MAP9001 [MGCHIP]

High Voltage AC LED Driver;
MAP9001
型号: MAP9001
厂家: MagnaChip    MagnaChip
描述:

High Voltage AC LED Driver

文件: 总11页 (文件大小:835K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Datasheet Version1.1  
MAP9001, MAP9002, MAP9003  
High Voltage AC LED Driver  
General Description  
Features  
The MAP900X family is a LED Driver which has high  
input voltage ranged from 90V to 270V.  
It can drive several series LEDs from rectified AC  
voltage.  
Flicker-free (MAP9001)  
EMI improvement  
Input power variation: ±10%  
Higher power factor : > 0.95  
Lower total harmonic distortion : < 20%  
Higher current drive capability  
Up to 240mA  
The MAP900X family can achieve 0.95 or higher  
power factor and low total harmonic distortion less  
than 20%.  
eSOP-16, eSOP-8, SOP-8  
The MAP900X family has higher LED current drive  
capability up to 240mA and the current can be  
adjustable with external resistors.  
The MAP900X family is available in eSOP-16, eSOP-8,  
SOP-8 with Halogen-free (fully RoHS compliant).  
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  
Top  
Marking  
Ambient  
Temperature Range  
Part Number  
Package  
RoHS Status  
MAP9001ESRH  
MAP9002ESRH  
MAP9003SIRH  
MAP9001  
MAP9002  
MAP9003  
-30to +85℃  
-30to +85℃  
-30to +85℃  
eSOP-16  
eSOP-8  
SOP-8  
Halogen Free  
Halogen Free  
Halogen Free  
AUG. 2015  
Datasheet Version1.1  
Simplified Application Circuit  
-
MAP9001  
1
2
3
4
5
6
7
8
16  
15  
14  
13  
12  
11  
10  
9
-
MAP9001 with flicker-free (Compliance with Energy Star)  
1
2
3
4
5
6
7
8
16  
15  
14  
13  
12  
11  
10  
9
-
MAP9002 & MAP9003  
1
2
3
4
8
7
6
5
AUG. 2015  
Datasheet Version1.1  
Pin Configuration & Description  
- Pin Configuration  
1
2
3
4
5
6
7
8
16  
15  
14  
13  
12  
11  
10  
9
VIN  
NC  
NC  
NC  
Rhold  
VCC  
GND  
EMI  
OUT0  
OUT1  
OUT2  
OUT3  
NC  
1
2
3
4
8
7
6
5
1
2
3
4
8
7
6
5
VIN  
Rhold  
GND  
CS  
OUT0  
OUT1  
OUT2  
OUT3  
VIN  
Rhold  
GND  
CS  
OUT0  
OUT1  
OUT2  
OUT3  
CS  
MODE  
NC  
- Pin Description  
Pin  
MAP9002, MAP9003  
VCC charging  
HOLD turn-on voltage  
Ground  
Pin  
MAP9001  
1
2
VIN  
NC  
VCC charging  
No Connection  
1
2
3
4
5
6
7
8
VIN  
Rhold  
GND  
CS  
3
Rhold  
VCC  
GND  
EMI  
HOLD turn-on voltage  
VCC  
4
Current sensing  
Output 3  
5
Ground  
OUT3  
OUT2  
OUT1  
OUT0  
6
EMI improvement  
Current sensing  
Flicker-free mode  
No Connection  
No Connection  
Output 3  
Output 2  
7
CS  
Output 1  
MODE  
NC  
8
Output 0  
9
10  
11  
12  
13  
14  
15  
16  
NC  
OUT3  
OUT2  
OUT1  
OUT0  
NC  
Output 2  
Output 1  
Output 0  
No Connection  
No Connection  
NC  
AUG. 2015  
Datasheet Version1.1  
Functional Block Diagram  
-
MAP9001  
Bridge  
Diode  
AC  
VIN  
OUT0  
OUT1  
OUT2  
OUT3  
1
14  
13  
12  
11  
VCC  
Bandgap  
&
Ref.  
4
3
Rhold  
Analog Logic & Current Control  
Line  
Shape  
1uF  
5
8
6
7
GND  
MODE  
EMI  
CS  
-
MAP9002 & MAP9003  
Bridge  
Diode  
AC  
VIN  
OUT0  
OUT1  
OUT2  
OUT3  
1
8
7
6
5
Bandgap  
&
Ref.  
Rhold  
Analog Logic & Current Control  
2
Line  
Shape  
3
4
GND  
CS  
AUG. 2015  
Datasheet Version1.1  
Absolute Maximum Ratings  
PARAMETER  
VALUE  
700  
UNIT  
V
VIN  
HOLD, OUT1, OUT2, OUT3  
EMI,CS  
-0.3 ~ 700  
-0.3 ~ 6  
20  
V
V
VCC, Rhold, MODE  
V
Operating Temperature Range  
Junction Temperature Range  
Storage Temperature Range  
Lead temperature(soldering, 10sec )  
-40 ~ 125  
-40 ~ 150  
-65 ~ 150  
260  
V
HBM (Note 1)  
MM (Note 2)  
2000  
200  
V
ESD Susceptibility  
CDM (Note 3)  
1000  
V
IOUT0  
IOUT1  
IOUT2  
IOUT3  
IOUT0  
IOUT1  
IOUT2  
IOUT3  
123  
172  
172  
172  
491  
688  
688  
688  
mA  
mA  
mA  
mA  
mA  
mA  
mA  
mA  
IDMAX(DC) (Note 4)  
Internal MOSFET Section  
IDMMAX(Pulse) (Note 5)  
Note 1: ESD tested per JESD22A-114.  
Note 2: ESD tested per JESD22A-115.  
Note 3: ESD tested per JESD22C-101E  
Note 4: Continuous Drain Current  
Note 5: Pulsed Drain Current, Pulse width ≤ 10us, duty cycle ≤ 1%,  
Thermal Resistance  
PARAMETER  
VALUE  
52.6  
UNIT  
Thermal Resistance (θJA) , (Note4)  
/W  
/W  
/W  
/W  
/W  
/W  
MAP9001(eSOP-16)  
MAP9002(eSOP-8)  
MAP9003(SOP-8)  
Thermal Resistance (θJT) , (Note5)  
Thermal Resistance (θJA) , (Note4)  
Thermal Resistance (θJT) , (Note5)  
Thermal Resistance (θJA) , (Note4)  
Thermal Resistance (θJT) , (Note5)  
13.0  
62.8  
22.2  
100.7  
50.5  
Note 4: Multi-layer PCB based on JEDEC standard (JESD51-7, 4Layer PCB)  
Note 5: The metal PCBs diameter is  
MAP9001 50mm and height is 1.6t.  
MAP9002 53mm and height is 1.6t.  
MAP9003 47mm and height is 1.6t.  
AUG. 2015  
Datasheet Version1.1  
Electrical Characteristics  
Ta = 25, CS Resistance = 6.8unless otherwise specified  
SYMBOL  
Supply  
VVIN  
PARAMETER  
TEST CONDITION  
MIN  
TYP  
MAX  
UNIT  
Input voltage range  
Operating voltage  
Operating current  
Note 6  
50  
700  
V
V
VVCC  
-
15  
465  
12  
-
Iop  
210  
720  
uA  
V
UVLO_H  
UVLO_L  
-
-
-
-
VUVLO  
Under voltage lockout  
10  
V
Driver Section  
VVIN = 200V, VGND = 0V  
VMODE = open  
VRhold  
Rhold reference voltage  
Over voltage protection  
4.5  
5.2  
5.9  
V
V
V
OVP_H  
OVP_L  
VVIN = 200V, VGND = 0V  
VVIN = 200V, VGND = 0V  
12.2  
13.5  
13.2  
14.8  
Over voltage protection  
release  
VVIN = 200V, VGND = 0V,  
VOUT0~3 = 400V  
ID Leak  
IOUT0  
Driver leakage current  
Driver 0 current  
Driver 1 current  
Driver 2 current  
Driver 3 current  
-
-
10  
uA  
mA  
mA  
mA  
mA  
mA  
VVIN =200V, VOUT0 = 40V  
VRhold = 0V  
-
85  
-
VVIN =200V, VOUT1 = 40V  
VRhold = 0V  
IOUT1  
-
130  
155  
185  
555  
-
VVIN =200V, VOUT2 = 40V  
VRhold = 0V  
IOUT2  
-
-
-
-
VVIN =200V, VOUT3 = 40V  
VRhold = 0V  
IOUT3  
IOUT_SUM  
IOUT0 + IOUT1 + IOUT2 + IOUT3  
527.5  
587.5  
Internal MOSFET Section  
RDS(ON)1  
RDS(ON)2  
RDS(ON)3  
RDS(ON)4  
Drain to source resistance  
Vd=30V, Vs=0V  
Vd=30V, Vs=0V  
Vd=30V, Vs=0V  
Vd=30V, Vs=0V  
255  
130  
130  
131  
mohm  
mohm  
mohm  
mohm  
Drain to source resistance  
Drain to source resistance  
Drain to source resistance  
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.  
AUG. 2015  
Datasheet Version1.1  
Typical Operating Characteristics  
VOVP_L Vs. temperature  
VOVP_H Vs. temperature  
Operating current Vs. temperature  
AUG. 2015  
Datasheet Version1.1  
Recommended Surge Protection Circuit  
The surge test using our demo-board and pass 0.5KV surge voltage at input wattage 16W  
-
MAP9001  
10KΩ  
1608  
Varistor  
330VDC/250VAC  
1
2
3
4
5
6
7
8
16  
15  
14  
13  
12  
11  
10  
9
1uF/25V  
1608  
1A/250VAC  
1nF/25V  
1608  
-
MAP9002 & MAP9003  
10KΩ  
1608  
Varistor  
330VDC/250VAC  
1
2
8
7
6
5
1nF/25V  
1608  
1A/250VAC  
3
4
AUG. 2015  
Datasheet Version1.1  
Physical Dimensions  
1) ESOP 16LD  
AUG. 2015  
Datasheet Version1.1  
2) ESOP 8LD  
AUG. 2015  
Datasheet Version1.1  
3) SOP 8LD  
MagnaChip Semiconductor Ltd. doesnt 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.  
891, Daechi-Dong, Kangnam-Gu, Seoul, 135-738 Korea  
Tel : 82-2-6903-3451 / Fax : 82-2-6903-3668 ~9  
www.magnachip.com  
AUG. 2015  

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