Manufacturer Part Number
ZXMS6001N3QTA
Manufacturer
diodes
Introduction
The ZXMS6001N3QTA is a high-performance, general-purpose power distribution switch that offers reliable and efficient power control for a wide range of automotive and industrial applications. This device features advanced protection mechanisms, making it a robust and versatile solution for demanding environments.
Product Features and Performance
1 output channel with 1:1 input to output ratio
N-channel MOSFET output with on-state resistance of 520mΩ (typical)
Capable of handling up to 60V input voltage and 1.1A output current
Integrated over-temperature, over-voltage, short-circuit, and current-limiting protection
Automatic restart feature for fault recovery
Wide operating temperature range of -40°C to 125°C
Product Advantages
Robust protection features ensure reliable and safe operation
Low on-state resistance for efficient power delivery
Compact surface-mount package for space-constrained designs
Automotive-grade qualification for harsh environment applications
Key Reasons to Choose This Product
Reliable and efficient power distribution control
Advanced fault protection mechanisms for enhanced system safety
Compact and space-saving design for easy integration
Automotive-grade qualification for demanding applications
Quality and Safety Features
AEC-Q101 qualified for automotive applications
Robust design with comprehensive protection features
Rigorous quality control and testing procedures
Compatibility
The ZXMS6001N3QTA is compatible with a wide range of automotive and industrial electronic systems that require reliable and efficient power distribution control.
Application Areas
Automotive systems (e.g., infotainment, lighting, powertrain)
Industrial control systems
General power distribution and control applications
Product Lifecycle
The ZXMS6001N3QTA is an active product, and there are currently no plans for discontinuation. Customers should contact our website's sales team for the latest information on availability and any potential alternative models.