TLRE1002A_06 TOSHIBA | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 18
Technical content
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 1 TOSHIBA LED Lamps TLRE1002A(T02), TLSE1002A(T02), TLOE1002A(T02), TLYE1002A(T02), TLPYE1002A(T02), TLGE1002A(T02), TLFGE1002A(T02), TLPGE1002A(T02) Panel Circuit Indicator
- Surface-mount devices
- InGaAℓP LEDs
- It can be manufactured high-lumin osity of equipment or reduce of electric power consumption by change in the high-luminosity LED from general-luminosity one.
- Colors: red, orange, yellow, pure yellow, green, pure green
- Pb-free reflow soldering is possible
- Applications: Backlighting source for battery-powered equipment Pilot light for compact equipment Low-power electronic equipment, etc.
- Standard embossed tape packing: T02 (3000/reel) 8-mm tape reel Color and Material Unit: mm JEDEC ― JEITA ― TOSHIBA 4-1D1 Weight: 0.002 g (typ.) Product Name Color Material TLRE1002A Red TLSE1002A Red TLOE1002A Orange TLYE1002A Yellow TLPYE1002A Pure Yellow TLGE1002A Green TLFGE1002A Green TLPGE1002A Pure Green InGaAℓP
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 2 Maximum Ratings (Ta = 25°C) Product Name Forward Current IF (mA) Please see Note 1 Reverse Voltage VR (V) Power Dissipation PD (mW) Operation Temperature Topr (°C) Storage Temperature Tstg (°C) TLRE1002A TLSE1002A TLOE1002A TLYE1002A TLPYE1002A TLGE1002A TLFGE1002A TLPGE1002A 25 4 60 −40~85 − 40~100 Note 1: Forward current derating Electrical Characteristics (Ta = 25°C) Forward Voltage VF Reverse Current IR Product Name Min Typ. Min I F Max V R TLRE1002A 1.6 1.9 2.4 TLSE1002A 1.6 1.9 2.4 TLOE1002A 1.6 2.0 2.4 TLYE1002A 1.6 2.0 2.4 TLPYE1002A 1.6 2.0 2.4 TLGE1002A 1.6 2.0 2.4 TLFGE1002A 1.6 2.0 2.4 TLPGE1002A 1.6 2.1 2.4 20 50 4 Unit V mA μA V 0 80 6020 100 Ambient temperature Ta (°C) IF – Ta Allowable forward current I F ( m A )
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 3 Optical Characteristics–1 (Ta = 25°C) Luminous Intensity IV Product Name Min Typ. Max I F Available Iv rank Please see Note 2 TLRE1002A 27.2 70 ⎯ 20 L / M / N / P TLSE1002A 47.6 140 ⎯ 20 M / N / P / Q TLOE1002A 47.6 180 ⎯ 20 M / N / P / Q TLYE1002A 27.2 105 ⎯ 20 L / M / N / P TLPYE1002A 27.2 70 ⎯ 20 L / M / N / P TLGE1002A 27.2 70 ⎯ 20 L / M / N / P TLFGE1002A 8.5 25 ⎯ 20 J / K / L / M TLPGE1002A 4.76 18 ⎯ 20 H / J / K / L Unit mcd mcd mcd mA Note 2: The specification on the above table is used for Iv classification of LEDs in Toshiba facility. Each reel includes the same rank LEDs. Let the delivery ratio of each rank be unquestioned. Luminous Intensity IV Rank Min Max H 4.76 12.9 J 8.5 23 K 15.3 41.4 L 27.2 73.6 M 47.6 129 N 85 230 P 153 414 Q 272 736 Unit mcd mcd Optical Characteristics–2 (Ta = 25°C) Emission Spectrum Peak Emission Wavelength λp Δλ Dominant Wavelength λdProduct Name Min Typ. Max Typ. Min Typ. Max IF TLRE1002A ⎯ 644 ⎯ 18 624 630 638 TLSE1002A ⎯ 623 ⎯ 17 607 613 621 TLOE1002A ⎯ 612 ⎯ 15 599 605 613 TLYE1002A ⎯ 590 ⎯ 13 581 587 595 TLPYE1002A ⎯ 583 ⎯ 13 574 580 586 TLGE1002A ⎯ 574 ⎯ 11 565 571 576 TLFGE1002A ⎯ 568 ⎯ 11 559 565 571 TLPGE1002A ⎯ 562 ⎯ 11 ⎯ 558 564 Unit nm nm nm mA The cautions
- This visible LED lamp also emits some IR light. If a photodetector is located near the LED lamp, please ensure that it will not be affected by the IR light.
- This product is designed as a general display light source usage, and it has applied the measurement standard that matched with the sensitivity of human's eyes. Therefore, it is not intended for usage of functional application (ex. Light source for sensor, optical communication and etc) except general display light source.
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 4 TLRE1002A IF = 20 mA Ta = 25°C 640 0.4 1.0 0.8 580 680 660 620600 700 0.6 0.2 0.1 0.3 0.5 −20 80 60 20 0 100 1.6 2.0 1.7 2.2 1.8 2.1 1.9 Ta = 25°C Relative luminous intensity Forward voltage V F (V) IF – VF Forward current I F ( m A ) Forward current I F ( m A ) IV – IF Luminous intensity I V (mcd) Case temperature Tc (°C) IV – Tc Relative luminous intensity I V Wavelength λ (nm) Wavelength characteristic Ta = 25°C 100 1 50 3 5 10 30 100 (typ.) (typ.) (typ.) (typ.)
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 5 TLSE1002A 100 1 50 3 5 10 30 100 300 Ta = 25°C IF = 20 mA Ta = 25°C 640 0.4 1.0 0.8 580 680 660 620600 700 0.6 0.2 Ta = 25°C 100 1.8 1.9 0.1 −20 80 60 0 100 0.5 0.3 Relative luminous intensity Forward voltage V F (V) IF – VF Forward current I F ( m A ) Forward current I F ( m A ) IV – IF Luminous intensity I V (mcd) Case temperature Tc (°C) IV – Tc Relative luminous intensity I V Wavelength λ (nm) Wavelength characteristic (typ.) (typ.) (typ.) (typ.)
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 6 TLOE1002A 0.1 80 60 100 0.3 0.5 −20 0 40 IF = 20 mA Ta = 25°C 600 0.4 1.0 0.8 540 640 620 580560 660 0.6 0.2 Ta = 25°C 100 1.9 2.0 Relative luminous intensity Forward voltage V F (V) IF – VF Forward current I F ( m A ) Forward current I F ( m A ) IV – IF Luminous intensity I V (mcd) Case temperature Tc (°C) IV – Tc Relative luminous intensity I V Wavelength λ (nm) Wavelength characteristic 100 1 50 3 5 10 30 100 300 Ta = 25°C (typ.) (typ.) (typ.) (typ.)
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 7 TLYE1002A 100 1 50 3 5 10 30 100 300 Ta = 25°C IF = 20 mA Ta = 25°C 600 0.4 1.0 0.8 540 640 620 580560 660 0.6 0.2 0.1 80 60 100 0.3 0.5 −20 0 40 Ta = 25°C 100 1.9 2.0 Relative luminous intensity Forward voltage V F (V) IF – VF Forward current I F ( m A ) Forward current I F ( m A ) IV – IF Luminous intensity I V (mcd) Case temperature Tc (°C) IV – Tc Relative luminous intensity I V Wavelength λ (nm) Wavelength characteristic (typ.) (typ.) (typ.) (typ.)
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 8 TLPYE1002A 100 1 50 3 5 10 30 100 300 Ta = 25°C IF = 20 mA Ta = 25°C 600 0.4 1.0 0.8 540 640 620 580560 660 0.6 0.2 0.1 80 60 100 0.3 0.5 −20 0 40 Ta = 25°C 100 1.9 2.0 Relative luminous intensity Forward voltage V F (V) IF – VF Forward current I F ( m A ) Forward current I F ( m A ) IV – IF Luminous intensity I V (mcd) Case temperature Tc (°C) IV – Tc Relative luminous intensity I V Wavelength λ (nm) Wavelength characteristic (typ.) (typ.) (typ.) (typ.)
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 9 TLGE1002A 100 1 50 3 5 10 30 100 300 Ta = 25°C 0.1 80 60 100 0.3 0.5 −20 0 40 IF = 20 mA Ta = 25°C 0.4 1.0 0.8 540 0.6 0.2 620600 580 560 Ta = 25°C 100 1.9 2.0 Relative luminous intensity Forward voltage V F (V) IF – VF Forward current I F ( m A ) Forward current I F ( m A ) IV – IF Luminous intensity I V (mcd) Case temperature Tc (°C) IV – Tc Relative luminous intensity I V Wavelength λ (nm) Wavelength characteristic (typ.) (typ.) (typ.) (typ.)
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 10 TLFGE1002A 0.1 80 60 100 0.3 0.5 −20 0 40 IF = 20 mA Ta = 25°C 0.4 1.0 0.8 520 0.6 0.2 600580 560 540 Ta = 25°C 100 1.9 2.0 Relative luminous intensity Forward voltage V F (V) IF – VF Forward current I F ( m A ) Case temperature Tc (°C) IV – Tc Relative luminous intensity I V Wavelength λ (nm) Wavelength characteristic Forward current I F ( m A ) IV – IF Luminous intensity I V (mcd) 1 50 0.3 0.5 3 5 10 30 100 Ta = 25°C (typ.) (typ.) (typ.) (typ.)
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 11 TLPGE1002A 1 50 0.3 0.5 3 5 10 30 100 Ta = 25°C IF = 20 mA Ta = 25°C 0.4 1.0 0.8 520 0.6 0.2 600580 560 540 0.1 80 60 100 0.3 0.5 −20 0 40 Relative luminous intensity Forward current I F ( m A ) IV – IF Case temperature Tc (°C) IV – Tc Relative luminous intensity I V Wavelength λ (nm) Wavelength characteristic Luminous intensity I V (mcd) 100 1.9 2.0 Forward voltage V F (V) IF – VF Forward current I F ( m A ) Ta = 25°C (typ.) (typ.) (typ.) (typ.)
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 12 Radiation Pattern Horizontal to polarity Ta=25 ℃ Vertical to polarity 0 0.2 0.4 0.6 0.8 0° 10° 20° 30° 40° 50° 60° 70° 80° 90° 10° 20° 30° 40° 50° 60° 70° 80° 90° 0° 10° 20° 30° 40° 50° 60° 70° 80° 90° 10° 20° 30° 40° 50° 60° 70° 80° 90° 1.0 (typ.) (typ.)
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 13 Packaging These LED devices are packed in an aluminum envelope with a silica gel and a moisture indicator to avoid moisture absorption. The optical characteristics of the devices may be affected by exposure to moisture in the air before soldering and they should therefore be stored under the following conditions: 1. This moisture proof bag may be stored unopene d within 12 months at the following conditions. Temperature: 5°C~30°C Humidity: 90% (max) 2. After opening the moisture proof bag, the devices should be assembled within 168 hours in an environment of 5°C to 30°C/70% RH or below. When performing lead(Pb)-free soldering, the devices should be assembled within 72 hours in an environment of 5°C to 30°C/70% RH or below. 3. If upon opening, the moisture in dicator card shows humidity 30% or above (Color of indication changes to pink) or the expiration date has passed, the devices should be baked in taping with reel. After baking, use the baked devices within 72 hours, but perform baking only once. Baking conditions: 60±5°C, for 12 to 24 hours. Expiration date: 12 months from sealing date, which is imprinted on the same side as this label affixed. 4. Repeated baking can cause the pee ling strength of the taping to change, then leads to trouble in mounting. Furthermore, prevent the devices from being destructed against static electricity for baking of it. 5. If the packing material of laminate would be broken , the air tightness would deteriorate. Therefore, do not throw or drop the packed devices. Mounting Method Soldering
- Reflow soldering (example)
- The products are evaluated using above reflow soldering conditions. No additional test is performed exceed the condition (i.e. the condition more than (*)MAX values) as a evaluation. Please perform reflow soldering under the above conditions.
- Please perform the first reflow soldering with reference to the above temperature profile and within 168 h of opening the package.
- Second reflow soldering In case of second reflow soldering should be performed within 168 h of the first reflow under the above conditions. Storage conditions before the second reflow soldering: 30°C, 70% RH (max)
- Make any necessary soldering corrections manually. (only once at each soldering point) Soldering iron : 25 W Temperature : 300 °C or less Time : within 3 s
- Do not perform wave soldering. 60~120 s max 140~160°C max 10 s max 240°C max 4°C/s max4°C/s max Time (s) Package surface temperature ( °C) (*) (*) (*) (*) (*) (*) Temperature profile for Pb soldering (example)
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 14
- Reflow soldering (example)
- The products are evaluated using above reflow soldering conditions. No additional test is performed exceed the condition (i.e. the condition more than (*)MAX values) as a evaluation. Please perform reflow soldering under the above conditions.
- Please perform the first reflow soldering with reference to the above temperature profile and within 72 h of opening the package.
- Second reflow soldering In case of second reflow soldering should be performed within 72 h of the first reflow under the above conditions. Storage conditions before the second reflow soldering: 30°C, 70% RH (max)
- Make any necessary soldering corrections manually. (only once at each soldering point) Soldering iron : 25 W Temperature : 300 °C or less Time : within 3 s
- Do not perform wave soldering. Recommended soldering pattern Cleaning When cleaning is required after soldering, Toshiba recommends the following cleaning solvents. It is confirmed that these solvents have no effect on semiconductor devices in our dipping test (under the recommended conditions). In selecting the one for your actual usage, please perform sufficient review on washing condition, using condition and etc. ASAHI CLEAN AK-225AES : (made by ASAHI GLASS) KAO CLEAN TROUGH 750H : (made by KAO) PINE ALPHA ST-100S : (made by ARAKAWA CHEMICAL) TOSHIBA TECHNOCARE : (made by GE TOSHIBA SILICONES) (FRW-17, FRW-1, FRV-100) Precaution when mounting Do not apply force to the plastic part of the LED under high-temperature conditions. To avoid damaging the LED plastic, do not apply friction using a hard material. When installing the PCB in a product, ensure that the device does not come into contact with other cmponents. 1.2 1.0 1.2 (1.2) Unit: mm Temperature profile for Pb-free soldering (example) Time (s) 150~180°C max 4°C/s max 5 s max 260°C max 4°C/s max 30~50 s max 230°C 60~120 s max (*) (*) (*) (*) (*) (*) (*) Package surface temperature ( °C)
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 15 Tape Specifications 1. Product number format The type of package used for shipment is denoted by a symbol suffix after the product number. The method of classification is as below. (However, this method does not apply to products whose electrical/optical characteristics differ from standard Toshiba specifications) (1) Tape Type: T02 (4-mm pitch) (2) Example 2. Handling precautions Tape material protected against static electricity. However, static electricity may occur depending on quantity of charged static electricity and a device may attach to a tape, or a device may be unstable when peeling a tape cover. (a) Since tape materials may accumulate an electrosta tic charge, use an ionizer to neutralize the ambient air. (b) For transport and temporary storage of devices, use containers (boxes and bags) and jigs that are made of anti-static materials or of materials which dissipate electrostatic charge. 3. Tape dimensions Unit: mm Symbol Value Tolerance Symbol Value Tolerance P0 4.00 ±0.1 P 4.00 ±0.1 t 0.20 ±0.05 A 0 1.45 ±0.1 F 3.50 ±0.05 B 0 2.25 ±0.1 D1 1.10 ±0.1 K 0 1.30 ±0.05 P D1 F E W Polarity t D TLRE1002A (T02) Tape type Toshiba product No.
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 16 4. Reel dimensions Unit: mm 5. Leader and trailer section of tape Note 1: Empty trailer section Note 2: Empty leader section 2 ± 0.5 φ13 ± 0.5 φ21 ± 0.8 11.4 ± 1 9 ± 0.3 φ60 φ180 +0 (Note 1) Leading part 190 mm (min) 40 mm or more (Note 2) 40 mm or more
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 17 6. Packing display (1) Packing quantity Reel 3,000 pcs Carton 15,000 pcs (2) Package form: Each reel is sealed in an aluminum pack with silica gel. 7. Label format (1) Example: TLRE1002A (T02) P / N : TOSHIBA TYPE TLRE1002A ADDC (T02) Q’TY 3,000 pcs Lot Number Key code for TSB 32C 3000 (RANK SYMBOL) Use under 5-30degC/70%RH within 72h SEAL DATE: [[G]]/RoHS COMPATIBLE DIFFUSED IN ***** *Y3804xxxxxxxxxxxxxxxxx* ASSEMBLED IN ***** (2) Label location Tape reel direction Label position Label position
- Reel • Carton
- The aluminum package in which the reel is supplied also has a copy of the label attached to center of one side.
TL(RE,SE,OE,YE,PYE,GE,FGE,PGE)1002A(T02) 2006-06-13 18 RESTRICTIONS ON PRODUCT USE 20070701-EN
- The information contained herein is subject to change without notice.
- TOSHIBA is continually working to improve the quality and reliability of its products. Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity an d vulnerability to physical stress. It is the responsibility of the buyer, when utilizing TOSHIBA produc ts, to comply with the standards of safety in making a safe design for the entire system, and to avoid situations in which a malfunction or failure of such TOSHIBA products could cause loss of human life, bodily injury or damage to property. In developing your designs, please ensure that TOSHIBA products are used within specified operating ranges as set forth in the most recent TOSHIB A products specifications. Also, please keep in mind the precautions and conditions set forth in the “Handling Guide for Semiconduct or Devices,” or “TOSHIBA Semiconductor Reliability Handbook” etc.
- The TOSHIBA products listed in this document are in tended for usage in general electronics applications (computer, personal equipment, office equipment, measuring equipment, industrial robotics, domestic appliances, etc.).These TOSHIBA products are neither intended nor warranted for usage in equipment that requires extraordinarily high quality and/or reliability or a malfuncti on or failure of which may cause loss of human life or bodily injury (“Unintended Usage”). Unintended Usage incl ude atomic energy control instruments, airplane or spaceship instruments, transportation instruments, traffic signal instruments, combustion control instruments, medical instruments, all types of safety devices, et c.. Unintended Usage of TOSHIBA products listed in his document shall be made at the customer’s own risk.
- The products described in this document shall not be used or embedded to any downstream products of which manufacture, use and/or sale are prohibited under any applicable laws and regulations.
- The information contained herein is presented only as a guide for the applications of our products. No responsibility is assumed by TOSHIBA for any infringement s of patents or other rights of the third parties which may result from its use. No license is granted by implic ation or otherwise under any patents or other rights of TOSHIBA or the third parties.
- GaAs(Gallium Arsenide) is used in this product. The dus t or vapor is harmful to the human body. Do not break, cut, crush or dissolve chemically.
- Please contact your sales representative for product- by-product details in this document regarding RoHS compatibility. Please use these products in this document in compliance with all applicable laws and regulations that regulate the inclusion or use of controlled substances. Toshiba assumes no liability for damage or losses occurring as a result of noncompliance with applicable laws and regulations.