CSHV-NL60SBG4-A0 CHINASEMI | Alldatasheet

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Spec. No. CORPORATION Rev. PRODUCT SPECIFICATION Descriptions: ‧ LED Type : High Power VEGA ‧ LED Package : Lambertian ‧ Emitting Color : Blue ‧ Viewing Angle : 140° ‧ Silicone LENS CHINA SEMICONDUCTOR CORPORATION OPTO PLUS TECHNOLOGI ES CO.,LTD Address:2FL. NO.909,Chung-Cheng Road, Address:696 S hun jiang Rd.,Ji Shan St.Shaoxing, Chung-Ho City Taipei Hsien,Taiwan. ZheJiang,China Tel:886-2-2223-9696 Tel:86-0575-88623888 Fax:886-2-2223-9377 Fax:86-0575-88623112 APPROVED BY CHECKED BY PREPARED BY PS-0701-005 E Model No :::: CSHV-NL60SBG4-A0 CUSTOMER APPROVED SIGNATURES http://www.csctw.com.tw

Spec. No. CORPORATION Rev. ■■■■ Features - 1. High Luminous Output : 14 lm 3. RoHs Compliant 4. Compatible Lead-Free Reflow Solder 5. ESD>8KV(HBM) 6. Standard Collimator Compatible 7. Low thermal resistance (junction to Case) : 10 ℃ /W ■■■■ Device Selection Guide - ■■■■ Package Outline Dimensions - Notes: Tolerance of measurement of Dimension: ±0.25mm Page : 1/7 PS-0701-005 E Emitted Color LED Lens Chip http://www.csctw.com.tw Part No. CSHV-NL60SBG4-A0 2. Silicone Encapsulation Model No :::: CSHV-NL60SBG4-A0 InGaN Blue Material Water Transparent

Spec. No. CORPORATION Rev. ■■■■ Absolute Maximum Rating - (Ta=25 ℃ ) Symbol Unit Pd W IF mA IFP mA VR V Topr ℃ Tstg ℃ * Pulse width ≦ 0.1 msec. duty ≦ 1/10 ■■■■ Electro-optical Characteristics - (Ta=25 ℃ ) Symbol Min. Typ. Max. Unit Condition VF ----- 3.5 4 V Φv 7 14 ----- lm IR ----- ----- 50 μ A VR=5V Page : 2/7 http://www.csctw.com.tw 350 Parameter Rating Forward Voltage Luminous Flux Peak Forward Current * 1.4 Reverse Voltage -40 ~ +100 Model No :::: CSHV-NL60SBG4-A0 Parameter Storage Temp. 500 -40 ~ +85 Operating Temp. Power Dissipation Forward Current (DC) PS-0701-005 E Reverse Current Viewing Angle IF=350mA

Spec. No. CORPORATION Rev. Part No. Code min. max. B 7 9 C 9 12 D 12 16 E 16 21 Part No. Code min. max. B5 460.0 465.0 B6 465.0 470.0 B7 470.0 475.0 B8 475.0 480.0 Notes: 1. Tolerance of measurement of luminous Flux :±10 2. Tolerance of measurement of Dominant Wavelength :±2nm 3. All data are measured by CSC's test equipment. 4. Please confirm with CSC salesman,if your request different from standard specification. Page : 3/7 http://www.csctw.com.tw ■■■■ Dominant Wavelength Rank Limits ( I F = 350mA ) PS-0701-005 E unit : lm Model No :::: CSHV-NL60SBG4-A0 ■■■■ Luminous Flux Rank Limits ( I F = 350mA ) CSHV-NL60SBG4-A0 CSHV-NL60SBG4-A0 unit : nm

Spec. No. CORPORATION Rev. ■■■■ Typical Electrical / Optical Charateristics Curves - (Ta = 25 ℃℃℃℃ Unless Otherwise Noted) Page : 4/7 E PS-0701-005 Model No :::: CSHV-NL60SBG4-A0 http://www.csctw.com.tw Distribution Relative Spectral Power 0.4 0.2 0.0 400 450 1.0 0.8 0.6 Wavelength (nm) 550 500 600 700 650 Relative Light Output(%) 120 110 100 130 140 150 Junction Temperature, T j(° C) -20 0 20 40 60 80 100 120 Normalized Relative Luminous Flux 0.6 0.4 0.0 0.2 200 IF - Average Forward Current(mA) 100 0 300 400 1.2 0.8 1.0 IF - Average Forward Current(mA) 300 0.0 150 100 250

200 VF - Forward Voltage(Volts)

100 IF - Forward Current(mA) 50

TA - Ambient Temperature ( ° C ) Maximum Forward Current vs. Ambient Temperature. Derating based on T JMAX =120 °C 0 20 40 80 60 100 RθJ-A=50 ℃/W RθJ-A=40 ℃/W RθJ-A=30 ℃/W Fig 1. Relative Luminous FLux vs. Forward Current Fig 3. Forward Current vs. Forward Voltage Fig 2. -20 Radiation Angle(Degrees) Relative Luminosity -100 -80 -60 -40 0.5 60 40 20 0 100 80 Relative Light Output vs. Junction Temperature Fig 4. Relative Spectral Power Distribution vs. Wavelength Fig 5. Relative Luminosity vs. Radiation Angle Fig 6. 500 450 500 1.4 7.0

Spec. No. CORPORATION Rev. ■■■■ Reflow Soldering Characteristics ■■■■ Hand Soldering Characteristics Soldering temperature 260° C Soldering time 5 sec Notes: All temperatures refer to Solder Pad Page : 5/7 Model No :::: CSHV-NL60SBG4-A0 PS-0701-005 E http://www.csctw.com.tw

Spec. No. CORPORATION Rev. ■■■■ Package 1. Tube: 50pcs/tube CSC P/N: CSC Production number Flux: intensity grade Hue: wavelength grade Qty: quantity on tube 2. anti-electrostatic bag: 10 tubes/ bag Product type: Vega Power CSC P/N: CSC Production number Flux: intensity grade Hue: wavelength grade Date code: production time Customer P/N: customer production number Qty: quantity on anti-electrostatic bag 3. carton: 2 anti-electrostatic bags/carton P/N: production number Qty: quantity Date code: production time on carton Page : 6/7 http://www.csctw.com.tw E Model No :::: CSHV-NL60SBG4-A0 PS-0701-005 Product Type : Flux : Customer P/ N: CSC P/ N: Date code : QTY : Hue : ROHS QC : Flux : CSC P/ N: QTY :Hue : Product Type : Flux : Customer P/ N: CSC P/ N: Date code : QTY : Hue : ROHS QC :

Spec. No. CORPORATION Rev. ■■■■ Precautions for use 1. Please use LEDS refer to JEDEC 2a(Industry Best Moisture Sensitivity Level) as below: time time time 4 (hours) (hours) weeks 696 2+5/-0 120+1/-0 Notes:The standard soak time includes a default value of 24 hours for semiconductor exposure time between bake and bag and includes the maximum time allowed out of bag at the distributor's facility. 2.Please confirm the moisture card in the anti-electrostatic bag after opening package. If it showes 50%RH, LEDs should be performed baking treatment before uesd. (bake condition: At 125 ℃ +5/-0 for 24 hours) 3.Any mechanical force or any excess vibration on LENS should be avoied during operating. 4. LED should be stored below 60%RH after opening package. 5. Please refer to fig3 of page4 to choose current drive to use. Ambient temperature will affect current. Note: The specifications are subject to change without notice. Please contact us for updated information.

2008.10.10 Page : 7/7

60 ℃ /60%RH E http://www.csctw.com.tw Model No :::: CSHV-NL60SBG4-A0 Floor life standard accelerated Environment conditions conditions conditions