Manufacturer Part Number
HFC0500GS-Z
Manufacturer
Monolithic Power Systems
Introduction
The HFC0500GS-Z is part of Monolithic Power Systems' Power Management Integrated Circuits, designed for AC DC converters and offline switching applications. Featured with an isolated output and a range of fault protection options, it is crafted for efficient power management tasks.
Product Features and Performance
Isolated output ensures enhanced safety and noise reduction
Flyback topology providing a straightforward and efficient power conversion
Soft start control reduces inrush current impact
Wide input voltage supply range (9V ~ 24V)
High voltage breakdown capacity at 790V
Supports switching frequency at 25kHz
Optimal power output of 1.3 Watts
Product Advantages
High efficiency and reliability for power management tasks
Robust fault protection including over load, over temperature, and over voltage
Compact and durable design in an 8-SOIC package
Key Technical Parameters
Output Isolation: Isolated
Voltage Breakdown: 790V
Voltage Supply (Vcc/Vdd): 9V ~ 24V
Duty Cycle: 50%
Frequency Switching: 25kHz
Power (Watts): 1.3 W
Quality and Safety Features
Built-in protections: over load, over temperature, over voltage
Operation within a wide temperature range (-40°C ~ 125°C)
Compatibility
Suitable for applications requiring surface mount technology
Can fit into systems with space constraints given the small SOIC package
Application Areas
Power supply units
Home appliances
Industrial controls
Electronic gadgets requiring isolated power sources
Product Lifecycle
Current Product Status: Active
No indication of nearing discontinuation; remains a viable choice for current applications
Several Key Reasons to Choose This Product
High reliability and robust design ensures long-term usage
Offers both high breakdown voltage and efficient power delivery
Integrated fault protection mechanisms safeguard against common power issues
Wide operating temperature making it suitable for varied environmental conditions
Flexible voltage supply range catering to different power requirements