VCDB1104P-4B83B-TR STANLEY | Alldatasheet
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Features
・Comply with JEDEC MSL-3 (IPC/JEDEC J-STD-020D) ・Soldering pad for current 1608 size (1111C type) available ・Narrow spatial distribution suitable for light distribution on limited irradiation area ・Lead–free soldering compatible ・RoHS compliant Product features 2013.8.29
Page : 2 Unit :mm Weight :1.7 mg Tolerance :±0.1 NO. PART NAME MATERIALS QTY. ① LED Die InGaN 1 ② Lens Epoxy Resin 1 ③ Substrate Glass Fabrics 1 ④ Electrode Au/Ni/Cu 2 Outline Dimensions Recommended Pad Unit :mm 2013.8.29
Page : 3 MAX. 100 TYP. 600 400 InGaN Blue -40 ~ +100 Note1 Forward Current V Tsld ΔIF 0.50 mA/℃ mA Operating Temperature Soldering Temperature "Reflow Soldering" Electrostatic Discharge Threshold "HBM" EMITTING COLOR SYMBOL MAXIMUM RATINGS UNITS mW mA ΔIFRM 1.20 mA/℃ Repetitive Peak Forward Current "1ms,1/20duty" (Ta=25℃) Water clear 【 Product Overview 】 Please refer to Page 8, Soldering Conditions. SYMBOL Tj ITEM Junction Temperature IFRM 24 Topr Reverse Voltage VR 5 RESIN COLOR( EMITTING AREA) Power Dissipation Pd IFRM Derate Linearly from "85℃" DIE MATERIAL (Ta=25℃) Note3 Note2℃ 【 Absolute Maximum Ratings 】 V ℃/W ℃/W ITEM IF 8 ESD Storage Temperature Tstg 【 Thermal Characteristics 】 260 ESD testing method : EIAJ4701/300(304) Human Body Model(HBM) 1.5kΩ ,100pF 1,000 -40 ~ +105 Note 1 Note 2 IF Derate Linearly from "85℃" Thermal Resistance 【Junction - Solder point】 Rth(j-s) UNITS Note3. Thermal Resistance 【Junction - Ambient】 Rth(j-a) Rth(j-a)Measuring condition ・PCB:FR-4(t=1.6mm) ・Pattern Size:16mm2 Specifications 2013.8.29
Page : 4 Above Luminous Intensity (IV) values and Dominant wavelength (λ d) values are the setup value of the selection machine.【Tolerance : IV…±10%、λ d…±1nm】 λ d Notes 470 476 λ p mcd 3.0 463IF = 5mA IF = 5mA IR IF = 5mAIV ΦV μ A MIN. TYP. MAX. VF 3.3 (Ta=25℃) IF = 5mA 【 Electro and Optical Characteristics 】 2.6 V SYMBOL CONDITIONS mlm IF = 5mA VR = 5V ITEM UNITS nm nm Forward Voltage Spectral Line Half Width Dominant Wavelength Peak Wavelength Luminous Flux Luminous Intensity deg.Half Intensity Angle Δλ IF = 5mA nm Reverse Current 2θ 1/2 IF = 5mA 464 Specifications C 468 472 B 468 IF =5mA Ta=25℃ BY 68 82 D 472 476 LEDs shall be sorted out into the following ranks of Luminous Intensity and Dominant Wavelength. MIN. MAX. Luminous Intensity (Iv) Rank Rank Rank Dominant Wavelength (λ d) Rank 464 Iv(mcd) 【 Sorting For Luminous Intensity and Dominant Wavelength 】 λ d (nm) MIN. MAX. Conditions Conditions IF =5mA Ta=25℃47 56 BX 56 68 2013.8.29 Notes Above Luminous Intensity (IV) values and Dominant wavelength (λ d) values are the setup value of the selection machine.【Tolerance : IV…±10%、λ d…±1nm】
0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 1.1 1.2 380 430 480 530 580 630 680 730 780 Wavelength vs. Relative Intensity Conditions: Ta = 25℃, IF = 5mA Wavelength (nm) Page : 5 Relative Intensity Spatial Distribution Conditions: Ta = 25℃, IF = 5mA Relative radiant intensity : (%) Technical Data x direction y direction x y 100 50 0 50 100 100 -60 -90 -30 2013.8.29
0.1 1.0 10.0 -40 -20 0 20 40 60 80 100 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 0 5 10 15 20 CI 2.7 2.8 2.9 3.0 3.1 3.2 3.3 -40 -20 0 20 40 60 80 1001 100 Forward Current vs. Relative Intensity Conditions : Ta = 25℃ Forward Current : IF (mA) Ambient Temperature vs. Relative Intensity Conditions : IF= 5mA Ambient Temperature : Ta(℃) Ambient Temperature vs. Forward Voltage Conditions : IF = 5mA Ambient Temperature : Ta (℃) Forward Voltage vs. Forward Current Conditions : Ta = 25℃ Forward Voltage : VF (V) Page : 6 Forward Current : IF (mA) Forward Voltage : VF (V) Relative Intensity Relative Intensity 2013.8.29
-40 -20 0 20 40 60 80 100 Duty=5% Duty=10% Duty=20% Duty=50% DC 100 1 10 100 464 466 468 470 472 474 476 -40 -20 0 20 40 60 80 100469 470 471 472 473 0 5 10 15 20 CI Forward Current vs. Dominant Wavelength Conditions : Ta = 25℃ Forward Current : If (mA) Duty cycle vs. Maximum Forward Current Conditions : Ta=25℃ Duty : (%) Ambient Temperature vs. Dominant Wavelength Conditions : IF = 5mA Ambient Temperature : Ta (℃) Page : 7 Ambient Temperature vs. Maximum Forward Current Repeatition Frequency:f≧50Hz Pulse Width:tw≦1ms Ambient Temperature : Ta (℃) Dominant Wavelength : λd (nm) Dominant Wavelength : λd (nm) Maximum Forward Current : IF MAX. (mA) Maximum Forward Current : IF MAX.(mA) 2013.8.29
- Heat stress during soldering will influence the reliability of LEDs, however that effect will vary on heating method. Also, if components of varying shape are soldered together, it is recommended to set the soldering pad temperature according to the component most vulnerable to heat (e.g., surface mount LED). 2. LED parts including the resin are not stable immediately after soldering ( when they are not at room temperature), any mechanical stress may cause damage to the product. Please avoid such stress after soldering, especially stacking of the boards which may cause the boards to warp and any other types of friction with hard materials. 3. Recommended temperature profile for the Reflow soldering is listed as the temperature of the resin surface. Temperature distribution varies on heating method, PCB material, other components in the assembly, and mounting density . Please do not repeat the heating process in Reflow process more than twice. Note 1 Recommended temperature profile for the reflow soldering is listed as the temperature of the resin surface. This should be the maximum temperature for soldering. Lowering the heating temperature and decreasing heating time is very effective in achieving higher reliability. Note 2 The reflow soldering process should be done up to twice(2 times Max). When second process is performed, interval between first and second process should be as short as possible to prevent absorption of moisture to resin of LED. The second soldering process should not be done until LEDs have returned to room temperature (by nature-cooling) after first soldering process. 【Soldering Precaution】 (acc.to EIAJ-4701/300) 【Recommended Reflow Soldering Condition.】 40sec MAX. 150℃~180℃ +1.5~+5℃/s 260℃ MAX. -1.5~-5℃/s 90~120sec MAX. (Pre-heating) (Soldering) 230℃ MAX. Peak Temperature Page 8 2013.8.29
- If soldering manually, Stanley recommends using a soldering iron equipped with temperature control. During the actual soldering process, make sure that the soldering iron never touches the LED itself, and avoid the LED's electrode heating temperature reaching above the heating temperature of the solder pad. All repairs must be performed only once in the same spot, and please avoid reusing components. 5. In soldering process, immediately after iron tip is cleaned, please make sure that the soldering iron reaches the appropriate temperature, before using. Also, please avoid applying any types of pressure to the soldered components before the solder has been cooled and hardened, as it may deteriorate solder performance and solder quality. 6. When using adhesive material for tentative fixatives, thermosetting resin or Ultraviolet radiation (UV) setting resin with heat shall be recommended. 《The curing condition, Temperature:150℃Max./Time:120sec.Max.》 6. Flow soldering (dip soldering) is not recommended for this product. 7. Isopropyl alcohol is recommended for cleaning. Some chemicals, including Freon substitute detergent could corrode the lens or the casing surface, which cause discoloration, cloud, crack and so on. Please review the reference chart below for cleaning. Cleaning with ultrasonic shall not be recommended. 【Recommended Manual Soldering Condition】 Temperature of Iron Tip 350℃MAX. Soldering Duration, Time 3sec.Max.,1 time Chemical Adaptability Ethyl Alcohol ○ Isopropyl Alcohol ○ Pure Water ○ Trichloroethylene × Chlorothene × Acetone × Thinner × Page 9 2013.8.29
This kind of LED lamp is highly sensitive to surge voltage generated by the On/Off status change and discharges of static electricity through frictions with synthetic materials, which may cause severe damage to the die or undermine its reliability. Damaged products may experience conditions such as extremely high reverse voltage, or a decrease of forward rise voltage, deteriorating its optical characteristic. Stanley products are designed to withstand up to 1,000V under the EIAJ ED-4701/300 Test ♯304 (HBM), and are packed with anti-static components. However, the following precautions and measures are vital in ensuring product quality during shipment. EIAJ ED-4701/300(304/HBM) Electrification model: C=100pF, R2=1.5KΩ ① Do not place electrified non-conductive materials near the LED product. Avoid LED products from coming into contact with metallic materials.( Should the metallic material be electrified , the sudden surge voltage will most likely damage the product.) ② Avoid a working process which may cause the LED product to rub against other materials. ③ Install ground wires for any equipment, where they can be installed, with measures to avoid static electricity surges. ④ Prepare a ESD protective area by placing a Conductive Mattress (1MΩ MAX.) and Ionizer to remove any static electricity. ⑤ Operators should wear a protective wrist-strap. ⑥ Operators should wear conductive work-clothes and shoes. ⑦ To handle the products directly, Stanley recommends the use of ceramic, and not metallic, tweezers. 2. Working Environment ① A dry environment is more likely to cause static electricity. Although a dry environment is ideal for storage state of LED products, Stanley recommends an environment with approximately 50% humidity after the soldering process. ② Recommended static electricity level in the working environment is 150V, which is the same value as Integrated Circuits (which are sensitive to static electricity). 【 For Electric Static Discharge ( ESD) 】 1. Electrification/Static Electricity protection Stanley recommends the following precautions in order to avoid product (die) damage from static electricity , when an operator and other materials electrified by friction coming in contact with the product. 2013.8.29
【Other Precautions】 1. Stanley LED Lamps have semiconductor characteristics and are designed to ensure high reliability. However, the performance may vary depending on usage conditions. 2. Absolute Maximum Ratings are set to prevent LED lamps from failing due to excess stress( temperature, current, voltage, etc.). Usage conditions must not exceed the ratings for a moment, nor do reach one item of absolute maximum ratings simultaneously. 3. In order to ensure high reliability from LED Lamps, variable factors that arise in actual usage conditions should be taken it to account for designing. ( Derating of TYP., MAX Forward Voltage, etc.) 4. Please insert Straight Protective Resistors into the circuit in order to stabilize LED operation and to prevent the device from igniting due to excess current. 5. Please check the actual performance in the assembly because the Specification Sheets are described for LED device only. 6. Please refrain from looking directly at the light source of LED at high output, as it may harm your vision. 7. The products are designed to operate without failure in recommended usage conditions. However, please take the necessary precautions to prevent fire, injury, and other damages should any malfunction or failure arise. 8. The products are manufactured to be used for ordinary electronic equipment. Please contact our sales staff beforehand when exceptional quality and reliability are required, and the failure or malfunction of the products might directly jeopardize life or health ( such as for airplanes, aerospace, transport equipment, medical applications, nuclear reactor control systems and so on). 9. The formal specification sheets shall be valid only by exchange of documents signed by both parties. Page 11 2013.8.29
This product is baked (moisture removal) before packaging, and is shipped in moisture-proof packaging (as shown below) to minimize moisture absorption during transportation and storage. However, with regard to storing the products, Stanley recommends the use of dry-box under the following conditions is recommended. Moisture-proof bag as the packaging is made of anti-static material but packaging box is not. The package should not be opened until immediately prior to its use, and please keep the time frame between package opening and soldering which is 【maximum 168h】. If the device needs to be soldered twice, both soldering operations must be completed within the 168h. If any components should remain unused, please reseal the package and store them under the conditions described in the 【 Recommended Storage Condition 】 above. This product must be required to perform baking process (moisture removal) for at 48( MIN.).∼72h (MAX.) , at 60 +/- 5 degrees Celsius if following conditions apply. 1. In the case of silica gel (blue) which indicates the moisture level within the package, changes or loses its blue color. 2. In the case of time passes for 168h after the package is opened once. Baking process should be performed after LED having been taken out of the package. Baking may be performed in the tape-reel form , however if it is performed with the reel stacked over one another, it may cause deformation of the reels and taping materials and later obstruct mounting. Please handle only once it has returned to room temperature. Provided that, baking process shall be 2 times MAX. 【Time elapsed after Package Opening】 Page 12 In the case of the package unopened , 6 months under 【 Recommended Storage Condition 】. Please avoid rapid transition from low temp. condition to high temp. condition and storage in corroding and dusty environment. 【Recommended Storage Condition / Products Warranty Period 】 Temperature +5~30℃ Humidity Under 70% 2013.8.29
【Moisture-proof Packaging Specification】 Fastener for re-storage after opening bag. Customer's opening position. Product Label Desiccant with indicator for moisture level is enclosed. 1 A Packaging Specifications SYM. PART NAME MATELRIAL REMARKS ① Moisture-proof bag with Aluminum layer PET+Al+PE with ESD protection Page 13 Yes No Yes No Yes No Baking LED under recommended condition Product Mounting Unused-product remained Return to moisture-proof package and seal Finished Reopen the moisture-proof package Flow chart:Package Opening to Mounting Stored under recommended condition Moisture-proof package first time opening Allowable leaving time exceeded (*) Discoloration of silica gel Allowable leaving time means the maximum allowable leaving time after opening package, which depends on each LED type. The allowable leaving time should be calculated form the first opening of package to the time when soldering process is finished. When judging if the allowable leaving time has exceeded or not, please subtract the soldering time. The allowable leaving time after reopening should be calculated form the first opening of package, or from the time when baking process is finished. 【Flow Chart-package Opening to Mounting】 Heat Sealing position (after product being put in) 2013.8.29
【Packing box】 ( RoHS・ELV Compliant ) The above measure is all the reference value. The box is selected out of the above table by shipping quantity. Packaging Specifications Box TYPE Outline dimension L × W × H (mm) Capacity of the box Type A 280 × 265 × 45 3 reels Type B 310 × 235 × 265 15 reels Type C 440 × 310 × 265 30 reels B Type A Material / box : Cardboard C5BF Type B,C Material / box : Cardboard K5AF Partition : Cardboard K5BF Page 14 2013.8.29
【Label Specification】 ( acc.to JIS-X0503(Code-39)) Product label A. Parts number B. Bar-code for parts number C. Parts code (In-house identification code for each parts number) D. Packed parts quantity E. Bar-Code for packed parts quantity F. Lot number & Rank (16 digits) G. Bar-Code for Lot number & Rank Opto device label A. Customer Name B. Parts Type C. Parts Code D. Parts Number E. Packed Parts Quantity F. Carton Number G. Shipping Date H. Bar-Code for In-house identification Number <Remark> Bar-code font : acc.to Code-39(JIX0503) Packaging Specifications B A Page 15 2013.8.29
Taping and Reel Specifications (acc.to JIS-C0806-03) 【Appearance】 Items Specifications Remarks Leader area Cover-tape Cover-tape shall be longer than 320mm without carrier-tape The end of cover-tape shall be held with adhesive tape. Carrier-tape Empty pocket shall be more than 25 pieces. Please refer to the above figure for Taping & reel orientation . Trailer area Empty pocket shall be more than 40 pieces. The end of taping shall be inserted into a slit of the hub. Page 16 Note "-TR" means cathode side of LEDs should be placed on the sprocket-hole side. 2013.8.29
Taping and Reel Specifications (acc.to JIS-C0806-03) 【 Qty. per Reel】 【 Mechanical strength】 【Others】 Qty./reel Max. qty. of empty pocket Remark 500 1 - 1,000 1 - 1,500 1 - 2,000 2 No continuance 2,500 2 No continuance 3,000 3 No continuance 3,000parts/reel Minimum Qty. per reel might be 500 parts when getting less than 3,000 parts. In such case, parts of 500-unit-qty. shall be packed in a reel and the qty. shall be identified on the label. Cover-tape adhesive strength shall be 0.1~1.0N ( An angle between carrier-tape and cover-tape shall be170 deg. ). Both tapes shall be so sealed that the contained parts will not come out from the tape when it is bent at a radius of 15mm. Reversed-orientation, Up-side down placing, side placing and out of spec. parts mix shall not be held. Max qty. of empty pocket per reel shall be defined as follows. Page 17 2013.8.29
【Taping Dimensions】 Taping and Reel Specifications (acc.to JIS-C0806-03) SYM. PART NAME REMARKS Carrier-real Cover-tape Conductive Grade Anti-Static Grade Anti-Static Grade Carrier-tape Page 18 Unit : mm 【Reel Dimensions】 2013.8.29
Lot Number Notational System ② ③ ④ ⑤ ⑥ ⑦ ⑧ ⑨ ① - 1digit : Production Location (Mark identify alphabet) ② - 1digit : Production Year (Last digit of Production Year 2009→9,2010→0,2011→1,・・・) ③ - 2digits : Production Month (Jan. to Sep. , should be 01,02,03,・・・・・) ④ - 2digits : Production Date ⑤ - 3digits : Serial Number ⑥ - 2digits : Tape and Reel following Number ⑦ - 2digits : Luminous Intensity Rank. (If luminous intensity rank is 1 digit, "-" shall be dashed on the place for the second digit. If there is no identified intensity rank, "- -" is used to indicate.) ⑧ - 2digits : Chromaticity Rank (If chromaticity rank is 1 digit, "-" shall be dashed on the place for the second digit. If there is no identified intensity rank, "- -" is used to indicate.) ⑨ - 1digit : Option Rank (Stanley normally print "-" to indicate) Page 19 2013.8.29
Correspondence to RoHS・ELV instruction This product is in compliance with RoHS・ELV. Prohibition substance and it's criteria value of RoHS・ELV are as follows. ・RoHS instruction …… Refer to following (1)~(6). ・ELV instruction ………. Refer to following (1)~(4). Substance Group Name Criteria Value (1) Lead and its compounds 1,000ppm Max (2) Cadmium and its compounds 100ppm Max (3) Mercury and its compounds 1,000ppm Max (4) Hexavalent chromium 1,000ppm Max (5) PBB 1,000ppm Max (6) PBDE 1,000ppm Max Page 20 2013.8.29
Result Applicable Standard Testing Conditions Duration Failure Room Temp. Operating Life EIAJ ED- 4701/100(101) Ta = 25℃, IF = Maxium Rated Current 1,000 h 0/25 Resistance to Soldering Heat EIAJ ED- 4701/300(301) Pre-heating : 150~180℃ 120s Max. Operation Heating : 230℃ 40s Max. Peak Temperature : 260℃ Twice 0/25 Temperature Cycling EIAJ ED- 4701/100(105) Minimum Rated Storage Temperature(30min) ~Normal Temperature(15min) ~Maximum Rated Storage Temperature(30min) ~Normal Temperature(15min) 5 cycles 0/25 Wet High Temp. Storage Life EIAJ ED- 4701/100(103) Ta = 60±2℃, RH = 90±5% 1,000 h 0/25 High Temp. Storage Life EIAJ ED- 4701/200(201) Ta = Maximum Rated Storage Temperature 1,000 h 0/25 Low Temp. Storage Life EIAJ ED- 4701/200(202) Ta = Minimum Rated Storage Temperature 1,000 h 0/25 Vibration, Variable Frequency EIAJ ED- 4701/400(403) 98.1m/s 2 (10G), 100 ~ 2KHz sweep for 20min., XYZ each direction 2 h 0/10 Reliability Testing Result Page 21 Luminous Intensity Items Conditions Appearance - Notable discoloration, deformation and cracking VR=5VIR Forward Voltage IV VF Symbol Testing Max. Value ≧ Standard Max. Value × 2.5 Failure Criteria Reverse Current Testing Max. Value ≧ Standard Max. Value × 1.2IF=5mA
Special Notice to Customers Using the Products and Technical Information Shown in This Data Sheet 1) The technical information shown in the data sheets are 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. 2) For the purpose of product improvement, the specifications, characteristics and technical data described in the data sheets are subject to change without prior notice. Therefore it is recommended that the most updated specifications be used in your design. 3) When using the products described in the data sheets, please adhere to the maximum ratings for operating voltage, heat dissipation characteristics, and other precautions for use. We are not responsible for any damage which may occur if these specifications are exceeded. 4) The products that have been described to this catalog are manufactured so that they will be used for the electrical instrument of the benchmark (OA equipment, telecommunications equipment, AV machine, home appliance and measuring instrument). The application of aircrafts, space borne application, transportation equipment, medical equipment and nuclear power control equipment, etc. needs a high reliability and safety, and the breakdown and the wrong operation might influence the life or the human body. Please consult us beforehand if you plan to use our product for the usages of aircrafts, space borne application, transportation equipment, medical equipment and nuclear power control equipment, etc. except OA equipment, telecommunications equipment, AV machine, home appliance and measuring instrument. 5) In order to export the products or technologies described in this data sheet which are under the “Foreign Exchange and Foreign Trade Control Law,” it is necessary to first obtain an export permit from the Japanese government. 6) No part of this data sheet may be reprinted or reproduced without prior written permission from Stanley Electric Co., Ltd. 7) The most updated edition of this data sheet can be obtained from the address below: http://www.stanley-components.com/en Page 22 2013.8.29