Nexperia USA Inc. GreenChip™ series AC to DC Converter ICs

Features and applications of Nexperia USA Inc.GreenChip™series AC to DC Converter ICs

The GreenChipTM series AC to DC Converter ICs from Nexperia USA Inc. are high-performance integrated circuits that are made to reliably and efficiently convert alternating current (AC) to direct current (DC). These ICs are a part of Nexperia's GreenChipTM range, which aims to offer environmentally responsible answers for applications requiring power control. This article introduce its features and applications.

Applications

  • Lighting
  • Medical
Associated Products

Part NumberDescriptionStockRFQ
TEA18362T/1JIC CTRLR SMPS DCM/QR 8SOIC30BUY
TEA1733T/N1,118IC CTLR SMPS SW MODE 8SOIC50RFQ
TEA1755T/1,518HV START-UP DCM/QR FLYBACK CONTROLLER WITH INTEGRATEDDCM/QR PFC CONTROLLER1000RFQ
TEA1738T/N1,118AC to DC Switching Converter Flyback 13.2V 78kHz T/R 8-Pin SO1931BUY
TEA1733LT/N1,118AC to DC Switching Converter Flyback 13.2V 62kHz to 71kHz 8-Pin SO2033BUY
Technical Documents

The GreenChipTM series AC to DC Converter ICs from Nexperia USA Inc. are high-performance integrated circuits that are made to reliably and efficiently convert alternating current (AC) to direct current (DC). These ICs are a part of Nexperia's GreenChipTM range, which aims to offer environmentally responsible answers for applications requiring power control.

The GreenChipTM series AC to DC Converter ICs are ideal for a range of power supply applications in consumer electronics, lighting, industrial equipment, medical devices, telecommunications, and renewable energy systems due to their wide input voltage range, high efficiency up to 95%, and low standby power consumption.

To ensure safe and dependable operation, these ICs also have a variety of protection features, including as over-voltage protection, over-current protection, and over-temperature protection. They can be used in applications where space is limited because of their small package size.

The GreenChipTM series AC to DC Converter ICs from Nexperia USA Inc. are a fantastic option for engineers trying to optimize their power supply designs since they offer high efficiency, reliability, and environmental friendliness in power supply applications.

 


Features

 

High efficiency: These integrated circuits (ICs) have an efficiency of up to 95%, which can help to cut down on heat production and power usage.

Low standby power: They are perfect for low power applications because to their low standby power consumption of less than 30 mW.

They are appropriate for use in a variety of applications due to their large input voltage range, which is between 85 VAC and 265 VAC.

These integrated circuits (ICs) have active power factor correction (PFC), which lowers harmonic distortion and boosts power quality.

Extensive protection: To help assure safe and dependable operation, they offer features including over-voltage protection, over-current protection, and over-temperature protection.

These ICs are available in compact package sizes, which makes them perfect for use in situations where space is limited.

The GreenChipTM series AC to DC Converter ICs from Nexperia USA Inc. are made with a compact package and high efficiency, low standby power consumption, a wide input voltage range, and extensive protection, making them perfect for a variety of power supply applications.

 


Applications

 

  • Lighting

  • Medical devices

  • Renewable energy

  • Telecommunications

  • Consumer electronics

  • Industrial equipment


Frequently Asked Questions

How much input voltage can these ICs handle?

The input voltage range for the GreenChipTM series AC to DC Converter ICs is 85 VAC to 265 VAC.

What is these ICs' efficiency?

These ICs have high efficiency levels of up to 95%, which can aid in lowering power usage and heat production.

What kind of security features are present in these ICs?

To ensure secure and dependable operation, the GreenChipTM series AC to DC Converter ICs are equipped with a wide range of protective features, such as over-voltage, over-current, and over-temperature protection.