NVSW519AT NICHIA | Alldatasheet
Document overview
- Manufacturer or author: Provided By alldatasheet.com(free datasheet download site)
- PDF pages: 44
Technical content
NICHIA STS-DA1-6102D <Cat.No.210816> NICHIA CORPORATION SPECIFICATIONS FOR WHITE LED PART NO. NVSW519AT
- Pb-free Reflow Soldering Application
- ESD Withstand Voltage (HBM) Class 3B
- RoHS Compliant
NICHIA STS-DA1-6102D <Cat.No.210816> SPECIFICATIONS (1) Absolute Maximum Ratings Item Symbol Absolute Maximum Rating Unit Forward Current IF 2200 mA Pulse Forward Current IFP 2400 mA ESD Withstand Voltage (HBM) VESD 8 kV Allowable Reverse Current IR 85 mA Power Dissipation PD 7.04 W Operating Temperature Topr -40~105 °C Storage Temperature Tstg -40~105 °C Junction Temperature TJ 150 °C * Absolute Maximum Ratings at TJ=25°C. * IFP conditions with pulse width ≤10ms and duty cycle ≤10%. * For IF and IFP, see the "DERATING CHARACTERISTICS" of this specification. * HBM ESD Component Classification Level of the LEDs: Class 3B For more details, see ANSI/ESDA/JEDEC JS-001.
NICHIA STS-DA1-6102D <Cat.No.210816> (2) Initial Electrical/Optical Characteristics Item Symbol Condition Typ Max Unit Forward Voltage VF IF=1400mA 3.03 - V IF=1050mA 2.97 - R70 Luminous Flux (Chromaticity Coordinate1) Φv IF=1400mA 667 - lm IF=1050mA 517 - Color Rendering Index (Chromaticity Coordinate1) Ra IF=1400mA 73 - - Chromaticity Coordinate1 x IF=1400mA 0.3818 - y IF=1400mA 0.3797 - R8000 Luminous Flux (Chromaticity Coordinate2) Φv IF=1400mA 581 - lm IF=1050mA 449 - Color Rendering Index (Chromaticity Coordinate2) Ra IF=1400mA 83 - - R9080 Luminous Flux (Chromaticity Coordinate2) Φv IF=1400mA 407 - lm IF=1050mA 315 - Color Rendering Index (Chromaticity Coordinate2) Ra IF=1400mA 93 - - Chromaticity Coordinate2 x IF=1400mA 0.4338 - y IF=1400mA 0.4030 - R70 Luminous Flux (Chromaticity Coordinate3) Φv IF=1400mA 680 - lm IF=1050mA 527 - Color Rendering Index (Chromaticity Coordinate3) Ra IF=1400mA 73 - - R8000 Luminous Flux (Chromaticity Coordinate3) Φv IF=1400mA 615 - lm IF=1050mA 474 - Color Rendering Index (Chromaticity Coordinate3) Ra IF=1400mA 83 - - Chromaticity Coordinate3 x IF=1400mA 0.3447 - y IF=1400mA 0.3553 - R9080 Luminous Flux (Chromaticity Coordinate4) Φv IF=1400mA 480 - lm IF=1050mA 371 - Color Rendering Index (Chromaticity Coordinate4) Ra IF=1400mA 93 - - Chromaticity Coordinate4 x IF=1400mA 0.3287 - y IF=1400mA 0.3417 - Thermal Resistance RθJS - 2 3 °C/W * Characteristics at TJ=25°C and measured in pulse mode. * Optical Characteristics as per CIE 127:2007 standard. * Chromaticity Coordinates as per CIE 1931 Chromaticity Chart. * RθJS is the thermal resistance from the junction to the TS measurement point. * RθJS is measured using the Dynamic Mode detailed in JESD51-1.
NICHIA STS-DA1-6102D <Cat.No.210816> RANKS Item Rank Condition Min Max Unit Forward Voltage IF=1400mA 3.0 3.2 V L5 2.8 3.0 Luminous Flux M700 IF=1400mA 700 750 lm M650 650 700 M600 600 650 M550 550 600 M500 500 550 M450 450 500 M400 400 450 M350 350 400 M300 300 350 Color Rendering Index R70 Ra IF=1400mA 70 - R8000 Ra 80 - R9 >0 - R9080 Ra 90 - R9 80 - Color Ranks(IF=1400mA) The color ranks have chromaticity ranges within 3-step MacAdam ellipse. Rank sm253 Rank sm273 Rank sm303 Rank sm353 Rank sm403 Rank sm453 Color Temperature (Unit: K) TCP 2500 2700 3000 3500 4000 4500 Center Point Rank sm503 Rank sm573 Rank sm653 Color Temperature (Unit: K) TCP 5000 5700 6500 Center Point x 0.3447 0.3287 0.3123 y 0.3553 0.3417 0.3282 Minor Axis a 0.003555 0.003087 0.002709 Major Axis b 0.008418 0.007809 0.006561 Ellipse Rotation Angle Φ -31.78 -31.56 -32.35 The color ranks have chromaticity ranges within 5-step MacAdam ellipse. Rank sm2550a Rank sm2550b Rank sm2550c Rank sm2550d Rank sm2550e Rank sm2550f Color Temperature (Unit: K) TCP 2500 Center Point x 0.4806 y 0.4141 Minor Axis a 0.006715 Major Axis b 0.012525 Ellipse Rotation Angle Φ -37.58
NICHIA STS-DA1-6102D <Cat.No.210816> Rank sm2750a Rank sm2750b Rank sm2750c Rank sm2750d Rank sm2750e Rank sm2750f Color Temperature (Unit: K) TCP 2700 Center Point x 0.4578 y 0.4101 Minor Axis a 0.006760 Major Axis b 0.013120 Ellipse Rotation Angle Φ -36.05 Rank sm3050a Rank sm3050b Rank sm3050c Rank sm3050d Rank sm3050e Rank sm3050f Color Temperature (Unit: K) TCP 3000 Center Point x 0.4338 y 0.4030 Minor Axis a 0.006845 Major Axis b 0.013985 Ellipse Rotation Angle Φ -36.00 Rank sm3550a Rank sm3550b Rank sm3550c Rank sm3550d Rank sm3550e Rank sm3550f Color Temperature (Unit: K) TCP 3500 Center Point x 0.4073 y 0.3917 Minor Axis a 0.006830 Major Axis b 0.014660 Ellipse Rotation Angle Φ -35.47 Rank sm4050a Rank sm4050b Rank sm4050c Rank sm4050d Rank sm4050e Rank sm4050f Color Temperature (Unit: K) TCP 4000 Center Point x 0.3818 y 0.3797 Minor Axis a 0.006785 Major Axis b 0.015470 Ellipse Rotation Angle Φ -35.95 Rank sm4550a Rank sm4550b Rank sm4550c Rank sm4550d Rank sm4550e Rank sm4550f Color Temperature (Unit: K) TCP 4500 Center Point x 0.3611 y 0.3658 Minor Axis a 0.006420 Major Axis b 0.015015 Ellipse Rotation Angle Φ -34.33
NICHIA STS-DA1-6102D <Cat.No.210816> Rank sm5050a Rank sm5050b Rank sm5050c Rank sm5050d Rank sm5050e Rank sm5050f Color Temperature (Unit: K) TCP 5000 Center Point x 0.3447 y 0.3553 Minor Axis a 0.005925 Major Axis b 0.014030 Ellipse Rotation Angle Φ -31.78 Rank sm5750a Rank sm5750b Rank sm5750c Rank sm5750d Rank sm5750e Rank sm5750f Color Temperature (Unit: K) TCP 5700 Center Point x 0.3287 y 0.3417 Minor Axis a 0.005145 Major Axis b 0.013015 Ellipse Rotation Angle Φ -31.56 Rank sm6550a Rank sm6550b Rank sm6550c Rank sm6550d Rank sm6550e Rank sm6550f Color Temperature (Unit: K) TCP 6500 Center Point x 0.3123 y 0.3282 Minor Axis a 0.004515 Major Axis b 0.010935 Ellipse Rotation Angle Φ -32.35 The color ranks have chromaticity ranges within 7-step MacAdam ellipse. Rank sm5770a Rank sm5770b Rank sm5770c Rank sm5770d Rank sm5770e Rank sm5770f Color Temperature (Unit: K) TCP 5700 Center Point x 0.3287 y 0.3417 Minor Axis a 0.007203 Major Axis b 0.018221 Ellipse Rotation Angle Φ -31.56
NICHIA STS-DA1-6102D <Cat.No.210816> Rank sm6570a Rank sm6570b Rank sm6570c Rank sm6570d Rank sm6570e Rank sm6570f Color Temperature (Unit: K) TCP 6500 Center Point x 0.3123 y 0.3282 Minor Axis a 0.006321 Major Axis b 0.015309 Ellipse Rotation Angle Φ -32.35 * Ranking at TJ=25°C and measured in pulse mode. * Forward Voltage Tolerance: ±0.05V * Luminous Flux Tolerance: ±7% * Color Rendering Index Ra Tolerance: ±2 * Color Rendering Index R9 Tolerance: ±6.5 * Chromaticity Coordinate Tolerance: ±0.005 * LEDs from the above ranks will be shipped. The rank combination ratio per shipment will be decided by Nichia. Definition of the MacAdam ellipse ranks: 60° a b A perfect circle is divided into 60 degree-sections and then transformed into the MacAdam ellipse that is presented on the chromaticity diagram in this document.
NICHIA STS-DA1-6102D <Cat.No.210816> Luminous Flux Ranks by Color Rank, Color Rendering Index Rank Ranking by Luminous Flux Ranking by Color Coordinates, Color Rendering Index M300 M350 M400 M450 M500 M550 M600 M650 M700 sm253,sm2550a,sm2550b,sm2550c, sm2550d,sm2550e,sm2550f R70 sm273,sm2750a,sm2750b,sm2750c, sm2750d,sm2750e,sm2750f R70 R8000 R9080 sm303,sm3050a,sm3050b,sm3050c, sm3050d,sm3050e,sm3050f R70 R8000 R9080 sm353,sm3550a,sm3550b,sm3550c, sm3550d,sm3550e,sm3550f R70 R8000 R9080 sm403,sm4050a,sm4050b,sm4050c, sm4050d,sm4050e,sm4050f R70 R8000 R9080 sm453,sm4550a,sm4550b,sm4550c, sm4550d,sm4550e,sm4550f R70 R8000 R9080
NICHIA STS-DA1-6102D <Cat.No.210816> Ranking by Luminous Flux Ranking by Color Coordinates, Color Rendering Index M300 M350 M400 M450 M500 M550 M600 M650 M700 sm503,sm5050a,sm5050b,sm5050c, sm5050d,sm5050e,sm5050f R70 R8000 R9080 sm573,sm5750a,sm5750b,sm5750c, sm5750d,sm5750e,sm5750f R70 R8000 R9080 sm5770a,sm5770b,sm5770c,sm5770d, sm5770e,sm5770f R70 sm653,sm6550a,sm6550b,sm6550c, sm6550d,sm6550e,sm6550f R70 R8000 sm6570a,sm6570b,sm6570c,sm6570d, sm6570e,sm6570f R70
NICHIA STS-DA1-6102D <Cat.No.210816> CHROMATICITY DIAGRAM 0.36 0.38 0.40 0.42 0.44 0.46 y x 黒体放射軌跡 Blackbody Locus sm2550c sm2550f sm253 sm2550d sm2550e sm2550a sm2550b 2500K2700K sm2750c sm2750f sm273 sm2750d sm2750e sm2750a sm2750b
NICHIA STS-DA1-6102D <Cat.No.210816> CHROMATICITY DIAGRAM 0.32 0.34 0.36 0.38 0.40 0.42 0.44 y x 黒体放射軌跡 Blackbody Locus sm3050a sm3050b sm3050c sm3550c sm4050a sm4050b sm4050c sm4550c sm3050d sm303 sm3050e sm4550f sm4550e sm3550f sm3550a sm3550b sm353 sm3550e sm3550d sm4050f sm4050e sm4050d sm403 sm4550b sm4550a sm4550d sm453 sm3050f 4500K 4000K 3500K 3000K
NICHIA STS-DA1-6102D <Cat.No.210816> CHROMATICITY DIAGRAM 0.30 0.32 0.34 0.36 0.38 0.40 y x 黒体放射軌跡 Blackbody Locus sm5050c sm5750a sm5050f sm5050a sm503 sm5050e sm5050d sm5750f sm5750e sm5750d sm573 sm5750b sm5750c sm5050b sm5770c sm5770b sm5770a sm5770d sm5770e sm5770f 5000K5700K
NICHIA STS-DA1-6102D <Cat.No.210816> CHROMATICITY DIAGRAM 0.28 0.30 0.32 0.34 0.36 0.38 y x 黒体放射軌跡 Blackbody Locus sm6550c sm6550f sm6550e sm6550b sm6550a sm6550d sm653 6500K sm6570c sm6570b sm6570a sm6570d sm6570e sm6570f
NICHIA STS-DA1-6102D <Cat.No.210816> OUTLINE DIMENSIONS (単位 Unit: mm) This product complies with RoHS Directive. 本製品はRoHS指令に適合しております。* (単位 Unit: mm, 公差 Tolerance: ±0.2) Part No. NVSW519A K A 保護素子 Protection Device ダイヒートシンク Die Heat Sink 0.77 0.4 2.35 0.450.51.3 3.2 2.4 3.2 AnodeCathode Die Heat Sink ダイヒートシンク 3.5 3.5 Cathode Mark 光学的中心位置 Location of the optical center 硬質ガラス+シリコーン樹脂(蛍光体入り) Hard Glass and Silicone Resin(with phosphor) パッケージ材質 Package Materials 封止樹脂材質 Encapsulating Resin Materials 電極材質 Electrodes Materials 蛍光体板材質 Phosphor sheet Materials 項目 Item 内容 Description セラミックス Ceramics 金メッキ Au-plated シリコーン樹脂(拡散剤入り) Silicone Resin(with diffuser) レンズ材質 Lens Materials シリコーン樹脂 Silicone Resin ダイヒートシンク材質 Die Heat Sink Materials 金メッキ Au-plated 質量 Weight 0.037g(TYP) No. STS-DA7-16974A
NICHIA STS-DA1-6102D <Cat.No.210816> SOLDERING
- Recommended Reflow Soldering Condition(Lead-free Solder) 120sec Max Pre-heat 180 to 200°C 260°CMax 10sec Max 60sec Max Above 220°C 1 to 5°C per sec
- Recommended Soldering Pad Pattern (単位 Unit: mm)0.5 0.4 0.5 3.3 4.1 1.2 1.3 * This LED is designed to be reflow soldered to a PCB. If dip soldered or hand soldered, Nichia will not guarantee its reliability. * Reflow soldering must not be performed more than twice. * When cooling the LEDs from the peak temperature a gradual cooling slope is recommended; do not cool the LEDs rapidly. * During reflow soldering, the heat and atmosphere in the reflow oven may cause the optical characteristics to degrade. In particular, reflow soldering performed with an air atmosphere may have a gr eater negative effect on the optical ch aracteristics than if a nitrogen atmosphere is used; Nichia recommends using a nitrogen reflow atmosphere. * This LED uses a silicone resin for the lens and internal pre-coating resin; the silicone resin is soft. If pressure is applied to the lens, it may cause the lens to be damaged, chipped, and/or delaminated. If the resin is damaged, chipped, delaminated and/or deformed, it may cause the internal connect ion to fail causing a c atastrophic failure (i.e. the LED not to illuminate) and/or reliability issues (e.g. the LED to corrode and/or to become dimmer, the color/directivity to change, etc.). Ensure that pressure is not applied to the lens. If an automatic pick and place machine is used for the LEDs, use a pick up nozzle that does not affect the lens. Recommended conditions: Using a nozzle specifically designed for the LEDs is recommended (See the nozzle drawing below). * Ensure that the nozzle does not come in contact with the lens when it picks up an LED. If this occurs, it may cause internal disconnection causing the LED not to illuminate. (単位 Unit: mm) 0.5 A部拡大 Expansion of A 0.15 1.9 4.5 0.4 AΦ3.5
NICHIA STS-DA1-6102D <Cat.No.210816> * Once the LEDs have been soldered to a PCB, it should not be repaired/reworked. If it must be done, using a hot plate is strongly recommended. Sufficient verification should be performed prior to use to ensure that the repair/rework does not cause the LED characteristics to deteriorate. * The Die Heat Sink should be soldered to customer PCB. If it is difficult or impossible, use high heat-dissipating adhesive. * When soldering, do not apply stress to the LED while the LED is hot. * The soldering pad pattern above is a general recommendation for LEDs to be mounted without issues; if a high degree of precision is required for the chosen application (i.e. high-density mounting), ensure that the soldering pad pattern is optimized. * When flux is used, it should be a halogen free flux. Ensure that the manufacturing process is not designed in a manner where the flux will come in contact with the LEDs. * Ensure that there are no issues with the type and amount of solder that is being used. * This LED has all the electrodes on the backside; solder connections will not be able to be seen nor confirmed by a normal visual inspection. Ensure that sufficient verification is performed on the solderin g conditions prior to use to ensure that the re are no issues.
NICHIA STS-DA1-6102D <Cat.No.210816> TAPE AND REEL DIMENSIONS Part No. Nxxx519x (単位 Unit: mm) テーピング部 Tape 1.75±0.1 8±0.1 2±0.054±0.1 5.5±0.05 Φ1.5+0.1 12+0.3 * 数量は1リールにつき 3000個入りです。 Reel Size: 3000pcs * 実装作業の中断などでエンボスキャリアテープをリールに巻き取る場合、 エンボスキャリアテープを強く(10N以上)締めないで下さい。 LEDがカバーテープに貼り付く可能性があります。 When the tape is rewound due to work interruptions, no more than 10N should be applied to the embossed carrier tape. The LEDs may stick to the top cover tape. * JIS C 0806電子部品テーピングに準拠しています。 The tape packing method complies with JIS C 0806 (Packaging of Electronic Components on Continuous Tapes). 3.7±0.1 3.7±0.1 2.55±0.1 0.35±0.05 330±2 ラベル Label 13.5±1 17.5±1 Φ100±1 Cathode Mark -0Φ1.5+0.2 (0.08 クロスバー凹部) (0.08 Crossbar Recess) -0.1 No. STS-DA7-16975 トレーラ部/リーダ部 Trailer and Leader トップカバーテープ 引き出し方向 Embossed Carrier Tape エンボスキャリアテープ Top Cover Tape Feed Direction リーダ部最小400mm Leader without Top Cover Tape 400mm MIN トレーラ部最小160mm(空部) Trailer 160mm MIN(Empty Pockets) LED装着部 Loaded Pockets 引き出し部最小100mm(空部) Leader with Top Cover Tape 100mm MIN(Empty Pocket) リール部 Reel
NICHIA STS-DA1-6102D <Cat.No.210816> PACKAGING - TAPE & REEL STS-DA7-4989C Part No. Nxxxxxxx Label ラベル Label ラベル No. RoHS Nxxxxxxx XXXX LED RRR PCS RANK: QTY.: NICHIA CORPORATION
491 OKA, KAMINAKA, ANAN , TOKUSH IMA, J APAN
PART NO.: RoHS Nxxxxxxx XXXX LED NICHIA CORPORATION 491 OKA, KAMINAKA, ANAN, TO KUSHIMA, JAPAN LOT: QTY.: YMxxxx-RRR PCS PART NO.: Reels are shipped with desiccants in heat-sealed moisture-proof bags. シリカゲルとともにリールをアルミ防湿袋に入れ、熱シールにより封をします。 Moisture-proof Bag アルミ防湿袋 熱シール Seal Reel リールDesiccants シリカゲル Nichia LED Moisture-proof bags are packed in cardboard boxes with corrugated partitions. アルミ防湿袋を並べて入れ、ダンボールで仕切ります。 客先型名が設定されていない場合は空白です。 If not provided, it will not be indicated on the label. ******* is the customer part number. For details, see "LOT NUMBERING CODE" in this document. 参照して下さい。 ロット表記方法についてはロット番号の項を The label does not have the RANK field for un-ranked products. ランク分けがない場合はランク表記はありません。 Products shipped on tape and reel are packed in a moisture-proof bag. They are shipped in cardboard boxes to protect them from external forces during transportation. 本製品はテーピングしたのち、輸送の衝撃から保護するためダンボールで梱包します。 Do not drop or expose the box to external forces as it may damage the products. 取り扱いに際して、落下させたり、強い衝撃を与えたりしますと、製品を損傷させる原因になりますので注意して下さい。 Do not expose to water. The box is not water-resistant. ダンボールには防水加工がされておりませんので、梱包箱が水に濡れないよう注意して下さい。 Using the original package material or equivalent in transit is recommended. 輸送、運搬に際して弊社よりの梱包状態あるいは同等の梱包を行って下さい。
NICHIA STS-DA1-6102D <Cat.No.210816> LOT NUMBERING CODE Lot Number is presented by using the following alphanumeric code. YMxxxx - RRR Y - Year Year Y 2020 K 2021 L 2022 M 2023 N 2024 O 2025 P M - Month Month M Month M 1 1 7 7 2 2 8 8 3 3 9 9 4 4 10 A 5 5 11 B 6 6 12 C xxxx-Nichia's Product Number RRR-Ranking by Color Coordinates, Ranking by Luminous Flux, Ranking by Forward Voltage, Ranking by Color Rendering Index
NICHIA STS-DA1-6102D <Cat.No.210816> DERATING CHARACTERISTICS Part No. NVSW519A No. STS-DA7-16976C 1000 2000 3000 4000 5000 0 20 40 60 80 100 120 Derating1 (105, 1440) (105, 960) (105, 720) 1000 2000 3000 4000 5000 0 20 40 60 80 100 120 Derating2 (105, 2200) 500 1000 1500 2000 2500 3000 0 20 40 60 80 100 Duty 2200 2400 Allowable Forward Current(mA) 許容順電流 Solder Temperature(Cathode Side) vs Allowable Forward Current はんだ接合部温度(カソード側)-許容順電流特性 Ambient Temperature vs Allowable Forward Current 周囲温度-許容順電流特性 Allowable Forward Current(mA) 許容順電流 Allowable Forward Current(mA) 許容順電流 Solder Temperature(Cathode Side)(°C) はんだ接合部温度(カソード側) Ambient Temperature(°C) 周囲温度 Duty Ratio(%) デューティー比 Duty Ratio vs Allowable Forward Current デューティー比-許容順電流特性 TJ =25°C 10°C/W 15°C/W θJAR = θJAR = θJAR = 20°C/W
NICHIA STS-DA1-6102D <Cat.No.210816> OPTICAL CHARACTERISTICS Part No. NVSW519A No. STS-DA7-17150 0.0 0.2 0.4 0.6 0.8 1.0 350 400 450 500 550 600 650 700 750 800 Spectrum Relative Illuminance(a.u.) 相対照度 90° 80° 70° 60° 50° 40° 30° 20° 10°0°-10° -20° -30° -40° -50° -60° -70° -80° -90° Directivity1 Spectrum 発光スペクトル Wavelength(nm) 波長 Directivity 指向特性 Radiation Angle 放射角度 * The graphs above show the characteristics for R70 LEDs of this product. 本特性は演色性ランクR70に対応しています。 All characteristics shown are for reference only and are not guaranteed.* 本特性は参考です。 1400mAIFP = TJ =25°C 1400mAIFP = TJ =25°C Tcp =4000K (Normalized to peak spectral intensity) Relative Emission Intensity(a.u.) 相対発光強度(最大強度で正規化) The following graphs show the characteristics measured in pulse mode.* パルス駆動により測定しています。
NICHIA STS-DA1-6102D <Cat.No.210816> OPTICAL CHARACTERISTICS Part No. NVSW519A No. STS-DA7-17151 0.0 0.2 0.4 0.6 0.8 1.0 350 400 450 500 550 600 650 700 750 800 Spectrum Relative Illuminance(a.u.) 相対照度 90° 80° 70° 60° 50° 40° 30° 20° 10°0°-10° -20° -30° -40° -50° -60° -70° -80° -90° Directivity1 Spectrum 発光スペクトル Wavelength(nm) 波長 Directivity 指向特性 Radiation Angle 放射角度 * The graphs above show the characteristics for R8000 LEDs of this product. 本特性は演色性ランクR8000に対応しています。 All characteristics shown are for reference only and are not guaranteed.* 本特性は参考です。 1400mAIFP = TJ =25°C 1400mAIFP = TJ =25°C Tcp =3000K (Normalized to peak spectral intensity) Relative Emission Intensity(a.u.) 相対発光強度(最大強度で正規化) The following graphs show the characteristics measured in pulse mode.* パルス駆動により測定しています。
NICHIA STS-DA1-6102D <Cat.No.210816> OPTICAL CHARACTERISTICS Part No. NVSW519A No. STS-DA7-18129 0.0 0.2 0.4 0.6 0.8 1.0 350 400 450 500 550 600 650 700 750 800 Spectrum Relative Illuminance(a.u.) 相対照度 90° 80° 70° 60° 50° 40° 30° 20° 10°0°-10° -20° -30° -40° -50° -60° -70° -80° -90° Directivity1 Spectrum 発光スペクトル Wavelength(nm) 波長 Directivity 指向特性 Radiation Angle 放射角度 * The graphs above show the characteristics for R9080 LEDs of this product. 本特性は演色性ランクR9080に対応しています。 All characteristics shown are for reference only and are not guaranteed.* 本特性は参考です。 1400mAIFP = TJ =25°C 1400mAIFP = TJ =25°C Tcp =3000K (Normalized to peak spectral intensity) Relative Emission Intensity(a.u.) 相対発光強度(最大強度で正規化) The following graphs show the characteristics measured in pulse mode.* パルス駆動により測定しています。
NICHIA STS-DA1-6102D <Cat.No.210816> OPTICAL CHARACTERISTICS Part No. NVSW519A No. STS-DA7-17152 0.0 0.2 0.4 0.6 0.8 1.0 350 400 450 500 550 600 650 700 750 800 Spectrum Relative Illuminance(a.u.) 相対照度 90° 80° 70° 60° 50° 40° 30° 20° 10°0°-10° -20° -30° -40° -50° -60° -70° -80° -90° Directivity1 Spectrum 発光スペクトル Wavelength(nm) 波長 Directivity 指向特性 Radiation Angle 放射角度 * The graphs above show the characteristics for R70 LEDs of this product. 本特性は演色性ランクR70に対応しています。 All characteristics shown are for reference only and are not guaranteed.* 本特性は参考です。 1400mAIFP = TJ =25°C 1400mAIFP = TJ =25°C Tcp =5000K (Normalized to peak spectral intensity) Relative Emission Intensity(a.u.) 相対発光強度(最大強度で正規化) The following graphs show the characteristics measured in pulse mode.* パルス駆動により測定しています。
NICHIA STS-DA1-6102D <Cat.No.210816> OPTICAL CHARACTERISTICS Part No. NVSW519A No. STS-DA7-16977A 0.0 0.2 0.4 0.6 0.8 1.0 350 400 450 500 550 600 650 700 750 800 Spectrum Relative Illuminance(a.u.) 相対照度 90° 80° 70° 60° 50° 40° 30° 20° 10°0°-10° -20° -30° -40° -50° -60° -70° -80° -90° Directivity1 Spectrum 発光スペクトル Wavelength(nm) 波長 Directivity 指向特性 Radiation Angle 放射角度 * The graphs above show the characteristics for R8000 LEDs of this product. 本特性は演色性ランクR8000に対応しています。 All characteristics shown are for reference only and are not guaranteed.* 本特性は参考です。 1400mAIFP = TJ =25°C 1400mAIFP = TJ =25°C Tcp =5000K (Normalized to peak spectral intensity) Relative Emission Intensity(a.u.) 相対発光強度(最大強度で正規化) The following graphs show the characteristics measured in pulse mode.* パルス駆動により測定しています。
NICHIA STS-DA1-6102D <Cat.No.210816> OPTICAL CHARACTERISTICS Part No. NVSW519A No. STS-DA7-18130 0.0 0.2 0.4 0.6 0.8 1.0 350 400 450 500 550 600 650 700 750 800 Spectrum Relative Illuminance(a.u.) 相対照度 90° 80° 70° 60° 50° 40° 30° 20° 10°0°-10° -20° -30° -40° -50° -60° -70° -80° -90° Directivity1 Spectrum 発光スペクトル Wavelength(nm) 波長 Directivity 指向特性 Radiation Angle 放射角度 * The graphs above show the characteristics for R9080 LEDs of this product. 本特性は演色性ランクR9080に対応しています。 All characteristics shown are for reference only and are not guaranteed.* 本特性は参考です。 1400mAIFP = TJ =25°C 1400mAIFP = TJ =25°C Tcp =5700K (Normalized to peak spectral intensity) Relative Emission Intensity(a.u.) 相対発光強度(最大強度で正規化) The following graphs show the characteristics measured in pulse mode.* パルス駆動により測定しています。
NICHIA STS-DA1-6102D <Cat.No.210816> FORWARD CURRENT CHARACTERISTICS / TEMPERATURE CHARACTERISTICS Part No. NVSW519A No. STS-DA7-17192A 2.0 2.5 3.0 3.5 -60 -30 0 30 60 90 120 150 180 TaVf 0.4 0.6 0.8 1.0 1.2 1.4 -60 -30 0 30 60 90 120 150 180 TaIv 500 1000 1500 2000 2500 3000 2.0 2.5 3.0 3.5 VfIf 1400 2400 Junction Temperature vs Relative Luminous Flux ジャンクション温度-相対光束特性 Forward Current(mA) 順電流 0.0 0.5 1.0 1.5 2.0 2.5 0 500 1000 1500 2000 2500 3000 IfIv Forward Current vs Relative Luminous Flux 順電流-相対光束特性 Forward Current(mA) 順電流 Forward Voltage vs Forward Current 順電圧-順電流特性 Junction Temperature vs Forward Voltage ジャンクション温度-順電圧特性 Forward Voltage(V) 順電圧 Forward Voltage(V) 順電圧 Junction Temperature(°C) ジャンクション温度 Junction Temperature(°C) ジャンクション温度 All characteristics shown are for reference only and are not guaranteed.* 本特性は参考です。 TJ =25°C TJ =25°C IFP=1400mA IFP=1400mA Relative Luminous Flux(a.u.) (Normalized at T =25°C) 相対光束(T =25°Cで正規化)J J (Normalized 1400mA) 相対光束 1400mAで正規化) Relative Luminous Flux(a.u.) (IFP= at IFP= The following graphs show the characteristics measured in pulse mode.* パルス駆動により測定しています。 本特性は色温度2500K~4500K、演色性ランクR70に対応しています。 * The graphs above show the characteristics for 2500K~4500K, R70 LEDs of this product.
NICHIA STS-DA1-6102D <Cat.No.210816> FORWARD CURRENT CHARACTERISTICS / TEMPERATURE CHARACTERISTICS Part No. NVSW519A No. STS-DA7-17193A 2.0 2.5 3.0 3.5 -60 -30 0 30 60 90 120 150 180 TaVf 0.4 0.6 0.8 1.0 1.2 1.4 -60 -30 0 30 60 90 120 150 180 TaIv 500 1000 1500 2000 2500 3000 2.0 2.5 3.0 3.5 VfIf 1400 2400 Junction Temperature vs Relative Luminous Flux ジャンクション温度-相対光束特性 Forward Current(mA) 順電流 0.0 0.5 1.0 1.5 2.0 2.5 0 500 1000 1500 2000 2500 3000 IfIv Forward Current vs Relative Luminous Flux 順電流-相対光束特性 Forward Current(mA) 順電流 Forward Voltage vs Forward Current 順電圧-順電流特性 Junction Temperature vs Forward Voltage ジャンクション温度-順電圧特性 Forward Voltage(V) 順電圧 Forward Voltage(V) 順電圧 Junction Temperature(°C) ジャンクション温度 Junction Temperature(°C) ジャンクション温度 All characteristics shown are for reference only and are not guaranteed.* 本特性は参考です。 TJ =25°C TJ =25°C IFP=1400mA IFP=1400mA Relative Luminous Flux(a.u.) (Normalized at T =25°C) 相対光束(T =25°Cで正規化)J J (Normalized 1400mA) 相対光束 1400mAで正規化) Relative Luminous Flux(a.u.) (IFP= at IFP= The following graphs show the characteristics measured in pulse mode.* パルス駆動により測定しています。 本特性は色温度2700K~4500K、演色性ランクR8000に対応しています。 * The graphs above show the characteristics for 2700K~4500K, R8000 LEDs of this product.
NICHIA STS-DA1-6102D <Cat.No.210816> FORWARD CURRENT CHARACTERISTICS / TEMPERATURE CHARACTERISTICS Part No. NVSW519A No. STS-DA7-18131 2.0 2.5 3.0 3.5 -60 -30 0 30 60 90 120 150 180 TaVf 0.4 0.6 0.8 1.0 1.2 1.4 -60 -30 0 30 60 90 120 150 180 TaIv 500 1000 1500 2000 2500 3000 2.0 2.5 3.0 3.5 VfIf 1400 2400 Junction Temperature vs Relative Luminous Flux ジャンクション温度-相対光束特性 Forward Current(mA) 順電流 0.0 0.5 1.0 1.5 2.0 2.5 0 500 1000 1500 2000 2500 3000 IfIv Forward Current vs Relative Luminous Flux 順電流-相対光束特性 Forward Current(mA) 順電流 Forward Voltage vs Forward Current 順電圧-順電流特性 Junction Temperature vs Forward Voltage ジャンクション温度-順電圧特性 Forward Voltage(V) 順電圧 Forward Voltage(V) 順電圧 Junction Temperature(°C) ジャンクション温度 Junction Temperature(°C) ジャンクション温度 All characteristics shown are for reference only and are not guaranteed.* 本特性は参考です。 * The graphs above show the characteristics for 2700K~4500K, R9080 LEDs of this product. 本特性は色温度2700K~4500K、演色性ランクR9080に対応しています。 TJ =25°C TJ =25°C IFP=1400mA IFP=1400mA Relative Luminous Flux(a.u.) (Normalized at T =25°C) 相対光束(T =25°Cで正規化)J J The following graphs show the characteristics measured in pulse mode.* パルス駆動により測定しています。Relative Luminous Flux(a.u.) (Normalized at IFP=1400mA) 相対光束(IFP=1400mAで正規化)
NICHIA STS-DA1-6102D <Cat.No.210816> FORWARD CURRENT CHARACTERISTICS / TEMPERATURE CHARACTERISTICS Part No. NVSW519A No. STS-DA7-17194A 2.0 2.5 3.0 3.5 -60 -30 0 30 60 90 120 150 180 TaVf 0.4 0.6 0.8 1.0 1.2 1.4 -60 -30 0 30 60 90 120 150 180 TaIv 500 1000 1500 2000 2500 3000 2.0 2.5 3.0 3.5 VfIf 1400 2400 Junction Temperature vs Relative Luminous Flux ジャンクション温度-相対光束特性 Forward Current(mA) 順電流 0.0 0.5 1.0 1.5 2.0 2.5 0 500 1000 1500 2000 2500 3000 IfIv Forward Current vs Relative Luminous Flux 順電流-相対光束特性 Forward Current(mA) 順電流 Forward Voltage vs Forward Current 順電圧-順電流特性 Junction Temperature vs Forward Voltage ジャンクション温度-順電圧特性 Forward Voltage(V) 順電圧 Forward Voltage(V) 順電圧 Junction Temperature(°C) ジャンクション温度 Junction Temperature(°C) ジャンクション温度 All characteristics shown are for reference only and are not guaranteed.* 本特性は参考です。 TJ =25°C TJ =25°C IFP=1400mA IFP=1400mA Relative Luminous Flux(a.u.) (Normalized at T =25°C) 相対光束(T =25°Cで正規化)J J (Normalized 1400mA) 相対光束 1400mAで正規化) Relative Luminous Flux(a.u.) (IFP= at IFP= The following graphs show the characteristics measured in pulse mode.* パルス駆動により測定しています。 本特性は色温度5000K~6500K、演色性ランクR70に対応しています。 * The graphs above show the characteristics for 5000K~6500K, R70 LEDs of this product.
NICHIA STS-DA1-6102D <Cat.No.210816> FORWARD CURRENT CHARACTERISTICS / TEMPERATURE CHARACTERISTICS Part No. NVSW519A No. STS-DA7-16978B 2.0 2.5 3.0 3.5 -60 -30 0 30 60 90 120 150 180 TaVf 0.4 0.6 0.8 1.0 1.2 1.4 -60 -30 0 30 60 90 120 150 180 TaIv 500 1000 1500 2000 2500 3000 2.0 2.5 3.0 3.5 VfIf 1400 2400 Junction Temperature vs Relative Luminous Flux ジャンクション温度-相対光束特性 Forward Current(mA) 順電流 0.0 0.5 1.0 1.5 2.0 2.5 0 500 1000 1500 2000 2500 3000 IfIv Forward Current vs Relative Luminous Flux 順電流-相対光束特性 Forward Current(mA) 順電流 Forward Voltage vs Forward Current 順電圧-順電流特性 Junction Temperature vs Forward Voltage ジャンクション温度-順電圧特性 Forward Voltage(V) 順電圧 Forward Voltage(V) 順電圧 Junction Temperature(°C) ジャンクション温度 Junction Temperature(°C) ジャンクション温度 All characteristics shown are for reference only and are not guaranteed.* 本特性は参考です。 TJ =25°C TJ =25°C IFP=1400mA IFP=1400mA Relative Luminous Flux(a.u.) (Normalized at T =25°C) 相対光束(T =25°Cで正規化)J J (Normalized 1400mA) 相対光束 1400mAで正規化) Relative Luminous Flux(a.u.) (IFP= at IFP= The following graphs show the characteristics measured in pulse mode.* パルス駆動により測定しています。 本特性は色温度5000K~6500K、演色性ランクR8000に対応しています。 * The graphs above show the characteristics for 5000K~6500K, R8000 LEDs of this product.
NICHIA STS-DA1-6102D <Cat.No.210816> FORWARD CURRENT CHARACTERISTICS / TEMPERATURE CHARACTERISTICS Part No. NVSW519A No. STS-DA7-18132 2.0 2.5 3.0 3.5 -60 -30 0 30 60 90 120 150 180 TaVf 0.4 0.6 0.8 1.0 1.2 1.4 -60 -30 0 30 60 90 120 150 180 TaIv 500 1000 1500 2000 2500 3000 2.0 2.5 3.0 3.5 VfIf 1400 2400 Junction Temperature vs Relative Luminous Flux ジャンクション温度-相対光束特性 Forward Current(mA) 順電流 0.0 0.5 1.0 1.5 2.0 2.5 0 500 1000 1500 2000 2500 3000 IfIv Forward Current vs Relative Luminous Flux 順電流-相対光束特性 Forward Current(mA) 順電流 Forward Voltage vs Forward Current 順電圧-順電流特性 Junction Temperature vs Forward Voltage ジャンクション温度-順電圧特性 Forward Voltage(V) 順電圧 Forward Voltage(V) 順電圧 Junction Temperature(°C) ジャンクション温度 Junction Temperature(°C) ジャンクション温度 All characteristics shown are for reference only and are not guaranteed.* 本特性は参考です。 * The graphs above show the characteristics for 5000K~5700K, R9080 LEDs of this product. 本特性は色温度5000K~5700K、演色性ランクR9080に対応しています。 TJ =25°C TJ =25°C IFP=1400mA IFP=1400mA Relative Luminous Flux(a.u.) (Normalized at T =25°C) 相対光束(T =25°Cで正規化)J J The following graphs show the characteristics measured in pulse mode.* パルス駆動により測定しています。Relative Luminous Flux(a.u.) (Normalized at IFP=1400mA) 相対光束(IFP=1400mAで正規化)
NICHIA STS-DA1-6102D <Cat.No.210816> FORWARD CURRENT CHARACTERISTICS / TEMPERATURE CHARACTERISTICS Part No. NVSW519A No. STS-DA7-17195 0.36 0.37 0.38 0.39 0.40 Taxy -40˚C 0˚C 25˚C 85˚C 105˚C 150˚C 0.36 0.37 0.38 0.39 0.40 Ifxy 100mA 350mA 1400mA 2200mA 2400mA Junction Temperature vs ジャンクション温度-色度 特性 Chromaticity Coordinate Forward Current vs 順電流-色度 特性 Chromaticity Coordinate * The graphs above show the characteristics for R70 LEDs of this product. 本特性は演色性ランクR70に対応しています。 yy x x TJ =25°C Tcp =4000K 1400mAIFP = Tcp =4000K * 本特性は参考です。 All characteristics shown are for reference only and are not guaranteed. パルス駆動により測定しています。 The following graphs show the characteristics measured in pulse mode.
NICHIA STS-DA1-6102D <Cat.No.210816> FORWARD CURRENT CHARACTERISTICS / TEMPERATURE CHARACTERISTICS Part No. NVSW519A No. STS-DA7-17196 0.38 0.39 0.40 0.41 0.42 Taxy -40˚C 0˚C 25˚C 85˚C 105˚C 150˚C 0.38 0.39 0.40 0.41 0.42 Ifxy 100mA 350mA 1400mA 2200mA 2400mA Junction Temperature vs ジャンクション温度-色度 特性 Chromaticity Coordinate Forward Current vs 順電流-色度 特性 Chromaticity Coordinate * The graphs above show the characteristics for R8000 LEDs of this product. 本特性は演色性ランクR8000に対応しています。 yy x x TJ =25°C Tcp =3000K 1400mAIFP = Tcp =3000K * 本特性は参考です。 All characteristics shown are for reference only and are not guaranteed. パルス駆動により測定しています。 The following graphs show the characteristics measured in pulse mode.
NICHIA STS-DA1-6102D <Cat.No.210816> FORWARD CURRENT CHARACTERISTICS / TEMPERATURE CHARACTERISTICS Part No. NVSW519A No. STS-DA7-18133 0.38 0.39 0.40 0.41 0.42 Taxy -40˚C 0˚C 25˚C 85˚C 105˚C 150˚C 0.38 0.39 0.40 0.41 0.42 Ifxy 1400mA 2200mA 2400mA 100mA 350mA Junction Temperature vs ジャンクション温度-色度 特性 Chromaticity Coordinate Forward Current vs 順電流-色度 特性 Chromaticity Coordinate * The graphs above show the characteristics for R9080 LEDs of this product. 本特性は演色性ランクR9080に対応しています。 yy x x TJ =25°C Tcp =3000K 1400mAIFP = Tcp =3000K * 本特性は参考です。 All characteristics shown are for reference only and are not guaranteed. パルス駆動により測定しています。 The following graphs show the characteristics measured in pulse mode.
NICHIA STS-DA1-6102D <Cat.No.210816> FORWARD CURRENT CHARACTERISTICS / TEMPERATURE CHARACTERISTICS Part No. NVSW519A No. STS-DA7-17197 0.34 0.35 0.36 0.37 0.38 Taxy -40˚C 0˚C 25˚C 85˚C 105˚C 150˚C 0.34 0.35 0.36 0.37 0.38 Ifxy 100mA 350mA 1400mA 2200mA 2400mA Junction Temperature vs ジャンクション温度-色度 特性 Chromaticity Coordinate Forward Current vs 順電流-色度 特性 Chromaticity Coordinate * The graphs above show the characteristics for R70 LEDs of this product. 本特性は演色性ランクR70に対応しています。 yy x x TJ =25°C Tcp =5000K 1400mAIFP = Tcp =5000K * 本特性は参考です。 All characteristics shown are for reference only and are not guaranteed. パルス駆動により測定しています。 The following graphs show the characteristics measured in pulse mode.
NICHIA STS-DA1-6102D <Cat.No.210816> FORWARD CURRENT CHARACTERISTICS / TEMPERATURE CHARACTERISTICS Part No. NVSW519A No. STS-DA7-16979A 0.33 0.34 0.35 0.36 0.37 Taxy -40˚C 0˚C 25˚C 85˚C 105˚C 150˚C 0.33 0.34 0.35 0.36 0.37 Ifxy 100mA 350mA 1400mA 2200mA 2400mA Junction Temperature vs ジャンクション温度-色度 特性 Chromaticity Coordinate Forward Current vs 順電流-色度 特性 Chromaticity Coordinate * The graphs above show the characteristics for R8000 LEDs of this product. 本特性は演色性ランクR8000に対応しています。 yy x x TJ =25°C Tcp =5000K 1400mAIFP = Tcp =5000K * 本特性は参考です。 All characteristics shown are for reference only and are not guaranteed. パルス駆動により測定しています。 The following graphs show the characteristics measured in pulse mode.
NICHIA STS-DA1-6102D <Cat.No.210816> FORWARD CURRENT CHARACTERISTICS / TEMPERATURE CHARACTERISTICS Part No. NVSW519A No. STS-DA7-18134 0.32 0.33 0.34 0.35 0.36 Taxy -40˚C 0˚C 25˚C 85˚C 105˚C 150˚C 0.32 0.33 0.34 0.35 0.36 Ifxy 1400mA 2200mA 2400mA 100mA 350mA Junction Temperature vs ジャンクション温度-色度 特性 Chromaticity Coordinate Forward Current vs 順電流-色度 特性 Chromaticity Coordinate * The graphs above show the characteristics for R9080 LEDs of this product. 本特性は演色性ランクR9080に対応しています。 yy x x TJ =25°C Tcp =5700K 1400mAIFP = Tcp =5700K * 本特性は参考です。 All characteristics shown are for reference only and are not guaranteed. パルス駆動により測定しています。 The following graphs show the characteristics measured in pulse mode.
NICHIA STS-DA1-6102D <Cat.No.210816> RELIABILITY (1) Tests and Results Test Reference Standard Test Conditions Test Duration Failure Criteria Units Failed/Tested Resistance to Soldering Heat (Reflow Soldering) JEITA ED-4701 300 301 Tsld=260°C, 10sec, 2reflows, Precondition: 30°C, 70%RH, 168hr #1 0/22 Solderability JEITA ED-4701 303 303A Tsld=245±5°C, 5sec, Lead-free Solder(Sn-3.0Ag-0.5Cu) #2 0/22 Thermal Shock(Air to Air) -40°C to 105°C, 15min dwell 100cycles #1 0/22 Moisture Resistance (Cyclic) JEITA ED-4701 200 203 24hr per cycle 10cycles #1 0/22 High Temperature Storage JEITA ED-4701 200 201 TA=105°C 1000hours #1 0/22 Temperature Humidity Storage JEITA ED-4701 100 103 TA=60°C, RH=90% 1000hours #1 0/22 Low Temperature Storage JEITA ED-4701 200 202 TA=-40°C 1000hours #1 0/22 Room Temperature Operating Life TA=25°C, IF=2200mA Test board: See NOTES below 1000hours #1 0/22 High Temperature Operating Life TA=105°C, IF=900mA Test board: See NOTES below 1000hours #1 0/22 Temperature Humidity Operating Life 60°C, RH=90%, IF=1800mA Test board: See NOTES below 500hours #1 0/22 Low Temperature Operating Life TA=-40°C, IF=1400mA Test board: See NOTES below 1000hours #1 0/22 Electrostatic Discharges ANSI/ESDA/ JEDEC JS-001 HBM, 8kV, 1.5kΩ, 100pF, 1pulse, alternately positive or negative #1 0/22 NOTES: 1) Test board: Al board thickness=1.5mm, copper layer thickness=0.105mm, RθJA≈15°C/W 2) Measurements are performed after allowing the LEDs to return to room temperature. (2) Failure Criteria Criteria # Items Conditions Failure Criteria Forward Voltage(VF) IF=1400mA >Initial value×1.1 Luminous Flux(Φv) IF=1400mA <Initial value×0.7 #2 Solderability - Less than 95% solder coverage
NICHIA STS-DA1-6102D <Cat.No.210816> CAUTIONS (1) Storage Conditions Temperature Humidity Time Storage Before Opening Aluminum Bag ≤30°C ≤90%RH Within 1 Year from Delivery Date After Opening Aluminum Bag ≤30°C ≤70%RH ≤168hours Baking 65±5°C - ≥24hours
- The storage/packaging requirements for this LED are comparable to JEDE C Moisture Sensitivity Level (MSL) 3 or equivalent. Nichia used IPC/JEDEC STD-020 as a reference to rate the MSL of this LED.
- This LED uses a package that could absorb moisture; if the package absorbs moisture and is exposed to heat during soldering, it may cause the moisture to vaporize and the package to expand and the resulting pressure may cause internal delamination. This may cause the optical characteristics to degrade. To minimize moisture absorption in storage/transit, moisture-proof aluminum bags are used for the LEDs with a silica gel packet to absorb any air moisture in the bag. The silica gel beads turn blue to red as they absorb moisture.
- Once the moisture-proof aluminum bag is open, ensure that the LED is soldered to a PCB within the range of the conditions above. To store any remaining unused LEDs, use a hermetically sealed container with silica gel desiccants. Nichia recommends placing them back to the original moisture-proof bag and reseal it.
- If the “After Opening” storage time has been exceeded or any pink silica gel beads are found, ensure that the LED are baked before use. Baking should only be done once.
- This LED has gold-plated electrodes. If the LEDs are e xposed to a corrosive environment, it may cause the plated surface to tarnish causing issues (i.e. solderability). Ensure that when storing LEDs, a hermetically sealed container is used. Nichia recommends placing them back to the original moisture-proof bag and reseal it.
- To prevent substances/gases from affecting the plated surface, ensure that the parts/materials used with the LEDs in the same electric connection failures). If a gasket/seal is used, silicone rubber gaskets/seals are recommended; ensure that this use of silicone does not result in issues (e.g. electrical connection failures) caused by low molecular weight volatile siloxane.
- To avoid condensation, the LEDs must not be stored in areas where temperature and humidity fluctuate greatly.
- Do not store the LEDs in a dusty environment.
- Do not expose the LEDs to direct sunlight and/or an environment over a long period of time where the temperature is higher than normal room temperature. (2) Directions for Use
- The circuit must be designed to ensure that the Absolute Maximum Ratings are not exceeded for each LED. The LEDs should be operated at a constant current per LED. In the case of operating at a constant voltage, Circuit B is recommended. If Circuit A is used, it may cause the currents flowing through the LEDs to vary due to the variation in the forward voltage characteristics of the LEDs on the circuit. (A) ... (B) ...
- This LED is designed to be operated at a forward current. Ensure that no voltage is applied to the LED in the forward/reverse direction while the LED is off. If the LEDs are used in an environment where reverse voltages are applied to the LED continuously, it may cause electrochemical migration to occur causing the LED to be damaged. When not in use for a long period of time, the system’s power should be turned off to ensure that there are no issues/damage.
- To stabilize the LED characteristics while in use, Nichia recommends that the LEDs are operated at currents ≥ 10% of the sorting current.
- Ensure that transient excessive voltages (e.g. lightning surge) are not applied to the LEDs.
- If the LEDs are used for outdoor applications, ensure that necessary measures are taken (e.g. protecting the LEDs from water/salt damage and high humidity).
NICHIA STS-DA1-6102D <Cat.No.210816> (3) Handling Precautions
- Do not handle the LEDs with bare hands as it will contaminate the LED surface and may affect the optical characteristics: it might cause the LED to be deformed and/or the bump to break, which will cause the LED not to illuminate.
- Ensure that when handling the LEDs with tweezers, excessive force is not applied to the LED. Otherwise, it may cause damage to the resin (e.g. cut, scratch, chip, crack, delamination and deformation) and the internal connection to fail causing a catastrophic failure (i.e. the LED not to illuminate).
- Dropping may cause damage to the LED (e.g. deformation).
- Do not stack assembled PCBs together. Otherwise, it may cause damage to the resin (e.g. cut, scratch, chip, crack, delamination and deformation) and the internal connection to fail causing a catastrophic failure (i.e. the LED not to illuminate). (4) Design Consideration
- If the LEDs are soldered to a PCB and the PCB assembly is bent (e.g. PCB depaneling process), it may cause the LED package to break. The PCB layout should be designed to minimize the mechanical stress on the LEDs when the PCB assembly is bent/warped.
- The amount of mechanical stress exerted on the LED from depaneling may vary depending on the LED position/orientation on the PCB assembly (e.g. especially in areas near V-groove scores). The PCB layout should be designed to minimize the mechanical stress on the LEDs when the PCB is separated into individual PCB assemblies.
- To separate a PCB populated with the LEDs, use a specially designed tool. Do not break the PCB by hand.
- If an aluminum-core PCB is used to operate the LEDs, it may cause thermal stress during operation causing damage to the solder joints (e.g. crack). Ensure that sufficient verification is performed prior to use.
- Volatile organic compounds that have been released from materials present around the LEDs (e.g. housing, gasket/seal, adhesive, secondary lens, lens cover, grease, etc.) may penetrate the LED emitting surface. If the LEDs are being used in a hermetically/near-hermetically sealed environment, these volatile compounds can discolor after being exposed to heat and/or photon energy and it may greatly reduce the LED light output and/or color shift. In this case, ventilating the environment may improve the reduction in light output and/or color shift. Perform a light-up test of the chosen application for optical evaluation prior to use to ensure that there are no issues, this test should be performed taking into consideration the conditions/environments in which the end-product containing these LEDs will actually be used.
- The characteristics of the LEDs (e.g. chromaticity, color rendering index, etc.) will vary depending on how the LEDs are designed into the application (e.g. secondary lens, luminaire cover/housing, etc. for ease of dissipation), how they were assembled, under chosen application, perform a sufficient verification prior to use.
NICHIA STS-DA1-6102D <Cat.No.210816> (5) Electrostatic Discharge (ESD)
- This LED is sensitive to transient excessive voltages (e.g. ESD, lightning surge). If this excessive voltage occurs in the circuit, it Ensure that when handling the LEDs, necessary measures are taken to protect them from an ESD discharge. The following examples are recommended measures to eliminate the charge: - Grounded wrist strap, ESD footwear, clothes, and floors - Grounded workstation equipment and tools - ESD table/shelf mat made of conductive materials
- Ensure that all necessary measures are taken to prevent the LEDs from being exposed to transient excessive voltages (e.g. ESD, lightning surge): - tools, jigs, and machines that are used are properly grounded - appropriate ESD materials/equipment are used in the work area - the system/assembly is designed to provide ESD protection for the LEDs
- If the tool/equipment used is an insulator (e.g. glass cover, plastic, etc.), ensure that necessary measures have been taken to protect the LED from transient excessive voltages (e.g. ESD). The following examples are recommended measures to eliminate the charge: - Dissipating static charge with conductive materials - Preventing charge generation with moisture - Neutralizing the charge with ionizers
- To detect if an LED was damaged by transient excess voltages (i.e. an ESD event during the system’s assembly process), perform a characteristics inspection (e.g. forward voltage measurement, light-up test) at low current (≤1mA).
- Failure Criteria: VF<2.0V at IF=0.5mA If the LED is damaged by transient excess voltages (e.g. ESD), it will cause: - the Forward Voltage (VF) to decrease - the LED not to illuminate at a low current (6) Thermal Management
- The Absolute Maximum Junction Temperature (TJ) must not be exceeded under any circumstances. The increase in the temperature of an LED while in operation may vary depending on the PCB thermal resistance and the density of LEDs on the PCB assembly. Ensure that when using the LEDs for the chosen application, heat is not concentrated in an area and properly managed in the system/assembly.
- The operating current should be determined by considering the temperature conditions surrounding the LED (i.e. TA). Ensure that when operating the LED, proper measures are taken to dissipate the heat.
- The following equations can be used to calculate the LED temperature (i.e. TJ) once the saturation temperature at the junction has been reached. 1) TJ=TA+RθJA・W 2) T J=TS+RθJS・W *TJ=LED Junction Temperature: °C TA=Ambient Temperature: °C TS=Soldering Temperature (Cathode Side): °C RθJA=Thermal Resistance from Junction to Ambient: °C/W RθJS=Thermal Resistance from Junction to TS Measurement Point: °C/W W=Input Power(IF×VF): W TS Measurement Point
NICHIA STS-DA1-6102D <Cat.No.210816> (7) Cleaning
- Do not clean the LEDs with water, benzine and/or thinner.
- To clean the LEDs, use isopropyl alcohol (IPA). If another solvent is used, it may cause the LED package/resin to be damaged causing issues; ensure that sufficient verification is performed prior to use. Additionally, ensure that the solvent being used does not cause any other issues (e.g. CFC-based solvents are heavily regulated).
- If an LED is contaminated (e.g. dust/dirt), use a cloth soaked with isopropyl alcohol (IPA). Ensure that the cloth is firmly squeezed before wiping the LED.
- Do not clean the LEDs with an ultrasonic cleaner. If cleaning must be done, ensure that sufficient verification is performed by using a finished assembly with LEDs to determine cleaning conditions (e.g. ultrasonic power, LED position on the PCB assembly) that do not cause an issue. (8) Eye Safety
- There may be two important international specifications that should be noted for safe use of the LEDs: IEC 62471:2006 Photobiological safety of lamps and lamp systems and IEC 60825-1:2001 (i.e. Edition 1.2) Safety of Laser Products - Part 1: Equipment Classification and Requirements. Ensure that when using the LEDs, there are no issues with the following points: - LEDs have been removed from the scope of IEC 60825-1 since IEC 60825-1:2007 (i.e. Edition 2.0) was published. However, depending on the country/region, there are cases where the requirements of the IEC 60825-1:2001 specifications or equivalent must be adhered to. - LEDs have been included in the scope of IEC 62471:2006 since the release of the specification in 2006. - Most Nichia LEDs will be classified as the Exempt Group or Risk Group 1 according to IEC 62471:2006. However, in the case of high-power LEDs containing blue wavelengths in the emission spectrum, there are LEDs that will be classified as Risk Group 2 depending on the characteristics (e.g. radiation flux, emission spectrum, directivity, etc.) - If the LED is used in a manner that produces an increased output or with an optic to collimate the light from the LED, it may cause damage to the human eye.
- If an LED is operated in a manner that emits a flashing light, it may cause health issues (e.g. visual stimuli causing eye discomfort). The system should be designed to ensure that there are no harmful effects on the human body.
NICHIA STS-DA1-6102D <Cat.No.210816> (9) Miscellaneous
- Nichia warrants that the discrete LEDs will meet the requirements/criteria as detailed in the Reliability section within this specification. If the LEDs are used under conditions/environments deviating from or inconsistent with those described in this specification, the resulting damage and/or injuries will not be covered by this warranty.
- Nichia warrants that the discrete LEDs manufactured and/or supplied by Nichia will meet the requirements/criteria as detailed in the Reliability section within this specification; it is the customer’s responsibility to perform sufficient verification prior to use to ensure that the lifetime and other quality characteristics required for the intended use are met.
- The applicable warranty period is one year from the date that the LED is delivered. In the case of any incident that appears to be in breach of this warranty, the local Nichia sales representative should be notified to discuss instructions on how to proceed while ensuring that the LED in question is not disassembled or removed from the PCB if it has been attached to the PCB. If a breach of this warranty is proved, Nichia will provide the replacement for the non-conforming LED or an equivalent item at Nichia’s discretion. FOREGOING ARE THE EXCLUSIVE REMEDIES AVAILABLE TO THE CUSTOMER IN RESPECT OF THE BREACH OF THE WARRANTY CONTAINED HEREIN, AND IN NO EVENT SHALL NICHIA BE RESPONSIBLE FOR ANY INDRECT, INCIDENTAL OR CONSEQUENTIAL LOSSES AND/OR EXPENSES (INCLUDING LOSS OF PROFIT) THAT MAY BE SUFFERED BY THE CUSTOMER ARISING OUT OF A BREACH OF THE WARRANTY.
- NICHIA DISCLAIMS ALL OTHER WARRANTIES, EXPRESS OR IMPLIED, INCLUDING THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
- This LED is intended to be used for general lighting, household appliances, electronic devices (e.g. mobile communication devices); it is not designed or manufactured for use in applications that require safety critical functions (e.g. aircraft, automobiles, combustion equipment, life support systems, nuclear reactor control system, safety devices, spacecraft, submarine repeaters, traffic control equipment, trains, vessels, etc.). If the LEDs are planned to be used for these applications, unless otherwise detailed in the specification, Nichia will neither guarantee that the LED is fit for that purpose nor be responsible for any resulting property damage, injuries and/or loss of life/health. This LED does not comply with IATF 16949 and is not intended for automotive applications.
- The customer will not reverse engineer, disassemble or otherwise attempt to extract knowledge/design information from the LED.
- All copyrights and other intellectual property rights in this specification in any form are reserved by Nichia or the right holders who have granted Nichia permission to use the content. Without prior written permission from Nichia, no part of this specification may be reproduced in any form or by any means.
- Both the customer and Nichia will agree on the official specifications for the supplied LEDs before any programs are officially launched. Without this agreement in writing (i.e. Customer Specific Specification), changes to the content of this specification may occur without notice (e.g. changes to the foregoing specifications and appearance, discontinuation of the LEDs, etc.).