14W White SPHWH1A5NA30

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1 Product Family Data Sheet Rev High Power LED Ceramic Series 14W White SPHWH1A5NA30 Features & Benefits Package : Silicone covered ceramic substrate Dimension : 5.3 mm x 3.3 mm Technology : Thin GaN Color Coordinate Group : Appropriate to ECE Chip Configuration : 4 chips ESD Voltage : Up to 8 kv acc. to ISO contact Viewing Angle: 120 Qualifications: The product qualification test based on the guidelines of AEC-Q101-REV-C.

2 2 Table of Contents 1. Characteristics Product Code Information Typical Characteristics Graphs Soldering Temperature Location Mechanical Dimension Soldering Conditions Tape & Reel Label Structure Packing Structure Precautions in Handling & Use Company Information

3 3 1. Characteristics a) Typical Characteristics [T j= 25 ] [1] Item Symbol Value Unit. Luminous Flux (I F= 1,000 ma) lm Typ lm Forward Voltage (I F= 1,000 ma) V F Typ V Viewing Angle φ Typ. 120 Deg Reverse Current I R Not designed for reverse operation Real Thermal Resistance (Junction to Solder point) R th_j-s (Real) Typ. 1.4 Max. 1.7 K/W Electrical Thermal Resistance (Junction to Solder point) R th_j-s (Elec.) Typ. 1.0 Max. 1.2 K/W Radian Surface A 5.23 mm 2 Note: [1] Measurement condition: LED (Tj) = Ambient temperature (Ta), by applying pulse current for under 35ms. b) Absolute Maximum Rating Item Symbol Rating Unit Ambient / Operating Temperature T a -40 ~ +125 ºC Storage Temperature T stg -40 ~ +125 ºC LED Junction Temperature T j 150 ºC Maximum Forward current [2] (T j: 25 ) [3] Minimum Forward current [2] (T j: 25 ) [3] Maximum peak Current [2] (T j: 25 ) [3] Maximum Reverse current I F 1,500 ma I F 50 ma I P 2,000 for 10 µsec Duty 5/1,000 pulse Do not apply for reverse current ma ESD Sensitivity [4] - ±8 for HBM kv Note: [2] Unpredictable performance may be resulted by driving the product at below Min. IF or above Max. IF. But there will be no damage to the product. [3] The measurement condition means that temperature dependence is excluded by applying pulse current for under 35ms. [4] It is included the device to protect the product from ESD.

4 4 2. Product Code Information S P H W H 1 A 5 N A 3 0 A B C D E F Digit PKG Information 1 2 company name and Samsung LED PKG (SP for Samsung PKG) 3 power variant (H for automotive high power) 4 5 color variant (WH for automotive white color) 6 LED PKG version (1 for first version up) 7 8 product configuration and type (A5 for automotive 5333 PKG type) 9 lens configuration (N for no lens) 10 Max power (A for 10.5~20.0W) 11 Special internal code (3 for 3 rd version) 12 specific property (0 for default) forward voltage property CIE coordination property luminous flux property

5 5 a) Luminous Flux Bins [5] ( I F= 1,000 ma, T j= 25 ºC) Symbol Bin Code Min Flux Range (lm) Max NA Φ PA QA b) Voltage Bins [5] (I F= 1,000 ma, T j= 25 ºC) Symbol Bin Code Min Voltage Range (V) Max WC V F WD WE Note: [5] Luminous flux measuring equipment: CAS140CT ΦV and VF tolerances are ±7% and ±5%, respectively.

6 6 c) Color Bin [6] (I F= 1,000 ma) Symbol Bin Code C x C y C x, C y R Note [6] Chromaticity coordinates: Cx, Cy according to CIE Cx and Cy tolerances are ±0.005, respectively R

7 Relative Color Shift Characteristics Normalized Intensity 7 3. Typical Characteristics Graphs a) Spectrum Distribution (I F= 1,000 ma, T s= 25 ºC) [7] Wavelength( nm ) b) Typical Chromaticity Coordinate Shift vs Radiation Angle (I F= 1,000 ma, T s= 25 ºC) [7] ΔCx ΔCy Radiation Angle (º) Note: [7] The measurement condition means that temperature dependence is excluded by applying pulse current for under 35ms.

8 Relative Color Shift Characteristics Normalized Luminous Flux Normalized Forward Voltage 8 c) Forward Current Characteristics (T s= 25 ºC) [8] ,200 1, ,200 1,500 Forward Current (ma) Forward Current (ma) ΔCx ΔCy ,200 1,500 Forward Current (ma) Note: [8] The measurement condition means that temperature dependence is excluded by applying pulse current for under 35ms.

9 Relative Color Shift Characteristics Normalized Luminous Flux Noramlized Forward Voltage 9 d) Temperature Characteristics (I F= 1,000 ma) T j ( ) T j ( ) ΔCx ΔCy T j ( )

10 Normalized Luminous Flux Forward Current (A) 10 e) Derating Curve [9] T s ( ) Note: [9] The measurement condition means that temperature dependence is excluded by applying pulse current for under 35ms. f) Beam Angle Characteristics (I F= 1,000 ma, T s= 25 ºC) Radiation Angle (º)

11 11 4. Soldering Temperature Location T j: Temperature of Junction T s: Temperature of Solder Pad R th_j-s: Thermal Resistance from Junction to Solder Pad

12 12 5. Mechanical Dimension C A Dummy Dummy C A Dummy Dummy Note: The thermal pad is electrically isolated from the anode and cathode contact pads. A: Anode, C: Cathode Unit: mm, Tolerance: ±0.1mm a) Pick and Place Do not place pressure on the resin molded part It is recommended to use a pick & place nozzle CNT 3X5, etc. b) Electric Schematic Diagram [ Circuit ] c) Material Information Description Ceramic Substrate LED Die Phosphor Zener Diode Wire Resin Mold Material Aluminum Nitride Thin GaN Phosphor Silicon Au Silicon

13 13 6. Soldering Conditions a) Pad Configuration & Solder Pad Layout Notes: Recommended Solder Pad Unit: mm, Tolerance: ±0.1mm b) Reflow Conditions (Pb free) Reflow frequency: 2 times max. c) Manual Soldering Conditions Not more than 5 max 300 ºC, under soldering iron. (One time only)

14 14 7. Tape & Reel a) Taping Dimension User feed direction Note: Unit: mm, LED taping quantity: 1,000EA / Reel b) Reel Dimension Notes: Unit: mm, Tolerance: ±0.2mm

15 15 8. Label Structure a) Product Labeling Information A B C D E F WCR1NA SPHWH1A5NA30W2R1PB WCR1NA IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII SLAA94001 / 1001 / 1,000 pcs IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII Bin Code Part Number Lot Number N.B) Denoted rank is the only example. b) Bin Code Structure AB: Forward Voltage (V F) Bin (refer to page. 5) CD: Color bin (C x, C y) (refer to page. 6) EF: Luminous Flux (I V) Bin (refer to page. 5) c) Lot Number Structure The lot number is composed of the following characters: No. Information 1 Production Site : S:SAMSUNG LED, G:GOSIN CHINA 2 LED 3 Product State A :Normality, B :Bulk, C :First Production, R :Reproduction, S :Sample 4 Year : Y:2014, Z:2015, A:2016, B:2017, C: Month : 1 ~ 9, A, B 6 Day : 1 ~ 9, A, B ~ V 789 Product number : 1 ~ 999 abc Reel Number : 1 ~ 999

16 16 9. Packing Structure a) Packing Process Dimension of Transportation Box in mm Width Length Height

17 Precautions in Handling & Use 1) Absolute maximum ratings are set to prevent LED products from breaking due to extreme stress (temperature, current, voltage, etc.). Usage conditions must never go above the ratings, nor do any of two of the factors reach the rating level simultaneously. 2) Please avoid touch or pressure on resin molded part in the products. To handle the products directly, it is recommended to use nonmetallic tweezers. 3) Device should not be used in any type of fluid such as water, oil, organic solvent, etc. When washing is required, IPA is recommended to use. 4) LEDs must be stored in a clean environment. If the LEDs are to be stored for 3 months or more after being shipped from SAMSUNG ELECTRONICS, they should be packed by a sealed container with nitrogen gas injected. 5) After bag is opened, device subjected to soldering, solder reflow, or other high temperature processes must be: a. Mounted within 672hours at an assembly line with a condition of no more than 30 /60% RH, b. Stored at < 10% RH. 6) Repack unused products with anti-moisture packing, fold to close any opening and then store in a dry place. 7) Devices require baking before mounting, if humidity card reading is >60% at 23±. 8) Devices must be baked for 1 day at 60±5, if baking is required. 9) The LEDs are sensitive to the static electricity and surge. It is recommended to use a wrist band or antielectrostatic glove when handling the LEDs. If voltage exceeding the absolute maximum rating is applied to LEDs, it may cause damage or even destruction to LED devices. Damaged LEDs may show some unusual characteristics such as increase in leak current, lowered turn-on voltage, or abnormal lighting of LEDs at low current. 10) Prepare an ESD protective area by placing conductive mattress (10 6 Ω) and ionizer to remove any static electricity. 11) VOCs (volatile organic compounds) may be occurred by adhesives, flux, hardener or organic additives which are used in luminaires (fixture) and LED silicone bags are permeable to it. It may lead a discoloration when LED expose to heat or light. This phenomenon can give a significant loss of light emitted (output) from the luminaires (fixtures). In order to prevent these problems, we recommend you to know the physical properties for the materials used in luminaires, it requires selecting carefully.

18 11. Company Information 18

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