PR2N-3LCE-SD [ELITE]
3W Power LED;型号: | PR2N-3LCE-SD |
厂家: | Elite Enterprises (H.K.) Co., Ltd. |
描述: | 3W Power LED |
文件: | 总21页 (文件大小:1370K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
ProLight PR2N-3LxE-SD
3W Power LED
Technical Datasheet
Version: 1.4
Features
Main Applications
‧ 100% foot print compatible with Philips-
Lumileds Rebel.
‧ Entertainment Lighting
‧ Commercial Lighting
‧ Patent free!!
‧ Best thermal material solution of the world!
‧ Best Moisture Sensitivity:JEDEC 1
‧ RoHS compliant
Introduction
‧PROLIGHT Phenix, with the smallest high power LED footprint available by
Prolight Opto, has offered extended solid-state lighting design possibilities.
Prolight Phenix is designed with Prolight own Patents and using copper
leadframe, the best thermal material of the world.
‧Phenix qualifies as the JEDEC 1 MSL sensitivity level and suitable for SMD
process, PB_free reflow soldering capability, and full compliance with EU
Reduction of Hazardous Substances (RoHS) legislation.
2010/04
3F No.12, Kung-Yeh 10th Rd., Ping Chen Industrial
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Emitter Mechanical Dimensions
Notes:
1. The cathode side of the device is denoted by the chamfer on the part body.
2. Electrical insulation between the case and the board is required --- slug of device is not
electrically neutral. Do not electrically connect either the anode or cathode to the slug.
3. Drawing not to scale.
4. All dimensions are in millimeters.
5. All dimensions without tolerances are for reference only.
6. Please do not solder the emitter by manual hand soldering, otherwise it will damage the emitter.
7. Please do not use a force of over 0.3kgf impact or pressure on the lens of the LED, otherwise
it will cause a catastrophic failure.
*The appearance and specifications of the product may be modified for improvement without notice.
2
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Flux Characteristics, TJ = 25°C
Lumious Flux or Power
@ 350mA Refer @700mA
Radiation
Pattern
Part Number
Emitter
Color
Minimum
Typical
Typical
White
Warm White
Red
PR2N-3LWE-SD
PR2N-3LVE-SD
PR2N-3LRE-SD
PR2N-3LAE-SD
PR2N-3LGE-SD
PR2N-3LCE-SD
PR2N-3LBE-SD
PR2N-3LEE-SD
80 lm
80 lm
30 lm
40 lm
60 lm
50 lm
13.9 lm
115 mW
95 lm
88 lm
48 lm
50 lm
72 lm
57 lm
20 lm
150 mW
162 lm
150 lm
86 lm
90 lm
120 lm
95 lm
Amber
Green
Cyan
Blue
Lambertian
35 lm
250 mW
Cherry Red
●
●
±
ProLight maintains a tolerance of 10% on flux and power measurements.
Please do not drive at rated current more than 1 second without proper heat sink.
Electrical Characteristics at, TJ = 25°C
Thermal
Forward Voltage VF (V)
@ 350mA
Forward Voltage VF (V)
Resistance
Junction to
Slug (°C/ W)
Refer @700mA
Typ.
Color
Min.
Typ.
Max.
White
Warm White
Red
2.85
2.85
1.75
1.75
2.85
2.85
2.85
1.75
3.5
3.5
2.2
2.2
3.5
3.5
3.5
2.1
4.1
4.1
3.1
3.1
4.1
4.1
4.1
3.1
3.8
3.8
2.7
2.7
3.8
3.8
3.8
2.6
8
8
10
10
8
8
8
10
Amber
Green
Cyan
Blue
Cherry Red
3
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Optical Characteristics at 350mA, TJ = 25°C
Total
included
Angle
Dominant Wavelength λD,
Viewing
Angle
Peak Wavelength [1] λ ,
P
Radiation
Pattern
or Color Temperature CCT
(degrees)
θ0.90V
(degrees)
2 θ1/2
Color
Min.
Typ.
Max.
White
Warm White
Red
4100 K
2700 K
613.5 nm
587 nm
515 nm
495 nm
455 nm
720 nm
5500 K
3300 K
623 nm
592 nm
525 nm
505 nm
465 nm
730 nm
10000 K
4100 K
631 nm
597 nm
535 nm
515 nm
475 nm
740 nm
160
160
160
160
160
160
160
160
140
140
140
140
140
140
140
140
Amber
Lambertian
Green
Cyan
Blue
Cherry Red [1]
Notes:
●
●
●
±
ProLight maintains a tolerance of 1nm for dominant wavelength measurements.
±
ProLight maintains a tolerance of 5% for CCT measurements.
[1] Cherry Red product is binned by radiometric power and peak wavelength rather than
photometric lumens and dominant wavelength. ProLight Lumileds maintains a tolerance
of ±2nm for peak wavelength measurements.
Absolute Maximum Ratings
Parameter
White/Warm White/Red/
Amber/Green/Cyan/Blue/Cherry Red
DC Forward Current (mA)
700
1000
700
Peak Pulsed Forward Current (mA)
Average Forward Current (mA)
ESD Sensitivity
(HBM per MIL-STD-883E Method 3015.7)
LED Junction Temperature (°C)
Aluminum-core PCB Temperature (°C)
Storage & Operating Temperature (°C)
Soldering Temperature(°C)
±4000V (Class III)
120
90
-40 to +90
235°C
4
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Radiometric Power Bin Structure at 350mA
Minimum
Maximum
Available
Color Bins
Color
Bin Code
Radiometric Power (mW) Radiometric Power (mW)
J
K
115
145
145
175
All
Cherry Red
【1】
●
●
●
ProLight maintains a tolerance of ± 10% on flux and power measurements.
The flux bin of the product may be modified for improvement without notice.
【1】The rest of color bins are not 100% ready for order currently. Please ask for quote and order possibility.
Photometric Luminous Flux Bin Structure at 350mA
Minimum
Photometric Flux (lm)
Maximum
Photometric Flux (lm)
Available
Color Bins
Color
Bin Code
T2
U1
U2
80
90
100
90
100
120
All
All
White
Xx, Wx【1】
T2
U1
U2
80
90
100
90
100
120
All
Warm White
All
【1】
Q
R
S1
30
40
50
40
50
60
All
All
All
Red
Amber
Green
Cyan
Blue
R
S1
40
50
50
60
All
All
S2
T1
T2
60
70
80
70
80
90
All
All
【1】
S1
S2
50
60
60
70
All
【1】
M
N
P
13.9
18.1
23.5
18.1
23.5
30.6
A, 1, 2【1】
1, 2【1】
2【1】
●
●
●
ProLight maintains a tolerance of ± 10% on flux and power measurements.
The flux bin of the product may be modified for improvement without notice.
【1】The rest of color bins are not 100% ready for order currently. Please ask for quote and order possibility.
5
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Color Bin
White and Warm White Binning Structure Graphical Representation
0.48
0.46
2700 K
2850 K
3050 K
3250 K
3500 K
0.44
0.42
0.40
0.38
0.36
0.34
0.32
0.30
0.28
0.26
3800 K
M1
4100 K
N1
P1
N0
Q1
4500 K
M0
Planckian
(BBL)
R1
R0
P0
Q0
S1
S0
5000 K
TN
T0
5650 K
UN
U0
6300 K
VN
V0
Warm White
7000 K
WN
XN
X0
W0
WP
10000 K
Y0
White
XP
YA
0.26
0.28
0.30
0.32
0.34
0.36
0.38
0.40
0.42
0.44
0.46
0.48
0.50
x
6
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Color Bins
White Bin Structure
Typ. CCT
(K)
Typ. CCT
(K)
Bin Code
T0
x
y
Bin Code
WN
x
y
0.378
0.374
0.360
0.362
0.382
0.378
0.362
0.365
0.362
0.360
0.344
0.346
0.365
0.362
0.346
0.347
0.329
0.329
0.346
0.344
0.329
0.329
0.347
0.346
0.329
0.329
0.317
0.316
0.382
0.366
0.357
0.372
0.397
0.382
0.372
0.386
0.372
0.357
0.344
0.359
0.386
0.372
0.359
0.372
0.331
0.345
0.359
0.344
0.345
0.357
0.372
0.359
0.345
0.331
0.320
0.333
0.329
0.316
0.315
0.329
0.329
0.329
0.318
0.317
0.308
0.305
0.316
0.317
0.305
0.303
0.315
0.316
0.308
0.317
0.319
0.311
0.308
0.283
0.274
0.303
0.308
0.311
0.290
0.283
0.345
0.333
0.344
0.357
0.331
0.320
0.310
0.320
0.311
0.322
0.333
0.320
0.322
0.333
0.344
0.333
0.311
0.320
0.300
0.293
0.311
0.284
0.301
0.333
0.311
0.293
0.270
0.284
4300
4300
4750
4750
5320
5320
5970
5970
5970
6650
6650
6650
8000
8000
TN
U0
UN
V0
WP
X0
XN
XP
Y0
VN
W0
YA
●
±
Tolerance on each color bin (x , y) is 0.01
Note: Although several bins are outlined, product availability in a particular bin varies by production run
and by product performance. Not all bins are available in all colors.
7
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Color Bins
Warm White Bin Structure
Typ. CCT
(K)
Typ. CCT
(K)
Bin Code
M0
x
y
Bin Code
Q0
x
y
0.453
0.444
0.459
0.467
0.460
0.453
0.467
0.473
0.438
0.429
0.444
0.453
0.444
0.438
0.453
0.460
0.424
0.416
0.429
0.438
0.430
0.424
0.438
0.444
0.416
0.399
0.403
0.419
0.430
0.416
0.419
0.432
0.412
0.394
0.399
0.416
0.426
0.412
0.416
0.430
0.407
0.389
0.394
0.412
0.421
0.407
0.412
0.426
0.409
0.402
0.416
0.424
0.414
0.409
0.424
0.430
0.392
0.387
0.402
0.409
0.414
0.409
0.392
0.397
0.392
0.387
0.374
0.378
0.397
0.392
0.378
0.382
0.400
0.382
0.389
0.407
0.414
0.400
0.407
0.421
0.391
0.374
0.382
0.400
0.414
0.400
0.391
0.406
0.391
0.374
0.366
0.382
0.406
0.391
0.382
0.397
2770
2770
2950
2950
3150
3150
3370
3370
3650
3650
3950
3950
M1
N0
N1
P0
P1
Q1
R0
R1
S0
S1
●
±
Tolerance on each color bin (x , y) is 0.01
Note: Although several bins are outlined, product availability in a particular bin varies by production run
and by product performance. Not all bins are available in all colors.
8
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Peak Wavelength Bin Structure
Minimum Peak
Wavelength (nm)
Maximum Peak
Wavelength (nm)
Color
Bin Code
Cherry Red
1
720
740
●
ProLight maintains a tolerance of ± 1nm for peak wavelength measurements.
Dominant Wavelength Bin Structure
Minimum Dominant
Wavelength (nm)
Maximum Dominant
Wavelength (nm)
Color
Bin Code
2
4
613.5
620.5
620.5
631.0
Red
2
4
6
7
587.0
589.5
592.0
594.5
589.5
592.0
594.5
597.0
Amber
A
1
2
3
515
520
525
530
520
525
530
535
Green
Cyan
A
1
2
3
495
500
505
510
500
505
510
515
A
1
2
3
455
460
465
470
460
465
470
475
Blue
●
ProLight maintains a tolerance of ± 1nm for dominant wavelength measurements.
Note: Although several bins are outlined, product availability in a particular bin varies by production run
and by product performance. Not all bins are available in all colors.
9
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Color Spectrum, TJ = 25°C
1. White
1.0
Standard Eye Response Cruve
0.8
White
0.6
0.4
0.2
0.0
350 400 450 500 550 600 650 700 750 800 850
Wavelength(nm)
2. Warm White
1.0
Standard Eye Response Cruve
Warm White
0.8
0.6
0.4
0.2
0.0
350 400 450 500 550 600 650 700 750 800 850
Wavelength(nm)
3. Blue、Cyan 、 Green、Amber、Red 、Cherry Red
Cyan
1.0
Blue
Red
Green
0.8
Cherry Red
Amber
0.6
0.4
0.2
0.0
400
450
500
550
600
650
700
750
800
Wavelength(nm)
10
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Light Output Characteristics
Relative Light Output vs. Junction Temperature at 700mA
160
140
120
100
80
White, Warm White
Green, Cyan
Blue
60
40
20
0
80
0
20
40
60
100
120
-20
Junction Temperature, TJ (℃)
160
140
120
100
80
Red, Cherry Red
Amber
60
40
20
0
80
0
20
40
60
100
120
-20
Junction Temperature, TJ (℃)
11
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Forward Current Characteristics, TJ = 25°C
1. Forward Voltage vs. Forward Current
800
700
600
500
400
300
200
100
0
800
700
600
500
400
300
200
100
0
White, Warm White,
Green, Cyan, Blue,
Red, Amber,
Cherry Red
0
0.5
1
1.5
2
2.5
3
0
0.5
1
1.5
2
2.5
3
3.5
4
Forward Voltage (V)
Forward Voltage (V)
2. Forward Current vs. Normalized Relative Luminous Flux
1.8
1.6
1.4
1.2
1.0
0.8
0.6
0.4
0.2
0.0
2.0
1.8
1.6
1.4
1.2
1.0
0.8
0.6
0.4
0.2
0.0
White, Warm White,
Green, Cyan, Blue,
Red, Amber,
Cherry Red
0
200
400
600
800
0
200
400
600
800
Forward Current (mA)
Forward Current (mA)
12
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Ambient Temperature vs. Maximum Forward Current
1. White, Warm White, Green, Cyan, Blue (TJMAX = 120°C)
800
700
600
500
400
RθJ-A = 30°C/W
300
RθJ-A = 25°C/W
200
RθJ-A = 20°C/W
100
RθJ-A = 15°C/W
0
0
25
50
75
100
125
150
Ambient Temperature (℃)
2. Red, Amber, Cherry Red (TJMAX = 120°C)
800
700
600
500
RθJ-A = 30°C/W
400
RθJ-A = 25°C/W
300
RθJ-A = 20°C/W
200
RθJ-A = 15°C/W
100
0
0
25
50
75
100
125
150
Ambient Temperature (℃)
13
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Typical Representative Spatial Radiation Pattern
Lambertian Radiation Pattern
100
90
80
70
60
50
40
30
20
10
0
-100
-80
-60
-40
-20
0
20
40
60
80
100
Angular Displacement (Degrees)
14
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Qualification Reliability Testing
Stress
Duration
Stress Test
Stress Conditions
25°C, IF = max DC (Note 1)
85°C/60%RH, IF = max DC (Note 1)
85°C/85%RH, non-operating
110°C, non-operating
Failure Criteria
Note 2
Room Temperature
Operating Life (RTOL)
Wet High Temperature
Operating Life (WHTOL)
Wet High Temperature
Storage Life (WHTSL)
High Temperature
Storage Life (HTSL)
Low Temperature
Storage Life (LTSL)
Non-operating
1000 hours
1000 hours
1000 hours
1000 hours
1000 hours
200 cycles
200 cycles
Note 2
Note 2
Note 2
-40°C, non-operating
Note 2
-40°C to 120°C, 30 min. dwell,
<5 min. transfer
-40°C to 120°C, 20 min. dwell,
<20 sec. transfer
Note 2
Temperature Cycle (TMCL)
Non-operating
Thermal Shock (TMSK)
Note 2
1500 G, 0.5 msec. pulse,
5 shocks each 6 axis
Mechanical Shock
Natural Drop
Note 3
On concrete from 1.2 m, 3X
Note 3
Variable Vibration
Frequency
10-2000-10 Hz, log or linear sweep rate,
20 G about 1 min., 1.5 mm, 3X/axis
Note 3
Solder Heat Resistance
(SHR)
260°C ± 5°C, 10 sec.
Note 3
Steam age for 16 hrs., then solder dip
Solder coverage
on lead
Solderability
at 260°C for 5 sec.
Notes:
1. Depending on the maximum derating curve.
2. Criteria for judging failure
Criteria for Judgement
Item
Test Condition
IF = max DC
IF = max DC
VR = 5V
Min.
--
Max.
Initial Level x 1.1
Forward Voltage (VF)
Luminous Flux or
Radiometric Power (ΦV)
Reverse Current (IR)
Initial Level x 0.7
--
--
50 μA
* The test is performed after the LED is cooled down to the room temperature.
3. A failure is an LED that is open or shorted.
15
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Recommended Solder Pad Design
Standard Emitter
TYPE A.
TYPE B.
All dimensions are in millimeters.
Electrical isolation is required between Slug and Solder Pad.
●
●
16
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Reflow Soldering Condition
Sn-Pb
Eutectic Assembly
Low-Temp. & Pb-Free Assembly
(58Bi-42Sn Eutectic Alloy)
Profile Feature
Preheat & Soak
Temperature min (Tsmin
Temperature max (Tsmax
)
)
100 °C
150 °C
90 °C
120 °C
Time (Tsmin to Tsmax
)
60-120 seconds
60-120 seconds
Average Ramp-Up Rate (Tsmax to TP)
3 °C / second max.
2 °C / second max.
Liquidous temperature (TL)
Time at liquidous (tL)
183°C
60-150 seconds
138°C
20-50 seconds
Peak package body temperature (TP)
235°C
185°C
Time (tP) within 5°C of the specified
classification temperature (TC)
20 seconds
20 seconds
Average ramp-down rate (TP to Tsmax
)
6 °C/second max.
6 minutes max.
3 °C/second max.
4 minutes max.
Time 25°C to Peak Temperature
All temperatures refer to topside of the package, measured on the package body surface.
Repairing should not be done after the LEDs have been soldered. When repairing is unavoidable,
a heat plate should be used. It should be confirmed beforehand whether the characteristics of
LEDs will or will not be damaged by repairing.
●
●
Reflow soldering should not be done more than two times.
When soldering, do not put stress on the LEDs during heating.
After soldering, do not warp the circuit board.
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●
●
17
3F No.12, Kung-Yeh 10th Rd., Ping Chen Industrial
Zone, Ping Chen, 324, Taoyuan Hsien, Taiwan,
R.O.C.
Tel :886-3-419-2099
Fax :886-3-419-2377
www.prolightopto.com
We Provide the Light to the world
Heat Plate Soldering Condition
(1) Soldering Process for Solder Paste
(2) Soldering Process for Solder Wire
Solder Paste
MCPCB
Heat Plate
Put MCPCB on Heat Plate.
MCPCB
Use Solder Mask to print Solder Paste on MCPCB.
Solder Wire
Emitter
Heat Plate
Place Emitter on MCPCB.
Place Solder Wire to the solder pad of MCPCB.
Emitter
Heat Plate
Heat Plate
Put MCPCB on Heat Plate until Solder Paste melt.
The Solder Paste sould be melted within 10 seconds.
Take out MCPCB out from Heat Plate within 15 seconds.
Put Emitter on MCPCB. Take the MCPCB out
From Heat Plate within 10 seconds.
Heat plate temperature: 260°C max for Lead Solder and 260°C max for Lead-Free Solder.
When soldering, do not put stress on the LEDs during heating.
After soldering, do not warp the circuit board.
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●
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18
3F No.12, Kung-Yeh 10th Rd., Ping Chen Industrial
Zone, Ping Chen, 324, Taoyuan Hsien, Taiwan,
R.O.C.
Tel :886-3-419-2099
Fax :886-3-419-2377
www.prolightopto.com
We Provide the Light to the world
Emitter Reel Packaging
Notes:
1. Drawing not to scale.
2. All dimensions are in millimeters.
3. General tolerance is ± 0.10 mm.
19
3F No.12, Kung-Yeh 10th Rd., Ping Chen Industrial
Zone, Ping Chen, 324, Taoyuan Hsien, Taiwan,
R.O.C.
Tel :886-3-419-2099
Fax :886-3-419-2377
www.prolightopto.com
We Provide the Light to the world
Emitter Reel Packaging
13.2 ± 0.5
16.2 ± 0.5
Φ 21 ± 0.5
Φ 13.1 ± 0.5
3 ± 0.5
60 ± 0.5
178 ± 1
4 ± 0.5
5 ± 0.5
Notes:
1. Empty component pockets sealed with top cover tape.
2. 250 or 500 pieces per reel.
3. Drawing not to scale.
4. All dimensions are in millimeters.
20
3F No.12, Kung-Yeh 10th Rd., Ping Chen Industrial
Zone, Ping Chen, 324, Taoyuan Hsien, Taiwan,
R.O.C.
Tel :886-3-419-2099
Fax :886-3-419-2377
www.prolightopto.com
We Provide the Light to the world
Precaution for Use
● Storage
Please do not open the moisture barrier bag (MBB) more than one week. This may cause the
leads of LED discoloration. We recommend storing ProLight’s LEDs in a dry box after opening
the MBB. The recommended storage conditions are temperature 5 to 30°C and humidity less
than 40% RH. It is also recommended to return the LEDs to the MBB and to reseal the MBB.
● The slug is is not electrically neutral. Therefore, we recommend to isolate the heat sink.
● The slug is to be soldered. If not, please use the heat conductive adhesive.
● Any mechanical force or any excess vibration shall not be accepted to apply during cooling
process to normal temperature after soldering.
● Please avoid rapid cooling after soldering.
● Components should not be mounted on warped direction of PCB.
● Repairing should not be done after the LEDs have been soldered. When repairing is unavoidable,
a heat plate should be used. It should be confirmed beforehand whether the characteristics of
the LEDs will or will not be damaged by repairing.
● This device should not be used in any type of fluid such as water, oil, organic solvent and etc.
When cleaning is required, isopropyl alcohol should be used.
● When the LEDs are illuminating, operating current should be decide after considering the
package maximum temperature.
● The appearance, specifications and flux bin of the product may be modified for improvement
without notice. Please refer to the below website for the latest datasheets.
http://www.prolightopto.com/
Handling of Silicone Lens LEDs
Notes for handling of silicone lens LEDs
● Please do not use a force of over 3kgf impact or pressure on the silicone lens,
otherwise it will cause a catastrophic failure.
● The LEDs should only be picked up by making contact with the sides of the LED body.
● Avoid touching the silicone lens especially by sharp tools such as Tweezers.
● Avoid leaving fingerprints on the silicone lens.
● Please store the LEDs away from dusty areas or seal the product against dust.
● When populating boards in SMT production, there are basically no restrictions
regarding the form of the pick and place nozzle, except that mechanical pressure
on the silicone lens must be prevented.
● Please do not mold over the silicone lens with another resin. (epoxy, urethane, etc)
21
3F No.12, Kung-Yeh 10th Rd., Ping Chen Industrial
Zone, Ping Chen, 324, Taoyuan Hsien, Taiwan,
R.O.C.
Tel :886-3-419-2099
Fax :886-3-419-2377
www.prolightopto.com
We Provide the Light to the world
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