NXP USA Inc.
DescriptionIC OFFLINE SWITCH FLYBACK 8SO
PackageTape & Reel (TR)
Stock1000
Priceactive
Download• Product Name: TEA1733CT/N1,118
• Product Type: Converter Offline Flyback Topology
• Manufacturer: NXP USA Inc.
• Package: 8-SOIC
• Operating Temperature: -40°C ~ 150°C (TJ)
• Output Isolation: Isolated
• Internal Switch (s): No
• Voltage - Breakdown: -
• Voltage - Start Up: 20.6 V
• Voltage - Supply (Vcc/Vdd): 12V ~ 30V
• Duty Cycle: 72%
• Frequency - Switching: 66.5kHz
• Power (Watts): 75 W
• Fault Protection: Current Limiting, Over Power, Over Temperature, Over Voltage
• Control Features: -
• Features: Sampling Frequency, Automatic Gain Control, Volume Control
TEA1733CT/N1,118 is a low voltage start-up flyback controller suitable for fixed frequency/CCM. It is part of the GreenChip series of NXP, which aims to provide energy-efficient solutions for power applications. It uses a proprietary high-voltage BCD800 process that allows direct start-up from the rectified universal mains voltage.
TEA1733CT/N1,118 can be used for various applications that require isolated power conversion, such as:
• AC adapters
• Chargers
• LED drivers
• Auxiliary power supplies
• Industrial power supplies
• Q: How can I design a flyback converter using TEA1733CT/N1,118?
• A: You can use the design tool provided by NXP to design a flyback converter using TEA1733CT/N1,118. The design tool can help you select the optimal components and parameters for your application, and generate a schematic, a bill of materials, and a performance report.
• Q: What are the advantages of TEA1733CT/N1,118 over other flyback controllers?
• A: TEA1733CT/N1,118 has several advantages over other flyback controllers, such as:
• Low start-up current of 10 µA, which reduces the power consumption in standby mode
• High level of integration, which reduces the external component count and cost
• High switching frequency of 66.5 kHz, which allows the use of smaller and cheaper transformers and capacitors
• Advanced protection features, such as overcurrent, overvoltage, overtemperature, and over power, which enhance the reliability and safety of the converter.
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