


Infineon Technologies
AUIPS6011R
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AUIPS6011R Description
AUIPS6011R Description
The AUIPS6011R from Infineon Technologies is a high-side power switch designed for automotive-grade applications, offering robust performance in demanding environments. This N-channel MOSFET-based load driver integrates a 1:1 input-to-output ratio and supports a maximum load voltage of 36V with a 5.6A continuous output current. Its surface-mount DPAK package ensures compact PCB integration while maintaining high thermal efficiency. Although marked as obsolete, its design remains relevant for legacy systems requiring reliable power distribution with minimal Rds(on) (11mΩ typical), reducing conduction losses.
AUIPS6011R Features
- Automotive Compliance: Meets stringent automotive reliability standards.
- Integrated Protections: Combines fixed current limiting, open-load detection, and over-temperature shutdown for fault resilience.
- Auto-Restart Functionality: Automatically recovers from fault conditions, minimizing downtime.
- Simplified Design: Operates without an external Vcc/Vdd supply, reducing BOM complexity.
- Low On-Resistance: 11mΩ typical Rds(on) enhances efficiency in high-current paths.
- Surface-Mount DPAK: Optimized for space-constrained layouts with MSL 1 (unlimited) moisture sensitivity.
AUIPS6011R Applications
- Automotive Systems: Ideal for ECUs, lighting controls, and motor drivers due to its ruggedized design.
- Power Distribution: Suited for high-side switching in battery management systems (BMS) and load switches.
- Industrial Loads: Drives solenoids, relays, and actuators with built-in fault protection.
- Legacy Upgrades: Replaces discrete MOSFET solutions in 12V/24V DC systems requiring integrated diagnostics.
Conclusion of AUIPS6011R
The AUIPS6011R excels in high-reliability environments with its low-loss switching, comprehensive protections, and automotive-grade durability. While obsolete, its auto-restart feature and minimal external component requirements make it a pragmatic choice for legacy designs or replacements. Engineers valuing efficiency, robustness, and diagnostic capabilities in 12V/24V DC systems will find this IC a compelling solution despite its phase-out status.
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