XINGLIGHT XL-502UYC Mini LED Owner’s Manual

September 5, 2024
XINGLIGHT

XINGLIGHT XL-502UYC Mini LED Owner’s Manual

characteristic

  • Appearance dimension: F5/5.85.08.7*18mm
  • Luminous color and colloid :yellow brightness White /water colloid
  • Environmental protection products meet ROHS requirements
  • Moisture sensitivity level (MSL): 4-5 levels
  • EIA standard packaging
  • Long operating life
  • High energy efficiency, fast startup
  • Low voltage DC drive

product application

  • Home appliances, digital, communication
  • Automotive Electronics
  • Lighting decoration
  • electronic toy
  • electronic clock
  • Traffic instructions
  • Medical beauty instruments
  • Electronic teaching equipment
  • Urban lighting

Electrical Characteristics

Absolute Maximum Ratings) (Ta=25℃)

Parameter Symbol Rating Unit
Consumed power Pd 50 mW
(Max Continuous Forward Current) IF 20 mA
Peak Forward Current Imp 80 mA
Operating  ambient temperature Top -20°C ~ +85°C
Storage   ambient temperature Tstg -40°C ~ +85°C
Welding conditions Tsol re flow soldering):240°C,≦6s

manual welding ):300°C,3s3.5mm

Initial Electrical Optical Characteristics)(Ta=25℃)

Parameter| Symbol| Min.| Typ.| Max.| Unit| Test conditions
---|---|---|---|---|---|---
(Luminous Intensity)| Iv| 400| /| 1000| mcd| IF=20mA
(Dominant Wave Length)| λd| 585| /| 595| nm| IF=20mA
(Peak Wave Length)| λp| /| 588| /| nm| IF=20mA
(Forward Voltage)| VF| 1.8| 2.2| 2.4| V| IF=20mA
(Viewing Angle)| 2Ø1/2| /| 25| /| deg| IF=20mA
(Spectral Width at half height)| △λ| /| 30| /| nm| IF=20mA
(Reverse Current)| IR| /| /| ≤10| μA| VR=5V

Brightness grading

Code Min Max Unit Test conditions
A5 400 500 mcd IF=20mA
A6 500 700
A7 700 900
A8 900 1200

Voltage grading

Code Min Max Unit Test conditions
N12-7 1.8 2.0 V IF=20mA
N12-8 2.0 2.2
N12-9 2.2 2.4

Wave Length grading:

Code Min Max Unit Test conditions
HY03 585 587.5 nm IF=20mA
HY04 587.5 590
HY05 590 592.5
HY06 592.5 595

Typical Characteristics Curves

Relative Intensity Vs. Wavelength

Forward current derating curve Vs. Amblent temperature

Forward voltage Vs. Forward current

Relative luminous intensity Vs. Forward current

Amblent temperature Vs. Relative luminous intensity

Radiation diagram

Outline Dimension

Note

  1. Dimensions are in millimetres
  2. Tolerances unless mentioned are ± 0.10mm.

Packaging

In Bags
Moisture Proof and Anti-Electrostatic Foil Bag

1000PCS/Bag

Label Explanation

LOT NO:
PART NO:
BIN CODE:
WL:
TV:
VF:

Precautions (1)

  1. APPLY
    This LED can be used in some ordinary electronic equipment, such as office equipment, communication equipment, house decoration, if LED is used in some high reliability requirements, such as air transportation, traffic control melodically equipment, must refer to the information provided by sales.

  2. Keep in storage
    Storage environment of LED with temperature not exceeding 30℃ and relative humidity not exceeding 70%. It is recommended that LDE be used in the original box for no more than three months. If longer storage time is required, putt in the drying box and add desiccant or filled with nitrogen.

  3. Clean
    Special care must be taken when cleaning colloids with chemicals, as some chemicals have damage to the colloidal surface and cause fading such as hydroelectricity, prop lens, ketone, etc.It can be wiped and soaked with ethanol forgo more than 3 minutes at room temperature.

  4. Feet assembly

  5. It must be 2 mm from the colloid to bend the bracket

  6. Support forming must be done with fixtures or by a professional

  7. Support forming must be completed before welding

  8. The pins and spacing are the same as on the circuit board

  9. Welding must be performed at normal temperature and when LED is normally welded to the PCB plate, avoid applying mechanical pressure at LED pins at a minimum
    Precautions (2)

  10. Weld
    When welding, welding must be conducted below 2mm of colloid bottom. When welding, try to avoid soaking LED colloid. After welding, avoid adding external force on the pin or shaking LED colloid.Soldering Temperature| 300℃ Max| Pre – heat| 100℃ Max
    ---|---|---|---
    Pre- heat time| 60sec.Max
    Soldering time| 3 sec. Max| Soldering Temperature| 240℃.Max
    Soldering time| 6sec.max

Excessive welding temperature and prolonged welding can lead to LED deformation and failure

  1. Drive way
    In the current driving mode of LED, if LED is multiple in parallel, it is recommended to use line A and add limitation resistance to each LED to ensure the consistent brightness of LED.
    Circuit model A

    Circuit model B

  2. Electrostatic protection
    High increase of static electricity and current will damage LED. Use anti static devices such as protective belts and gloves. Note: human discharge mode HBM <1000V; machine discharge mode <100V.
    Precautions (3)

  3. Others:
    *When handling the product, touching the encapsulate with bare hands will not only contaminate its surface, but also affect on its optical characteristics. Excessive force to the encapsulate might result in catastrophic failure of the LEDs due to die breakage or wire deformation. For this reason, please do not put excessive stress on LEDs, especially when the LEDs are heated such as during Re flow Soldering.

The epoxy resin of encapsulant is fragile, so please avoid scratch or friction over the epoxy resin surface. While handling the product with tweezers, do not hold by the epoxy resin, be careful. 9. Safety Advice For Human Eyes
Viewing direct to the light emitting center of the LEDs, especially those of great Luminous Intensity, will cause great hazard to human eyes. Please be careful.

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