SMJD-3V16W2P3 [SEOUL]

Acrich2 220V 17W Module Connect using a AIC directly to AC power; Acrich2 220V 17W模块直接连接使用AIC交流电源
SMJD-3V16W2P3
型号: SMJD-3V16W2P3
厂家: Seoul Semiconductor    Seoul Semiconductor
描述:

Acrich2 220V 17W Module Connect using a AIC directly to AC power
Acrich2 220V 17W模块直接连接使用AIC交流电源

文件: 总14页 (文件大小:570K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
RoHS  
Preliminary  
Specification  
Acrich2  
220V 17W  
SMJD-3V16W2P3  
SSC  
Customer  
Drawn  
Approval  
Approval  
Rev. 00  
Nov. 2012  
1
www.Acrich.com  
Acrich2  
Acrich2 220V 17W Module  
Features  
Connect using a AIC  
directly to AC power  
High Power Efficiency  
• High Power Factor  
• Low THD  
Long Life Time  
Simplest BOM  
Miniaturization  
• Lead Free product  
• RoHS compliant  
Description  
Applications  
Acrich 2 series designed for AC drive(or operation) doesn't need the  
converter which is essential for conventional general lighting. Also, its high  
power factor can show best energy saving effect in many lighting  
applications.  
Flush mount  
Down light  
• Factory Ceiling light  
• Industrial Light  
As there is no need of converter, Acrich 2 series can realize as close life-  
time as original LED and make a better use of a space in many  
applications.  
* The appearance and specifications of the product can be changed  
for improvement without notice.  
Rev. 00  
Nov. 2012  
2
www.Acrich.com  
[ Contents ]  
1.  
2.  
3.  
4.  
5.  
6.  
7.  
8.  
9.  
Char acter istics of SM JD-3V16W2P3------------- 4  
C o l o r s p e c t r u m - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -6  
P o w e r c h a r a c t e r i s t i c - - - - - - - - - - - - - - - - - - - - - - - - - - - 6  
C o l o r & B i n n i n g - - - - - - - - - - - - - - - - - - - - - - - - - - - 8  
C i r c u i t D r a w i n g - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 1 0  
O u t l i n e d i m e n s i o n s - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 11  
P a r t L i s t - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 1 2  
C a u t i o n s f o r u s e - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 1 3  
H a n d l i n g o f s i l i c o n e r e s i n f o r L E D s - - - - - - - - 1 3  
10. C o n t e n t r e g a r d i n g s t a t i c e l e c t r i c i t y - - - - - 1 4  
11. C o n t e n t r e g a r d i n g s t o r a g e a n d t r e a t m e n t - - 1 4  
Rev. 00  
Nov. 2012  
3
www.Acrich.com  
1. Characteristics of SMJD-3V16W2P3  
1-1-1. Electro-Optical characteristics of SMJD-3V16W2P3 5000K  
Value  
Parameter  
Symbol  
Unit  
Min  
1330  
-
Typ  
1480  
5000  
83.5  
Max  
Luminous Flux [1]  
Correlated Color Temperature [3]  
CRI  
ФV  
-
-
-
lm  
K
[2]  
CCT  
Ra  
80  
-
Operating Voltage [4]  
Power Dissipation  
Operating Frequency  
Power Factor  
vopt  
220  
Vrms  
W
PD  
17  
-
-
Freq  
PF  
50 / 60  
Over 0.97  
120  
Hz  
-
View Angle  
2Θ 1/2  
deg.  
1-1-2. Electro-Optical characteristics of SMJD-3V16W2P3 3000K  
Value  
Parameter  
Symbol  
Unit  
Min  
1270  
-
Typ  
1410  
3000  
83.5  
Max  
Luminous Flux [1]  
Correlated Color Temperature [3]  
CRI  
ФV  
-
-
-
lm  
K
[2]  
CCT  
Ra  
80  
-
Operating Voltage [4]  
Power Dissipation  
Operating Frequency  
Power Factor  
vopt  
220  
Vrms  
W
PD  
17  
-
-
Freq  
PF  
50 / 60  
Over 0.97  
120  
Hz  
-
View Angle  
2Θ 1/2  
deg.  
Rev. 00  
Nov. 2012  
4
www.Acrich.com  
1-1-3. Electro-Optical characteristics of SMJD-3V16W2P3 2700K  
Value  
Parameter  
Symbol  
Unit  
Min  
1260  
-
Typ  
1400  
2700  
83.5  
Max  
Luminous Flux [1]  
Correlated Color Temperature [3]  
CRI  
ФV  
-
-
-
lm  
K
[2]  
CCT  
Ra  
80  
-
Operating Voltage [4]  
Power Dissipation  
Operating Frequency  
Power Factor  
vopt  
220  
Vrms  
W
PD  
17  
-
-
Freq  
PF  
50 / 60  
Over 0.97  
120  
Hz  
-
View Angle  
2Θ 1/2  
deg.  
1-2 Absolute Maximum Ratings  
Parameter  
Symbol  
Value  
Unit  
Max. Voltage  
vopt  
264  
V[RMS]  
Power Dissipation  
Operating Temperature  
Storage Temperature  
ESD Sensitivity  
Pd  
Topr  
Tstg  
-
23.0  
W
ºC  
ºC  
-
-30 ~ 85  
-40 ~ 100  
±4,000V HBM  
* Notes :  
[1] At 220V RMS, Ta=25ºC  
Acrich 2 series maintain the tolerance of 10% on flux and power measurements.  
[2] ФV is the total luminous flux output measured with an integrated sphere.  
[3] Correlated Color Temperature is derived from the CIE 1931 Chromaticity diagram.  
[4] ‘Operating Voltage' doesn't indicate the maximum voltage which customers use but  
means tolerable voltage according to each country’s voltage variation rate.  
It is recommended that the solder pad temperature should be below 70.  
Rev. 00  
Nov. 2012  
5
www.Acrich.com  
2. Color spectrum  
Relative Spectral Power Distribution at Ta=25oC  
1.2  
1
0.8  
0.6  
0.4  
0.2  
0
300  
400  
500  
600  
700  
800  
Wavelength[nm]  
3000K  
3. Power characteristic  
Relative Power Distribution vs. Voltage at Ta=25oC  
1.4  
1.2  
1
0.8  
0.6  
0.4  
0.2  
0
200  
210  
220  
230  
240  
250  
260  
Voltage[V]  
Rev. 00  
Nov. 2012  
6
www.Acrich.com  
Relative Luminous flux vs. Forward Voltage, Ta=25oC  
1.6  
1.4  
1.2  
1
0.8  
0.6  
200  
210  
220  
230  
240  
250  
260  
Voltage[RMS,V]  
Rev. 00  
Nov. 2012  
7
www.Acrich.com  
4. Color & Binning  
0.46  
0.44  
0.42  
0.40  
0.38  
0.36  
0.34  
0.32  
2600K  
2700K  
2900K  
3000K  
H1  
3200K  
H0  
G1  
G0  
H3  
H2  
H5  
G3  
G2  
H4  
G5  
G4  
4700K  
5000K  
C1  
5300K  
C0  
C3  
ANSI-Color Bin  
C2  
C4  
C5  
0.32  
0.34  
0.36  
0.38  
0.40  
0.42  
0.44  
0.46  
0.48  
0.50  
CIE X  
* Measurement Uncertainty of the Color Coordinates : ± 0.01  
Rev. 00  
Nov. 2012  
www.Acrich.com  
8
COLOR RANK  
Rank  
Bin  
CIE X  
CIE Y  
Bin  
CIE X  
CIE Y  
Bin  
CIE X  
CIE Y  
X1  
X2  
X3  
X4  
0.3376  
Y1  
Y2  
Y3  
Y4  
0.3616  
X1  
X2  
X3  
X4  
0.3463  
Y1  
Y2  
Y3  
Y4  
0.3687  
X1  
X2  
X3  
X4  
0.3373  
Y1  
Y2  
Y3  
Y4  
0.3534  
0.3373  
0.3456  
0.3463  
0.3534  
0.3601  
0.3687  
0.3456  
0.3539  
0.3552  
0.3601  
0.3669  
0.3760  
0.3369  
0.3448  
0.3456  
0.3451  
0.3514  
0.3601  
C0  
C1  
C2  
C
Bin  
CIE X  
CIE Y  
Bin  
CIE X  
CIE Y  
Bin  
CIE X  
CIE Y  
X1  
X2  
X3  
X4  
0.3456  
0.3448  
0.3526  
0.3539  
Y1  
Y2  
Y3  
Y4  
0.3601  
0.3514  
0.3578  
0.3669  
X1  
X2  
X3  
X4  
0.3369  
0.3366  
0.3440  
0.3448  
Y1  
Y2  
Y3  
Y4  
0.3451  
0.3369  
0.3428  
0.3514  
X1  
X2  
X3  
X4  
0.3448  
0.3440  
0.3514  
0.3526  
Y1  
Y2  
Y3  
Y4  
0.3514  
0.3428  
0.3487  
0.3578  
C3  
C4  
C5  
Rank  
G
Bin  
CIE X  
CIE Y  
Bin  
CIE X  
CIE Y  
Bin  
CIE X  
CIE Y  
X1  
X2  
X3  
X4  
0.4299  
0.4248  
0.4374  
0.4430  
Y1  
Y2  
Y3  
Y4  
0.4165  
0.4048  
0.4093  
0.4212  
X1  
X2  
X3  
X4  
0.4430  
0.4374  
0.4499  
0.4562  
Y1  
Y2  
Y3  
Y4  
0.4212  
0.4093  
0.4138  
0.4260  
X1  
X2  
X3  
X4  
0.4248  
0.4198  
0.4317  
0.4374  
Y1  
Y2  
Y3  
Y4  
0.4048  
0.3931  
0.3973  
0.4093  
G0  
G1  
G2  
Bin  
CIE X  
CIE Y  
Bin  
CIE X  
CIE Y  
Bin  
CIE X  
CIE Y  
X1  
X2  
X3  
X4  
0.4374  
0.4317  
0.4436  
0.4499  
Y1  
Y2  
Y3  
Y4  
0.4093  
0.3973  
0.4015  
0.4138  
X1  
X2  
X3  
X4  
0.4198  
0.4147  
0.4259  
0.4317  
Y1  
Y2  
Y3  
Y4  
0.3931  
0.3814  
0.3853  
0.3973  
X1  
X2  
X3  
X4  
0.4317  
0.4259  
0.4373  
0.4436  
Y1  
Y2  
Y3  
Y4  
0.3973  
0.3853  
0.3893  
0.4015  
G3  
G4  
G5  
Rank  
H
Bin  
CIE X  
CIE Y  
Bin  
CIE X  
CIE Y  
Bin  
CIE X  
CIE Y  
X1  
X2  
X3  
X4  
0.4562  
0.4499  
0.4620  
0.4687  
Y1  
Y2  
Y3  
Y4  
0.4260  
0.4138  
0.4166  
0.4289  
X1  
X2  
X3  
X4  
0.4687  
0.4620  
0.4740  
0.4810  
Y1  
Y2  
Y3  
Y4  
0.4289  
0.4166  
0.4194  
0.4319  
X1  
X2  
X3  
X4  
0.4499  
0.4436  
0.4551  
0.4620  
Y1  
Y2  
Y3  
Y4  
0.4138  
0.4015  
0.4042  
0.4166  
H0  
H1  
H2  
Bin  
CIE X  
CIE Y  
Bin  
CIE X  
CIE Y  
Bin  
CIE X  
CIE Y  
X1  
X2  
X3  
X4  
0.4620  
0.4551  
0.4666  
0.4740  
Y1  
Y2  
Y3  
Y4  
0.4166  
0.4042  
0.4069  
0.4194  
X1  
X2  
X3  
X4  
0.4436  
0.4373  
0.4483  
0.4551  
Y1  
Y2  
Y3  
Y4  
0.4015  
0.3893  
0.3919  
0.4042  
X1  
X2  
X3  
X4  
0.4551  
0.4483  
0.4593  
0.4666  
Y1  
Y2  
Y3  
Y4  
0.4042  
0.3919  
0.3944  
0.4069  
H3  
H4  
H5  
Rev. 00  
Nov. 2012  
www.Acrich.com  
9
5. Circuit Drawing  
Rev. 00  
Nov. 2012  
10  
www.Acrich.com  
6. Outline dimensions  
* Notes :  
[1] All dimensions are in millimeters. (Tolerance : ±0.2)  
[2] Scale : none  
[3] The appearance and specifications of the product may be changed for improvement without  
notice  
Rev. 00  
Nov. 2012  
11  
www.Acrich.com  
7. Part List  
No.  
1
List  
PCB  
Silk  
-
Specifications  
Metal(Al) 100Φ 1.6T  
Q'ty  
1
Remark  
2
LED  
-
SSC SAW8KG0B  
42  
1
3
Fuse  
F1  
V1  
BD1  
R1  
R2  
Z1  
U1  
R3  
R4  
R5  
Littelfuse443 (250V 1A)  
Maida8S17SM251 (330V DC/250V AC)  
KEC MB6S  
4
Varistor  
Bridge Diode  
Resistor  
Resistor  
TVS  
1
5
1
6
1
6432 91Ω J  
7
1
8
Littelfuse/Vishay P6SMB-440A  
Acrich2 DMBB type  
1608 1.74KΩ  
1
9
IC  
1
10  
11  
12  
Resistor  
Resistor  
Resistor  
1
1608 1KΩ 5%  
1
3216 0Ω  
1
Rev. 00  
Nov. 2012  
12  
www.Acrich.com  
8. Cautions for use  
• Please attach a varistor for protecting surge according to the application note  
• Please attach a resistance according to the application note  
Please note Acrich runs on high voltage so use caution when near the leads  
or if a dome is inadvertently removed while circuit is active  
Please do not touch any of the circuit board, components or terminals with  
bare hands or metal while circuit is electrically active.  
Please do not add or change wires while Acrich circuit is active  
• Please do not touch wire on solder pad at driving AC source  
• The appearance and specifications of the product may be modified for  
improvement without notice.  
• Long time exposure of sunlight or occasional UV exposure will cause lens  
discoloration.  
• Attaching LEDs, do not use adhesives that outgas organic vapor.  
• Please do not use together with the materials containing Sulfur  
• Please do not assemble under the condition of moisture and oxidizing gas in the  
air(Cl, H2S,NH3,SO2,NOX,etc)  
9. Handling of silicone resin for LEDs  
Acrich series is encapsulated with silicone resin for high optical efficiency.  
Please do not touch the silicone resin area with sharp objects such as  
pincette(tweezers).  
Finger prints on silicone resin area may affect the performance.  
Please store LEDs in covered containers as it is dust sensitive.  
Excessive force more than 3000gf to the silicone lens can result in fatal or  
permanent damage with LEDs.  
Please do not cover the silicone resin area with any other resins such as  
epoxy, urethane, etc.  
Rev. 00  
Nov. 2012  
13  
www.Acrich.com  
10. Content regarding static electricity  
• Acrich2 control IC is installed in this product. This kind of package could get  
damaged when it is exposed to static electricity. So, please, wear equipment to  
prevent it from static electricity.  
Moreover, be cautious not to touch each exposed package and AC PAD on top of  
product with bare hands.  
When installing the product on user’s Main heat sink, should wear some equipment  
to prevent static electricity.  
11. Content regarding storage and treatment  
• Do not impact or pressure on this product since this product get damaged easily  
by small amount of impact. Moreover, it should avoid high temperature, high  
humidity, and direct sunlight in order to function properly since LED PKG is  
sensitive to temperature and humidity, when storing or operating it.  
Criteria are here as below.  
• Please, confirm to next lists, when storing it in a long term.  
*It should be stored in the anti-static bag that Seoul-Semiconductor packed  
without opening it.  
* If you opened it in order to prevent humidity, you should seal it and not let  
the air and humidity into the bag.  
Rev. 00  
Nov. 2012  
14  
www.Acrich.com  

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