HLMP-EL23-UV0DD Avago Technologies US Inc., HLMP-EL23-UV0DD Datasheet - Page 5

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HLMP-EL23-UV0DD

Manufacturer Part Number
HLMP-EL23-UV0DD
Description
Lamp,5mm,AlInGaP,Amb,23deg
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HLMP-EL23-UV0DD

Color
Amber
Luminous Flux @ Current - Test
1.3 lm
Millicandela Rating
4350mcd
Current - Test
20mA
Wavelength - Dominant
589.5nm
Wavelength - Peak
590nm
Voltage - Forward (vf) Typ
2.2V
Lens Type
Diffused
Lens Style/size
Round, 5mm, T-1 3/4
Package / Case
Radial - 2 Lead
Height
8.71mm
Viewing Angle
23°
Mounting Type
Through Hole
Resistance Tolerance
589.5nm
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HLMP-EL23-UV0DD
Manufacturer:
AVAGO
Quantity:
40 000
Electrical/ Optical Characteristics at T
Notes:
1. The dominant wavelength, λd is derived from the CIE Chromaticity Diagram referenced to Illuminant E. Tolerance for each color of dominant
2. The radiant intensity, Ie in watts per steradian, maybe found from the equation Ie = Iv / ηV where Iv is the luminous intensity in candela and ηV is
3. h
Figure 1. Relative intensity vs. peak wavelength
5
Parameter
Forward Voltage
Amber
Red
Red-Orange
Peak Wavelength
Amber
Red
Red-Orange
Dominant Wavelength
Amber
Red
Red-Orange
Reverse Voltage
Spectral Halfwidth
Capacitance
Thermal Resistance
Luminous Efficacy
Amber
Red
Red-Orange
Luminous Flux
Luminous Efficiency
wavelength is +/- 0.5nm.
the luminous efficacy in lumens/watt.
e
= j
V
/ I
F
x V
F
, where j
[2]
[3]
[1]
V
is the emitted luminous flux, I
Symbol
V
λ
λ
V
C
h
j
h
PEAK
d
F
R
V
V
e
½
J-PIN
A
= 25ºC
Minimum
1.80
584.5
620.0
612.0
5
F
is electrical forward current and V
Average
2.20
2.10
2.00
590
626
615
17
40
240
480
150
260
1300
30
Maximum Units
2.40
594.5
630.0
621.7
V
nm
nm
V
nm
pF
ºC/W
lm/W
mlm
lm/W
F
is the forward voltage.
Test Condition
I
I
I
I
I
V
LED Junction-to-Anode Lead
Emitted Luminous Flux/Emitted
Radiant Flux
I
Emitted Luminous Flux/ Electrical
Power
F
F
F
R
F
F
F
= 20mA
= 20mA
= 20mA
= 20 mA
= 100μA
= 20mA
= 0, f = 1 MHz

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