Manufacturer Part Number
MP3422GG-Z
Manufacturer
Monolithic Power Systems
Introduction
The MP3422GG-Z is a step-up DC DC switching regulator designed for power management in electronic devices, ensuring efficient voltage conversion from lower to higher values.
Product Features and Performance
Boost topology for efficient step-up voltage conversion
Supports a wide input voltage range from 1.9V to 5.5V
Produces adjustable output voltage ranging from 2.5V to 5.5V
Capable of delivering output current up to 6.5A
High switching frequency of 600kHz for reduced component size
Integrated synchronous rectifier for improved efficiency
Operates effectively within a temperature range of -40°C to 125°C
Product Advantages
High efficiency and reliability in voltage conversion
Flexibility with adjustable output voltage
Supports a wide range of input voltages, enhancing compatibility with various power sources
High output current capacity suits demanding applications
Key Technical Parameters
Voltage Input (Min): 1.9V
Voltage Input (Max): 5.5V
Voltage Output (Min/Fixed): 2.5V
Voltage Output (Max): 5.5V
Current Output: 6.5A (Switch)
Frequency Switching: 600kHz
Operating Temperature: -40°C ~ 125°C (TJ)
Quality and Safety Features
Built to operate reliably in extreme temperature conditions
Strict adherence to quality standards in manufacturing
Compatibility
Compatible with a broad range of input voltage sources
Surface mount technology (SMT) facilitates integration into various circuit designs
Application Areas
Mobile devices
Portable electronics
Power supply modules
Consumer electronics
Product Lifecycle
Status: Active
No known discontinuation date, ensuring long-term availability
Updates and replacements available
Several Key Reasons to Choose This Product
High efficiency enhances battery life in portable applications
Adjustable output voltage provides design flexibility
Supports a wide input voltage range for various power sources
High current output capability for high-demand applications
Robust thermal performance ensures reliability under harsh conditions