Product Data Sheet
Acrich2 - 13W
Integrated AC LED Solution
Acrich2 – 13W
RoHS
Product Brief
Description
•
The Acrich2 series of products are
designed to be driven directly off of AC
line voltage, therefore they do not need
the standard converter essential for
conventional general lighting products.
The converter or driver found in most
general lighting products can limit the
overall life of the product, but with the
Acrich2 series of products the life of the
product can more closely be estimated
from the LED itself. This will also allow
for a much smaller form factor from an
overall fixture design allowing for higher
creativity in the fixture.
The modules have a high power factor
which can contribute to a higher energy
savings in the end application.
Features and Benefits
•
•
•
•
•
•
•
•
Connects directly to AC line voltage
High Power Efficiency & Factor
Low THD
Long Life Time
Simple BOM
Miniaturization
Lead Free product
RoHS compliant
•
Key Applications
•
•
•
•
Down light
Factory Ceiling light
Industrial Light
Flush mount
•
Table 1-1. Product Selection (CCT)
CRI
Part No.
VF [V]
P [W]
Color
Cool
13
SMJD-3V12W2P3
220
Neutral
Warm
CCT [K]
Min.
SMJD-2V12W2P3
120
4700 – 6000
3700 – 4200
2600 – 3200
80
Table 1-2. Product Selection (Flux)
Flux [lm]
Part No.
VF [V]
P [W]
Flux
Min.
13a
SMJD-2V12W2P3
120
13b
13
13a
SMJD-3V12W2P3
220
13b
1140
1210
880
1000
1140
1210
880
Typ.
1000
Rev0.1, September 30, 2013
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Product Data Sheet
Acrich2 - 13W
Table of Contents
Index
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•
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Product Brief
Table of Contents
Performance Characteristics
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Electro Optical Characteristics
Absolute Maximum Ratings
Thermal Resistance
Relative Spectral Distribution
Relative Power Distribution
Relative Luminous Distribution
Luminous Flux Characteristics
Color Bin Structure
Part List
Mechanical Dimensions
Circuit Drawing
Precaution for Use
Handling of Silicone Resin for LEDs
Handling with regards to static electricity
Storage before use
Guidelines for properly working with Acrich2
Company Information
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Product Data Sheet
Acrich2 - 13W
Performance Characteristics
Table 2. Electro Optical Characteristics, T
a
= 25ºC
Value
Parameter
Symbol
Mark
Min.
13a
Luminous Flux
Ф
V [2]
13b
B
C
Correlated Color
Temperature
[3]
CCT
E
G
H
CRI
Ra
2V
Operating Voltage
[4]
Unit
Typ.
1000
1210
5600
5000
4000
3000
2700
-
120
V[RMS]
220
12.0
13.0
50 / 60
Over 0.97
120
500
2500
-
-
-
-
13.8
W
Hz
-
deg.
Max.
1140
lm
1140
5300
4700
3700
2900
2600
80
1300
6000
5300
4200
3200
2900
-
-
K
880
V
opt
3V
P
D
Freq
PF
2Θ 1/2
Power Dissipation
Operating Frequency
Power Factor
View Angle
Tolerance of Surge
[5]
V
s
Transient Protection
[6]
V
s
Notes :
1.
2.
3.
4.
At 120V/220V RMS, T
a
=25℃
ФV is the total luminous flux output measured with an integrated sphere.
Correlated Color Temperature is derived from the CIE 1931 Chromaticity diagram.
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℃.
Surge withstand in accordance with IEC61000-4-5
At 120V RMS, Seven strikes, 100kHz 2.5KV in accordance with ANSI/IEEE C62.41.2-2002
Category A operation
5.
6.
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Product Data Sheet
Acrich2 - 13W
Absolute Maximum Ratings
Table 3. Absolute Maximum Ratings, T
a
= 25ºC
Parameter
Symbol
Raged Voltage
120V
Max. Voltage
V
opt
220V
Power Dissipation
Operating
Temperature
Storage
Temperature
ESD Sensitivity
P
d
T
opr
T
stg
-
264
17.5
-30 ~ 85
-40 ~ 100
±4,000V
HBM
W
ºC
ºC
-
Value
140
V[RMS]
Unit
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Product Data Sheet
Acrich2 - 13W
Thermal Resistance
Package
Power Dissipation [W]
Maximum
Junction Temp. [℃]
Part
Rθ [℃/W]
Acrich2 LED
SAW8KG0B Max 0.58
125
27
Acrich2 IC
Max 1.0
150
11.25
The Acrich2 LED has a thermal resistance of 27℃/W from junction of the LED to the
LED lead.
The maximum junction temperature of the Acrich2 LED package is 125℃, therefore the maximum
lead temperature T
s_max
is
T
s_max
= T
j_max
- (Rθ
j-s
* P
D
)
= 125℃ - (27℃/W * 0.58W) = 109.34℃
Although this is the maximum lead temperature, it is recommended to keep the lead temperature
under 70℃
The Acrich2 IC has a 11.25℃/W thermal resistance from junction to the top surface.
The maximum junction temperature (T
t_max
) of the IC is 150℃, therefore the maximum
temperature of the top of the IC is
T
t_max
= T
j_max
- (Rθ
j-t
* P
D
)
= 150℃ - (11.25℃/W * 1.0W) = 138.75℃
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