WP934SA/IYGD5V
T-1 (3mm) Tri-Level Circuit Board Indicator
DESCRIPTIONS
PACKAGE DIMENSIONS
The High Efficiency Red source color devices are
made with Gallium Arsenide Phosphide on Gallium
Phosphide Orange Light Emitting Diode
The Yellow source color devices are made with
Gallium Arsenide Phosphide on Gallium Phosphide
Yellow Light Emitting Diode
The Green source color devices are made with
Gallium Phosphide Green Light Emitting Diode
Electrostatic discharge and power surge could
damage the LEDs
It is recommended to use a wrist band or
anti-electrostatic glove when handling the LEDs
All devices, equipments and machineries must be
electrically grounded
LED1 : Red
LED2 : Yellow
LED3 : Green
FEATURES
Pre-trimmed leads for pc mounting
Black case enhances contrast ratio
High reliability life measured in years
Housing UL rating: 94V-0
Housing material: Type 66 nylon
5V internal resistor
RoHS compliant
APPLICATIONS
Status indicator
Illuminator
Signage applications
Decorative and entertainment lighting
Commercial and residential architectural lighting
Notes:
1. All dimensions are in millimeters (inches).
2. Tolerance is ±0.25(0.01") unless otherwise noted.
3. Lead spacing is measured where the leads emerge from the package.
4. The specifications, characteristics and technical data described in the datasheet are subject to change
without prior notice.
ATTENTION
Observe precautions for handling
electrostatic discharge sensitive devices
SELECTION GUIDE
Part Number
Emitting Color
(Material)
■ High Efficiency Red
(GaAsP/GaP)
WP934SA/IYGD5V
Iv (mcd) V = 5V [2]
Lens Type
Red Diffused
■ Yellow (GaAsP/GaP)
Yellow Diffused
■ Green (GaP)
Green Diffused
Min.
Typ.
12
25
*6
*14
7
15
*7
*15
12
25
*12
*25
Viewing Angle [1]
2θ1/2
50°
50°
50°
Notes:
1. θ1/2 is the angle from optical centerline where the luminous intensity is 1/2 of the optical peak value.
2. Luminous intensity / luminous flux: +/-15%.
* Luminous intensity value is traceable to CIE127-2007 standards.
© 2022 Kingbright. All Rights Reserved. Spec No: DSAH1032 / 1102015746 Rev No: V.6A Date: 04/22/2022
Page 1 / 5
WP934SA/IYGD5V
ELECTRICAL / OPTICAL CHARACTERISTICS at TA=25°C
Parameter
Symbol
Emitting Color
λpeak
Value
Unit
Typ.
Max.
High Efficiency Red
Yellow
Green
627
590
565
-
nm
λdom [1]
High Efficiency Red
Yellow
Green
617
588
568
-
nm
Spectral Bandwidth at 50% Φ REL MAX
VF = 5V
Δλ
High Efficiency Red
Yellow
Green
45
35
30
-
nm
Forward Current VF = 5V
IF
High Efficiency Red
Yellow
Green
13
13
11.5
17.5
17.5
17.5
mA
Reverse Current (VR = 5V)
IR
High Efficiency Red
Yellow
Green
-
10
10
10
µA
Wavelength at Peak Emission VF = 5V
Dominant Wavelength VF = 5V
Notes:
1. The dominant wavelength (λd) above is the setup value of the sorting machine. (Tolerance λd : ±1nm. )
2. Wavelength value is traceable to CIE127-2007 standards.
3. Excess driving current and / or operating temperature higher than recommended conditions may result in severe light degradation or premature failure.
ABSOLUTE MAXIMUM RATINGS at TA=25°C
Parameter
Value
Symbol
Unit
High Efficiency Red
Yellow
Green
105
105
105
Power Dissipation
PD
Reverse Voltage
VR
Junction Temperature
Tj
Operating Temperature
Top
-40 to +70
°C
Storage Temperature
Tstg
-40 to +85
°C
Forward Voltage
VF
6
6
6
V
Electrostatic Discharge Threshold (HBM)
-
3000
3000
3000
V
5
125
mW
V
110
Lead Solder Temperature [1]
260°C For 3 Seconds
Lead Solder Temperature [2]
260°C For 5 Seconds
110
°C
Notes:
1. 2mm below package base.
2. 5mm below package base.
3. Relative humidity levels maintained between 40% and 60% in production area are recommended to avoid the build-up of static electricity – Ref JEDEC/JESD625-A and JEDEC/J-STD-033.
© 2022 Kingbright. All Rights Reserved. Spec No: DSAH1032 / 1102015746 Rev No: V.6A Date: 04/22/2022
Page 2 / 5
WP934SA/IYGD5V
TECHNICAL DATA
SPATIAL DISTRIBUTION
RELATIVE INTENSITY vs. WAVELENGTH
Green Yellow Red
Relative Intensity (a. u.)
100%
Ta = 25 °C
80%
Ta = 25 °C
60%
-15°
0°
15°
30°
-30°
45°
-45°
40%
60°
-60°
20%
0%
350
75°
-75°
400
450
500
550
600
Wavelength (nm)
650
700
750
800
-90°
1.0
0.5
0.0
0.5
90°
1.0
HIGH EFFICIENCY RED
Forward Current vs.
Forward Voltage
Luminous Intensity vs.
Forward Voltage
Forward current (mA)
Ta = 25 °C
16
12
8
4
0
1
2
3
4
5
Forward voltage (V)
2.5
Ta = 25 °C
2.0
1.5
1.0
0.5
0.0
6
1
2.5
Luminous intensity normalised at
Ta = 25 °C
Luminous intensity normalised at
5V
20
Forward Current Derating Curve
2
3
4
5
Forward voltage (V)
2.0
1.5
1.0
0.5
0.0
6
-40 -20 0 20 40 60 80 100
Ambient temperature (°C)
YELLOW
Forward Current vs.
Forward Voltage
Luminous Intensity vs.
Forward Voltage
Forward current (mA)
Ta = 25 °C
16
12
8
4
0
1
2
3
4
5
Forward voltage (V)
Forward Current Derating Curve
2.5
Ta = 25 °C
2.0
1.5
1.0
0.5
0.0
6
1
2
3
4
5
Forward voltage (V)
2.5
Luminous intensity normalised at
Ta = 25 °C
Luminous intensity normalised at
5V
20
2.0
1.5
1.0
0.5
0.0
6
-40 -20 0 20 40 60 80 100
Ambient temperature (°C)
GREEN
Forward Current vs.
Forward Voltage
Luminous Intensity vs.
Forward Voltage
Forward current (mA)
Ta = 25 °C
16
12
8
4
0
1
2
3
4
5
Forward voltage (V)
6
2.5
Luminous intensity normalised at
Ta = 25 °C
Luminous intensity normalised at
5V
20
Forward Current Derating Curve
Ta = 25 °C
2.0
1.5
1.0
0.5
0.0
1
2
3
4
5
Forward voltage (V)
2.5
2.0
1.5
1.0
0.5
0.0
6
© 2022 Kingbright. All Rights Reserved. Spec No: DSAH1032 / 1102015746 Rev No: V.6A Date: 04/22/2022
-40 -20 0 20 40 60 80 100
Ambient temperature (°C)
Page 3 / 5
WP934SA/IYGD5V
RECOMMENDED WAVE SOLDERING PROFILE
Notes:
1. Recommend pre-heat temperature of 105°C or less (as measured with a thermocouple
attached to the LED pins) prior to immersion in the solder wave with a maximum solder bath
temperature of 260°C
2. Peak wave soldering temperature between 245°C ~ 255°C for 3 sec (5 sec max).
3. Do not apply stress to the epoxy resin while the temperature is above 85°C.
4. Fixtures should not incur stress on the component when mounting and during soldering process.
5. SAC 305 solder alloy is recommended.
6. No more than one wave soldering pass.
PRECAUTIONS
Storage Conditions
1. Avoid continued exposure to the condensing moisture environment and keep the product away from rapid transitions in ambient
temperature.
2. LEDs should be stored with temperature ≤ 30°C and relative humidity < 60%.
3. Product in the original sealed package is recommended to be assembled within 72 hours of opening.
Product in opened package for more than a week should be baked for 30 (+10/-0) hours at 85 ~ 100°C.
LED Mounting Method
1. The lead pitch of the LED must match the
pitch of the mounting holes on the PCB
during component placement.
Lead-forming may be required to insure
the lead pitch matches the hole pitch.
Refer to the figure below for proper lead
forming procedures.
Note 1-3: Do not route PCB trace in the contact area between the
leadframe and the PCB to prevent short-circuits.
" ○" Correct mounting method " x " Incorrect mounting method
Lead Forming Procedures
1. During soldering, component covers and holders should leave
clearance to avoid placing damaging stress on the LED during
soldering.
2. The tip of the soldering iron should never touch the lens epoxy.
3. Through-hole LEDs are incompatible with reflow soldering.
4. If the LED will undergo multiple soldering passes or face other
processes where the part may be subjected to intense heat,
please check with Kingbright for compatibility.
© 2022 Kingbright. All Rights Reserved. Spec No: DSAH1032 / 1102015746 Rev No: V.6A Date: 04/22/2022
Page 4 / 5
WP934SA/IYGD5V
PACKING & LABEL SPECIFICATIONS
PRECAUTIONARY NOTES
1. The information included in this document reflects representative usage scenarios and is intended for technical reference only.
2. The part number, type, and specifications mentioned in this document are subject to future change and improvement without notice. Before production usage customer should refer to
the latest datasheet for the updated specifications.
3. When using the products referenced in this document, please make sure the product is being operated within the environmental and electrical limits specified in the datasheet. If
customer usage exceeds the specified limits, Kingbright will not be responsible for any subsequent issues.
4. The information in this document applies to typical usage in consumer electronics applications. If customer's application has special reliability requirements or have life-threatening
liabilities, such as automotive or medical usage, please consult with Kingbright representative for further assistance.
5. The contents and information of this document may not be reproduced or re-transmitted without permission by Kingbright.
6. All design applications should refer to Kingbright application notes available at https://www.KingbrightUSA.com/ApplicationNotes
© 2022 Kingbright. All Rights Reserved. Spec No: DSAH1032 / 1102015746 Rev No: V.6A Date: 04/22/2022
Page 5 / 5
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