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Part No. : LTST-C190KRKT Page : 9 of 12
BNS-OD-C131/A4
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 package is sealed:
The LEDs should be stored at 30°C or less and 90%RH or less. And the LEDs are limited to use within
one year, while the LEDs is packed in moisture-proof package with the desiccants inside.
The package is opened:
The storage ambient for the LEDs should not exceed 30°C temperature or 60% relative humidity.
It is recommended that LEDs out of their original packaging are IR-reflowed within one week.
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 a desiccators with nitrogen ambient.
LEDs stored out of their original packaging for more than a week should be baked at about 60 deg C
for at least 20 hours before solder assembly.
3. Cleaning
Use alcohol-based cleaning solvents such as isopropyl alcohol to clean the LED if necessary.
4. Soldering
Recommended soldering conditions:
Reflow soldering Soldering iron
Pre-heat
Pre-heat time
Peak temperature
Soldering time
150~200°C
120 sec. Max.
260°C Max.
10 sec. Max.(Max. two times)
Temperature
Soldering time
300°C Max.
3 sec. Max.
(one time only)
Soldering notes:
Because different board designs use different number and types of devices, solder pastes, reflow ovens, and
circuit boards, no single temperature profile works for all possible combinations.
However, you can successfully mount your packages to the PCB by following the proper guidelines and
PCB-specific characterization.
LITE-ON Runs both component-level verification using in-house KYRAMX98 reflow chambers and
board-level assembly.
The results of this testing are verified through post-reflow reliability testing.
Profiles used at LITE-ON are based on JEDEC standards to ensure that all packages can be successfully and
reliably surface mounted.
Figure on page3 shows a sample temperature profile compliant to JEDEC standards.
You can use this example as a generic target to set up your reflow process.
You should adhere to the JEDEC profile limits as well as specifications and recommendations from the
solder paste manufacturer to avoid damaging the device and create a reliable solder joint.
LITE-ON TECHNOLOGY CORPORATION
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Part No. : LTST-C190KRKT Page : 10 of 12
BNS-OD-C131/A4
5. 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 Circuit model B
LED
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.
6. ESD (Electrostatic Discharge)
Static Electricity or power surge will damage the LED.
Suggestions to prevent ESD damage:
Use of 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 LED’s
plastic lens as a result of friction between LEDs during storage and handling.
ESD-damaged LEDs will exhibit abnormal characteristics such as high reverse leakage current, low forward
voltage, or “ no lightup ” at low currents.
To verify for ESD damage, check for “ lightup ” and Vf of the suspect LEDs at low currents.
The Vf of “ good ” LEDs should be >2.0V@0.1mA for InGaN product and >1.4V@0.1mA for AlInGaP product.
LITE-ON TECHNOLOGY CORPORATION
Pro p er t y o f L it e -O n O n l y
7. Reliability Test
Classification
Test Item
Test Condition Reference Standard
Endurance
Test
Operation Life
Ta= Under Room Temperature As Per Data Sheet
Maximum Rating
*Test Time= 1000HRS (-24HRS,+72HRS)
MIL-STD-750D:1026
MIL-STD-883D:1005
JIS C 7021:B-1
High Temperature
High Humidity
Storage
IR-Reflow In-Board, 2 Times
Ta= 65±5,RH= 9095%
*
Test Time= 240HRS±2HRS
MIL-STD-202F:103B
JIS C 7021:B-11
High Temperature
Storage
Ta= 105±5
*
Test Time= 1000HRS (-24HRS,+72HRS)
MIL-STD-883D:1008
JIS C 7021:B-10
Low Temperature
Storage
Ta= -55±5
*
Test Time=1000HRS (-24HRS,+72H RS)
JIS C 7021:B-12
Environmental
Test
Temperature
Cycling
105 25 -55 25
30mins 5mins 30mins 5mins
10 Cycles
MIL-STD-202F:107D
MIL-STD-750D:1051
MIL-STD-883D:1010
JIS C 7021:A-4
Thermal
Shock
IR-Reflow In-Board, 2 Times
85 ± 5 -40 ± 5
10mins 10mins 10 C
cles
MIL-STD-202F:107D
MIL-STD-750D:1051
MIL-STD-883D:1011
Solder
Resistance
T.sol= 260 ± 5
Dwell Time= 10 ± 1secs
MIL-STD-202F:210A
MIL-STD-750D:2031
JIS C 7021:A-1
IR-Reflow
Pb Free Process
Ramp-up rate(217 to Peak) +3/ second max
Temp. maintain above 217 60-150 seconds
Peak temperature range 260+0/-5
Time within 5°C of actual Peak Temperature (tp)
10~30 seconds
Ramp-down rate +6/second max
MIL-STD-750D:2031.2
J-STD-020D
Solderability
T.sol= 235 ± 5
Immersion time 2±0.5 sec
Immersion rate 25±2.5 mm/sec
Coverage 95% of the dipped surface
MIL-STD-202F:208D
MIL-STD-750D:2026
MIL-STD-883D:2003
IEC 68 Part 2-20
JIS C 7021:A-2
8. Others
The appearance and specifications of the product may be modified for improvement without prior notice.
Part No. : LTST-C190KRKT Page : 11 of 12
BNS-OD-C131/A4

LTST-C190KRKT

Mfr. #:
Manufacturer:
Lite-On
Description:
Standard LEDs - SMD Red Clear 631nm
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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