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NGPLR70ASS

NGPLR70ASS

  • 厂商:

    NICHIA

  • 封装:

  • 描述:

    NGPLR70ASS - WARM WHITE LED - NICHIA CORPORATION

  • 数据手册
  • 价格&库存
NGPLR70ASS 数据手册
No. STSE-CW7111A SPECIFICATIONS FOR NICHIA WARM WHITE LED MODEL : NGPLR70ASS NICHIA CORPORATION -0- Nichia STSE-CW7111A 1.SPECIFICATIONS (1) Absolute Maximum Ratings Item Forward Current Pulse Forward Current Allowable Reverse Current Power Dissipation Operating Temperature Storage Temperature Dice Temperature Soldering Temperature Symbol IF IFP IR PD Topr Tstg Tj Tsld Absolute Maximum Rating 120 250 85 432 -30 ~ + 85 -40 ~ +100 110 265°C for 5sec. (Ta=25°C) Unit mA mA mA mW °C °C °C IFP Conditions : Pulse Width < 10msec. and Duty < 1/10 = = (2) Initial Electrical/Optical Characteristics Item Symbol Condition Forward Voltage VF IF=100[mA] Luminous Flux IF=100[mA] φV x IF=100mA] Chromaticity Coordinate y IF=100[mA] Please refer to CIE 1931 chromaticity diagram. Typ. (3.3) (15) 0.41 0.39 (Ta=25°C) Max. Unit 3.6 V lm - (3) Ranking Item Rank P7 Rank P6 Rank P5 Rank P4 Symbol φV Condition Min. 15.1 12.7 10.7 9.0 Luminous Flux IF=100[mA] (Ta=25°C) Max. Unit 18.0 15.1 lm 12.7 10.7 Luminous Flux Measurement allowance is ± 10%. Color Ranks x y x y 0.3575 0.3612 0.3545 0.3408 0.3897 0.3823 0.3610 0.3850 0.3575 0.3612 0.3988 0.4116 (IF=100mA,Ta=25°C) Rank d1 0.3780 0.3988 0.3970 0.4116 Rank d2 0.3720 0.3897 0.3714 0.3823 Rank e1 0.4162 0.4390 0.4200 0.4310 0.3897 0.3823 0.3822 0.3580 0.4255 0.4000 0.3720 0.3714 0.3667 0.3484 0.4053 0.3907 x y -1- Nichia STSE-CW7111A Rank e2 0.4053 0.4255 0.3907 0.4000 Rank f1 0.4680 0.4970 0.4385 0.4466 Rank f2 0.4519 0.4770 0.4086 0.4137 x y 0.3822 0.3580 0.4255 0.4000 0.4129 0.3725 0.3897 0.3823 0.4390 0.4310 0.4255 0.4000 0.4129 0.3725 0.4770 0.4137 0.4588 0.3838 0.3954 0.3642 0.4519 0.4086 0.4355 0.3785 x y x y Color Coordinates Measurement allowance is ± 0.01. 2.INITIAL OPTICAL/ELECTRICAL CHARACTERISTICS Please refer to figure’s page. 3.OUTLINE DIMENSIONS AND MATERIALS Please refer to figure’s page. Material as follows ; Resin(Mold) : Leadframe : Epoxy Resin (over Diffused + Phosphor) Ag plating Copper Alloy 4.PACKAGING · The LEDs are packed in cardboard boxes after packaging in stick. Please refer to figure’s page. The label on the packing unit shows ; Part Number, Lot Number, Ranking, Quantity · In order to protect the LEDs from mechanical shock, we pack them in cardboard boxes for transportation. · The LEDs may be damaged if the boxes are dropped or receive a strong impact against them, so precautions must be taken to prevent any damage. · The boxes are not water resistant and therefore must be kept away from water and moisture. · When the LEDs are transported, we recommend that you use the same packing method as Nichia. 5.LOT NUMBER The first six digits number shows lot number. The lot number is composed of the following characters; - Year ( 6 for 2006, 7 for 2007 ) - Month ( 1 for Jan., 9 for Sep., A for Oct., - Nichia's Product Number - Ranking by Color Coordinates - Ranking by Luminous Flux B for Nov. ) -2- Nichia STSE-CW7111A 6.RELIABILITY (1) TEST ITEMS AND RESULTS Test Item Resistance to Soldering Heat Solderability Temperature Cycle Moisture Resistance Cyclic Terminal Strength (bending test) Terminal Strength (pull test) High Temperature Storage Temperature Humidity Storage Low Temperature Storage Steady State Operating Life Steady State Operating Life of High Humidity Heat Steady State Operating Life of Low Temperature Electrostatic Discharges JEITA ED-4701 300 304 Standard Test Method JEITA ED-4701 300 302 JEITA ED-4701 300 303 JEITA ED-4701 100 105 JEITA ED-4701 200 203 JEITA ED-4701 400 401 JEITA ED-4701 400 401 JEITA ED-4701 200 201 JEITA ED-4701 100 103 JEITA ED-4701 200 202 Test Conditions Tsld=260 ± 5°C, 5sec. 1.6mm from the base of the stopper (Pre treatment 30°C,70%,168hrs.) Tsld=235 ± 5°C, (using flux) 5sec. Note 1 time Number of Damaged 0/22 1 time over 95% 100 cycles 10 cycles No noticeable damage No noticeable damage 1000hrs. 1000hrs. 1000hrs. 1000 hrs. 500 hrs. 1000 hrs. 3 times Negative/Positive 0/22 0/50 0/50 0/50 0/50 0/50 0/50 0/50 0/50 0/50 0/50 0/22 -40°C ~ 25°C ~ 100°C ~ 25°C 30min. 5min. 30min. 5min. 25°C ~ 65°C ~ -10°C 90%RH 24hrs./1cycle Load 5N (0.5kgf) 0° ~ 90° ~ 0° bend 2 times Load 10N (1kgf) 10 ± 1 sec. Ta=100°C Ta=60°C, RH=90% Ta=-40°C Ta=25°C, IF=120mA Tested with Nichia standard circuit board. 60°C, RH=90%, IF=100mA Tested with Nichia standard circuit board. Ta=-30°C, IF=100mA Tested with Nichia standard circuit board. R=1.5kΩ, C=100pF Test Voltage=2kV Thermal resistance of LED with Nichia standard circuit board : Rja ≒ 125°C/W Nichia standard circuit board : FR4, t=1.6mm, Copper foil, t=0.07mm (2) CRITERIA FOR JUDGING DAMAGE Item Symbol Test Conditions Forward Voltage VF IF=100mA Initial Level Luminous Flux φv IF=100mA Initial Level 0.7 The test is performed after the board is cooled down to the room temperature. Criteria for Judgement Min. Max. 1.1 -3- Nichia STSE-CW7111A 7.CAUTIONS The LEDs are devices which are materialized by combining Blue LEDs and special phosphors. Consequently, the color of the LEDs is changed a little by an operating current. Care should be taken after due consideration when using LEDs. (1) Storage · Storage Conditions Before opening the package : The LEDs should be kept at 30°C or less and 90%RH or less. The LEDs should be used within a year. When storing the LEDs, moisture proof packaging with absorbent material (silica gel) is recommended. After opening the package : The LEDs should be kept at 30°C or less and 70%RH or less. The LEDs should be soldered within 168 hours (7days) after opening the package. If unused LEDs remain, they should be stored in moisture proof packages, such as sealed containers with packages of moisture absorbent material (silica gel). It is also recommended to return the LEDs to the original moisture proof bag and to reseal the moisture proof bag again. · If the moisture absorbent material (silica gel) has faded away or the LEDs have exceeded the storage time, baking treatment should be performed using the following conditions. Baking treatment : more than 24 hours at 85°C · Nichia LED leadframes are silver plated copper alloy. The silver surface may be affected by environments which contain corrosive substances. Please avoid conditions which may cause the LED to corrode, tarnish or discolor. This corrosion or discoloration may cause difficulty during soldering operations. It is recommended that the LEDs be used as soon as possible. · Please avoid rapid transitions in ambient temperature, especially, in high humidity environments where condensation can occur. (2) Static Electricity · Static electricity or surge voltage damages the LEDs. It is recommended that a wrist band or an anti-electrostatic glove be used when handling the LEDs. · All devices, equipment and machinery must be properly grounded. It is recommended that precautions be taken against surge voltage to the equipment that mounts the LEDs. · When inspecting the final products in which LEDs were assembled, it is recommended to check whether the assembled LEDs are damaged by static electricity or not. It is easy to find static-damaged LEDs by a light-on test or a VF test at a lower current (below 1mA is recommended). · Damaged LEDs will show some unusual characteristics such as the forward voltage becomes lower, or the LEDs do not light at the low current. Criteria : (VF > 2.0V at IF=0.5mA) -4- Nichia STSE-CW7111A (3) Soldering Conditions · Nichia LEDs uses a copper alloy lead frame which provides a high thermal conductivity. Thermal stress such as soldering heat may reduce the reliability of the product; particular caution should be used to avoid damage prior to and during soldering. The recommended soldering conditions are listed in the following table. · Solder the LED no closer than 1.6mm from the base of the stopper. · The mechanical stress by clinching will cause degradation of the reliability on the LEDs. It is important to minimize the mechanical stress on the LEDs. It should be confirmed beforehand that it will not cause any problem when using it. · Recommended soldering conditions Pre-Heat Pre-Heat Time Solder Bath Temperature Dipping Time Dipping Position Dip Soldering 120°C Max. 60 seconds Max. 260°C Max. 5 seconds Max. No lower than 1.6 mm from the base of the stopper. Hand Soldering 350°C Max. Temperature 3 seconds Max. Soldering Time No closer than 1.6 mm from the Position base of the stopper. · Although the recommended soldering conditions are specified in the above table, dip or hand soldering at the lowest possible temperature is desirable for the LEDs. · A rapid-rate process is not recommended for cooling the LEDs down from the peak temperature. · Dip soldering should not be done more than one time. · Hand soldering should not be done more than one time. · Do not apply any stress to the lead particularly when heated. · The LEDs must not be repositioned after soldering. · After soldering the LEDs, the epoxy bulb should be protected from mechanical shock or vibration until the LEDs return to room temperature. · Direct soldering onto a PC board should be avoided. Mechanical stress to the resin may be caused from warping of the PC board or from the clinching and cutting of the leadframes. When it is absolutely necessary, the LEDs may be mounted in this fashion but the User will assume responsibility for any problems. Direct soldering should only be done after testing has confirmed that no damage, such as wire bond failure or resin deterioration, will occur. Nichia’s LEDs should not be soldered directly to double sided PC boards because the heat will deteriorate the epoxy resin. · When it is necessary to clamp the LEDs to prevent soldering failure, it is important to minimize the mechanical stress on the LEDs. · Cut the LED leadframes at room temperature. Cutting the leadframes at high temperatures may cause failure of the LEDs. (4) Cleaning · It is recommended that isopropyl alcohol be used as a solvent for cleaning the LEDs. When using other solvents, it should be confirmed beforehand whether the solvents will dissolve the resin or not. Freon solvents should not be used to clean the LEDs because of worldwide regulations. · Do not clean the LEDs by the ultrasonic. When it is absolutely necessary, the influence of ultrasonic cleaning on the LEDs depends on factors such as ultrasonic power and the assembled condition. Before cleaning, a pre-test should be done to confirm whether any damage to the LEDs will occur. -5- Nichia STSE-CW7111A (5) Heat Generation · Thermal design of the end product is of paramount importance. Please consider the heat generation of the LED when making the system design. The coefficient of temperature increase per input electric power is affected by the thermal resistance of the circuit board and density of LED placement on the board, as well as other components. It is necessary to avoid intense heat generation and operate within the maximum ratings given in this specification. · Please determine the operating current with consideration of the ambient temperature local to the LED and refer to the plot of Ambient temperature vs. Allowable Forward Current on CHARACTERISTICS in this specifications. Please also take measures to remove heat from the area near the LED to improve the operational characteristics of the LED. · The equation 1 indicates correlation between Tj and Ta, and the equation 2 indicates correlation between Tj and Ts. Tj=Ta + Rja W 1 Tj=Ts + Rjs W 2 Tj = Dice Temperature : °C, Ta = Ambient Temperature : °C, Ts = Solder Temperature (Cathode Side) : °C, Rja = Heat resistance from Dice to Ambient temperature : °C /W, Rjs = Heat resistance from Dice to Ts measuring point ≒ 60°C /W, W = Inputting Power (IF VF) : W (6) Safety Guideline for Human Eyes · In 1993, the International Electric Committee (IEC) issued a standard concerning laser product safety (IEC 825-1). Since then, this standard has been applied for diffused light sources (LEDs) as well as lasers. In 1998 IEC 60825-1 Edition 1.1 evaluated the magnitude of the light source. In 2001 IEC 60825-1 Amendment 2 converted the laser class into 7 classes for end products. Components are excluded from this system. Products which contain visible LEDs are now classified as class 1. Products containing UV LEDs are class 1M. Products containing LEDs can be classified as class 2 in cases where viewing angles are narrow, optical manipulation intensifies the light, and/or the energy emitted is high. For these systems it is recommended to avoid long term exposure. It is also recommended to follow the IEC regulations regarding safety and labeling of products. (7) Others · NGPLR70AS complies with RoHS Directive. · Flashing lights have been known to cause discomfort in people; you can prevent this by taking precautions during use. Also, people should be cautious when using equipment that has had LEDs incorporated into it. · The LEDs described in this brochure are intended to be used for ordinary electronic equipment (such as office equipment, communications equipment, measurement instruments and household appliances). Consult Nichia’s sales staff in advance for information on the applications in which exceptional quality and reliability are required, particularly when the failure or malfunction of the LEDs may directly jeopardize life or health (such as for airplanes, aerospace, submersible repeaters, nuclear reactor control systems, automobiles, traffic control equipment, life support systems and safety devices). · User shall not reverse engineer by disassembling or analysis of the LEDs without having prior written consent from Nichia. When defective LEDs are found, the User shall inform Nichia directly before disassembling or analysis. · The formal specifications must be exchanged and signed by both parties before large volume purchase begins. · The appearance and specifications of the product may be modified for improvement without notice. -6- Nichia STSE-CW7111A ICI Chromaticity Diagram 0.9 520 530 0.8 540 510 0.7 550 560 0.6 570 500 0.5 e1 f1 580 590 600 e2 d2 0.3 490 f2 610 620 630 y 0.4 d1 0.2 480 0.1 470 460 0 0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 x Color Coordinates Measurement allowance is ± 0.01. -7- Forward Voltage vs. Forward Current Ta=25°C 250 100 Relative Luminous Flux (a.u.) 1000 Forward Current IFP (mA) Forward Current vs. Relative Luminous Flux Allowable Forward Current IFP (mA) 2.5 Ta=25°C 2.0 1.5 1.0 0.5 0 0 50 100 150 200 250 300 Forward Current IFP (mA) Duty Ratio vs. Allowable Forward Current 500 400 Ta=25°C 250 200 10 120 100 1 5 10 20 50 100 Duty Ratio (%) 1 2.0 2.5 3.0 3.5 4.0 4.5 Forward Voltage VF (V) Ambient Temperature vs. Forward Voltage Relative Luminous Flux (a.u.) Ambient Temperature vs. Relative Luminous Flux 2.0 IFP=100mA 1.0 Allowable Forward Current IF (mA) Ambient Temperature vs. Allowable Forward Current 200 Thermal resistance Rja=125°C/W Forward Voltage VF (V) -8- 4.6 4.2 3.8 3.4 3.0 2.6 2.2 1.8 -40 -20 0 20 40 60 80 100 Ambient Temperature Ta (°C) IFP=100mA 150 120 100 55 0.5 0.2 -40 -20 0 20 40 60 80 100 Ambient Temperature Ta (°C) 0 0 20 40 60 80 100 Ambient Temperature Ta (°C) Nichia STSE-CW7111A Model NGPLR70AS NICHIA CORPORATION Title No. CHARACTERISTICS 070614766831 Forward Current vs. Chromaticity Coordinate Relative Emission Intensity (a.u.) Spectrum 1.2 1.0 0.8 0.6 0.4 0.2 0 400 500 600 700 Wavelength λ (nm) 800 Ta=25°C IFP=100mA 0.41 Ta=25°C 0.40 0.39 0.38 0.37 0.38 250mA 120mA 100mA 50mA 1mA y 0.39 0.40 0.41 0.42 x Ambient Temperature vs. Chromaticity Coordinate Relative Illuminance (a.u.) Directivity 1.0 0° Ta=25°C IFP=100mA 10° 20° 30° 40° 50° 0.5 60° 70° 80° 0 90° 60° 30° Radiation Angle 0° 0.5 90° 1.0 y -9- 0.41 IFP=100mA 0.40 25°C -30°C 0°C 0.39 85°C 50°C 0.38 0.37 0.38 0.39 0.40 0.41 0.42 x Nichia STSE-CW7111A Model NGPLR70AS NICHIA CORPORATION Title No. CHARACTERISTICS 070614766841 Internal Circuit 3 A 2 A Protection device 7.62 ± 0.5 3 7.62 ± 0.5 φ3 2 7.5 ± 0.5 4.4 0.5 4 K 1 K 4 R 0.69 1 (C 1.25) 1 Pin Mark (5°) 1.1 0.76 ± 0.1 1.55 Stopper 2.5 ± 0.5 1.4MAX. 0.4 ± 0.1 0.4 0.5 5.08 ± 0.3 ITEM RESIN LEAD FRAME MATERIALS Epoxy Resin (over Diffused + Phosphor) Ag Plating Copper Alloy Model 0.4 5.08 -10- Nichia STSE-CW7111A Please note that the bare copper alloy showing at the cut end of the lead frame may be corroded under certain conditions. LEDs have some sharp edges and points, particularly lead frames. Please handle with care so as to avoid injuries. NGPLR70AS has a protection device built in as a protection circuit against static electricity. NGPLR70AS Unit mm 5/1 Scale Allow ±0.2 NICHIA CORPORATION Title No. OUTLINE DIMENSIONS 070618767011 Cross Sectional image of stick 5.4 11.8 5.85 9 1 t = 0.6 ± 0.1mm 2 Warp : 1mm Max. 3 9.6 -11- Whole image of stick 485 ± 1 Cap NICHIA >PC< CAUTION TO ELECTROSTATIC DAMAGE 静電気に注意 A K 60pcs / stick Nichia STSE-CW7111A Model NxPxR70xSS Unit mm Scale Allow ±0.2 NICHIA CORPORATION Title No. STICK DIMENSIONS 061117436073 Nichia STSE-CW7111A The stick and moisture absorbent material are put in the moisture proof foil bag and then heat sealed. Stick Moisture absorbent material Moisture proof foil bag Label NICHIA XXXX LED TYPE LOT QTY NxPxR70xSS xxxxxxPCS RoHS Seal NICHIA CORPORATION 491 OKA, KAMINAKA, ANAN, TOKUSHIMA, JAPAN Label NICHIA XXXX LED TYPE RANK QTY NxPxR70xSS PCS RoHS NICHIA CORPORATION 491 OKA, KAMINAKA, ANAN, TOKUSHIMA, JAPAN Empty space in the box is filled with cushion material. Packing unit Moisture proof foil bag Cardboard box Cardboard box M Cardboard box 1/2L Cardboard box L Stick/bag 10 stick Max. Dimensions (mm) 590 277 120 4t 613 298 268 7t 613 298 518 7t Quantity/bag (pcs) 600 MAX. Stick/box 100 stick MAX. 200 stick MAX. 400 stick MAX. Quantity/box (pcs) 6,000 MAX. 12,000 MAX. 24,000 MAX. Model NxPxR70xSS NICHIA CORPORATION Title No. PACKING 070601436085 -12-
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