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| 포장 유형 | 수량 | 단가: | 총계 |
|---|---|---|---|
| 컷 테이프 | 1 | ₩1,529 | ₩1,529 |
| 총계 가격 | ₩1,529 | ||
| 수량 | 가격 |
|---|---|
| 1+ | ₩1,529 |
| 10+ | ₩1,104 |
| 50+ | ₩995 |
| 100+ | ₩876 |
| 250+ | ₩819 |
| 500+ | ₩785 |
| 1000+ | ₩761 |
| 2500+ | ₩747 |
제품 정보
제품 개요
TJA1042CT/0Z is a high-speed CAN transceiver with standby mode. It provides an interface between a controller area network (CAN) protocol controller and the physical two-wire CAN bus. This transceiver is designed for high-speed CAN applications in the automotive industry, providing the differential transmit and receive capability to (a microcontroller with) a CAN protocol controller. It belongs to the third generation of high-speed CAN transceivers from NXP semiconductors, offering significant improvements over first- and second-generation devices such as the TJA1040. It offers improved electro magnetic compatibility (EMC) and electro static discharge (ESD) performance. It implements the CAN physical layer as defined in ISO 11898-2:2016 and SAE J2284-1 to SAE J2284-5. This implementation enables reliable communication in the CAN FD fast phase at data rates up to 5Mbit/s. It features shorter propagation delay, supporting larger network topologies.
- Timing guaranteed for data rates upto 5Mbit/s in the CAN FD fast phase
- Suitable for 12V and 24V systems
- Variants with a VIO pin allow for direct interfacing with 3.3V to 5V microcontrollers
- Shorter propagation delay on the TJA1042B and TJA1042C variants supports larger network topologies
- SPLIT voltage output on TJA1042T and TJA1042CT for stabilizing the recessive bus level
- AEC-Q100 qualified
- Supply voltage range from 4.5 to 5.5V (Tvj = -40°C to +150°C)
- 0.5VCC output voltage typical (normal mode ISPLIT = -500 to +500μA, Tvj = -40°C to +150°C)
- 25μs typical standby to normal mode delay time (Tvj = -40°C to +150°C)
- SO8 package, virtual junction temperature range from -40°C to +150°C
기술 사양
CAN Transceiver
4.5V
SOIC
1Channels
1Receivers
150°C
AEC-Q100
5Mbps
5.5V
8Pins
2Drivers
-40°C
-
No SVHC (27-Jun-2024)
기술 문서 (1)
법률 및 환경
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최종후의 중요 제조 공정이 이루어진 국가
RoHS
RoHS
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