Manufacturer Part Number
BD2041AFJ-E2
Manufacturer
rohm-semi
Introduction
The BD2041AFJ-E2 is a highly integrated power management IC (PMIC) that serves as a power distribution switch and load driver. It is designed to provide efficient and reliable power distribution in a wide range of electronic devices, particularly those with USB interfaces.
Product Features and Performance
Single-channel N-channel MOSFET switch
1:1 input-to-output ratio
Output voltage range: 2.7V to 5.5V
Maximum output current: 500mA
Low on-resistance (RDS(on)): 80mOhm (typical)
Non-inverting input interface
Status flag for output status monitoring
Integrated fault protection features:
- Current limiting
- Overtemperature protection
- Reverse current protection
- Undervoltage lockout (UVLO)
Wide operating temperature range: -40°C to 85°C
Product Advantages
Efficient power distribution with low power loss
Robust fault protection for reliable operation
Compact surface-mount package for space-constrained designs
Suitable for a wide range of USB-powered applications
Key Reasons to Choose This Product
Reliable and efficient power management for USB-based devices
Comprehensive fault protection ensures safe and stable operation
Space-saving design with small footprint for versatile integration
Broad operating temperature range for use in various environments
Quality and Safety Features
Integrated fault protection mechanisms for enhanced safety and reliability
Compliance with relevant industry standards for power management ICs
Compatibility
The BD2041AFJ-E2 is compatible with a wide range of USB-powered electronic devices and can be integrated into various applications that require efficient power distribution and load driving.
Application Areas
USB-powered consumer electronics
Mobile devices and accessories
Industrial and medical equipment
Networking and communication devices
Product Lifecycle
The BD2041AFJ-E2 is currently in the Obsolete product status. Customers are advised to contact our website's sales team for information on available equivalent or alternative models.