TPS92210

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具有级联 MOSFET 的恒准时驱动器控制器,用于 LED 照明

产品详情

Vin (max) (V) 20 Operating temperature range (°C) -40 to 125 Control mode Current Topology Buck, Flyback Rating Catalog Features Overcurrent protection, Overtemperature protection, Overvoltage protection, Peak current mode, Transition Control Mode Duty cycle (max) (%) 2
Vin (max) (V) 20 Operating temperature range (°C) -40 to 125 Control mode Current Topology Buck, Flyback Rating Catalog Features Overcurrent protection, Overtemperature protection, Overvoltage protection, Peak current mode, Transition Control Mode Duty cycle (max) (%) 2
SOIC (D) 8 29.4 mm² 4.9 x 6
  • Flexible Operation Modes
    • Constant On-Time Enables Single Stage PFC Implementation
    • Peak Primary Current
  • Cascoded MOSFET Configuration
    • Fully Integrated Current Control Without Sense Resistor
    • Fast and Easy Startup
  • Discontinuous Conduction Mode or Transition Mode Operation
  • Transformer Zero Energy Detection
    • Enables Valley Switching Operation
    • Helps to Achieve High Efficiency and Low EMI
  • Open LED Detection
  • Advanced Overcurrent Protection
  • Output Overvoltage Protection
  • Line Surge Ruggedness
  • Internal Over-Temperature Protection
  • 8-Pin SOIC (D) Package
  • Flexible Operation Modes
    • Constant On-Time Enables Single Stage PFC Implementation
    • Peak Primary Current
  • Cascoded MOSFET Configuration
    • Fully Integrated Current Control Without Sense Resistor
    • Fast and Easy Startup
  • Discontinuous Conduction Mode or Transition Mode Operation
  • Transformer Zero Energy Detection
    • Enables Valley Switching Operation
    • Helps to Achieve High Efficiency and Low EMI
  • Open LED Detection
  • Advanced Overcurrent Protection
  • Output Overvoltage Protection
  • Line Surge Ruggedness
  • Internal Over-Temperature Protection
  • 8-Pin SOIC (D) Package

The TPS92210 is a natural power factor correction (PFC) light emmitting diode (LED) lighting driver controller with advanced energy features to provide high efficiency control for LED lighting applications.

A PWM modulation algorithm varies both the switching frequency and primary current while maintaining discontinuous or transition mode operation in all regions of operation. The TPS92210 cascode architecture enables low switching loss in the primary side and when combined with the discontinuous conduction mode (DCM) operation ensures that there is no reverse recovery loss in the output rectifier. These innovations result in efficiency, reliability or system cost improvements over a conventional flyback architecture.

The TPS92210 offers a predictable maximum power threshold and a timed response to an overload, allowing safe handling of surge power requirements. The overload fault response is user-programmed for retry or latch mode. Additional protection features include open-LED detection by output overvoltage protection and thermal shutdown.

The TPS92210 is offered in the 8-pin SOIC (D) package. Operating junction temperature range is –40°C to 125°C

The TPS92210 is a natural power factor correction (PFC) light emmitting diode (LED) lighting driver controller with advanced energy features to provide high efficiency control for LED lighting applications.

A PWM modulation algorithm varies both the switching frequency and primary current while maintaining discontinuous or transition mode operation in all regions of operation. The TPS92210 cascode architecture enables low switching loss in the primary side and when combined with the discontinuous conduction mode (DCM) operation ensures that there is no reverse recovery loss in the output rectifier. These innovations result in efficiency, reliability or system cost improvements over a conventional flyback architecture.

The TPS92210 offers a predictable maximum power threshold and a timed response to an overload, allowing safe handling of surge power requirements. The overload fault response is user-programmed for retry or latch mode. Additional protection features include open-LED detection by output overvoltage protection and thermal shutdown.

The TPS92210 is offered in the 8-pin SOIC (D) package. Operating junction temperature range is –40°C to 125°C

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类型 标题 下载最新的英语版本 日期
* 数据表 Single-Stage PFC Driver Controller for LED Lighting 数据表 (Rev. B) 2012年 8月 10日
选择指南 电源管理指南 2018 (Rev. K) 2018年 7月 31日
选择指南 电源管理指南 2018 (Rev. R) 2018年 6月 25日
应用手册 Line Undervoltage and Overvoltage Protection for TPS92210-Based LED Drivers 2015年 8月 14日
应用手册 10W 非隔离LED驱动电源的设计 2013年 7月 10日
应用手册 Extending Dimming Range of TPS92210 Over Universal AC Range by Applying Frequenc 2013年 6月 16日
更多文献资料 Single-Stage PFC Driver Controller for LED Lighting 2011年 5月 27日
测试报告 Using the TPS92210-PMP6001, A Universal Input 38V 350mA Non Dimmable LED Driver1 2010年 12月 10日
测试报告 Using the TPS92210-PMP6002 (Rev. A) 2010年 12月 10日
测试报告 Using the TPS92210-PMP6003 (Rev. A) 2010年 12月 10日
EVM 用户指南 Using the TPS92210EVM-647 Natural PFC LED Lighting Driver Controller (Rev. B) 2010年 12月 9日
EVM 用户指南 Using the TPS92210EVM-613 Natural PFC LED Lighting Driver Controller (Rev. A) 2010年 11月 2日

设计和开发

如需其他信息或资源,请点击以下任一标题进入详情页面查看(如有)。

评估板

TPS92210EVM-613 — 用于 230VAC TRIAC 可调光灯泡更换设计的 TPS92210 评估模块,具有自然交错 PFC

TPS92210EVM-613 评估模块是一块完全组装且经过测试的电路板,用于评估 TPS92210 自然交错 PFC LED 照明驱动器控制器。此评估模块可演示 TRIAC 可调光单级 PFC 230VAC 灯泡更换设计中的 TPS92010。
用户指南: PDF
TI.com 上无现货
评估板

TPS92210EVM-647 — 用于 120VAC TRIAC 可调光灯泡更换设计的 TPS92210 评估模块,具有自然交错 PFC

TPS92210EVM-647 评估模块是一块完全组装且经过测试的电路板,用于评估 TPS92210 自然交错 PFC LED 照明驱动器控制器。此评估模块可演示 TRIAC 可调光单级 PFC 120VAC 灯泡更换设计中的 TPS92010。
用户指南: PDF
TI.com 上无现货
计算工具

TPS92210_DESIGN_CALC TPS92210 Design Calculator

The TPS92210 Design Calculator is a design tool for an AC/DC single LED string driver with a PFC and TRIAC dimming option. When using this tool the minimum output voltage should be greater than 5.2V and maximum output power should be less than 30W.
支持的产品和硬件

支持的产品和硬件

产品
交流/直流和直流/直流控制器(外部 FET)
TPS92210 具有级联 MOSFET 的恒准时驱动器控制器,用于 LED 照明
封装 引脚 CAD 符号、封装和 3D 模型
SOIC (D) 8 Ultra Librarian

订购和质量

包含信息:
  • RoHS
  • REACH
  • 器件标识
  • 引脚镀层/焊球材料
  • MSL 等级/回流焊峰值温度
  • MTBF/时基故障估算
  • 材料成分
  • 鉴定摘要
  • 持续可靠性监测
包含信息:
  • 制造厂地点
  • 封装厂地点

支持和培训

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