TI TPS92210 PFC LED lighting driver solution

Publisher:不见南师久Latest update time:2012-01-14 Source: 中电网 Reading articles on mobile phones Scan QR code
Read articles on your mobile phone anytime, anywhere
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.

TPS92210 key features:

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

TPS92210 Applications:

TRIAC Dimmable LED Lighting Designs

Residential LED Lighting Drivers for Retrofit A19 (E27/26, E14), PAR30/38, GU10, MR16, BR

Drivers for Down and Architectural Wall Sconces, Pathway and Overhead Lighting

Figure 1. TPS92210 functional block diagram

Figure 2. TPS92210 typical application circuit diagram

TPS92210EVM-613 evaluation board

The TPS92210EVM-613 uses the TPS92210 in a Discontinuous Conduction Mode (DCM) flyback topology. The controller uses cascode configuration which allows for faster start-up times as well as eliminates the need for an external sense resistor for primary-side current sense. Additionally, the controller employs a max on-time modulation scheme that allows it to be used in a Power Factor Correction (PFC) circuit. This results in a compact LED driver design that achieves greater than 0.95 power factor (PF) driven by a single controller.

The TPS92210EVM-613 is also compatible with a wide variety of TRIAC dimmers. Secondary-side feedback responds to the conduction time of the sinusoidal wave, as governed by the TRIAC, and appropriately lowers the LED current to dim the LEDs. The secondary side also includes an adaptive supplemental load that sinks current when LED current becomes too low, therefore ensuring conduction of the TRIAC during very low dimming.

TPS92210EVM-613评估板应用:

• Commercial/Household LED Lighting

TPS92210EVM-613评估板主要特性:

• Single Stage Power Factor Correction Achieves PF Greater than 0.95

• TRIAC Dimming to Zero LED Current

• Test Points for Output Voltage/Current

• Cascoded Configuration for Fully Integrated Current Control with No External Sense Resistor

TPS92210EVM-613评估板电性能和指标:


图3.TPS92210EVM-613评估板电路图

TPS92210EVM-613评估板材料清单(BOM):


Reference address:TI TPS92210 PFC LED lighting driver solution

Previous article:Design of constant current driver for high power lighting LED
Next article:LED display screen failure and its solution

Recommended ReadingLatest update time:2024-11-16 15:50

High efficiency and high precision LED control drive circuit design
   Constant current drive circuit design: The LED drive circuit based on PT4115 is shown in Figure 1. The circuit can use Atmega8 microcontroller as the controller and set two input interfaces. The input voltage of the circuit can be DC or AC. The PWM signal is added to the DIM terminal of PT4115 to realize LED dimmin
[Power Management]
High efficiency and high precision LED control drive circuit design
Tips for selecting chips for LED driver power design
  LED light source technology is becoming more mature, and the luminous lumens per watt are increasing rapidly, which has led to a gradual price reduction. The massive market of LED green lamps and the steady growth in demand for several years will be the super tsunami of the consumer electronics market after VCD, DVD
[Power Management]
Design of high brightness LED driver power supply without electrolytic capacitor based on MIP553
Challenges of LED Power Supply   As a new type of electric light source, LED has obvious advantages in making large luminous three-dimensional characters and luminous signs. It has low control voltage, low cost and high reliability. Although LED products have an increasingly strong development trend in the domestic a
[Power Management]
Design of high brightness LED driver power supply without electrolytic capacitor based on MIP553
Introducing several solutions for automotive interior and exterior lighting LED drivers
LED (Light Emitting Diode) is a solid-state semiconductor device that can directly convert electricity into light. In recent years, its application areas have been continuously broadened, from traditional portable device backlight to medium and large-sized LCD monitor/LCD TV backlight, automotive and general lightin
[Power Management]
Introducing several solutions for automotive interior and exterior lighting LED drivers
Discussion on possible problems in designing LED lighting driver power supply
    The arrangement of LEDs and the specification of LED light sources determine the basic driver requirements. The main function of LED drivers is to limit the current flowing through the LEDs under a certain range of operating conditions, regardless of changes in input and output voltages. The most common method i
[Power Management]
Discussion on possible problems in designing LED lighting driver power supply
Is the time right for intelligent LED drive control?
Last year, Snowden exposed the NSA's PRISM program, which made people deeply worried about the future of high technology. However, history has also proved that people's pursuit of convenience in life is far greater than their concerns about their own privacy. For example, the street lights in the city automatically ad
[Power Management]
Research on Improving the Reliability of High-Power LED Drivers
As LED luminous efficiency improves and costs continue to fall, the LED market is expanding from mobile phone backlights and automotive instrument lighting, as well as special lighting and landscape lighting with low brightness requirements, to ordinary white light lighting. LED is a solid-state cold light
[Power Management]
Research on Improving the Reliability of High-Power LED Drivers
Output power measurement in an electrolytic capacitor-free LED driver solution
As a semiconductor device, LED lamp beads have a lifespan of more than 50,000 hours. However, electrolytic capacitors are commonly used in LED lighting drive solutions , and their lifespan is only 5,000 to 10,000 hours. There is a huge gap between the short lifespan of electrolytic cap
[Security Electronics]
Output power measurement in an electrolytic capacitor-free LED driver solution
Latest Power Management Articles
Change More Related Popular Components

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

About Us Customer Service Contact Information Datasheet Sitemap LatestNews


Room 1530, 15th Floor, Building B, No.18 Zhongguancun Street, Haidian District, Beijing, Postal Code: 100190 China Telephone: 008610 8235 0740

Copyright © 2005-2024 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号