HOME > LED Products > LED Lighting > High Power LED > 8YP-LL3D5PW-4B66-2W0 High Power LED

Quantity:
8YP-LL3D5PW-4B66-2W0 High Power LED

Product Name: 8YP-LL3D5PW-4B66-2W0

Product Application: Street lamps ,spotlights ,architectural lighting landscapes,lighting ecterior illmination and more Wall wash lamps, underwater lamps ,decorative illumination and more, undergroud lamps ,reading lamps ,emergency lights and interior illumination, Miver's lamps,flashlights and car lamps,traffic signals and indicating lamps .

Typical Optical/electrical Characteristics(Ta=25°C)

Item

Symbol

Min.

Max.

Condition

Unit

Forward Voltage

VF

3.0

3.6

IF=700mA

V

Luminous Flux

Φ

160

180

IF=700mA

Lm

Peak Wavelength

X/Y

0.30

0.36

IF=700mA

NM

CCT

CCT

5500

6500

IF=700mA

Kelvin

View Angle

140

IF=700mA

deg

Reverse Current

Ir

0

3

Vr=5V

uA


Torlerance Grade(mm)

0.5-7

>7-30

Medium(mm)

±0.1

±0.2

Absolute Maximum Rating

Item

Symbol

Absolute Maximum Rating

Unit

Reverse Voltage

VR

5

V

Forward Current

IF

700

mA

Peak Forward Current(Pulse Widh≤10msec duty≤1/10)

IFP

1

A

Power dissipation

PD

3

W

Operation Temperature

Topr

-25~+85

°C

Storage Temperature

Tstg

-40~+100

°C

Lead Soldering Temperature
(3mm from the base of the epoxy bulb)

Tsol

Max.260°C for5sec max

Reliability Performance

Test Item

Test Conditions

Test Duration

Sample Size

AC/RE

Room Temperature DC Operating Life Test

Ta=25°C±5°C,IF=700mA

1000hrs

50pcs

0/1

High/Low Temperature Storage

100°C/-40°C

1000hrs

50pcs

0/1

High Temperature/High Humidity Test

Ta=60°C RH=85% IF=700mA

1000hrs

50pcs

0/1

Temperature Cycle Test

-40°C/30min~25°C/5min
~100°C/30min~25°C

50cycles

50pcs

0/1

Thermal Shock Test

-40°C/30min~100°C/30min

50cycles

50pcs

0/1

Resistance to Soldering Heat

Ta=250°C±5°C

5sec.

50pcs

0/1

NOTES:
1.Recommend Forward Current 650mA-700mA.
2.Tolerance of measurement of forward voltage±0.05.
3.Tolerance of measurement of luminous intensity±5%.
4.Tolerance of measurement of peak wavelength±0.5nm.