EVERLIGHT EZHV-J31M2-2LPHS

Everlight EZHV
2W LED Series
Introduction
The High Voltage(HV) LED is a surface-mount high voltage component
featuring compact size, high brightness, and DC input voltage that more closely
resembles the Vrms of AC mains voltage. This allows for simple lighting fixtures
designs that do not require full convertor and driver solutions – dramatically
reducing the total design costs while increasing total fixture efficiency. Being one
of the first of its kind, the Everlight HV LED will be a viable solution for all future
lighting designs and is ready to face the challenges of today’s Solid-State Lighting
requirements.
Description
Applications
◆
Small package with high efficiency
◆
General Lighting
◆
ESD protection up to 2KV
◆
Indoor Lighting
◆
Soldering method: SMT
◆
Street Lighting
◆
Moisture Sensitivity Level: 1
◆
Retrofits
◆
RoHS compliant
◆
Matches ANSI binning
◆
Binning Parameters: Brightness, Forward Voltage,
Wavelength and Chromaticity
1
Copyright © 2011, Everlight All Rights Reserved. Release Date: 11.28.2011. Issue No: DHE-0001537
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DATASHEET
SMD HP  EZHV
2W LED Series
Table of Content
Product Nomenclature ................................................................................................................... 3
Absolute Maximum Ratings (Ts=25℃) ........................................................................................... 4
JEDEC Moisture Sensitivity ........................................................................................................... 4
Luminous Flux Characteristics for the EZHV 2W series ................................................................ 5
PN of the EZHV 2W series : White LEDs ....................................................................................... 6
Product Binning .............................................................................................................................. 7
Warm-White Bin Structure .............................................................................................................. 9
Forward Voltage Bins ................................................................................................................... 10
Mechanical Dimension ................................................................................................................. 11
Pad Configuration ........................................................................................................................ 12
Reflow Soldering Characteristics ................................................................................................. 13
Typical Wavelength Characteristics ............................................................................................. 14
Typical Light Output Characteristics vs. Thermal Pad Temperature ............................................. 14
Typical CCT Shift Characteristics vs. Thermal Pad Temperature ................................................. 15
Typical Electrical Characteristics .................................................................................................. 15
Typical Relative Luminous Flux vs. Forward Current ................................................................... 16
Typical Radiation Patterns ........................................................................................................... 17
Emitter Tape Packaging ............................................................................................................... 18
Emitter Reel Packaging................................................................................................................ 19
Storage Conditions ....................................................................................................................... 20
Revision History ........................................................................................................................... 21
2
Copyright © 2011, Everlight All Rights Reserved. Release Date: 11.28.2011. Issue No: DHE-0001537
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DATASHEET
SMD HP  EZHV
2W LED Series
Product Nomenclature
The product name is designated as below:
EZHV– ABCDE – FGHIJ – V1234
Designation:
AB = min. luminous flux (lm) or radiation power (mW) performance
C = radiation pattern [1]
D = color [2]
E = power consumption [3]
F = voltage group [4]
G = internal code
H = packaging type [5]
IJ = internal code
V = forward voltage bin
1234 = color bin or CCT bin
Note:
1. Table of radiation patterns
Symbol
Description
1
Lambertian
2
Others
2. Table of color offerings:
Symbol
C
N
M
Color
Cool-White
Neutral-White
Warm-White
CCT
4745~7050K
3710~4745K
2580~3710K
3. Table of power consumptions:
Symbol
Description
1
1W
2
2W
4
4W
4. Voltage group.
Voltage group
0
1
2
3
4
Description
0 < VF < 25
25 < VF < 75
75 < VF < 127
127 < VF < 175
175 < VF < 243
5. Table of packaging types:
Symbol
Description
P
Tape
B
Tube
T
Tray
3
Copyright © 2011, Everlight All Rights Reserved. Release Date: 11.28.2011. Issue No: DHE-0001537
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DATASHEET
SMD HP  EZHV
2W LED Series
Absolute Maximum Ratings (Ts=25℃)
Parameter
Symbol
Ratings
Unit
Max. DC Forward Current (mA)
IF
30[1]
mA
Max. ESD Resistance
VB
2000
V
Reverse Voltage
VR
Note [2]
V
Thermal Resistance
Rth
8~10
°C/W
Max. Junction Temperature
TJ
125
°C
Operating Temperature
TOpr
-40 ~ +100[3]
°C
Storage Temperature
TStg
-40 ~ +100
°C
Max. Soldering Temperature
TSol
260
°C
Allowable Reflow Cycles
n/a
2[4]
cycles
Notes:
1. Maximum forward current for 2W is 30mA (Thermal Pad=25℃).
2. The HV series LEDs are not designed for reverse bias operation.
3. Avoid operating HV LEDs at maximum operating temperature exceeding 1 hour.
4. It is not recommended to subject LED to two cycles of reflow.
JEDEC Moisture Sensitivity
Floor Life
Soak Requirements
Standard
Level
1
4
Time
(hours)
Conditions
Time
(hours)
Conditions
unlimited
≦30°C / 85% RH
168 (+5/-0)
85°C / 85% RH
Copyright © 2011, Everlight All Rights Reserved. Release Date: 11.28.2011. Issue No: DHE-0001537
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DATASHEET
SMD HP  EZHV
2W LED Series
Luminous Flux Characteristics for the EZHV 2W series
2W
Color
Part Number
Warm
White
2700
EZHV – J31M2
Minimum Luminous Flux(lm)
Drive Current
(mA)
120
20
Warm
White
3000
EZHV – J31M2
120
Notes:
1.
Luminous flux measurement tolerance: ±10%.
2.
The data of luminous flux measured at thermal pad=25℃
3.
Typical luminous flux or light output performance is operated within the condition guided by this datasheet
5
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DATASHEET
SMD HP  EZHV
2W LED Series
PN of the EZHV 2W series : White LEDs
The table below is a list of part numbers for the Everlight EZHV 2W series HV LED. All parts listed match ANSI
binning standards. Bin offerings of 2700K and 3000K are listed and currently available. These clearly listed binning
options allow for proper design and implementation into lighting applications. The Order Codes below are currently
available EZHV 2W LEDs.
For Example:
If you order product using P/N EZHV-J31M2-2LPHS-F2700, you will be specifying:
Color Radiation
Variant Pattern
CRI
Warm
Lambertian
White
80
Forward
Voltage
(V)
95 – 99 (B3)
27K-1 ~ 27K-2
99 – 103 (B4)
~
103 – 107 (B5)
27K-3 ~ 27K-4
107 – 111 (B6)
CCT
Minimum
Luminous
Flux (lm)
120
White, HV 2W(110V) series LEDs at 20mA are listed below:
Color
Warm
White
2700
Warm
White
3000
Order Code of EZHV
EZHV-J31M2-2LPHS-F2700
EZHV-J31M2-2LPHS-F3000
Minimum
CCT (K)
Luminous Flux
Wavelength
(lm)
(nm)
J3
120
J4
130
J5
140
J6
150
J3
120
J4
130
J5
140
J6
150
CRI
Forward
(min)
Voltage
(V)
80
95~111
27K-1~27K-4
30K-1~30K-4
Notes:
1.
CRI measurement tolerance: ±2.
2.
Luminous flux measurement tolerance: ±10%.
3.
The data of luminous flux is measured at thermal pad=25 C
6
o
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DATASHEET
SMD HP  EZHV
2W LED Series
Product Binning
Luminous Flux Bins
Group
E
F
J
Bin
Minimum
Photometric
Flux (lm)
Maximum
Photometric
Flux (lm)
1
2
3
4
5
6
7
8
9
1
2
3
4
5
6
7
8
9
4
5
6
8
10
13
17
20
23
27
33
39
45
52
60
70
80
90
5
6
8
10
13
17
20
23
27
33
39
45
52
60
70
80
90
100
1
2
3
4
5
6
7
8
9
100
110
120
130
140
150
160
180
200
110
120
130
140
150
160
180
200
225
Group
K
N
P
Bin
Minimum
Photometric
Flux (lm)
Maximum
Photometri
c Flux (lm)
1
2
3
4
5
6
7
8
9
1
2
3
4
5
6
7
8
9
1
2
3
4
5
6
7
8
9
225
250
275
300
325
350
375
400
425
450
475
500
525
550
575
600
625
650
675
700
725
750
775
800
850
900
950
250
275
300
325
350
375
400
425
450
475
500
525
550
575
600
625
650
675
700
725
750
775
800
850
900
950
1000
Notes:
1.
7
Currently available brightness bins available for White LEDs are highlighted and bolded.
Copyright © 2011, Everlight All Rights Reserved. Release Date: 11.28.2011. Issue No: DHE-0001537
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DATASHEET
SMD HP  EZHV
2W LED Series
White Bin Coordinates
Chromaticity specification defined by ANSI
Notes:
1.
The CCT range of Cool-White varies from 4745K to 7050K.
2.
The CCT range of Neutral-White varies from 3710K to 4745K.
3.
The CCT range of Warm-White varies from 2580K to 3710K.
4.
Color coordinates measurement allowance : ±0.01.
5.
Color bins are defined at IF=20mA operation within EZHV 2W series.
8
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DATASHEET
SMD HP  EZHV
2W LED Series
Warm-White Bin Structure
Warm-White Bin Structure
2700K
Bin
CIE X
CIE Y
0.469
0.429
0.459
0.410
27K-1
0.470
0.413
0.481
0.432
Reference Range: 2580~2700K
Bin
CIE X
CIE Y
0.459
0.410
0.448
0.392
27K-4
0.459
0.394
0.470
0.413
Reference Range: 2580~2700K
Bin
CIE X
CIE Y
0.456
0.426
0.447
0.408
27K-2
0.459
0.410
0.469
0.429
Reference Range: 2700~2870K
Bin
CIE X
CIE Y
0.447
0.408
0.437
0.389
27K-3
0.448
0.392
0.459
0.410
Reference Range: 2700~2870K
3000K
Bin
CIE X
CIE Y
0.443
0.421
0.435
0.403
30K-1
0.447
0.408
0.456
0.426
Reference Range: 2870~3000K
Bin
CIE X
CIE Y
0.435
0.403
0.426
0.385
30K-4
0.437
0.389
0.447
0.408
Reference Range: 2870~3000K
9
Bin
CIE X
CIE Y
0.430
0.417
0.422
0.399
30K-2
0.435
0.403
0.443
0.421
Reference Range: 3000~3220K
Bin
CIE X
CIE Y
0.422
0.399
0.415
0.381
30K-3
0.426
0.385
0.435
0.403
Reference Range: 3000~3220K
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DATASHEET
SMD HP  EZHV
2W LED Series
Forward Voltage Bins
Group Name
Bins
A
B
C
D
E
F
B3+B4
B4+B5
B5+B6
B3+B4+B5
B4+B5+B6
B3+B4+B5+B6
Production Line
Bins
B1
B2
B3
B4
B5
B6
B7
B8
B9
Minimum voltage (V)
Maximum voltage (V)
87.0
91.0
95.0
99.0
103.0
107.0
111.0
115.0
119.0
91.0
95.0
99.0
103.0
107.0
111.0
115.0
119.0
123.0
Notes:
1. Forward voltage measurement tolerance: ±1V.
2. Forward voltage bins are defined at IF=20mA operation.
3. Currently Forward Voltage bins available for White LEDs are highlighted and bolded.
4. Other Forward Voltage bins for White LEDs available upon request. Please contact your local Everlight sales office.
10
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DATASHEET
SMD HP  EZHV
2W LED Series
Mechanical Dimension
Notes:
1. Dimensions are in millimeters.
2. Tolerances unless mentioned are ± 0.15mm.
3. Do not handle the device by the lens. Incorrect force applied to the lens may lead to the failure of devices.
4. The thermal pad is electrically isolated from the Anode and Cathode contact pads.
11
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DATASHEET
SMD HP  EZHV
2W LED Series
Pad Configuration
12
PAD
FUNCTION
3
ANODE
1
CATHODE
2,4
ELECTROLESS
P
THERMAL PAD
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DATASHEET
SMD HP  EZHV
2W LED Series
Reflow Soldering Characteristics
For Reflow Process
A . Suitable for SMT processes.
B . Curing of glue in oven must be according to standard operation flow processes.
C.Reflow soldering should not be done more than twice.
D.In soldering process, stress on the LEDs during heating should be avoided.
E.After soldering, do not bend the circuit board.
13
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DATASHEET
SMD HP  EZHV
2W LED Series
Typical Wavelength Characteristics
For Warm-White (Thermal Pad Temperature = 25℃)
Typical Light Output Characteristics vs. Thermal Pad Temperature
Warm-White for 20mA Drive Current
14
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DATASHEET
SMD HP  EZHV
2W LED Series
Typical CCT Shift Characteristics vs. Thermal Pad Temperature
Warm-White for 20mA Drive Current
Typical Electrical Characteristics
For Warm-White @ Thermal Pad Temperature = 25℃
15
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DATASHEET
SMD HP  EZHV
2W LED Series
Typical Relative Luminous Flux vs. Forward Current
For Warm-White @ Thermal Pad Temperature = 25℃
16
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DATASHEET
SMD HP  EZHV
2W LED Series
Typical Radiation Patterns
Typical Spatial Radiation Pattern for Warm-White
Notes:
1. 2θ1/2 is the off axis angle from lamp centerline where the luminous intensity is 1/2 of the peak value.
2. Viewing angle tolerance is ± 10∘ .
17
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DATASHEET
SMD HP  EZHV
2W LED Series
Emitter Tape Packaging
Carrier Tape Dimensions As The Following:
Order Qty:≧1Kpcs, MPQ:250pcs / reel
Feed Direction
Notes:
1. Dimensions are in millimeters.
2. Tolerances for fixed dimensions are ±0.1mm..
Moisture Resistant Packaging
Cool-White and Warm-White Lambertian
18
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DATASHEET
SMD HP  EZHV
2W LED Series
Emitter Reel Packaging
Reel Dimensions
Cool-White and Warm-White Lambertian
Notes:
1.Dimensions are in millimeters
2.Tolerances unless mentioned are ±0.1mm
Product Labeling
Label Explanation
Cool-White and Warm-White Lambertian
CPN: Customer Specification (when required)
P/N : Everlight Production Number
QTY: Packing Quantity
CAT: Luminous Flux (Brightness) Bin
HUE: Color Bin
REF: Forward Voltage Bin
LOT No: Lot Number
MADE IN TAIWAN: Production Place
19
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DATASHEET
SMD HP  EZHV
2W LED Series
Storage Conditions

Before the package is opened. The LEDs should be stored at 30°C or less and 85%RH or less after
being shipped from Everlight and the storage life limits are 1 year. If the LEDs are stored for 1 year or
more, they can be stored for 3 years in a sealed container with a nitrogen atmosphere and moisture

absorbent material.
After opening the package: The LED's floor life is 1 year under 30℃ or less and 60%RH or less. The
LED should be soldered with 168hrs (7days) after opening the package. If unused LEDs remain, it
should be stored in moisture proof packages.

If the moisture absorbent material (silica gel) has faded away or the LEDs have exceeded the storage
time, baking treatment should be performed using the following conditions. Baking treatment: 60±5℃
for 24 hours.
20
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DATASHEET
SMD HP  EZHV
2W LED Series
Revision History
Current version: 11/28/2011
Previous version:05/10/2011
Device No.
Rev.4
Page
Subjects (major change in previous version)
New Spec.
5、6、9、19
1.Increased Bin offerings of 3000K
2. Emitter Tape Packaging modified
11
21
Modified Mechanical Dimension of the tolerances unless
mentioned are ± 0.15mm
Date of change
05/10/2011
09/21/2011
10/27/2011
19
Modified of Emitter Tape Packaging
10/27/2011
14
Modified Light Output Characteristics
11/28/2011
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