SAWX7X0A - Seoul Semiconductor

APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Specification
SAWX7X0A
Features
• Connect in AC power
with Bridge Diode
• Power Saving
• Long Life
• Simplified B.O.M
• Small design footprint
• SMT solderbility
• Lead Free product
• RoHS compliant
Description
The Acrich series of LEDs are designed for AC operation and
high flux output applications.
Acrich LEDs are an environmentally friendly semiconductor
lighting source that can be directly connected to an AC power
source with Bridge Diode
Applications
Acrich’s thermal management performance exceeds other
power LED solutions by incorporating state-of-the-art SMD
design and use of specialized thermal emission material.
•
•
•
•
General Luminaries
Factory Ceiling light
Industrial Light
Interior Spot light
Acrich is an ideal light source for general purpose
illumination applications.
* The appearance and specifications of the product can be changed
for improvement without notice.
Rev. 03
July. 2012
1
www.seoulsemicon.com
서식번호 : SSC-QP-7-07-25 (Rev.00)
APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Part number of A7 (SAWX7X0A)
1. Part Number form : X1X2X3X4X5X6X7X8 – X9X10X11X12X13
X1
Company
S
SSC
X2
Package series
A
Acriche
WW
Warm White
W0
Pure White
7
A7 series
B
100V/110V/120V
D
220V/230V
X3
Color
X4
X5
Acrich series number
X6
Voltage
X7
PCB type
0
Emitter
X8
Revision No.
A
Internal code
X9X10
Brightness bin
-
-
X11X12
Color bin
-
-
X13
VF bin
-
-
2. Sticker Diagram on Reel & Aluminum Vinyl Bag
X9 X10 X11 X12 X13
X1 X2 X3 X4 X5 X6 X7 X8
X1 X2 X3 X4 X5 X6 X7 X8
* For more information about binning and labeling, refer to the Application Note -1
Rev. 03
July. 2012
2
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Outline dimensions
1) SAWX7D0A
Index mark
Top View
Bottom View
Side View
Bottom View
Side View
2) SAWX7B0A
Index mark
Top View
* 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. 03
July. 2012
3
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Characteristics of A7 (SAWX7X0A)
1. SAW07B0A
1-1 Electro-Optical characteristics at 100V/110V/120V Ta=25ºC
Value
Parameter
Symbol
Unit
Min
Typ
Max
ФV [2]
-
360
-
lm
CCT
-
5500
-
K
CRI
Ra
-
70
-
-
Operating Current
Iopt
-
40
-
mA
[RMS]
Operating Voltage
vopt
100V/110V/120V
V[RMS]
Power Dissipation
PD
3.2
W
Operating Frequency
Freq
50 / 60
Hz
Thermal resistance
Rth
4.0
ºC/W
View Angle
2Θ 1/2
130
deg.
Luminous Flux
[1]
Correlated Color Temperature
[3]
1-2 Absolute Maximum Ratings
Parameter
Symbol
Value
Unit
Operating Voltage
vopt [4]
115/127/138
V [RMS]
Power Dissipation
PD
6.4
W
Junction Temperature
Tj
125
ºC
Operating Temperature
Topr
-40 ~ +85
ºC
Storage Temperature
Tstg
-40 ~ +120
ºC
ESD Sensitivity
-
±6,000V HBM
-
* Notes :
[1] Acrich series maintains a tolerance of 10% on flux and power measurements.
[2] ФV is the total luminous flux output as measured with an integrated sphere.
[3] Correlated Color Temperature is derived from the CIE 1931 Chromaticity diagram.
CCT 5% tester tolerance
[4] ‘Operating Voltage' doesn't indicate the maximum voltage which customers use, but it
means tolerable voltage according to the voltage variation rate by one's country.
It is recommended that the temperature of solder pad should be below 70℃.
Rev. 03
July. 2012
4
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Characteristics of A7 (SAWX7X0A)
2. SAWW7B0A
2-1 Electro-Optical characteristics at 100V/110V/120V Ta=25ºC
Value
Parameter
Symbol
Unit
Min
Typ
Max
ФV [2]
-
260
-
lm
CCT
-
3000
-
K
CRI
Ra
-
80
-
-
Operating Current
Iopt
-
40
-
mA
[RMS]
Operating Voltage
vopt
100V/110V/120V
V[RMS]
Power Dissipation
PD
3.2
W
Operating Frequency
Freq
50 / 60
Hz
Thermal resistance
Rth
4.0
ºC/W
View Angle
2Θ 1/2
130
deg.
Luminous Flux
[1]
Correlated Color Temperature
[3]
2-2 Absolute Maximum Ratings
Parameter
Symbol
Value
Unit
Operating Voltage
vopt [4]
115/127/138
V [RMS]
Power Dissipation
PD
6.4
W
Junction Temperature
Tj
125
ºC
Operating Temperature
Topr
-40 ~ +85
ºC
Storage Temperature
Tstg
-40 ~ +120
ºC
ESD Sensitivity
-
±6,000V HBM
-
* Notes :
[1] Acrich series maintains a tolerance of 10% on flux and power measurements.
[2] ФV is the total luminous flux output as measured with an integrated sphere.
[3] Correlated Color Temperature is derived from the CIE 1931 Chromaticity diagram.
CCT 5% tester tolerance
[4] ‘Operating Voltage' doesn't indicate the maximum voltage which customers use, but it
means tolerable voltage according to the voltage variation rate by one's country.
It is recommended that the temperature of solder pad should be below 70℃.
Rev. 03
July. 2012
5
www.seoulsemicon.com
APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Characteristics of A7 (SAWX7X0A)
3. SAW07D0A
3-1 Electro-Optical characteristics at 220V/230V Ta=25ºC
Value
Parameter
Symbol
Unit
Min
Typ
Max
ФV [2]
-
360
-
lm
CCT
-
5500
-
K
CRI
Ra
-
70
-
-
Operating Current
Iopt
-
20
-
mA
[RMS]
Operating Voltage
vopt
220/230
V[RMS]
Power Dissipation
PD
3.2
W
Operating Frequency
Freq
50 / 60
Hz
Thermal resistance
Rth
4.0
ºC/W
View Angle
2Θ 1/2
130
deg.
Luminous Flux
[1]
Correlated Color Temperature
[3]
3-2 Absolute Maximum Ratings
Parameter
Symbol
Value
Unit
Operating Voltage
vopt [4]
253/265
V [RMS]
Power Dissipation
PD
6.4
W
Junction Temperature
Tj
125
ºC
Operating Temperature
Topr
-40 ~ +85
ºC
Storage Temperature
Tstg
-40 ~ +120
ºC
ESD Sensitivity
-
±6,000V HBM
-
* Notes :
[1] Acrich series maintains a tolerance of 10% on flux and power measurements.
[2] ФV is the total luminous flux output as measured with an integrated sphere.
[3] Correlated Color Temperature is derived from the CIE 1931 Chromaticity diagram.
CCT 5% tester tolerance
[4] ‘Operating Voltage' doesn't indicate the maximum voltage which customers use, but it
means tolerable voltage according to the voltage variation rate by one's country.
It is recommended that the temperature of solder pad should be below 70℃.
Rev. 03
July. 2012
6
www.seoulsemicon.com
APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Characteristics of A7 (SAWX7X0A)
4. SAWW7D0A
4-1 Electro-Optical characteristics at 220V/230V Ta=25ºC
Value
Parameter
Symbol
Unit
Min
Typ
Max
ФV [2]
-
260
-
lm
CCT
-
3000
-
K
CRI
Ra
-
80
-
-
Operating Current
Iopt
-
20
-
mA
[RMS]
Operating Voltage
vopt
220/230
V[RMS]
Power Dissipation
PD
3.2
W
Operating Frequency
Freq
50 / 60
Hz
Thermal resistance
Rth
4.0
ºC/W
View Angle
2Θ 1/2
130
deg.
Luminous Flux
[1]
Correlated Color Temperature
[3]
4-2 Absolute Maximum Ratings
Parameter
Symbol
Value
Unit
Operating Voltage
vopt [4]
253/265
V [RMS]
Power Dissipation
PD
6.4
W
Junction Temperature
Tj
125
ºC
Operating Temperature
Topr
-40 ~ +85
ºC
Storage Temperature
Tstg
-40 ~ +120
ºC
ESD Sensitivity
-
±6,000V HBM
-
* Notes :
[1] Acrich series maintains a tolerance of 10% on flux and power measurements.
[2] ФV is the total luminous flux output as measured with an integrated sphere.
[3] Correlated Color Temperature is derived from the CIE 1931 Chromaticity diagram.
CCT 5% tester tolerance
[4] ‘Operating Voltage' doesn't indicate the maximum voltage which customers use, but it
means tolerable voltage according to the voltage variation rate by one's country.
It is recommended that the temperature of solder pad should be below 70℃.
Rev. 03
July. 2012
7
www.seoulsemicon.com
APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Color spectrum, Ta=25oC
1. Pure white (SAW07X0A)
Relative Spectral Power [a.u.]
1 .2
P u re W h ite
P h o t o p i c s e n s i t iv it y c u r v e
1 .0
0 .8
0 .6
0 .4
0 .2
0 .0
300
400
500
600
700
800
W a v e le n g t h [ n m ]
2. Warm white (SAWW7X0A)
1 .2
Relative Spectral Power [a.u.]
W a r m w h ite ( C R I 8 0 )
1 .0
0 .8
0 .6
0 .4
0 .2
0 .0
300
400
500
600
700
800
W a v e le n g th [ n m ]
Rev. 03
July. 2012
8
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Current vs. Voltage characteristics, Ta=25oC
1. SAWX7B0A with external resistor @100V
80
100V
Current [RMS , mA]
60
40
20
0
0
25
50
75
10 0
1 25
V o lta g e [ R M S , V ]
2. SAWX7B0A with external resistor @110V
80
110V
Current [RMS , mA]
60
40
20
0
0
25
50
75
1 00
1 25
V o lt a g e [R M S , V ]
Rev. 03
July. 2012
9
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Current vs. Voltage characteristics, Ta=25oC
3. SAWX7B0A with external resistor @120V
80
1 20 V
Current [RMS , mA]
60
40
20
0
0
25
50
75
100
1 25
150
V o lt a g e [R M S , V ]
Rev. 03
July. 2012
10
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Current vs. Voltage characteristics, Ta=25oC
4. SAWX7D0A with external resistor @220V
40
220V
Current [RMS , mA]
30
20
10
0
0
50
1 00
15 0
200
250
V o lt a g e [ R M S , V ]
5. SAWX7D0A with external resistor @230V
40
230V
Current [RMS , mA]
30
20
10
0
0
50
1 00
15 0
200
250
V o lt a g e [ R M S , V ]
Rev. 03
July. 2012
11
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Voltage vs. Relative flux characteristics, Ta=25oC
1. SAWX7B0A with external resistor @100V
2 .0
Relative Luminous Flux [a.u.]
100V
1 .5
1 .0
0 .5
0 .0
80
85
90
95
10 0
105
110
1 15
1 20
120
1 25
1 30
V o lta g e [R M S , V ]
2. SAWX7B0A with external resistor @110V
2 .0
Relative Luminous Flux [a.u.]
110V
1 .5
1 .0
0 .5
0 .0
90
95
10 0
10 5
11 0
115
V o lta g e [R M S , V ]
Rev. 03
July. 2012
12
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Voltage vs. Relative flux characteristics, Ta=25oC
3. SAWX7B0A with external resistor @120V
2 .0
Relative Luminous Flux [a.u.]
120V
1 .5
1 .0
0 .5
0 .0
1 00
1 05
11 0
11 5
12 0
125
130
1 35
1 40
V o lta g e [R M S , V ]
Rev. 03
July. 2012
13
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Voltage vs. Relative flux characteristics, Ta=25oC
4. SAWX7D0A with external resistor @220V
2.0
Relative Luminous Flux [a.u.]
220V
1.5
1.0
0.5
0.0
180
19 0
200
21 0
22 0
23 0
24 0
250
26 0
V o lta g e [ R M S , V ]
5. SAWX7D0A with external resistor @230V
2 .0
Relative Luminous Flux [a.u.]
230V
1 .5
1 .0
0 .5
0 .0
1 90
20 0
2 10
2 20
23 0
2 40
2 50
26 0
2 70
V o lta g e [R M S , V ]
Rev. 03
July. 2012
14
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Relative Flux vs. Junction temperature characteristics
1. SAWX7X0A
Relative Luminous Flux [%]
120
100
80
60
40
20
Cool w hite
W arm w hite
0
25
50
75
100
125
o
Junction tem perature [ C ]
Typical dome type radiation pattern, Ta=25oC
1. SAWX7X0A
1 .0
Relative Intensity [a.u.]
0 .9
0 .8
0 .7
0 .6
0 .5
0 .4
0 .3
0 .2
0 .1
0 .0
-9 0 -8 0 -7 0 -6 0 -5 0 -4 0 -3 0 -2 0 -1 0
0
10
20 30
40
50
60 70
80
90
D irectio n al an g le [d eg .]
Rev. 03
July. 2012
15
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Acrich Binning structure graphical representation
1. SAWX7X0A
0.46
2700K
0.44
Pure White
3000K
F9
3700K
F3
F2
CIE Y
5000K
0.38
0.32
0.30
B9
6000K
0.36
B8
F4
C8
5600K
C1
C0
G4
G6
G7
H6
H3
H5
H4
G5
F5
C9
5300K
H2
G3
G2
F0
4700K
0.34
G0
F1
H1
H0
G1
F8
Planckian Locus
0.40
G9
G8
3500K
Energy Star Rank
H9
H8
3200K
Warm White
0.42
2600K
2900K
H7
F7
F6
C3
B1 C2
C5
B3 C4
C7
A1 B2 B5
C6
7000K A0 A3 B4
B7
7600K
A5 B6
Z1 A2
Z3 A4 A7
8200K
A6 A9
Z2 Z5
Z4 Z7 A8
6500K
Z6
B0
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
Rev. 03
July. 2012
16
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Operating and biasing instructions of A7 (SAWX7X0A)
1. Basic connections of SAWX7X0A for AC source
SAWX7X0A
AC
source
R
Pd =4W
BD
20mA,RMS @220~230V,RMS
40mA,RMS @100~120V,RMS
1) SAWX7D0A (220V, 230V)
Index mark
Top View
Bottom View
NC
NC
NC
Thermal
Pad
C
NC
A
2) SAWX7B0A (100V, 110V, 120V)
Index mark
A
NC
C
NC
A: Anode,
C: Cathode,
Thermal
NC
Pad
C
NC: Non Connection
* Notes :
[1] A7 series need bridge diode and external resistor.
[2] The tolerance of current is 5% on each resistance rank.
[3] NC Pad and Thermal Pad must be isolated from AC source and electrically separated
each other
Rev. 03
17
July. 2012
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
2. Resistor sheet
SAWX7D0A [1]
SAWX7B0A [1]
Drive current : 40mA [RMS]
VF
Bin
[2]
Resister value [3] [4]
Drive current : 20mA [RMS] [2]
Resister value [3] [4]
100V
110V
120V
220V
230V
A
300Ω
500Ω
750Ω
2.5kΩ
2.9kΩ
B
250Ω
450Ω
700Ω
2.2kΩ
2.6kΩ
C
200Ω
400Ω
650Ω
1.9kΩ
2.35kΩ
D
-
350Ω
600Ω
1.6kΩ
2.1kΩ
Notes :
[1] External resistor is required for proper Acrich biasing.
[2] Drive current and voltage levels must not cause Acrich to operate outside Absolute Maximum
Rating for power dissipation in table 1-2.
[3] Drive current tolerance is 10% on each resistor value.
[4] Resistor power value must be taken into consideration when choosing the type of resistor.
[rated power = operating current² X resistance]
Rev. 03
July. 2012
18
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
6
PS
06
20
40
80
60
Emitter Carrier & Reel Packaging
EIAJ RRM 16 D
* Notes :
[1] The number of loaded products in the reel is 500 or 1000ea
[2] All dimensions are in millimeters (tolerance : ±0.2)
[3] Scale none
Rev. 03
July. 2012
19
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Recommended solder pad
1. Recommended PCB solder pad
1) SAWX7D0A
(220V, 230V)
2) SAWX7B0A
(100V, 110V, 120V)
Temperature
check point
Temperature
check point
Rev. 03
July. 2012
20
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Solder profile
1. Reflow solder conditions / profile
Reflow condition
Average ramp-up rate (TS-max to Peak)
Pb-Free
assembly
2~3℃ / second
Preheat Temperature Min (TS-min)
150℃
Preheat Temperature Max (TS-max)
200℃
Time maintained above: : Liquidus Temperature (TL)
Time maintained above: Time (tL)
Peak Temperature (TP)
217~220℃
60~150 seconds
250℃
Time within 5℃ of actual Peak Temperature (tP)
20~40 seconds
ramp-down rate
4~6℃ / second
Time 25℃ to Peak Temperature
6 minutes max
2. Hand Solder conditions
2-1 Lead : Not more than 3 seconds @MAX280℃
2-2 Slug : Use a thermal-adhesives
* Caution
[1] Reflow soldering should not be done more than one time.
[2] Repairing should not be done after the LEDs have been soldered. When
repairing is unavoidable, suitable tools have to be used.
[3] Die slug is to be soldered.
[4] When soldering, do not put stress on the LEDs during heating.
[5] After soldering, do not warp the circuit board.
[6] Recommend to use a convection type reflow machine with 7 ~ 8 zones.
Rev. 03
July. 2012
21
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APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
Precaution for use
• Storage
To avoid the moisture penetration, we recommend storing Acrich LEDs in a dry box
with a desiccant . The recommended storage temperature range is 5℃ to 30℃ and a maximum
humidity of 50%.
• Use Precaution after Opening the Packaging
Use proper SMD techniques when the LED is to be soldered dipped as separation of the lens may
affect the light output efficiency.
Pay attention to the following:
a. Soldering should be done immediately after opening the package (within 24Hrs).
b. Required conditions after opening the package
- Sealing
- Temperature : 5 ~ 40℃ Humidity : less than 30%
c. If the package has been opened more than 1 week or the color of the desiccant changes,
components should be dried for 10-12hr at 60±5℃
• Do not apply mechanical force or excess vibration during the cooling process to normal
temperature after soldering.
• Do not rapidly cool device after soldering.
• Components should not be mounted on warped (non coplanar) portion of PCB.
• Radioactive exposure is not considered for the products listed here in.
• Gallium arsenide is used in some of the products listed in this publication. These products are
dangerous if they are burned or shredded in the process of disposal. It is also dangerous to
drink the liquid or inhale the gas generated by such products when chemically disposed of.
• This device should not be used in any type of fluid such as water, oil, organic solvent and etc.
When washing is required, IPA (Isopropyl Alcohol) should be used.
• When the LEDs are in operation the maximum current should be decided after measuring the
package temperature.
• LEDs must be stored properly to maintain the device. If the LEDs are stored for 3 months or
more after being shipped from SSC, a sealed container with a nitrogen atmosphere should be
used for storage.
• 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.
• The slug is isolated.
• Attaching LEDs, do not use adhesives that outgas organic vapor.
Rev. 03
July. 2012
22
www.seoulsemicon.com
APCPCWM_4828539:WP_0000001WP_0000001
APCPCWM_4828539:WP_0000001WP_0000001
Z-Power LED
X10490
Technical
Data
Sheet
• Please note Acrich runs on high voltage so use precaution 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
Handling of silicone resin for LEDs
• Acrich series is encapsulated by silicone resin for the highest flux efficiency.
• Avoid touching silicone resin portion of LED especially with sharp tools such as
Pincette (tweezers).
• Avoid leaving fingerprints on silicone resin parts.
• Silicone resin is dust sensitive and needs a covered container for storage
• When populating boards in SMT production there are no unusual restrictions
regarding the form of the pick and place nozzle except that mechanical essure
on the surface of the resin must be avoided.
• Please do not apply diagonal force to the silicone lens in excess of 3000gf or
permanent and fatal damage will occur.
• Please do not cover the silicone resin with any other resin (epoxy, urethane,
etc)
Rev. 03
July. 2012
23
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