TG-201612220042EP
SPECIFICATION
RF-P**MI32DS-BF-N-Y
REFOND P/N
RF-OU0402TS-CE-B
Mass Product
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TG-201612220042EP
Contents
1. Description
.................................................................................................................................. 3
................................................................................................................ 3
1.1 General Description
1.2 Features
.................................................................................................................................... 3
................................................................................................................................ 3
1.3 Application
1.4 Package Dimension
................................................................................................................ 4
1.5 Product Parameters
................................................................................................................ 5
............................................................... 7
1.6 Typical Optical Characteristics Curves
2. Packaging
................................................................................................................................. 11
....................................................................................................... 11
2.1 Packaging Specification
2.1.1 Carrier Tape Dimension
2.1.2 Reel Dimension
...................................................................................... 11
.................................................................................................... 11
2.1.3 Label Form Specification
.................................................................................... 12
................................................................................................. 12
2.2 Moisture Resistant Packing
2.3 Cardboard Box
....................................................................................................................... 13
........................................................ 13
2.4 Reliability Test Items And Conditions
...................................................................................... 14
2.5 Criteria For Judging Damage
3. SMT Reflow Soldering Instructions SMT 回流焊说明 ......................................................................... 15
3.1 SMT Reflow Soldering Instructions SMT
....................................................................... 15
4. Handling Precautions
.............................................................................................. 17
4.1 Handling Precautions
............................................................................................ 17
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TG-201612220042EP
1. Description
1.1 General Description
The Colour LED which was fabricated using a orange chip
Package Dimension :
1.0mmX0.5mmX0.4mm.
LED
1.0mmX0.5mmX0.4mm
1.2 Features
► Extremely wide viewing angle.
► Suitable for all SMT assembly and solder process .
► Moisture sensitivity level: Level 3.
► RoHS compliant.
1.3 Application
► Optical indicator.
► Switch and symbol, display.
► General use.
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TG-201612220042EP
1.4 Package Dimension
1
0.5
0.25
0.25
0.5
1
2
1
Fig.1-2 Bottom view
0.22
Fig.1-1 Top view
2
LED
0.18
1
Fig.1-3 Side view
Fig.1-4 Polarity
0.5
0.6
0.6
2
Fig.1-5 Soldering patterns
Notes
All dimensions units are millimeters.
2. All dimensions tolerances are 0.2mm unless otherwise noted.
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TG-201612220042EP
1.5 Product Parameters
Table 1-1 Electrical / Optical Characteristics at Ts=25°C
Item
Test
Condition
Value
Symbol
Min.
Max.
--
15
--
nm
A2
B1
B2
C1
C2
D1
D2
1.7
1.8
1.9
2.0
2.1
2.2
2.3
--------
1.8
1.9
2.0
2.1
2.2
2.3
2.4
V
V
V
V
V
V
V
D10
615
--
617.5
nm
D20
617.5
--
620
nm
E10
620
--
622.5
nm
E20
622.5
--
625
nm
F10
625
--
627.5
nm
F20
627.5
--
630
nm
A00
8
--
12
mcd
B00
12
--
18
mcd
C00
18
--
28
mcd
D00
28
--
43
mcd
E00
43
--
65
mcd
F00
65
--
100
mcd
(
Spectral Half Bandwidth
Forward Voltage
Dominant Wavelength
Luminous Intensity
Viewing Angle
Reverse Current
Thermal Resistance.
Notes
△λ
IF=5mA
IF=5mA
IF=5mA
IF=5mA
VF
λD
IV
Unit
Typ.
)
IF=5mA
2θ1/2
--
140
--
deg
VR=5V
IR
--
--
10
A
IF=5mA
RTHJ-S
--
--
450
/W
: VR=5V For test conditions. VR=5V
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TG-201612220042EP
Table 1-2 Absolute Maximum Ratings at Ts=25°C
Parameter
Power Dissipation
Forward Current
Peak Forward Current Of Pulse
Electrostatic Discharge
(HBM)
Operating Temperature
Storage Temperature
Junction Temperature
Symbol
Rating
Units
Pd
48
mW
IF
20
mA
IFP
60
mA
ESD
2000
V
Topr
-40 ~ +85
℃
Tstg
-40 ~ +85
℃
Tj
95
℃
Notes
1. 1/10 Duty cycle, 0.1ms pulse width.
2. The above forward voltage measurement allowance tolerance is ±0.1V.
3. The above dominant wavelength measurement allowance tolerance is ±2nm.
4. The above luminous intensity measurement allowance tolerance ±10%.
5. Care is to be taken that power dissipation does not exceed the absolute maximum rating of the product.
6. All measurements were made under the standardized environment of Refond.
7.When the LEDs are in operation the maximum current should be decided after measuring the package
temperature, junction temperature should not exceed the maximum rate
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TG-201612220042EP
1.6 Typical Optical Characteristics Curves
30
Forward Current (mA)
25
20
15
10
5
0
0
1
2
Forward Voltage (v)
3
4
Fig 1-6 Forward Voltage Vs Forward Current
1.2
Relative Intensity
1
0.8
0.6
0.4
0.2
0
0
2.5
5
Forward Current (mA)
7.5
Fig 1-7 Forward Current Vs Relative Intensity
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TG-201612220042EP
1.1
Relative Intensity
1
0.9
0.8
0.7
0
25
50
75
100
Ambient Temperature (℃)
Fig 1-8 Pin Temperature Vs Relative Intensity
30
Forward Current (mA)
25
20
15
10
5
0
0
20
40
60
80
100
120
Pin Temperature (℃)
Fig 1-9 Pin Temperature Vs Forward Current
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TG-201612220042EP
623
Wavelength (nm)
622
621
620
0
5
10
Forward Current (mA)
15
Fig 1-10 Forward Current Vs Dominate Wavelength (Ta=25℃)
1.2
Relative Intensity
1
0.8
0.6
0.4
0.2
0
400
450
500
550
600
Wavelength (nm)
650
700
Fig 1-11 Relative Intensity Vs Wavelength (Ta=25℃)
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TG-201612220042EP
40°
20°
0°
1.0
0.8
50°
0.6
0.4
70°
0.2
90°
0°
20° 40° 60° 80° 100°
Fig 1-12 Diagram characteristics of radiation
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TG-201612220042EP
2. Packaging
2.1 Packaging Specification
Package:4000pcs/reel.
4000pcs
FEEDING DIRECTION
Polarity 2.00
Mark
[0.079]
0.61
[0.024]
1.09
[0.043]
8.00
[0.315]
1.55
[0.061]
8.00
[0.315]
Top
Tape
4.00
[0.157]
1.75
[0.069]
2.1.1 Carrier Tape Dimension
0.58
[0.023]
Fig.2-1 Carrier Tape Dimension
2.1.2 Reel Dimension
B
A
8.0
B
178 1mm
C
60
0.1mm
D
C
Table 2-1 Dimension
A
D
1mm
13.0 0.5mm
Label 标签
Fig.2-2 Reel Dimension
Notes
The tolerances unless mentioned ±0.1mm. Unit : mm
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TG-201612220042EP
2.1.3 Label Form Specification
Table 2-2 Parameter
Fig. 2-3 Label Form Specification
PART NO.
Part Number
SPEC NO.
Spec Number
LOT NO.
Lot Number
BIN CODE
Bin Code
Ф
Luminous flux
XY
Chromaticity Bin
VF
Forward Voltage
WLD
Wavelength
QTY
Packing Quantity
DATE
Made Date
2.2 Moisture Resistant Packing
Label
标签
Moisture Barrier Bag
防潮袋
Reel
卷盘
ATTENTION
OBSERVE
PRECAUTIONS
FOR HANDLING
ELECTROSTATIC
SENSITIVE DEVICES
Label
标签
Fig.2-4 Moisture Resistant Packing
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TG-201612220042EP
2.3 Cardboard Box
深圳市瑞丰光电子股份有限公司
SHENZHEN REFOND OPTOELECTRONICS CO.LTO.
Fig.2-5 Cardboard Box
2.4 Reliability Test Items And Conditions
Table 2-3 Reliability Test Items And Conditions
Test Items
Ref.Standard
Test Condition
Time
Quantity
Ac/Re
/
Reflow
Temperature Cycle
Thermal Shock
JESD22-B106
Temp:260 max
T=10 sec
2 times
22Pcs.
0/1
JESD22-A104
100
30 min
↑↓5 min
-40
30 min
100 cycles
22Pcs.
0/1
300 cycles
22Pcs.
0/1
-40
JESD22-A106
100
High Temperature Storage
Low Temperature Storage
Life Test
15min
↑↓
15min
JESD22-A103
Temp:100
1000 hrs.
22Pcs.
0/1
JESD22-A119
Temp:-40
1000 hrs.
22Pcs.
0/1
1000 hrs.
22Pcs.
0/1
JESD22-A108
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Ta=25
IF=5mA
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TG-201612220042EP
2.5 Criteria For Judging Damage
Table 2-4 Criteria For Judging Damage
Criteria For Judgement
Test Items
Symbol
Test Condition
Min.
Forward Voltage
Reverse Current
Luminous Flux
Max.
VF
IF=5mA
-
U.S.L*)x1.1
IR
VR= 5V
-
U.S.L*)x2.0
Φ
IF=5mA
L.S.L*)x0.7
-
Notes
1.U.S.L: Upper standard level
L.S.L: Lower standard level
2.The above reliability tests is based on the verification of a single/strip LED of Refond's existing experimental
platform,the reliability experiment was taken under good heat dissipation conditions. When customers applies th
e LED to the series and parallel circuit,should take consideration of all the factors such as the current, voltage di
stribution, heat dissipation and others.
3.The technical information shown in the data sheets is limited to the typical characteristics and circuit examples
of the referenced products. It does not constitute the warranting of industrial property nor the granting of any
license.
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TG-201612220042EP
3. SMT Reflow Soldering Instructions SMT 回流焊说明
3.1 SMT Reflow Soldering Instructions SMT
tp
TP
Critical Zone
T L to T P
Temperature
Ramp-up
TL
tL
TS max
TS min
ts
Ramp-down
Preheat
25
t 25℃ to Peak
Time
Fig.3-1 SMT Reflow Soldering Instructions
SMT
Table 3-1 Parameter
Average temperature rise speed
Tsmax
Preheating: minimum temperature
3 °C/
200 °C
(Tsmax)
Tsmin
Tsmax
60 - 120
Time limited to maintain high temperature: the temperature
Time limited to maintain high temperature: The Time
Peak /Classification of temperature:
/
60
tp
(TP)
5 °C
Cooling speed
Needed time from 25 °C to Tp
10
Max 10s
30
Max 30s
6 °C/
25 °C
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Max 60s
260 °C
(TP)
Hold time within 5 C with the actual peak temperature (TP)
60s-120s
217 °C
(TL)
(tL)
Time limit classification of peak temperature time
Max 3 °C/ s
150 °C
(Tsmin)
Preheating: Max temperature
Preheating: Time
TP
8
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Max 6 °C/ s
Max 8 minutes
PAGE:15
TG-201612220042EP
Notes
(1)Reflow soldering should not be done more than twice. If more than 24 hours between the two solderings ,
LED will be damaged.
(2)When soldering , do not put stress on the LEDs during heating.
3.1.1 Soldering Iron
(1) When do soldering by hand, keep the temperature of iron below less 300℃ less than 3
seconds.
(2) Soldering by hand should be done only one time.
3.1.2 Repairing
Repairing should not be done after the LEDs have been soldered. When repairing is
unavoidable,a double-head soldering iron should be used (as below figure). It should be
confirmed in advance whether the characteristics of LEDs will or not be damaged by repairing.
LED
3.1.3 Cautions
(1) Components should not be mounted on warped (non coplanar) portion of PCB. After soldering,
do not warp the circuit board.LED
(2) Do not apply mechanical force or excess vibration during the cooling process to normal
temperature after soldering. Do not rapidly cool device after soldering.
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TG-201612220042EP
4. Handling Precautions
4.1 Handling Precautions
(1) LED operating environment and sulfur element composition cannot be over 100PPM in the
LEDmating usage material. This is provided for informational purposes only and is not a warranty
or endorsement.LED
(2) In order to prevent ex-ternal material from getting into the inside of LED, which may cause the
malfunction of LED, the single content of Bromine element is required to be less than
900PPM,the single content of Chlorine elementis required to be less than 900PPM,the total
content of Bromine element and Chlorine element in the external materials of the application
products is required to be less than 1500PPM. This is provided for informational purposes only
and is not a warranty or endorsement.
(3) VOCs (Volatile organic compounds) emitted from materials used in the construction of fixtures
can penetrate silicone encapsulants of LEDs and discolor when exposed to heat and photonic
energy. The result can be a significant loss of light output from the fixture. Knowledge of the
properties of the materials selected to be used in the construction of fixtures can help prevent
these issues. Refond advises against theuse of any chemicals or materials that have been found
or are suspected to have an adverse affect on device performance or reliability. To
verifycompatibility, Refond recommends that all chemicals and materials be tested in the specific
application and environment for which they are intended tobe used. Attaching LEDs, do not use
adhesives that outgas organic vapor.
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TG-201612220042EP
(4) In designing a circuit,the current through each LED can not exceed the absolute maximum
rating specified for each LED. In the meanwhile,resistors for protection should be applied,
otherwise slight voltage shift will cause big current change,burn out may happen. The driving
circuit must be designed to allow forward voltage only when it is ON or OFF.If the reverse voltage
is applied to LED, migration can be generated resulting in LED damage.
(5) Thermal Design is paramount importance because heat generation may result in the
Characteristics decline,such as brightness decreased,Color change and so on.Please consider
the heat generation of the LEDs when making the system design.LED
(6) Storage
Table 4-1 Storage
Conditions
Temperature
Humidity
Before Opening Aluminum Bag
Time
Within 1 Year From Date
Storage
30
75%
30
60%
After Opening Aluminum Bag
Baking
60
5
168hours
168
-
24hours
24
(7) If the moisture absorbent material(silica gel)has faded away or the LEDs have exceeded
the storage time,baking treatment should be performed after unpacking and based on the
following condition(60±5)℃ for above 24 hours.
If the package is flatulence or damaged,please notify the sales staff to assist.
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TG-201612220042EP
(8) Similar to most Solid state devices; LEDs are sensitive to Electro-Static Discharge (ESD) and
Electrical Over Stress (EOS).
(9) Other points for attention, please refer to our relevant information.
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TG-201612220042EP
Version History/
Date
Revisor
2019.06.10
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Version
Verifier
Remarks
E3
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TG-201612220042EP
www.refond.com
Declare
This specification is written both in English and in Chinese and the latter is formal.
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