnetic emissions, enhancing signal integrity and reducing interference.
7. Wake-Up Functionality: Offers wake-up capability via a dominant signal on the CAN bus.
8. Bus Fault Protection: Protects against faults such as loss of ground and battery short circuits.
These features make the SN65HVDA195QDRQ1 suitable for robust and reliable in-vehicle networking applications.
Pinout
The SN65HVDA195QDRQ1 is an integrated circuit designed for Local Interconnect Network (LIN) applications. It typically features an 8-pin configuration. Here is a brief overview of its pin functions:
1. TXD (Pin 1): Transmit data input. This pin is used to send data from the microcontroller to the LIN bus.
2. RXD (Pin 2): Receive data output. It provides the data received from the LIN bus to the microcontroller.
3. VCC (Pin 3): Supply voltage. It powers the device.
4. GND (Pin 4): Ground connection.
5. LIN (Pin 5): LIN bus line. This pin connects to the LIN bus and is used for both transmitting and receiving data.
6. EN (Pin 6): Enable input. This pin is used to enable or disable the transceiver.
7. WAKE (Pin 7): Wake-up input. It allows the device to be brought out of sleep mode.
8. NRES (Pin 8): Reset output. This pin indicates the reset status of the device.
These pins collectively support the control and data handling necessary for LIN communication, making the SN65HVDA195QDRQ1 suitable for automotive and industrial applications.
1. TXD (Pin 1): Transmit data input. This pin is used to send data from the microcontroller to the LIN bus.
2. RXD (Pin 2): Receive data output. It provides the data received from the LIN bus to the microcontroller.
3. VCC (Pin 3): Supply voltage. It powers the device.
4. GND (Pin 4): Ground connection.
5. LIN (Pin 5): LIN bus line. This pin connects to the LIN bus and is used for both transmitting and receiving data.
6. EN (Pin 6): Enable input. This pin is used to enable or disable the transceiver.
7. WAKE (Pin 7): Wake-up input. It allows the device to be brought out of sleep mode.
8. NRES (Pin 8): Reset output. This pin indicates the reset status of the device.
These pins collectively support the control and data handling necessary for LIN communication, making the SN65HVDA195QDRQ1 suitable for automotive and industrial applications.
Manufacturer
The SN65HVDA195QDRQ1 is manufactured by Texas Instruments (TI). Texas Instruments is a global semiconductor design and manufacturing company. They specialize in the production of a wide range of electronic components, including integrated circuits, processors, and analog devices. TI serves a variety of industries such as automotive, industrial, consumer electronics, and communications, providing solutions that enable the advancement of technology.
Application
The SN65HVDA195QDRQ1 is a LIN (Local Interconnect Network) transceiver primarily used in automotive applications. It facilitates communication between microcontrollers and LIN networks. Key application areas include vehicle body electronics, such as door modules, seat controls, lighting systems, and climate control systems. It's utilized in powertrain systems for engine and transmission control. Additionally, the transceiver is employed in infotainment systems and other automotive subsystems requiring reliable, low-speed, cost-effective communication. Its AEC-Q100 qualification makes it suitable for harsh automotive environments.
Package
The SN65HVDA195QDRQ1 is typically available in an SOIC (Small Outline Integrated Circuit) package with 8 pins. This package type is commonly used for automotive applications due to its reliability and compact size.