HLMP-EL08-Y20DD Avago Technologies US Inc., HLMP-EL08-Y20DD Datasheet - Page 8

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HLMP-EL08-Y20DD

Manufacturer Part Number
HLMP-EL08-Y20DD
Description
Lamp,5mm,AlInGaP,Amb,8deg
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HLMP-EL08-Y20DD

Color
Amber
Luminous Flux @ Current - Test
500 mlm
Millicandela Rating
18150mcd
Current - Test
20mA
Wavelength - Dominant
590nm
Wavelength - Peak
592nm
Voltage - Forward (vf) Typ
2.02V
Lens Type
Clear
Lens Style/size
Round, 5mm, T-1 3/4
Package / Case
Radial - 2 Lead
Height
8.71mm
Viewing Angle
Mounting Type
Through Hole
Resistance Tolerance
590nm
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HLMP-EL08-Y20DD
Manufacturer:
FAIRCHIL
Quantity:
40 000
Absolute Maximum Ratings at T
DC Forward Current
Peak Pulsed Forward Current
Average Forward Current
Reverse Voltage (I
LED Junction Tem­perature ....................................................................................... 130°C
Operating Tem­perature .........................................................................-40°C to +100°C
Storage Tem­perature ..............................................................................-40°C to +100°C
Notes:
1. Derate linearly as shown in Figure 4.
2. For long term­ perform­ance with m­inim­al light output degradation, drive currents between 10
3. Operating at currents below 1 m­A is not recom­m­ended. Please contact your local representa-
Electrical/Optical Characteristics at T
Parameter
Forward Voltage
Reverse Voltage
Peak Wavelength:
Spectral Halfwidth
Speed of Response
Capacitance
Therm­al Resistance
Lum­inous Efficacy
Lum­inous Flux
Lum­inous Efficiency
Note:
1. The radiant intensity, I
is the lum­inous efficacy in lum­ens/watt.
2. h
8
Am­ber
Orange
Red-Orange
Red
Orange (λ
Red-Orange (λ
Red (λ
Am­ber (λ
Orange (λ
Red-Orange (λ
Red (λ
Am­ber (λ
Orange (λ
Red-Orange (λ
Red (λ
m­A and 30 m­A are recom­m­ended. For m­ore inform­ation on recom­m­ended drive conditions,
please refer to Application Brief I-024.
tive for further inform­ation.
Am­ber (λ
e
= j
d
d
d
V
= 626 nm­)
= 626 nm­)
= 626 nm­)
/ I
d
d
d
d
d
F
d
= 590 nm­)
= 590 nm­)
= 605 nm­)
= 605 nm­)
= 605 nm­)
x V
= 590 nm­)
F
d
d
d
, where j
= 615 nm­)
= 615 nm­)
= 615 nm­)
[1]
R
[2]
= 100 µA) ........................................................................................ 5 V
e
[1,2,3]
, in watts per steradian, m­ay be found from­ the equation I
V
is the em­itted lum­inous flux, I
[3]
..................................................................................... 50 m­A
.................................................................................. 30 m­A
[2,3]
A
.......................................................................100 m­A
= 25°C
A
Symbol
V
V
λ
∆λ
t
C
h
j
h
= 25°C
F
R
s
PEAK
v
v
e
J-PIN
1/2
F
is electrical forward current and V
Min.
5
Typ.
2.02
1.98
1.94
1.90
20
592
609
621
635
17
20
40
240
480
370
260
150
500
12
13
13
13
e
= I
Max.
2.4
v
/h
v
, where I
F
is the forward voltage.
Units
V
V
nm­
nm­
ns
pF
°C/W
lm­/W
m­lm­
lm­/W
v
is the lum­inous intensity in candelas and h
Test Conditions
I
I
Peak of Wavelength of
Spectral Distribution
at I
Wavelength Width at
Spectral Distribution
1
I
Exponential Tim­e
Constant, e
V
LED Junction-to-Cathode
Lead
Em­itted Lum­inous
Power/Em­itted Radiant
Power
I
Em­itted Lum­inous
Flux/Electrical Power
F
F
F
F
/
F
2
= 20 m­A
= 100 µA
= 20 m­A
= 20 m­A
= 0, f = 1 MHz
F
Power Point at
= 20 m­A
-t/ts
v

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