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DescriptionIC OFFLINE SW FLYBACK 20TSSOP
PackageTape & Reel (TR)
Stock6000
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DownloadThe NCP11367BBABYDBR2G is a versatile power management integrated circuit (PMIC) designed for a broad range of energy-efficient applications. This IC provides precise control over power conversion processes, ensuring optimal performance in various electronic systems. It is built to support both low power consumption and high efficiency, making it an ideal choice for applications in consumer electronics, industrial automation, and automotive electronics. The device's compact design and robust feature set enable it to meet the demanding requirements of modern power management systems.
High Efficiency: Delivers excellent power conversion efficiency, minimizing energy loss and maximizing system performance.
Precise Voltage Regulation: Advanced control mechanisms ensure stable and accurate voltage regulation across different operating conditions.
Low Power Consumption: Engineered to consume minimal power during standby, contributing to extended battery life in portable devices.
Wide Input Voltage Range: Supports a broad range of input voltages, offering flexibility in various design implementations.
Compact and Durable: Available in a compact package that is easy to integrate into space-constrained designs while offering reliable performance.
Parameter | Details |
---|---|
Category | PMIC - Power Management IC |
Function | DC-DC Controller |
Operating Voltage | 7V to 32V |
Switching Frequency | 200 kHz |
Output Current | Up to 2A |
Standby Power Consumption | < 1mW |
Operating Temperature Range | -40°C to 125°C |
Package Type | SOIC-8 |
Mounting Type | Surface Mount |
The NCP11367BBABYDBR2G is suitable for various applications that require efficient power management. Specific examples include:
Consumer Electronics: Powers devices such as smartphones, tablets, and wearable technology, ensuring stable operation and extended battery life.
Industrial Automation: Used in industrial control systems to provide reliable power management and voltage regulation in harsh environments.
Automotive Electronics: Essential for powering automotive electronic systems, offering high reliability and efficiency under extreme temperature conditions.
Telecommunications: Supports stable power conversion in telecom infrastructure, crucial for maintaining consistent network performance.
Medical Devices: Provides efficient power management in portable medical devices, where reliability and low power consumption are critical.
Smartphones and Tablets: Ensures efficient power delivery in portable devices, maximizing battery life and performance.
Industrial Control Systems: Delivers stable power in automated systems, ensuring consistent and reliable operation in industrial environments.
Automotive Systems: Supports power management in vehicles, ensuring reliable operation of electronic systems across a wide temperature range.
Telecom Infrastructure: Ensures stable voltage regulation and power delivery in telecommunications systems, vital for maintaining network integrity.
Portable Medical Devices: Offers reliable power management in critical medical equipment, contributing to patient safety and device longevity.
DHL: Offers fast and reliable international shipping with advanced tracking capabilities, suitable for urgent deliveries.
FedEx: Provides comprehensive global shipping solutions with various delivery options and detailed tracking, ideal for high-priority shipments.
UPS: Delivers a range of international shipping services, from standard to expedited, ensuring timely delivery worldwide.
EMS: A cost-effective international shipping option, suitable for less time-sensitive deliveries with broad coverage.
What is the maximum output current of the NCP11367BBABYDBR2G?
The maximum output current is up to 2A.
Is this IC suitable for automotive applications?
Yes, the NCP11367BBABYDBR2G is suitable for automotive applications due to its high efficiency and wide operating temperature range.
What is the typical standby power consumption?
The typical standby power consumption is less than 1mW.
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