HLMP-DG10 Agilent(Hewlett-Packard), HLMP-DG10 Datasheet - Page 6

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HLMP-DG10

Manufacturer Part Number
HLMP-DG10
Description
T-13/4 (5 mm) Precision Optical Performance AlInGaP LED Lamps
Manufacturer
Agilent(Hewlett-Packard)
Datasheet
Electrical/Optical Characteristics at T
Note:
1. The radiant intensity, I
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 +120 C
Soldering Temperature .......................................... 260 C for 5 seconds
Notes:
1. Derate linearly as shown in Figure 4.
2. For long term performance with minimal light output degradation, drive currents
3. Please contact your Hewlett-Packard sales representative about operating currents
Forward Voltage
Reverse Voltage
Peak Wavelength:
Spectral Halfwidth
Speed of Response
Capacitance
Thermal Resistance
Luminous Efficacy
candelas and
between 10 mA and 30 mA are recommended.
below 10 mA.
[1.59 mm (0.060 in.) below seating plane]
Amber (
Orange (
Red-Orange (
Red (
Amber (
Orange (
Red-Orange (
Red (
Amber (
Orange (
Red-Orange (
Red (
d
d
d
Parameter
= 626 nm)
= 626 nm)
= 626 nm)
d
d
d
d
d
d
= 590 nm)
= 590 nm)
= 590 nm)
v
= 605 nm)
= 605 nm)
= 605 nm)
is the luminous efficacy in lumens/watt.
d
d
d
R
= 615 nm)
= 615 nm)
= 615 nm)
= 100 A) ......................................................... 5 V
e
[1,2,3]
[1]
, in watts per steradian, may be found from the equation I
[3]
............................................................ 50 mA
......................................................... 30 mA
[2,3]
................................................ 70 mA
Symbol
R
PEAK
V
V
C
J-PIN
R
F
s
1/2
v
A
= 25 C
Min.
5
A
= 25 C
Typ.
2.02
1.98
1.94
1.90
592
609
621
635
240
480
370
260
150
20
17
20
40
Max.
2.4
e
= I
v
Units
/
lm/W
C/W
nm
nm
pF
v
ns
V
V
, where I
Spectral Distribution
Power/Emitted Radiant
I
I
Peak of Wavelength of
at I
Wavelength Width at
Spectral Distribution
1
I
Exponential Time
Constant, e
V
LED Junction-to-Cathode
Lead
Emitted Luminous
Power
v
F
F
F
/
F
is the luminous intensity in
2
= 20 mA
= 100 A
= 20 mA
= 0, f = 1 MHz
Power Point at
F
Test Conditions
= 20 mA
-t/
s

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