SEOUL SMJP

Z-Power LED
X10490
Technical
Data
Sheet
RoHS
Specification
Acrich2 – MR
120V 4.3W
SMJP-2V04W1P1
SSC
Drawn
Approval
Customer
Approval
Rev. 01
June 2012
1
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Z-Power LED
X10490
Technical
Data
Sheet
Acrich2
Acrich2 - 120V 4.3W MR
Features
Description
The Acrich 2 series, which are designed for AC drive(or
• 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
operation), do not need the standard converter essential for a
conventional general lighting product.
The modules also have a high power factor which can contribute
to high energy savings in many lighting applications.
Applications
Since there is no need for a converter, the Acrich 2 series life-
•
•
•
•
time can be estimated
Bulb light
Down light
Factory Ceiling light
Industrial Light
closer to the LED because it is not as dependent on the other
electronics in the system.
It also allows for better utilization of space without the converter.
* The appearance and specifications of the product can be changed
for improvement without notice.
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June 2012
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Z-Power LED
X10490
Technical
Data
Sheet
[ Contents ]
1.
Characteristics --------------------------------4
2.
Thermal Resistance ---------------------------6
3.
Color spectrum------------------------------7
4.
Power characteristics-----------------------7
5.
Radiation pattern---------------------------9
6.
Color & Binning---------------------------------10
7.
Marking-------------------------------------------12
8.
Outline dimensions-----------------------------12
9.
Circuit Drawing----------------------------13
10. Packing--------------------------------------14
11. Usage precautions--------------------------15
12. Handling of silicone resin for LEDs-------15
13. Handling with regards to static electricity---16
14. S t o r a g e b e f o r e u s e - - - - - - - - - - - - - - - - - - - - 1 6
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June 2012
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Z-Power LED
X10490
Technical
Data
Sheet
1. Characteristics
1-1-1. Electro-Optical characteristics of SMJP-2V04W1P1-G rank
Parameter
Value
Symbol
Unit
Min
Typ
ФV [3]
270
290
Correlated Color
Temperature [4]
CCT
2900
3000
3200
K
CRI
Ra
80
-
-
-
Luminous Flux
[2]
Operating Voltage
[5]
vopt
Max
lm
120
4.0
4.3
V[RMS]
4.6
W
Power Dissipation
PD
Operating Frequency
Freq
50 / 60
Hz
Power Factor
PF
Over 0.95
-
120
deg.
View Angle
2
Θ 1/2
1-1-2. Electro-Optical characteristics of SMJP-2V04W1P1-H rank
Parameter
Value
Symbol
Unit
Min
Typ
ФV [3]
260
290
Correlated Color
Temperature [4]
CCT
2600
2700
2900
K
CRI
Ra
80
-
-
-
Luminous Flux
[2]
Operating Voltage
[5]
vopt
Max
lm
120
Power Dissipation
PD
Operating Frequency
Freq
50 / 60
Hz
Power Factor
PF
Over 0.95
-
120
deg.
View Angle
2
Θ 1/2
4.0
4.3
V[RMS]
4.6
W
Rev. 01
June 2012
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Z-Power LED
X10490
Technical
Data
Sheet
1-2 Absolute Maximum Ratings
Parameter
Symbol
Value
Unit
Max. Voltage
vopt
140
V[RMS]
Power Dissipation
Pd
5.7
W
Operating Temperature
Topr
-30 ~ 85
ºC
Storage Temperature
Tstg
-40 ~ 100
ºC
ESD Sensitivity
-
± 4,000V HBM
-
* Notes :
[1] At 120V RMS, Ta=25ºC
[2] Acrich 2 series maintain the tolerance of ±10% on flux and power measurements.
[3] V is the total luminous flux output measured with an integrated sphere.
[4] Correlated Color Temperature is derived from the CIE 1931 Chromaticity diagram.
[5] 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 .
Ф
℃
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June 2012
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Z-Power LED
X10490
Technical
Data
Sheet
2. Thermal Resistance
The Acrich2 LED has a thermal resistance of 27degC/W from junction to the LED lead.
The maximum junction temperature of Acrich2 LED package is 125degC, therefore the maximum
lead temperature Ts_max is
Ts_max = Tj_max - (Rθj-s * PD)
= 125
℃ - (5.7℃/W * 1.2W) = 118.2℃
Although this is the maximum lead temperature, it is recommended to keep the lead temperature
under 70degC
The Acrich2 IC has a 16.4degC/W thermal resistance from junction to the top surface.
The maximum junction temperature (Tt_max) of the IC is 125degC, therefore the maximum
temperature of the top of the IC is
Tt_max = Tj_max - (ψj-t * PD)
= 125
℃ - (16.4℃/W * 1.2W) = 105.3℃
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June 2012
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Z-Power LED
X10490
Technical
Data
Sheet
3. Color spectrum
4. Power characteristic
Rev. 01
June 2012
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Z-Power LED
X10490
Technical
Data
Sheet
Rev. 01
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June 2012
Z-Power LED
X10490
Technical
Data
Sheet
5. Radiation Pattern
0
1.0
30
Relative luminous flux
0.8
0.6
60
0.4
0.2
0.0
-80
-60
-40
-20
0
90
Angle(deg.)
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June 2012
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Z-Power LED
X10490
Technical
Data
Sheet
6. Color & Binning
0.46
2700K
0.44
3000K
0.40
4700K
CIE Y
5000K
0.38
C1
B9
6000K
6500K
7000K
7600K
8200K
0.30
Z1
A0
A2
A1
A3
A5
B0
B3 C4
B2
B5
H6
H7
G7
G6
F7
F6
E7
D5
C3
E6
D4
B1 C2
G4
F4
E5
E4
D2
C0
B8
0.34
E2
D3
G5
F5
E3
H5
H4
F3
F2
H3
H2
G3
G2
E1
D1
D0
C8
G0
F1
F0
E8
E0
D8
C9
5300K
5600K
0.36
4200K
4500K
D9
G1
F8
E9
H1
H0
F9
3700K
4000K
G9
G8
3500K
0.42
H9
H8
3200K
0.32
2600K
2900K
D7
C5
D6
C7
C6
ANSI-Color Bin
B4 B7
B6
A4 A7
Z3
A6 A9
Z2 Z5
Z4 Z7 A8
Z6
Z9
Z8
0.28
0.28
0.30
0.32
0.34
0.36
0.38
0.40
0.42
0.44
0.46
0.48
0.50
CIE X
*Notes : For more detailed information on Acrich binning see the “Acrich Binning and Labeling”
document at www.Acrich.com
* Measurement Uncertainty of the Color Coordinates : ± 0.01
Rev. 01
June 2012
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Z-Power LED
X10490
Technical
Data
Sheet
▷ COLOR RANK
Rank
Bin
G0
G
H
CIE X
CIE Y
Bin
CIE X
CIE Y
0.4165
X1
0.4430
Y1
0.4212
X1
0.4248
Y1
0.4048
X2
0.4248
Y2
0.4048
X2
0.4374
Y2
0.4093
X2
0.4198
Y2
0.3931
X3
0.4374
Y3
0.4093
X3
0.4499
Y3
0.4138
X3
0.4317
Y3
0.3973
X4
0.4430
Y4
0.4212
X4
0.4562
Y4
0.4260
X4
0.4374
Y4
CIE X
CIE Y
G1
Bin
CIE X
CIE Y
G2
Bin
CIE X
0.4093
CIE Y
X1
0.4374
Y1
0.4093
X1
0.4198
Y1
0.3931
X1
0.4317
Y1
0.3973
X2
0.4317
Y2
0.3973
X2
0.4147
Y2
0.3814
X2
0.4259
Y2
0.3853
X3
0.4436
Y3
0.4015
X3
0.4259
Y3
0.3853
X3
0.4373
Y3
0.3893
X4
0.4499
Y4
0.4138
X4
0.4317
Y4
0.3973
X4
0.4436
Y4
0.4015
CIE X
CIE Y
G4
Bin
CIE X
CIE Y
G5
Bin
CIE X
CIE Y
X1
0.4562
Y1
0.4260
X1
0.4687
Y1
0.4289
X1
0.4499
Y1
0.4138
X2
0.4499
Y2
0.4138
X2
0.4620
Y2
0.4166
X2
0.4436
Y2
0.4015
X3
0.4620
Y3
0.4166
X3
0.4740
Y3
0.4194
X3
0.4551
Y3
0.4042
X4
0.4687
Y4
0.4289
X4
0.4810
Y4
0.4319
X4
0.4620
Y4
Bin
H3
Bin
Y1
Bin
H0
CIE Y
0.4299
Bin
G3
Rank
CIE X
X1
CIE X
CIE Y
H1
Bin
CIE X
CIE Y
H2
Bin
CIE X
0.4166
CIE Y
X1
0.4620
Y1
0.4166
X1
0.4436
Y1
0.4015
X1
0.4551
Y1
0.4042
X2
0.4551
Y2
0.4042
X2
0.4373
Y2
0.3893
X2
0.4483
Y2
0.3919
X3
0.4666
Y3
0.4069
X3
0.4483
Y3
0.3919
X3
0.4593
Y3
0.3944
X4
0.4740
Y4
0.4194
X4
0.4551
Y4
0.4042
X4
0.4666
Y4
0.4069
H4
H5
Rev. 01
June 2012
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Z-Power LED
X10490
Technical
Data
Sheet
7. Marking
YYMMDD: Production Date
XXXX – LED PKG Flux Rank / Color Bin Rank
8. 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. 01
June 2012
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Z-Power LED
X10490
Technical
Data
Sheet
9. Circuit Drawing
2
1
D1 Acrich
DN2
1
VAC1
N1
U1
DN1
N
VP
3
D2
Acrich
4
DN4
1
VAC2
L1
DN3
5
D3
Acrich
6
7
L
D4 Acrich
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June 2012
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Z-Power LED
X10490
Technical
Data
Sheet
10. Packing
9 1Box : 100 PCS per tray x 10 layer = 1000 PCS
∴ about 6kg
9 Box size( L x W x H ) = 590 x 330 x 260
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June 2012
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Z-Power LED
X10490
Technical
Data
Sheet
11. Usage precautions
• Please review the Acrich2 Module Application Note for protective circuitry
component usage.
• Please note, the Acrich products run on high voltage so use caution when near
the the device which the circuit is active.
• DO NOT touch any of the circuit board, components or terminals with body or
metal while circuit is active.
• Please do not add or change wires while Acrich circuit is active
• 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.
• Please do not use adhesives to attach the LED 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)
12. 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.
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June 2012
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Z-Power LED
X10490
Technical
Data
Sheet
13. Handling with regards to static electricity
• The Acrich2 modules use an integrated circuit (IC) which can be damaged
when exposed to static electricity. Please handle using equipment that
prevents static electricity. Do not touch unless ESD protection is used.
• The Acrich2 modules should also not be installed in end equipment with out
ESD protection.
14. Storage before use
• Do not impact or place pressure on this product because even a small
amount of pressure can damage the product. The product should also not be
placed in high temperatures, high humidity or direct sunlight since the device is
sensitive to these conditions.
(1) Please, confirm the lists below, 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. 01
June 2012
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