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high power  dual-color red and ice blue Imitated Luminous Led for Automotive light

high power dual-color red and ice blue Imitated Luminous Led for Automotive light

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high power  double color Red and ice blue Imitated Luminous Led for Automotive light Features

Mechanical Dimensions  Φ8.0×5.4 mm

High luminous intensity flux and high efficacy Low power dissipation, good reliability and long life

Certification:ROHS REACH  

Application:Landscape lighting. Strip lighting .car lihgting


Notes:1.All dimensions are in millimeters.2.Tolerance is ±0.25mm unless otherwise noted.


1.Performance Characteristics (Absolute Maximum Ratings )

Parameter

Symbol

Rating

Unit

Power Dissipation

ICE Blue

2450

mW

Red

1900

Pulse Forward Current

Ifp

700

mA

Reverse Voltage

Vr

5

V

Operating Temperatalure

Top

-40 ~ +85

Storage Temperature

Tst

-40 ~ +100

Junction Temperature

Tj

140

Electrostatic Discharge Threshoi

ESD

2000

V

Hand Soldering Temperatur

Ts

260℃ for 3 seconds

Input power and forward current are the values when the LED is used within the range of the derating curve

in this data sheet.   

Pulse width≤0.1ms, Duty≤1/10

The data on this specification is for reference only


2. Optical-Electrical Characteristic


Parameter

Symbol

Emitting color

Test Condition

Values

Units

Min.

Typ.

Max.

Forward Voltage

VF

Ice blue

IF=700mA

3.4

--

3.6

V

Red

IF=700mA

2.0

--

2.6

V

Luminous Fiux

Φ

Ice blue

IF=700mA

160

--

200

lm

Φ

Red

IF=700mA

100

--

130

lm

Dominant Wavelength

λP

Ice blue

IF=700mA

485

--

495

nm

λd

Yellow

IF=700mA

619

--

614

nm

Reverse Current

Ir

-

VR=5V

-

-

10

μA

Viewing Angle

2Θ1/2

-

IF=700mA

-

120

-

Deg

Above data are measured by Our company tester forward voltage +/-3%, luminous flux +/-10%

,Dominant Wavelength +/-2nm, CCT  +/-15%


3.Characteristic Curve

3. 1 Forward Current Characteristics / Temperature Characteristics




3.2 Optical Characteristics

3.3 Optical Characteristics

4.Packing Specifications


5.Precaution

5-1. Handling with care for this product

Because of the LED lens is composed of resin materials. Please avoid the resin area from being pressed,

stressed, rubbed, come into contact with sharp metal nail because the function, performance and

reliability of this product are negatively impacted.Please be aware that this product should not

come into contact withany other parts while incorporating in your lighting apparatus or your other

products.


5-2. Countermeasure against static electricity

Handling of this product needs countermeasures against static electricity because this is a

semiconductor product.-Please take adequate measures to prevent any static electricity being

produced such as the wearing of a wristband or anti-static gloves when handling this product.

Every manufacturing facility in regard to the product (plant,equipment, machine, carrier machine

and conveyance unit) should be connected to ground and please avoid the product to be electric-

charged.ESD sensitivity of this product is over 1000V (HBM, based on JEITA ED4701/304).After

assembling the LEDs into your final product(s), it is recommended to check whether the assembled

LEDs are damaged by static electricity (electrical leak phenomenon) or not.It is easy to find static

damaged LED dies by a light-on test with the minimum current value.


5-3. Caution of product assembly

Roughness, unevenness and burr of surface negatively impact thermal bonding between the product

and heat sink and increase heat thermal resistance between them.Confidence of thermally and

mechanical couplingbetween the product and heat sink are confirmed by checking the mounting

surface and measuring the casetemperature of the product.In order to reduce the thermal resistance

at assembly, it might be good to use TIM (Thermal Interface Material) on whole contact surface of the

product.-In case of using thermal grease for the TIM, it might be good to applyuniformly on the

contact surface of the product.It might be good to make sure that the product heat sink is NOT strained

by stress after solid for assembly to PCB.


5-4. Thermal Design-

The thermal design to draw heat away from the LED junction is most critical parameter for an LED

illumination system. High operating temperatures at the LED junction adversely affect the performance

of LED’s light output and lifetime.

Therefore the LED junction temperature should not exceed the absolute maximum rating in LED

illumination system.

The LED junction temperature while operation of LED illumination system depends upon thermal

resistance of internal LED package (Rj-c), outer thermal resistances of LED package, power loss and

ambient temperature. Please take both of the thermal design specifications and ambient temperature

conditions into consideration for the setting of driving conditions.


5-5. Driving Current

A constant current is recommended as an applying driving current to this product.-In the case of

constant voltage driving, please connect current-imiting resistor to each products in series and control

the driving current to keep under the absolute maximum rating forward current value.Electrical

transient might apply excess voltage, excess current and reverse voltage to the product(s).They also

affect negative impact on the product(s) therefore please make sure that no excess voltage, no excess

current and no reverse voltage is applied to the product(s) when theLED driver is turn-on and/or turn-off.


5-6. Recommended soldering Condition

Soldering shall be implemented using a soldering bit at a temperature lower than 350℃, and shall be

finished within 3 seconds for one land.No external force shall be applied to resin part while soldering

is implemented.Next process of soldering should be carried out after the product has return to ambient

temperature. Contacts number of soldering bit should be within twice for each terminal