MAP9010. High Voltage AC LED Driver. High Voltage AC LED Driver. General Description. Features. Applications. Ordering Information

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1 General Description The MAP91 is LED Driver which has high input voltage ranged from 9V to 27V. It can drive several series LEDs from rectified AC voltage. The MAP91 can achieve.95 higher power factor and low total harmonic distortion less than 2%. The MAP91 has high LED current drive capability up to 24mA and the current can be adjustable with external resistors. The MAP91 can achieve triac-dimmable better than before version at 12V application. The MAP91 is available in QFN 6X6 with Halogen-free (fully RoHS compliant). Features MAP91 Triac dimming - Better dimmer compatibility (12V dimmer) Analog dimming (.V~V) PWM dimming (Hz~2kHz) Thermal protection (min. 15 ) OVP (Over Voltage Protection) Constant output power Power variation: ±5% Higher power factor : >.95 Lower total harmonic distortion : < 2% Higher current drive capability - Up to 24mA QFN 6X6 package For more information, please contact local MagnaChip sales office in world-wide or visit MagnaChip s website. Applications AC LED Driver Lighting equipment LED Driver Power Supplies Ordering Information Part Number Top Marking Ambient Temperature Range Package RoHS Status MAP91QNRH MAP91 - to +85 6X6mm QFN 12Leads Halogen Free October 215 Page 1

2 Typical Application 1. Normal Mode (AC-Direct) AC INPUT MAP ADIM SIGNAL (V ~ 1V) Traic-dimming Mode (12V Application) AC INPUT 12V MAP CDIM Resistor CDIM Capacitor October 215 Page 2

3 Pin Configuration & Description - Pin Configuration VCC GND 1 2 Rline VIN OUT MAP OUT1 OUT2 MODE 7 OUT RDIM CS CDIM - Pin Description No. Name Description 1 VCC Power supply pin for IC Operation. 2 GND IC Ground MODE Operation mode selection pin. If MODE connects GND, IC operates AC direct mode (or Analog / PWM dimming mode). If MODE leaves open, IC operates triac dimming mode 4 RDIM PWM and Analog dimming input pin. MODE pin should be connected to GND. 5 CS 6 CDIM Current sensing pin. Its level is negative with respect to GND. By connecting external resistor, user can adjust output power. AC input off time detecting pin for triac dimming. MODE pin should be left open. But, to avoid noise at MODE pin, recommend connecting capacitor MODE pin to GND 7 OUT Output LED Group. OUT level is set by CS resistor. 8 OUT2 Output LED Group 2. OUT2 level is 82% of OUT level. 9 OUT1 Output LED Group 1. OUT1 level is 65% of OUT level. 1 OUT Output LED Group. OUT level is 44% of OUT level. 11 VIN HV input pin for VCC charging and achieving reference. 12 RLINE Input pin for adjusting line compensation and OVP level. According to RLINE divide resistance, user can adjust degree of line compensation and OVP level. October 215 Page

4 Functional Block Diagram VCC Rline VIN Bandgap & Ref. OUT OUT1 OUT2 OUT Analog Logic & Current Control Angle Detect ADIM Line Compensation MODE Change Triac Dimming controller Triac -DIM GND RDIM MODE CS CDIM October 215 Page 4

5 Absolute Maximum Ratings PARAMETER VALUE UNIT VIN 7 V OUT, OUT1, OUT2, OUT -. ~ 7 V MODE, RDIM, CDIM, CS -. ~ 6 V VCC, RLINE 2 V CS -6 ~. V Operating Temperature Range -4 ~ 125 Junction Temperature Range -4 ~ 15 Storage Temperature Range -65 ~ 15 Lead temperature(soldering, 1sec ) 26 HBM (Note 1) 2 V ESD Susceptibility MM (Note 2) V CDM (Note ) 2 V Note 1: ESD tested per JESD22A-114. Note 2: ESD tested per JESD22A-115. Note : ESD tested per JESD22C-11E Thermal Resistance PARAMETER VALUE UNIT Thermal Resistance (θ JA ), (Note4) 6X6mm QFN 12Leads 6 /W Thermal Resistance (θ JT ), (Note5) 8.7 /W Note 4: Multi-layer PCB based on JEDEC standard (JESD51-7) Note 5: The metal PCB diameter is 7mm and height is 1.6t. October 215 Page 5

6 Electrical Characteristics T A = 25, CS Resistance = 6.8Ω unless otherwise specified SYMBOL PARAMETER TEST CONDITION MIN TYP MAX UNIT Supply VVIN Input Voltage Range Note V VVCC Operating Voltage V IVCC Input Current 6 9 ua VUVLO Under Voltage Lockout UVLO_H V UVLO_L V RLINE Section R LINE RLINE pin Impedance VVIN = 2V, VGND = V, VRLINE = 1V ua V RSE RLINE Sensing Voltage V V RSEC V RLINE_hys RLINE Sensing Voltage After CDIM Reset RLINE Sensing Voltage Hysteresis V.96 V V RLINE_OVP Over Voltage Protection VVIN = 2V, VGND = V V Driver Section ID_Leak Driver Leakage Current VVIN = 2V, VGND = V, OUT ~ = 7V ua IOUT Driver Current VVIN =2V, OUT = 5V RLINE = 5V ma IOUT1 Driver 1 Current VVIN =2V, OUT1 = 5V RLINE = 5V ma IOUT2 Driver 2 Current VVIN =2V, OUT2 = 5V RLINE = 5V ma IOUT Driver Current VVIN =2V, OUT = 5V RLINE = 5V ma I OUT_SUM - I OUT + I OUT1 + I OUT2 + I OUT ma October 215 Page 6

7 RDIM Section VRDIM RDIM Input Voltage Range. - V I RDIM RDIM pin Current MODE Pin GND ua VRDIM_off_hys RDIM Off Hysteresis mv VRDIM(OUT) RDIM Output Voltage Range I RDIM = 7uA V R INT Internal RDIM Resistance KΩ CDIM Section I CDIM CDIM Charging Current ua V CDIM_RESET (7) CDIM RSET Voltage VCDIM_RESET / VRDIM(OUT) % MODE Section I MODE MODE pin Current ua Over Temperature Protection OTP (7) Over Temperature Protection Shutdown temperature Hysteresis Note 6: Stress beyond the maximum ratings listed above may incur permanent damage to the device. Operating above the recommended conditions for extended time may stress the device and affect device reliability. Also the device may not operate normally above the recommended operating conditions. These are stress ratings only. Note 7: These parameters are not production tested: Guaranteed by design correlation. October 215 Page 7

8 I D_LEAK, Driver Leakage Current [ua] I OUT, Driver Current [ma] V RLINE, RLINE Threshold Voltage [V] V OVP, Over Voltage Protection Threshold [V] I VCC, Input Current [ua] V UVLO, Under Voltage Lockout [V] Datasheet Version 1.1 Typical Operating Characteristics V IN =5V V IN =5V 5 V UVLO_H V UVLO_L Temperature vs Operating Current Temperature vs Under Voltage Lockout V RLINE_H V RLINE_L OVP Lock OVP Release Temperature vs RLINE Threshold Temperature vs OVP Threshold I OUT_Leak I OUT2_Leak. I OUT1_Leak I OUT_Leak I OUT I OUT2 I OUT1 I OUT Temperature vs Driver Leakage Current Temperature vs Driver Current October 215 Page 8

9 I CDIM, CDIM Charging Current [ua] V CDIM_RESET, CDIM Reset Voltage [V] V RDIM(OUT), RDIM Output Voltage [V] R INT, Internal RDIM Resistance [k ] I RDIM, RDIM pin Current [ua] V RDIM, RDIM Threshold Voltage [V] Datasheet Version 1.1 Typical Operating Characteristics V RDIM_L V RDIM_H.25 Temperature vs RDIM pin Current Temperature vs RDIM Threshold Temperature vs RDIM Output Voltage Temperature vs Internal RDIM Resistance Temperature vs CDIM Charging Current Temperature vs CDIM Reset Voltage October 215 Page 9

10 Physical Dimensions 1) QFN 6x6 12LD MagnaChip Semiconductor Ltd. doesn t not recommend the use of its products in hostile environments, including, without limitation, aircraft, nuclear power generation, medical appliances, and devices or systems in which malfunction of any product can reasonably be expected to result in a personal injury. Seller s customers using or selling Seller s products for use in such applications do so at their own risk and agree to fully defend and indemnify Seller. MagnaChip reserves the right to change the specifications and circuitry without notice at any time. MagnaChip does not consider responsibility for use of any circuitry other than circuitry entirely included in a MagnaChip product. is a registered trademark of MagnaChip Semiconductor Ltd. MagnaChip Semiconductor Ltd. 424, Teheran-ro, Gangnam-Gu, Seoul, Korea Tel : / Fax : ~9 October 215 Page 1

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