Manufacturer Part Number
BD8120FP-E2
Manufacturer
ROHM Semiconductor
Introduction
The BD8120FP-E2 is a high-efficiency, multi-channel power management integrated circuit (PMIC) designed for use in a wide range of portable electronic devices. It features multiple configurable output channels, advanced power management capabilities, and robust protection mechanisms to ensure reliable and efficient power delivery.
Product Features and Performance
Supports up to 4 configurable output channels
High efficiency with low power consumption
Integrated switching regulators for improved power conversion
Configurable output voltages and current limits
Comprehensive protection features including overcurrent, overvoltage, and thermal protection
Small package size for compact design integration
Product Advantages
Flexible multi-channel power management
Optimized for power-sensitive applications
Enhanced efficiency and thermal performance
Reliable protection against various fault conditions
Compact form factor for space-constrained designs
Key Reasons to Choose This Product
Efficient and reliable power management for portable devices
Configurable to meet specific application requirements
Robust protection features ensure safe and stable operation
Compact size enables integration in space-limited designs
ROHM's reputation for quality and innovation in power management solutions
Quality and Safety Features
Rigorous quality control and testing
Compliance with industry safety standards
Proven reliability in various end-use applications
Compatibility
The BD8120FP-E2 is compatible with a wide range of portable electronic devices, including smartphones, tablets, wearables, and other battery-powered products.
Application Areas
Smartphones and tablets
Wearable electronics
Portable audio/video devices
IoT and sensor-based applications
Other battery-powered consumer electronics
Product Lifecycle
The BD8120FP-E2 is an obsolete product and is no longer in active production. Customers are advised to contact our website's sales team for information on available alternative or equivalent models that may better suit their current design requirements.