Data Sheet. Features. General Description. Applications. Single Stage Primary Side Regulation PFC Controller For LED Driver

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General Description The is a high performance AC/DC universal input Primary Side Regulation Power Factor Controller for LED driver applications. The device uses Pulse Frequency Modulation (PFM) technology to regulate output current while achieving high power factor and low THD. The provides accurate constant current (CC) regulation while removing the opto-coupler and secondary control circuitry. It also eliminates the need of loop compensation circuitry while maintaining stability. The achieves excellent regulation and high efficiency, yet meets the requirement of IEC61000-3-2 harmonic standard. The features low start-up current, low operation current and high efficiency. It also has rich protection features including over voltage, short circuit, over current, over temperature protection etc. The is available in SOIC-8 package. Features Primary Side Control for Output Current Regulation Without Opto-coupler and Secondary CV/CC Control Circuitry Low Start-up Current High Power Factor and Low THD for Universal Input Range Tight CC Regulation Performance for Universal Input Mains Voltage Range Eliminates Control Loop Compensation Circuitry Built-in Acceleration Start Open-load and Reload Detection Over Voltage and Short Circuit Protection Over Temperature Protection Over Current Protection Cost Effective Total PFC LED Driver Solution Applications Single Stage Power Factor Correction Power Supply for LED Lighting SOIC-8 Figure 1. Package Type of 1

Pin Configuration M Package (SOIC-8) NC 1 8 VCC VS 2 7 OUT VPK 3 6 GND CS 4 5 FB Figure 2. Pin Configuration of (Top View) Pin Description Pin Number Pin Name Function 1 NC No connection 2 VS 3 VPK 4 CS Primary current sensing 5 FB The rectified input voltage sensing pin. The pin is detecting the instantaneous rectified sine waveform of input voltage The rectified input voltage peak value sensing pin. The pin is detecting the rectified sine waveform peak value of input voltage This pin captures the feedback voltage from the auxiliary winding. FB voltage is used to control no load output voltage and determine acceleration stop point at start-up phase 6 GND Ground. Current return for gate driver and control circuits of the IC 7 OUT Gate driver output 8 VCC Supply voltage of gate driver and control circuits of the IC 2

Functional Block Diagram Figure 3. Functional Block Diagram of 3

Ordering Information - Circuit Type Package M: SOIC-8 G1: Green TR: Tape & Reel Blank: Tube Package Temperature Range SOIC-8-40 to 105 C Part Number Marking ID Packing Type M-G1 1682M-G1 Tube MTR-G1 1682M-G1 Tape & Reel BCD Semiconductor's Pb-free products, as designated with "G1" suffix in the part number, are RoHS compliant and green. 4

Absolute Maximum Ratings (Note 1) Parameter Symbol Value Unit Power Supply Voltage V CC -0.3 to 30 V Driver Output Current I OUT 300 ma Voltage at VS, VPK, CS V VS, V PK, V CS -0.3 to 7 V FB Input Voltage V FB -40 to 10 V Operating Junction Temperature T J 150 ºC Storage Temperature T STG -65 to 150 ºC Lead Temperature (Soldering, 10 sec) T LEAD 300 ºC Power Dissipation at T A =50 C P D 0.65 W Thermal Resistance (Junction-to-Ambient) θ JA 190 C/W ESD (Machine Model) 200 V ESD (Human Body Model) 3000 V Note 1: Stresses greater than those listed under Absolute Maximum Ratings may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated under Recommended Operating Conditions is not implied. Exposure to Absolute Maximum Ratings for extended periods may affect device reliability. Recommended Operating Conditions Parameter Symbol Min Max Unit Power Supply Voltage V CC 9 21 V Ambient Temperature T A -40 105 ºC 5

Electrical Characteristics V CC =15V, T A =25 C, unless otherwise specified. Parameter Symbol Conditions Min Typ Max Unit UVLO Section Start-up Threshold V TH (ST) 18 19 20 Minimal Operating Voltage V OPR (Min) After turn on 7 8 9 VCC OVP Voltage V CC_OVP 28 32 36 Standby Current Section Start-up Current I ST V CC =V TH (ST)-0.5V, Before start up 20 Maximum Operating Current I CC (Max) V VS =V PK =3V 1000 1300 µa Drive Output Section Output High Level Voltage V OH I GD-SOURCE =20mA V CC =12V 10 V Output Low Level Voltage V OL I GD-SINK =20mA V CC =12V 1 V Output Voltage Rise Time t R C L =1nF 100 140 190 ns Output Voltage Fall Time t F C L =1nF 30 60 90 ns Output Clamp Voltage V O-CLAMP I GD-SOURCE =5mA V CC =20V 12 13.5 15 V UVLO Saturation Voltage V UVLO V CC =0 to V CC ON I SINK =10mA 1.1 V VS Input Section Maximum Ratio V VS /V PK (Max) V VS =V PK =3V 0.8 1 1.2 V Minimum Ratio V VS /V PK (Min) V VS =0V, V PK =3V 0.2 V Current Sense Section Minimum On Time t ON (Min) 500 750 1000 ns Short Circuit Protection Voltage V SOCP 3 4 V Feedback Input Section FB Pin Input Leakage Current I FB V FB =4V 2 8 µa Acceleration Start Threshold V FB (ACC) 1.4 1.8 2.2 V CV Threshold V FB (CV) 3.2 4.2 5.2 V Over Voltage Protection V FB (OVP) 4.5 6 7.5 V Over Temperature Protection Section Shutdown Temperature 140 Temperature Hysteresis 20 V o C o C 6

Typical Performance Characteristics 1100 4.2 Supply Current (µa) 1000 900 800 700 600 500 400 300 200 100 0 0 5 10 15 20 25 30 Supply Voltage (V) CV Threshold (V) 4.0 3.8 3.6 8 10 12 14 16 18 20 22 24 26 28 30 Supply Voltage (V) Figure 4. Supply Current vs. Supply Voltage Figure 5. CV Threshold Vs. Supply Voltage 14 19.4 13 19.2 Output Clamp Voltage (V) 12 11 10 9 8 7 Start-up Voltage (V) 19.0 18.8 18.6 18.4 6 18.2 5 8 10 12 14 16 18 20 22 24 26 28 30 18.0-40 -20 0 20 40 60 80 100 120 Supply Voltage (V) Ambient Temperature ( o C) Figure 6. Output Clamp Voltage vs. Supply Voltage Figure 7. Start-up Voltage vs. Ambient Temperature 7

Typical Performance Characteristics (Continued) 8.3 8.0 7.5 Minimal Operating Voltage (V) 8.2 8.1 8.0 7.9 Start-up Current (µa) 7.0 6.5 6.0 5.5 5.0 4.5 4.0 3.5 3.0 2.5 7.8-40 -20 0 20 40 60 80 100 120 2.0-40 -20 0 20 40 60 80 100 120 Ambient Temperature ( o C) Ambient Temperature ( o C) Figure 8. Minimal Operating Voltage vs. Ambient Temperature Figure 9. Start-up Current vs. Ambient Temperature 1050 4.50 1000 4.25 Operating Current (µa) 950 900 CV Threshold (V) 4.00 3.75 3.50 850 3.25 800-40 -20 0 20 40 60 80 100 120 3.00-40 -20 0 20 40 60 80 100 120 Ambient Temperature ( o C) Ambient Temperature ( o C) Figure 10. Operating Current vs. Ambient Temperature Figure 11. CV Threshold Vs. Ambient Temperature 8

Typical Performance Characteristics (Continued) 3.0 FB Input Leakage Current (µa) 2.5 2.0 1.5 1.0-40 -20 0 20 40 60 80 100 120 Ambient Temperature ( o C) Figure 12. FB Input Leakage Current vs. Ambient Temperature Typical Application Figure 13. Typical Application of 9

Mechanical Dimensions SOIC-8 Unit: mm(inch) R0.150(0.006) 10

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