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o
RjaT = 35℃/W RjaT = 25℃/W RjaT = 15℃/W
100
125
Ambient Temperature [ C]
Rev. 02 August. 2013 www.seoulsemicon.com
Y
Z-Power LED X10490 Technical Data Sheet
9
Junction Temperature Characteristics
Relative Light Output vs. Junction Temperature at IF=20mA
1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0 25 50 75 100
2.0 1.8 1.6 1.4 1.2 1.0 0.8 0.6 0.4 0.2 0.0 0.000
0.005
0.010
0.015
0.020
0.025
0.030
0.035
0.040
Forward Current (A)
Rev. 02 August. 2013 www.seoulsemicon.com
Y
Rev. 02 August. 2013 www.seoulsemicon.com
Z-Power LED X10490 Technical Data Sheet
5
Characteristics of SAW09H0A
1. Cool white
1-1 Electro-Optical characteristics at IF= 20mA, Ta=25ºC Value Min 140 4,200 69 60 Typ 165 64 6 120 Max 6,000 68
Rev. 02 August. 2013 www.seoulsemicon.com
Relative Spectral Power Distribution
Relative Luminous Flux
Z-Power LED X10490 Technical Data Sheet
6
Color Spectrum, TA=25℃, IF=20mA
Z-Power LED X10490 Technical Data Sheet
8
Forward Current Characteristics
Forward Current vs. CIE X, Y Shift , Ta=25℃
0.365
0.360
0.355
10mA 20mA 30mA
0.350
0.345
12
Color & Binning
Binning structure graphical representation < IF=20mA, Ta=25℃ >
0.40
4500K
0.38
4200K
4700K
D1
5000K 5300K
0.36
C1
Rev. 02 August. 2013 www.seoulsemicon.com
CIE X,Y Shift
Z-Power LED X10490 Technical Data Sheet
10
Junction Temperature Characteristics
Junction Temp. vs. CIE X, Y Shift, IF=20mA
The MJT series of LEDs are designed for AC & DC(High Voltage) operation and high flux output applications. MJT’s thermal management performance exceeds other power LED solutions by incorporating state-of-the-art SMD design and use of specialized thermal emission material. MJT is an ideal light source for general purpose illumination applications
o
125
150
Junction Temperature [ C]
Forward Voltage Shift vs. Junction Temperature at IF=20mA
0 -1 -2 -3 -4 -5 -6 -7 -8 -9 -10 25 50 75 100
o
125
150
Junction Temperature [ C]
Storage Temperature
ESD Sensitivity
Tstg
-
-40 ~ +110
-
ºC
-
Leabharlann Baidu
* 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 integrating sphere. [3] Correlated Color Temperature is derived from the CIE 1931 Chromaticity diagram. CCT 5% tester tolerance
0.001
CIE X CIE Y
0.000
-0.001
-0.002
-0.003
-0.004
-0.005 25 50 75 100
o
125
150
Junction Temperature [ C]
Rev. 02 August. 2013 www.seoulsemicon.com
Max. Current [A]
1-2 Absolute Maximum Ratings Parameter Forward Current Power Dissipation Junction Temperature Operating Temperature Symbol IF PD Tj Topr Value 40 2.72 125 -30 ~ +85 Unit mA W ºC ºC
Angle [deg.]
Rev. 02 August. 2013 www.seoulsemicon.com
Forward Current [A]
Relative Luminous Flux
Z-Power LED X10490 Technical Data Sheet
7
Forward Current Characteristics
Forward Voltage vs. Forward Current , Ta=25℃
0.040 0.035 0.030 0.025 0.020 0.015 0.010 0.005 0.000 0 10 20 30 40 50 60 70 80
Forward Voltage [V]
Forward Current vs. Relative Luminous Flux, Ta=25℃
40mA
0.340
0.335 0.330
0.335
0.340
0.345
0.350
0.355
X
Rev. 02 August. 2013 www.seoulsemicon.com
Relative Luminous Intensity
Forward Voltage Shift [V]
Z-Power LED X10490 Technical Data Sheet
Parameter Luminous Flux
[1] [3]
Symbol ФV [2] CCT Ra VF Rth 2Θ 1/2
Unit lm K V ºC/W deg.
Correlated Color Temperature CRI Forward Voltage Thermal resistance View Angle
Z-Power LED X10490 Technical Data Sheet
3
Full code of SAW09H0A
1. Part Number Form : X1X2X3X4X5X6X7X8 – X9X10X11X12X13
X1 X2 Company Package series Color Series number Voltage PCB type Revision No. Luminous flux Color bin Voltage LF V3 W1 W2 W3 140.0 ~ 154.0 154.0 ~ 165.0 165.0 ~ 177.0 177.0 ~ 200.0 B0~B5 C0~C5 D0~D5 Color bin A B C S A SSC Acrich White MJT4040
1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0 350
Cool White
400
450
500
550
600
650
700
750
800
Wavelength(nm)
Radiant pattern, TA=25℃, IF=20mA
1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0 -90 -80 -70 -60 -50 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90
Rev. 02 August. 2013 www.seoulsemicon.com
Z-Power LED X10490 Technical Data Sheet
4
Outline dimensions
Anode
Cathode
Notes : [1] [2] [3] [4] All dimensions are in millimeters. (tolerance is ±0.20mm ) Scale : none The appearance and specifications of the product may be changed for improvement without notice Electrically neutral thermal path
SAW09H0A
SAW09H0A
Features
• Super high flux output and high luminance • Designed for high voltage operation • SMT solderable • Lead free product • RoHS compliant
Z-Power LED X10490 Technical Data Sheet
1
RoHS
Specification
SAW09H0A
Rev. 02 August. 2013 www.seoulsemicon.com
Z-Power LED X10490 Technical Data Sheet
Description 2
Applications
• • • • LED bulb Spot light Architectural lighting Street light
* The appearance and specifications of the product can be changed for improvement without notice. Rev. 02 August. 2013 www.seoulsemicon.com
X3
X4 X5 X6 X7 X8 X9X10 X11X12 X13
W
0 9 H 0 A -
Emitter Rev0 Voltage 60~63 63~65 65~68
2. Sticker Diagram on Reel & Aluminum Vinyl Bag
X9 X10 X11 X12 X13
X1 X2 X3 X4 X5 X6 X7 X8
Z-Power LED X10490 Technical Data Sheet
11
Maximum Forward Current vs. Ambient Temperature
Tjmax = 125℃, at 40mA
0.045 0.040 0.035 0.030 0.025 0.020 0.015 0.010 0.005 0.000 0 25 50 75
RjaT = 35℃/W RjaT = 25℃/W RjaT = 15℃/W
100
125
Ambient Temperature [ C]
Rev. 02 August. 2013 www.seoulsemicon.com
Y
Z-Power LED X10490 Technical Data Sheet
9
Junction Temperature Characteristics
Relative Light Output vs. Junction Temperature at IF=20mA
1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0 25 50 75 100
2.0 1.8 1.6 1.4 1.2 1.0 0.8 0.6 0.4 0.2 0.0 0.000
0.005
0.010
0.015
0.020
0.025
0.030
0.035
0.040
Forward Current (A)
Rev. 02 August. 2013 www.seoulsemicon.com
Y
Rev. 02 August. 2013 www.seoulsemicon.com
Z-Power LED X10490 Technical Data Sheet
5
Characteristics of SAW09H0A
1. Cool white
1-1 Electro-Optical characteristics at IF= 20mA, Ta=25ºC Value Min 140 4,200 69 60 Typ 165 64 6 120 Max 6,000 68
Rev. 02 August. 2013 www.seoulsemicon.com
Relative Spectral Power Distribution
Relative Luminous Flux
Z-Power LED X10490 Technical Data Sheet
6
Color Spectrum, TA=25℃, IF=20mA
Z-Power LED X10490 Technical Data Sheet
8
Forward Current Characteristics
Forward Current vs. CIE X, Y Shift , Ta=25℃
0.365
0.360
0.355
10mA 20mA 30mA
0.350
0.345
12
Color & Binning
Binning structure graphical representation < IF=20mA, Ta=25℃ >
0.40
4500K
0.38
4200K
4700K
D1
5000K 5300K
0.36
C1
Rev. 02 August. 2013 www.seoulsemicon.com
CIE X,Y Shift
Z-Power LED X10490 Technical Data Sheet
10
Junction Temperature Characteristics
Junction Temp. vs. CIE X, Y Shift, IF=20mA
The MJT series of LEDs are designed for AC & DC(High Voltage) operation and high flux output applications. MJT’s thermal management performance exceeds other power LED solutions by incorporating state-of-the-art SMD design and use of specialized thermal emission material. MJT is an ideal light source for general purpose illumination applications
o
125
150
Junction Temperature [ C]
Forward Voltage Shift vs. Junction Temperature at IF=20mA
0 -1 -2 -3 -4 -5 -6 -7 -8 -9 -10 25 50 75 100
o
125
150
Junction Temperature [ C]
Storage Temperature
ESD Sensitivity
Tstg
-
-40 ~ +110
-
ºC
-
Leabharlann Baidu
* 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 integrating sphere. [3] Correlated Color Temperature is derived from the CIE 1931 Chromaticity diagram. CCT 5% tester tolerance
0.001
CIE X CIE Y
0.000
-0.001
-0.002
-0.003
-0.004
-0.005 25 50 75 100
o
125
150
Junction Temperature [ C]
Rev. 02 August. 2013 www.seoulsemicon.com
Max. Current [A]
1-2 Absolute Maximum Ratings Parameter Forward Current Power Dissipation Junction Temperature Operating Temperature Symbol IF PD Tj Topr Value 40 2.72 125 -30 ~ +85 Unit mA W ºC ºC
Angle [deg.]
Rev. 02 August. 2013 www.seoulsemicon.com
Forward Current [A]
Relative Luminous Flux
Z-Power LED X10490 Technical Data Sheet
7
Forward Current Characteristics
Forward Voltage vs. Forward Current , Ta=25℃
0.040 0.035 0.030 0.025 0.020 0.015 0.010 0.005 0.000 0 10 20 30 40 50 60 70 80
Forward Voltage [V]
Forward Current vs. Relative Luminous Flux, Ta=25℃
40mA
0.340
0.335 0.330
0.335
0.340
0.345
0.350
0.355
X
Rev. 02 August. 2013 www.seoulsemicon.com
Relative Luminous Intensity
Forward Voltage Shift [V]
Z-Power LED X10490 Technical Data Sheet
Parameter Luminous Flux
[1] [3]
Symbol ФV [2] CCT Ra VF Rth 2Θ 1/2
Unit lm K V ºC/W deg.
Correlated Color Temperature CRI Forward Voltage Thermal resistance View Angle
Z-Power LED X10490 Technical Data Sheet
3
Full code of SAW09H0A
1. Part Number Form : X1X2X3X4X5X6X7X8 – X9X10X11X12X13
X1 X2 Company Package series Color Series number Voltage PCB type Revision No. Luminous flux Color bin Voltage LF V3 W1 W2 W3 140.0 ~ 154.0 154.0 ~ 165.0 165.0 ~ 177.0 177.0 ~ 200.0 B0~B5 C0~C5 D0~D5 Color bin A B C S A SSC Acrich White MJT4040
1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0 350
Cool White
400
450
500
550
600
650
700
750
800
Wavelength(nm)
Radiant pattern, TA=25℃, IF=20mA
1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0 -90 -80 -70 -60 -50 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90
Rev. 02 August. 2013 www.seoulsemicon.com
Z-Power LED X10490 Technical Data Sheet
4
Outline dimensions
Anode
Cathode
Notes : [1] [2] [3] [4] All dimensions are in millimeters. (tolerance is ±0.20mm ) Scale : none The appearance and specifications of the product may be changed for improvement without notice Electrically neutral thermal path
SAW09H0A
SAW09H0A
Features
• Super high flux output and high luminance • Designed for high voltage operation • SMT solderable • Lead free product • RoHS compliant
Z-Power LED X10490 Technical Data Sheet
1
RoHS
Specification
SAW09H0A
Rev. 02 August. 2013 www.seoulsemicon.com
Z-Power LED X10490 Technical Data Sheet
Description 2
Applications
• • • • LED bulb Spot light Architectural lighting Street light
* The appearance and specifications of the product can be changed for improvement without notice. Rev. 02 August. 2013 www.seoulsemicon.com
X3
X4 X5 X6 X7 X8 X9X10 X11X12 X13
W
0 9 H 0 A -
Emitter Rev0 Voltage 60~63 63~65 65~68
2. Sticker Diagram on Reel & Aluminum Vinyl Bag
X9 X10 X11 X12 X13
X1 X2 X3 X4 X5 X6 X7 X8
Z-Power LED X10490 Technical Data Sheet
11
Maximum Forward Current vs. Ambient Temperature
Tjmax = 125℃, at 40mA
0.045 0.040 0.035 0.030 0.025 0.020 0.015 0.010 0.005 0.000 0 25 50 75