CA-IF1051VS is a Replacement parts of
TLE9250SJXUMA1/TJA1051T/3/1J
/TJA1057GT/3J/TCAN1051VDRQ1
/TCAN1051GVDRQ1
Mfr.Part No. :
CA-IF1051VSManufacturer :
ChipanalogDescription :
Fault Protected CAN Transceiver with CAN FDPackaging :
ReelPackage :
SOIC8Stock :
in stockPrice :
$0.17-$0.32
CA-IF1051VS
Price: | $0.17-$0.32 | $0.52-$0.58 | $0.8-$1.1 | $0.6-$1.3 |
Replace parts:
Replacement parts:
Alternative parts:
Pin to pin parts:
|
CA-IF1051VS |
TJA1051T/3/1J
TJA1057GT/3J
|
TCAN1051VDRQ1
TCAN1051GVDRQ1
TCAN1051HVDRQ1
TCAN1051HGVDRQ1
TCAN1057VDRQ1
TCAN1057GVDRQ1
TCAN1057HVDRQ1
TCAN1057HGVDRQ1
|
TLE9250SJXUMA1
|
The CA-IF1051VS offers superior signal integrity and electromagnetic compatibility (EMC) compared to the TLE9250SJXUMA1, which is designed for robust communication but lacks the same level of protection against electromagnetic interference (EMI). The CA-IF1051VS includes advanced features such as over-voltage protection, reverse polarity protection, and thermal shutdown. Additionally, the CA-IF1051VS provides fast data transmission speeds and lower power consumption, making it more suitable for high-speed, power-sensitive automotive applications.
While the TJA1051T/3/1J offers reliable CAN transceiver capabilities, the CA-IF1051VS excels in fault tolerance with integrated error counters and advanced diagnostic features such as loopback testing. This makes the CA-IF1051VS ideal for systems where fast error detection and recovery are critical. Moreover, the CA-IF1051VS supports higher data rates and is optimized for low latency communication, whereas the TJA1051T/3/1J has a slower response time. Additionally, the CA-IF1051VS operates at a lower supply voltage, improving energy efficiency in automotive networks.
The TJA1057GT/3J is a solid transceiver, but the CA-IF1051VS offers better thermal performance, handling higher temperature ranges without compromising performance. The CA-IF1051VS is specifically designed with over-temperature protection and electrostatic discharge (ESD) protection, providing a more reliable solution in high-stress environments. Furthermore, the CA-IF1051VS delivers faster communication speeds and lower latency, enhancing the efficiency of high-speed systems. The TJA1057GT/3J, while effective, lacks the same comprehensive diagnostics and self-healing capabilities offered by the CA-IF1051VS.
The TCAN1051VDRQ1 is known for its robust CAN transceiver features but lacks the advanced fault management capabilities integrated into the CA-IF1051VS, such as automatic recovery from fault conditions and high-accuracy diagnostics. The CA-IF1051VS provides better protection against voltage surges, short-circuit conditions, and thermal overload, ensuring reliable operation in automotive systems. Additionally, the CA-IF1051VS is more power-efficient, offering lower standby current consumption, which is critical in battery-operated systems. In contrast, the TCAN1051VDRQ1 consumes more power during similar operations.
The TCAN1051GVDRQ1 provides stable operation for CAN systems but does not offer the advanced diagnostics and self-protection features that are present in the CA-IF1051VS. The CA-IF1051VS includes over-current protection, voltage spikes suppression, and sophisticated fault detection mechanisms, which are crucial in automotive and industrial environments. Additionally, the CA-IF1051VS supports a wider operating temperature range, making it suitable for use in extreme environmental conditions where the TCAN1051GVDRQ1 may not perform optimally.
The CA-IF1051VS offers several significant advantages over its competitors, including enhanced protection features, superior fault tolerance, faster data rates, and lower power consumption. Its advanced diagnostic capabilities, such as loopback testing, error logging, and automatic fault recovery, provide a level of reliability that is not found in many competitors, including the TLE9250SJXUMA1, TJA1051T/3/1J, TJA1057GT/3J, and TCAN1051 series chips. These features make the CA-IF1051VS an ideal choice for automotive communication systems that demand high performance, reliability, and energy efficiency.
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