Products> Full Wavelength LED> 660nm LED> 5730 SMD LED Deep Red 660nm LED Emitters
5730 SMD LED Deep Red 660nm LED Emitters
5730 SMD LED Deep Red 660nm LED Emitters
5730 SMD LED Deep Red 660nm LED Emitters
5730 SMD LED Deep Red 660nm LED Emitters
5730 SMD LED Deep Red 660nm LED Emitters
5730 SMD LED Deep Red 660nm LED Emitters
5730 SMD LED Deep Red 660nm LED Emitters
5730 SMD LED Deep Red 660nm LED Emitters
5730 SMD LED Deep Red 660nm LED Emitters
5730 SMD LED Deep Red 660nm LED Emitters

5730 SMD LED Deep Red 660nm LED Emitters

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    • Payment Type: T/T,Paypal
    • Incoterm: FOB,EXW,FCA
    • Min. Order: 4000 Piece/Pieces
    • Transportation: Ocean,Land,Air
    • Port: SHENZHEN
    Supply Ability & Additional Information
    Additional Information

    PackagingCarton box

    Productivity1000000000 pcs/week

    TransportationOcean,Land,Air

    Place of OriginChina

    Supply Ability7000000000 pcs/week

    CertificateGB/T19001-2008/ISO9001:2008

    HS Code8541401000

    PortSHENZHEN

    Payment TypeT/T,Paypal

    IncotermFOB,EXW,FCA

    Product Attributes

    Model No.5730FRC665P8L14P2

    BrandBest LED

    Types OfSmd Led

    Support DimmingYes

    Lamp Life (hours)50000

    Working Hours (hours)50000

    Chip MaterialIngan

    Luminous ColorRed

    PowerOther

    Place Of OriginChina

    CertificationRohs, Ce

    LED TypeSMD LED

    Chip Quantity Red SMD LED2 Chip

    Main ApplicationLED Grow Light; Medical Applications; LED Lighting

    Viewing Angle120 degree

    Lens TypeClear Transparent

    Wavelength660nm LED

    ColorDeep red color

    Size Of SMD LED5.7*3.0mm

    Luminous Intensity8-10lm

    Operation Current150mA

    Packaging & Delivery
    Selling Units: Piece/Pieces
    Package Type: Carton box
    Picture Example:
    Company Video
    Type through-hole LED as a reel strip
    Product Description

    5730FRC665P8L14P2 is a SMD LED that with 2 chips of 660Nm LED inside. 5730 SMD LED is a type of surface mount LED that measures 5.7mm x 3.0mm in size. It is commonly used in various lighting applications, including backlighting, signage, and general illumination.
    The 660nm wavelength refers to the color of the LED emitter, which is in the deep red spectrum. This wavelength is often used in horticultural lighting for promoting plant growth and flowering.
    Overall, the 5730 SMD LED with a 660nm wavelength is suitable for applications that require a deep red light source.This particular wavelength falls within the red spectrum of light. LEDs of this wavelength are often used in various applications, including horticulture lighting, medical treatments, and as indicators or decorative lighting.

    660nm LED Emitter SMD


    5730 Red SMD LED Features:

    Dimension: 5.7*3.0mm;

    Color: Deep Red LED Light;

    Lens type: Transparent epoxy;

    High reliability and high radiation intersity;

    Size of Deep Red 660nm LED

    *This package size are also available in Amber LED, UV LED, IR LED, Yellow LED*


    Electrical Parameters:

    Parameter

    Symbol

    Rating

    Unit

    Reverse Voltage

    VR

    5

    V

    Junction Temperature

    Tj

    115

    Operating Temperature

    Topr

    -40 - +80

    Storage Temperature

    Tstg

    -40 - +100

    Soldering Temperature

    Tsol

    260

    Electro-Stati-Discharge(HBM)

    ESD

    2000

    V

    Service lige under normal conditions

    Time

    50000

    H

    Warranty

    Time

    2

    Years

    Antistatic bag

    Piece

    1000

    Back

    *Pulse forward current confition: Duty 1% and Pulse width=10us.

    *Soldering confition: Soldering confition must be completed with 3 secongds at 260℃

    Parameter 

    Symbol 

    Min 

    Type 

    Max 

    Unit 

    Test Condition 

    Forward Voltage

    VF

    2.0

    -

    2.6

    V

    IF=150mA

    Brightness 

    IE

    8

    -

    10

    LM

    IF=150mA

    Peak Wavelength

    λP

    665

     nm

    IF=150mA

    Half Width

    λ△

     

    50

     

    nm

    IF=150mA

    Viewing Half Angle

      θ 


     120

     

    deg

    IF=150mA

    Reverse Current

    IR



    5

    uA

    VR=5

    *Luminous intensity is measured by ZWL600.

    *λD is derived from the CIE chromaticity diagram and represents the single wavelength which defines the color of the device.



    Do's and don'ts

    Storage Conditions: 

    1. avoid continued exposure to the condensing moisture environment and keep the product away from rapid transitions in ambient temperature;

    2. LEDs should be stored with temperature ≤30℃ and relative humidity<60%℃;

    3. Product in the original sealed package is recommended to be assembled within 72 hours of opening;

    4. Product in opened package for more than a week should be baked for 6-8 hours at 85-10℃;


    LED MOUNTING METHOD

    1, The lead pitch of the LED must match the pitch of the mounting holes on the PCB during component placement;

    Lead-forming may be required to insure the lead pitch matches the hole pitch;

    Refer to the figure below for proper lead forming procedures;

    Do not route PCB trace in the contact area between the leadframe and the PCB to prevent short-circuits;

    Through-hole LED

    Noted:

    ○ Correct mounting method;

    × Incorrect mounting method;


    2. When soldering wires to the LED, each wire joint should be separately insulated with heat-shrink tube to prevent short-circuit contact.

    Do not bundle both wires in one heat shrink tube to avoid pinching the LED leads;

    Pinching stress on the led leads may damage the internal structures and cause failure;

    Through-hole LED

    Noted:

    ○ Correct mounting method;

    × Incorrect mounting method;



    3. Use stand-offs(Fig 3)or spacers(Fig 4)to securely position the LED above the PCB;

    4. Maintain a minimum of 3mm clearance between the base of the LED lens and the first lead bend (Fig. 5. Fig. 6)

    5. During lead forming, use tools or jigs to hold the leads securely so that the bending force will not be transmitted to the LED lens and its internal structures;

    Do not perform lead forming once the component has been mounted onto the PCB;

    Through-hole LED

    Lead Forming Procedures

    1. Lead Forming Procedures;

    2. Do not bend the leads more than twice (Fig. 7);

    3. During soldering, component covers and holders should leave clearance to avoid placing damaging stress on the LED during soldering(Fig 8);

    4. The tip of the soldering iron should never touch the lens epoxy;

    5. Through-hole LEDs are incompatible with reflow soldering;

    6. If the LED will undergo multiple soldering passes or face other processes where the part may be subjected to intense heat please check with Best LED for compatibility;

    Through-hole LED


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