LITEON LTL1BETBEK5-HF Through hole lamp Datasheet

Through Hole Lamp
Product Data Sheet
LTL1BETBEK5-HF
Spec No.: DS20-2011-0132
Effective Date: 07/21/2012
Revision: B
LITE-ON DCC
RELEASE
BNS-OD-FC001/A4
LITE-ON Technology Corp. / Optoelectronics
No.90,Chien 1 Road, Chung Ho, New Taipei City 23585, Taiwan, R.O.C.
Tel: 886-2-2222-6181 Fax: 886-2-2221-1948 / 886-2-2221-0660
http://www.liteon.com/opto
LITE-ON TECHNOLOGY CORPORATION
Property of Lite-On Only
Features
* Lead (Pb) free product – RoHS compliant.
* Halogen free product (Cl<900ppm, Br<900ppm; Cl+Br<1500ppm).
* Blue and Red chips are matched for uniform light output.
* T-1 type package.
* Long life-solid state reliability.
* Low power consumption.
Package Dimensions
Part No.
Lens
Source Color
LTL1BETBEK5 -HF
Water Clear
InGaN Blue / AlGaInP Red
Notes:
1. All dimensions are in millimeters (inches).
2. Tolerance is ±0.25mm(.010") unless otherwise noted.
3. Lead spacing is measured where the leads emerge from the package.
4. Specification is subject to change without notice.
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Absolute Maximum Ratings at TA=25°C
Parameter
Blue
Red
Unit
120
75
mW
100
90
mA
DC Forward Current
30
30
mA
Derating Linear From 30°C and 50°C
0.6
0.4
mA/°C
Power Dissipation
Peak Forward Current
(1/10 Duty Cycle, 0.1ms Pulse Width)
Electrostatic Discharge Threshold(HBM) Note A
1000
Operating Temperature Range
-20°C to + 80°C
Storage Temperature Range
-30°C to + 100°C
Lead Soldering Temperature
[2 mm(.08") From Body]
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V
260℃ for 5 Seconds Max.
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Electrical Optical Characteristics at TA=25°C
Parameter
Luminous Intensity
Viewing Angle
Peak Emission
Wavelength
Dominant Wavelength
Spectral Line Half-Width
Forward Voltage
Reverse Current
Symbol
Iv
2θ1/2
λp
λd
Δλ
VF
IR
Color
Min.
Typ.
Max.
Blue
180
520
1500
Red
400
680
1900
Blue
30
Red
30
Blue
468
Red
632
Test Condition
mcd
IF = 20 mA
Note 1,4
deg
Note 2 (Fig.6)
Measurement
nm
@Peak (Fig.1)
Blue
465
470
475
Red
619
624
629
Blue
22
Red
20
Blue
3.5
3.9
Red
2.05
2.5
Blue
Unit
nm
Note 3
nm
100
IF = 20 mA
V
Note 5
μA
Red
VR = 5V
Note: 1. Luminous intensity is measured with a light sensor and filter combination that approximates the CIE
(Commission International De L'Eclairage) eye-response curve.
2. θ1/2 is the off-axis angle at which the luminous intensity is half the axial luminous intensity.
3. The dominant wavelength, λd is derived from the CIE chromaticity diagram and represents the single
wavelength which defines the color of the device.
4. The Iv guarantee should be added ±15%.
5. Reverse Voltage (VR) condition is applied for IR test only. The device is not designed for reverse
operation.
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Typical Electrical / Optical Characteristics Curves
(25°C Ambient Temperature Unless Otherwise Noted)
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500 or 200 pcs per packing bag
10 packing bags per inner carton
total 5000 pcs per inner carton
8 Inner cartons per outer carton
total 40000 pcs per outer carton
In every shipping lot, only the last pack will be non-full packing
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Bin Table Specification
Bin Code
Luminous Intensity (Blue)
Luminous Intensity (Red)
Unit : mcd @20mA
Unit : mcd @20mA
Min.
Max.
Min.
Max.
HJ-LM
180
310
400
680
HJ-NP
180
310
680
1150
HJ-QR
180
310
1150
1900
KL-LM
310
520
400
680
KL-NP
310
520
680
1150
KL-QR
310
520
1150
1900
MN-LM
520
880
400
680
MN-NP
520
880
680
1150
MN-QR
520
880
1150
1900
PQ-LM
880
1500
400
680
PQ-NP
880
1500
680
1150
PQ-QR
880
1500
1150
1900
Note: Tolerance of each bin limit is ±15%
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CAUTIONS
1. Application
The LEDs described here are intended to be used for ordinary electronic equipment (such as office
equipment, communication equipment and household applications). Consult Liteon’s Sales in advance for
information on applications in which exceptional reliability is required, particularly when the failure or
malfunction of the LEDs may directly jeopardize life or health (such as in aviation, transportation, traffic
control equipment, medical and life support systems and safety devices).
2. Storage
The storage ambient for the LEDs should not exceed 30°C temperature or 70% relative humidity.
It is recommended that LEDs out of their original packaging are used within three months.
For extended storage out of their original packaging, it is recommended that the LEDs be stored
in a sealed container with appropriate desiccant or in desiccators with nitrogen ambient.
3. Cleaning
Use alcohol-based cleaning solvents such as isopropyl alcohol to clean the LEDs if necessary.
4. Lead Forming & Assembly
During lead forming, the leads should be bent at a point at least 3mm from the base of LED lens.
Do not use the base of the lead frame as a fulcrum during forming.
Lead forming must be done before soldering, at normal temperature.
During assembly on PCB, use minimum clinch force possible to avoid excessive mechanical stress.
5. Soldering
When soldering, leave a minimum of 2mm clearance from the base of the lens to the soldering point.
Dipping the lens into the solder must be avoided.
Do not apply any external stress to the lead frame during soldering while the LED is at high temperature.
Recommended soldering conditions :
Soldering iron
Temperature
Soldering time
350°C Max.
3 sec. Max.
(one time only)
Wave soldering
Pre-heat
Pre-heat time
Solder wave
Soldering time
100°C Max.
60 sec. Max.
260°C Max.
5 sec. Max.
Note: Excessive soldering temperature and/or time might result in deformation of the LED lens or catastrophic
failure of the LED. IR reflow is not suitable process for through hole type LED lamp product.
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6. Drive Method
An LED is a current-operated device. In order to ensure intensity uniformity on multiple LEDs
connected in parallel in an application, it is recommended that a current limiting resistor be incorporated
in the drive circuit, in series with each LED as shown in Circuit A below.
Circuit model A
LED
Circuit model B
LED
(A) Recommended circuit
(B) The brightness of each LED might appear different due to the differences in the I-V characteristics
of those LEDs
7. ESD (Electrostatic Discharge)
Static Electricity or power surge will damage the LED.
Suggestions to prevent ESD damage:
 Use a conductive wrist band or anti- electrostatic glove when handling these LEDs
 All devices, equipment, and machinery must be properly grounded
 Work tables, storage racks, etc. should be properly grounded
 Use ion blower to neutralize the static charge which might have built up on surface of the LEDs
plastic lens as a result of friction between LEDs during storage and handing
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Suggested checking list :
Training and Certification
1. Everyone working in a static-safe area is ESD-certified?
2. Training records kept and re-certification dates monitored?
Static-Safe Workstation & Work Areas
1. Static-safe workstation or work-areas have ESD signs?
2. All surfaces and objects at all static-safe workstation and within 1 ft measure less than 100V?
3. All ionizer activated, positioned towards the units?
4. Each work surface mats grounding is good?
Personnel Grounding
1. Every person (including visitors) handling ESD sensitive (ESDS) items wear wrist strap, heel strap or
conductive shoes with conductive flooring?
2. If conductive footwear used, conductive flooring also present where operator stand or walk?
3. Garments, hairs or anything closer than 1 ft to ESD items measure less than 100V*?
4. Every wrist strap or heel strap/conductive shoes checked daily and result recorded for all DLs?
5. All wrist strap or heel strap checkers calibration up to date?
Note: *50V for Blue LED.
Device Handling
1. Every ESDS items identified by EIA-471 labels on item or packaging?
2. All ESDS items completely inside properly closed static-shielding containers when not at static-safe
workstation?
3. No static charge generators (e.g. plastics) inside shielding containers with ESDS items?
4. All flexible conductive and dissipative package materials inspected before reuse or recycle?
Others
1. Audit result reported to entity ESD control coordinator?
2. Corrective action from previous audits completed?
3. Are audit records complete and on file?
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8. Reliability Test
Classification
Test Item
Operation Life
High Temperature
High Humidity
Storage
Endurance
Test
High Temperature
High Humidity
Reverse BIAS
Test Condition
Reference Standard
Ta= Under Room Temperature As
Per Data Sheet Maximum Rating
*Test Time= 1000HRS
MIL-STD-750D:1026 (1995)
MIL-STD-883D:1005 (1991)
JIS C 7021:B-1 (1982)
Ta= 65±5°C
RH= 90 ~ 95%
MIL-STD-202F: 103B(1980)
JIS C 7021 : B-11(1982)
Test Time= 240HRS
Ta= 65±5°C
RH= 90 ~ 95%
VR=5V
Test Time = 500HRS
JIS C 7021 : B-11(1982)
High Temperature
Storage
Ta= 105±5°C
*Test Time= 1000HRS
MIL-STD-883D:1008 (1991)
JIS C 7021:B-10 (1982)
Low Temperature
Storage
Ta= -55±5°C
*Test Time=1000HRS
JIS C 7021:B-12 (1982)
Temperature
Cycling
100°C ~ 25°C ~ -40°C ~ 25°C
30mins 5mins
30mins 5mins
10 Cycles
MIL-STD-202F:107D (1980)
MIL-STD-750D:1051(1995)
MIL-STD-883D:1010 (1991)
JIS C 7021: A-4(1982)
Thermal
Shock
105 ± 5°C ~ -55°C ± 5°C
10mins
10mins
10 Cycles
MIL-STD-202F:107D(1980)
MIL-STD-750D:1051(1995)
MIL-STD-883D:1011 (1991)
T.sol = 260 °C Max.
MIL-STD-202F:210A(1980)
MIL-STD-750D:2031(1995)
JIS C 7021: A-1(1982)
Environmental
Test
Solder
Resistance
Solderability
Dwell Time= 5 secs Max.
3 Times dip
T. sol = 245 ± 5°C
Dwell Time= 5 ± 1secs
MIL-STD-202F:208D(1980)
MIL-STD-750D:2026(1995)
MIL-STD-883D:2003(1991)
JIS C 7021: A-2(1982)
9. Others
The appearance and specifications of the product may be modified for improvement, without prior notice.
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