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AMIS41682CANM1G
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AMIS41682CANM1G Description
AMIS41682CANM1G Description
The AMIS41682CANM1G from onsemi is a CANbus transceiver designed for robust half-duplex communication in industrial and automotive networks. Housed in a 14-SOIC surface-mount package, this obsolete component remains relevant for legacy systems requiring reliable Controller Area Network (CAN) interfacing. Operating within a 4.75V to 5.25V supply range, it integrates 1 driver and 1 receiver, ensuring efficient data transmission with 70 mV receiver hysteresis for noise immunity. Compliant with EAR99 and REACH Unaffected standards, it suits global deployments.
AMIS41682CANM1G Features
- Half-Duplex CANbus Transceiver: Optimized for bidirectional communication in noisy environments.
- High Noise Immunity: 70 mV hysteresis minimizes signal distortion in industrial settings.
- Wide Voltage Range: 4.75V–5.25V operation supports stable performance across power fluctuations.
- Robust Packaging: 14-SOIC tube packaging ensures mechanical durability and ease of assembly.
- Legacy Compliance: Meets EAR99 and HTSUS 8542.39.0001 regulations for export-friendly designs.
- Moisture Resistance: MSL 2 (1 Year) rating protects against environmental degradation.
AMIS41682CANM1G Applications
- Automotive Systems: Legacy CAN networks in vehicle diagnostics or infotainment.
- Industrial Automation: PLCs, motor control, and sensor interfaces requiring noise-resistant communication.
- Embedded Systems: Retrofit designs needing proven CANbus compatibility.
- HVAC Controls: Reliable data transmission in climate management systems.
Conclusion of AMIS41682CANM1G
The AMIS41682CANM1G excels in rugged, half-duplex CAN applications, offering high noise immunity and legacy compliance. While obsolete, its industrial-grade robustness and 5V operation make it a pragmatic choice for maintenance of existing systems or niche designs prioritizing reliability over cutting-edge features. Ideal for engineers seeking a drop-in solution for CANbus networks in harsh electrical environments.



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