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 LITE-ON
Features
TECHNOLOGY
CORPORATION
Property of Lite-On Only * Meet ROHS, Green Product. * Extra thin (0.40H mm) Chip LED. * Package in 8mm tape on 7" diameter reels. * Compatible with automatic placement equipment. * Compatible with infrared and vapor phase reflow solder process. * EIA STD package. * I.C. compatible. Package Dimensions
Part No. LTST-C193NBKT-5A
Notes: 1. All dimensions are in millimeters (inches).
Lens Water Clear
Source Color InGaN Blue
2. Tolerance is 0.10 mm (.004") unless otherwise noted.
Part
No. : LTST-C193NBKT-5A
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BNS-OD-C131/A4
LITE-ON
Absolute Maximum Ratings At
TECHNOLOGY
Ta=25
CORPORATION
Property of Lite-On Only
Parameter
Power Dissipation Peak Forward Current (1/10 Duty Cycle, 0.1ms Pulse Width) DC Forward Current Derating Linear From 50C Reverse Voltage Operating Temperature Range Storage Temperature Range Wave Soldering Condition Infrared Soldering Condition Vapor Phase Soldering Condition
LTST-C193NBKT-5A
76
Unit
mW
100
mA
20 0.25 5 -20C -30C to + 80C to + 100C
mA mA/C V
260C For 5 Seconds 260C For 5 Seconds 215C For 3 Minutes
Part
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BNS-OD-C131/A4
LITE-ON
Suggestion Profile:
TECHNOLOGY
CORPORATION
Property of Lite-On Only
(1) Suggestion IR Reflow Profile For Normal Process
(2) Suggestion IR Reflow Profile For Pb Free Process
e c o m m e n d e d P r o file B e t w e e n A s s e m b le A n d H e a t -R e s is t a n c e L in e
T h e P r o file is a v a ila b le t h a t m u s t t o u s e S n A g
Cu
s o ld e r p a s t e
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BNS-OD-C131/A4
LITE-ON
Electrical Optical Characteristics Symbol
TECHNOLOGY
At Ta=25 Min. Typ.
CORPORATION
Property of Lite-On Only
Parameter
Part No.
LTST-
Max.
Unit
Test Condition
IF = 5mA Note 1
Luminous Intensity
IV
C193NBKT-5A
11.2
-
45.0
mcd
Viewing Angle
2
1/2
C193NBKT-5A
130
deg
Note 2 (Fig.6)
Peak Emission Wavelength
P
C193NBKT-5A
468
nm
Measurement @Peak (Fig.1) IF = 5mA Note3
Dominant Wavelength
d
C193NBKT-5A
465.0
-
475.0
nm
Spectral Line Half-Width
C193NBKT-5A
25
nm
Forward Voltage
VF
C193NBKT-5A
2.65
-
3.15
V
IF = 5mA
Reverse Current
IR
C193NBKT-5A
10
A
VR = 5V
Notes: 1. Luminous intensity is measured with a light sensor and filter combination that approximates the CIE eye-response curve. 2. 1/2 is the off-axis angle at which the luminous intensity is half the axial luminous intensity. d is derived from the CIE chromaticity diagram and represents the single wavelength which defines the color of the device. 4. Caution in ESD: Static Electricity and surge damages the LED. It is recommend to use a wrist band or anti-electrostatic glove when handling the LED. All devices, equipment and machinery must be properly grounded. 3. The dominant wavelength,
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BNS-OD-C131/A4
LITE-ON
TECHNOLOGY
CORPORATION
Property of Lite-On Only
Bin Code List
Forward Voltage Bin Code 1 2 3 4 5 Min. 2.65 2.75 2.85 2.95 3.05 Unit: V @5mA Max. 2.75 2.85 2.95 3.05 3.15
Tolerance on each Forward Voltage bin is +/-0.1 volt Luminous Intensity Bin Code L M N Min. 11.2 18.0 28.0 Unit : mcd @5mA Max. 18.0 28.0 45.0
Tolerance on each Intensity bin is +/-15% Dominant Wavelength Bin Code AC AD Min. 465.0 470.0 Unit : nm @5mA Max. 470.0 475.0
Tolerance for each Dominate Wavelength bin is +/- 1nm
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BNS-OD-C131/A4
LITE-ON
TECHNOLOGY
CORPORATION
Property of Lite-On Only
Typical (25 C
Electrical Ambient
/
Optical
Characteristics Unless Otherwise
Curves Noted)
Temperature
Part
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BNS-OD-C131/A4
LITE-ON
TECHNOLOGY
CORPORATION
Property of Lite-On Only Cleaning Do not use unspecified chemical liquid to clean LED they could harm the package. If clean is necessary, immerse the LED in ethyl alcohol or in isopropyl alcohol at normal temperature for less one minute. Suggest Soldering Pad Dimensions
Notes: 1. Suggest stencil thickness is maximum 0.10mm. Package Dimensions Of Tape And Reel
Notes: 1. All dimensions are in millimeters (inches).
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LITE-ON
TECHNOLOGY
CORPORATION
Property of Lite-On Only
Notes: 1. Empty component pockets sealed with top cover tape. 2. 7 inch reel-3000 pieces per reel. 3. Minimum packing quantity is 500 pcs for remainders. 4. The maximum number of consecutive missing lamps is two. 5. In accordance with ANSI/EIA 481-1-A-1994 specifications.
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BNS-OD-C131/A4
LITE-ON
TECHNOLOGY
CAUTIONS
CORPORATION
Property of Lite-On Only
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 30C temperature or 70% 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 24 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
Pre-heat Pre-heat time Peak temperature Soldering time 120~150C 120 sec. Max. 240C Max. 10 sec. Max.
Wave Soldering
100C Max. 60 sec. Max. 260C Max. 10 sec. Max.
Soldering iron
Temperature Soldering time 300C Max. 3 sec. Max. (one time only)
Pre-heat Pre-heat time Solder wave Soldering time
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
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. 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.
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LITE-ON
TECHNOLOGY
CORPORATION
Property of Lite-On Only
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.
7. Reliability Test
Classification
Test Item Operation Life High Temperature High Humidity Storage High Temperature Storage Low Temperature Storage Temperature Cycling
Test Condition
Ta= Under Room Temperature As Per Data Sheet Maximum Rating *Test Time= 1000HRS (-24HRS,+72HRS)*@20mA. IR-Reflow In-Board, 2 Times Ta= 655 ,RH= 9095% *Test Time= 240HRS2HRS Ta= 1055 *Test Time= 1000HRS (-24HRS,+72HRS) Ta= -555 *Test Time=1000HRS (-24HRS,+72H RS) 105 25 -55 25 30mins 5mins 30mins 5mins 10 Cycles IR-Reflow In-Board, 2 Times 85 5 -40 5 10mins 10mins 10 Cycles T.sol= 260 5 Dwell Time= 10 1secs Ramp-up rate(183 to Peak) +3 / second max Temp. maintain at 125(25) 120 seconds max Temp. maintain above 183 60-150 seconds Peak temperature range 235 +5/-0 Time within 5C of actual Peak Temperature (tp) 10-30 seconds Ramp-down rate +6 /second max Ramp-up rate(217 to Peak) +3 / second max Temp. maintain at 175(25) 180 seconds max Temp. maintain above 217 60-150 seconds Peak temperature range 260 +0/-5 Time within 5C of actual Peak Temperature (tp) 20-40 seconds Ramp-down rate +6 /second max T.sol= 235 5 Immersion time 20.5 sec Immersion rate 252.5 mm/sec Coverage 95% of the dipped surface
Reference Standard
MIL-STD-750D:1026 MIL-STD-883D:1005 JIS C 7021:B-1 MIL-STD-202F:103B JIS C 7021:B-11
Endurance Test
MIL-STD-883D:1008 JIS C 7021:B-10 JIS C 7021:B-12 MIL-STD-202F:107D MIL-STD-750D:1051 MIL-STD-883D:1010 JIS C 7021:A-4 MIL-STD-202F:107D MIL-STD-750D:1051 MIL-STD-883D:1011 MIL-STD-202F:210A MIL-STD-750D:2031 JIS C 7021:A-1 MIL-STD-750D:2031.2 J-STD-020
Thermal Shock Solder Resistance
Environmental Test
IR-Reflow Normal Process
MIL-STD-750D:2031.2 J-STD-020
IR-Reflow Pb Free Process
Solderability
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.
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BNS-OD-C131/A4
LITE-ON
TECHNOLOGY
CORPORATION
Property of Lite-On Only 9. 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 wears 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 recycles? 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?
Part
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