Manufacturer Part Number
NCP1063AD100R2G
Manufacturer
onsemi
Introduction
The NCP1063AD100R2G is a part of onsemi's power management integrated circuits designed for AC DC converters and offline switches.
Product Features and Performance
Efficient AC DC switching with topologies including Buck and Flyback
Voltage breakdown capability of 700V
Supports start-up voltage of 9V and a supply voltage range from 7V to 20V
Integrated internal switches
Duty cycle of 66%
Switching frequency at 100kHz
Power output capability of 15.5 Watts
Operational temperature range from -40°C to 125°C
Packaged in a 16-SOIC format for surface mount applications
Product Advantages
The high breakdown voltage and robust power handling offer reliable performance in challenging conditions.
Wide range of operational temperatures makes it suitable for various industrial applications.
Compact 16-SOIC package eases PCB design and integration.
Key Technical Parameters
Voltage Breakdown: 700V
Voltage Start Up: 9V
Voltage Supply (Vcc/Vdd): 7V ~ 20V
Duty Cycle: 66%
Frequency Switching: 100kHz
Power (Watts): 15.5W
Operating Temperature: -40°C ~ 125°C
Quality and Safety Features
Overload, over power, over temperature, and short circuit protection.
Compatibility
Works effectively in power management systems requiring Buck or Flyback topologies.
Application Areas
Used in various electronic devices requiring efficient power conversion and management, including industrial applications and consumer electronics.
Product Lifecycle
The product status is "Last Time Buy," indicating it is nearing discontinuation. Potential buyers should verify availability of replacements or upgrades.
Several Key Reasons to Choose This Product
Higher tolerance to voltage breakdown (700V) allowing safer operation in high-voltage environments.
In-built fault protection mechanisms ensure continued operation and safety.
Versatility in supply voltage and high-frequency switching capability improves overall efficiency and performance.
Suitable for a range of operating temperatures, enhancing reliability in varied environmental conditions.