Manufacturer Part Number
MP3426DL-LF-Z
Manufacturer
Monolithic Power Systems
Introduction
The MP3426DL-LF-Z is a part of the category Power Management (PMIC) focusing on DC DC Switching Regulators and is designed for applications requiring efficient voltage step-up.
Product Features and Performance
Functions as a Step-Up (Boost) Converter
Adjustable output voltage up to 35V
Capable of driving 6A switch current
Supports a broad input voltage range from 3.2V to 22V
Converters operate at a frequency between 300kHz and 2MHz
Implemented in a 14-VFDFN Exposed Pad package
Product Advantages
Supports higher current and voltage for diverse applications
Flexible input voltage range suitable for various power sources
High efficiency due to the boost topology
Compact package favorable for space-constrained applications
Key Technical Parameters
Voltage Input (Min): 3.2V
Voltage Input (Max): 22V
Voltage Output (Min/Fixed): 3.2V
Voltage Output (Max): 35V
Current Output: 6A (Switch)
Switching Frequency: 300kHz ~ 2MHz
Operating Temperature: -40°C ~ 85°C
Quality and Safety Features
Built to operate reliably within a wide temperature range (from -40°C to 85°C)
Provides stable performance under various environmental conditions
Compatibility
Surface mount technology for compatibility with standard PCB manufacturing processes
Application Areas
Industrial power supplies
Battery powered devices
Portable electronic devices
Networking and telecommunication equipment
Product Lifecycle
Currently active with ongoing production
No indication of nearing discontinuation
Availability of replacements or upgrades not specified
Several Key Reasons to Choose This Product
High current and voltage output capacities enhance suitability for demanding applications
Wide input voltage range allows flexibility in usage across different power levels
Adjustable output for precise voltage regulation to meet specific requirements
High switching frequency facilitates reduced size of filtering components
Reliable operation across a broad temperature spectrum ensures suitability for challenging environments