Manufacturer Part Number
BD00D0AWHFP-TR
Manufacturer
ROHM Semiconductor
Introduction
The BD00D0AWHFP-TR is a high-performance, low-dropout (LDO) linear voltage regulator from ROHM Semiconductor. It is designed to provide a stable and reliable power supply solution for a wide range of electronic devices and applications.
Product Features and Performance
Adjustable output voltage from 3V to 15V
Maximum output current of 2A
Low dropout voltage of 0.55V @ 1A
High power supply rejection ratio (PSRR) of 55dB at 120Hz
Enable control feature
Over-current and over-temperature protection
Wide operating temperature range of -40°C to 105°C
Surface mount package (HRP-5) for compact design
Product Advantages
Excellent load and line regulation for stable output voltage
Efficient heat dissipation through the exposed thermal pad
Robust protection features for reliable operation
Small package size for space-constrained applications
Key Reasons to Choose This Product
Reliable and stable power supply solution
Versatile adjustable output voltage range
High output current capability
Compact and thermally efficient package
Advanced protection features for safe operation
Quality and Safety Features
Robust protection against over-current and over-temperature conditions
Rigorous quality control and testing during manufacturing
Compliance with relevant industry standards
Compatibility
The BD00D0AWHFP-TR is compatible with a wide range of electronic devices and systems that require a stable and regulated power supply, such as:
Consumer electronics
Industrial control systems
Automotive electronics
Telecommunications equipment
Medical devices
Application Areas
Power supplies for electronic devices
Voltage regulation in industrial and automotive applications
Regulated power for microcontrollers and digital circuits
Battery-powered systems
Product Lifecycle
The BD00D0AWHFP-TR is an active product in our website's sales team's portfolio. There are no plans for discontinuation at this time. Customers can contact our website's sales team for information on any potential equivalent or alternative models.