Specific requirements for LED driver power supply
LED is a low-voltage light-emitting device with the advantages of long life, high light efficiency , safety, environmental protection, and convenience. For AC input power drive , isolated output is based on the requirements of safety regulations. The higher the efficiency of the LED driver power supply, the more it can play the advantages of high light efficiency and energy saving of LED. At the same time, high switching operating frequency and high efficiency make the entire LED driver power supply easy to install in compact LED lamps . High constant current accuracy ensures the brightness and light color consistency when using LED lighting in large quantities .
LED lamp cup with power below 10W Application
Currently, power LEDs below 10W are widely used, and many integrated products have been launched, that is, LED driver power supply and LED lamp are integrated into one lamp, which is convenient for users to use directly. Typical lamp specifications include GU10, E27, PAR30, etc. For this application, we designed the following solution (see Figure 1)
Figure 1: LED driver circuit
based on AP3766
Schematic diagram
The program features are as follows:
1. Based on the latest LED dedicated driver chip AP3766, the primary side control method is adopted, and no optocoupler and secondary side current control circuit are required to achieve isolated constant current output, and the circuit structure is simple. The primary side current is detected by resistor R5, and the primary side current peak is controlled to be constant. At the same time, the switch duty cycle is controlled to keep the conduction time of the output diode D1 constant and the ratio of the entire switch cycle time, so as to achieve constant output current.
2. AP3766 adopts proprietary "sub-microampere startup current" technology, requiring only 0.6μA startup current, thus reducing the power consumption on the startup resistors R1 and R2 and improving system efficiency. The typical 5W application efficiency is greater than 80%, and the no-load power consumption is less than 30mW.
3. AP3766 uses constant current tightening technology to achieve vertical constant current characteristics with high constant current accuracy.
4. Circuit Components The number is small. AP3766 uses SOT-23-5 package, which is small in size. The whole circuit can be installed in a common specification lamp cup.
5. Safe and reliable, isolated output, with output open circuit protection, overvoltage protection and short circuit protection functions.
6. The power switch tube adopts triode, eliminating the high-voltage field effect tube and reducing the system cost.
Figure 2 is a photo of the 5W application circuit prototype of the solution. Figure 3 is a photo of the 5W LED driver based on AP3766. Figure 4 is a curve showing the full-load efficiency of the 5W LED driver circuit based on AP3766 versus AC input voltage. Figure 5 is a full-load output IV characteristic curve of the 5W LED driver circuit based on AP3766.
10~60W power LED street light , LED straight tube light application solution
The IEC International Electrotechnical Commission has put forward clear harmonic requirements for lighting fixtures, namely the IEC61000-3-2 standard. Therefore, for high- power LED lighting applications, it is necessary to use power factor correction (PFC) control technology. For applications below 60W, there is a cost-effective single-stage PFC control solution, the circuit schematic of which is shown in Figure 6.
Figure 6: Schematic diagram of LED driver circuit based on AP166+AP4313
The program features include:
1. Single-stage PFC solution, using only one-stage flyback circuit topology, achieving power factor correction and isolated constant current output at the same time. It has a small number of components, small size and high cost performance.
2. High power factor, using active power factor correction control chip AP1661, power factor PF>0.9, meeting IEC61000-3-2 harmonic standard.
3. The secondary side constant voltage and constant current control chip AP4313 is adopted, with high constant current accuracy and output current error <3%.
4. High efficiency, full load efficiency up to 90%.
5. Safe and reliable, isolated output, with output open circuit protection, overvoltage protection and short circuit protection functions.
AP1661 is an active power factor correction control chip working in critical conduction mode, which can be widely used in pre-adjustment converter control of switching power supplies , LED drivers and electronic ballasts. The chip includes a start timer to meet the requirements of standby applications, a single-quadrant multiplier that can achieve a power factor close to 1, and a zero current detection module to ensure critical discontinuous mode operation. The totem pole drive output of AP1661 can provide a maximum drive current of 600mA and a shutdown current capability of 800mA for external MOSFET or IGBT .
It uses advanced bipolar complementary metal oxide semiconductor design and manufacturing technology, and has the characteristics of low startup current, low operating current and low power consumption. AP1661 also has complete protection functions, including overvoltage protection, input undervoltage lockout with hysteresis, and multiplier output clamping to limit the maximum peak current of the switch. Figure 7 is a real photo of the 60W application circuit prototype of this solution. Figure 8 is a real photo of the LED straight tube lamp using this solution.
60~150W high power LED street light Application
In the outdoor lighting sector, China's annual street lamp market demand is more than 20 million. China's urban reconstruction, town construction, residential construction and road construction have extremely large market demands for high-power, high-brightness, energy-saving LED street lamp products.
Under higher power application conditions, a single-stage PFC circuit is difficult to take into account both the PFC pre-adjustment and the output constant current adjustment performance of the flyback circuit. At this time, a two-stage circuit architecture is required to achieve this goal. Therefore, there is a newly launched PFC+
PWM
two-stage architecture circuit topology solution, the circuit schematic diagram of which is shown in Figure 9.
Figure 9: Schematic diagram of LED driver circuit based on AP1661+AP3102
The circuit adopts a two-stage topology of Boost PFC+Flyback. The control chip uses PFC control chip AP1661, PWM control chip AP3102 and secondary constant current control chip AP4310. The advantages of this circuit solution are small input/output capacitance, small output ripple , isolated output, high power factor, current accuracy controlled within 2%, and high reliability. Figure 10 is a photo of the 90W application circuit prototype of this solution. Figure 11 is a photo of a high-power LED street lamp using this solution.
Figure 11: Photo of high-power LED street light fixture
Figure 12: 90W
LED power supply
Full load efficiency curve
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Recommended ReadingLatest update time:2024-11-16 19:42
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