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HLMP-RM11-M0000 Datasheet(PDF) 3 Page - AVAGO TECHNOLOGIES LIMITED

No. de pieza HLMP-RM11-M0000
Descripción Electrónicos  4 mm Oval Precision Optical Performance Best Value AlInGaP and InGaN Lamps
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Fabricante Electrónico  AVAGO [AVAGO TECHNOLOGIES LIMITED]
Página de inicio  http://www.avagotech.com
Logo AVAGO - AVAGO TECHNOLOGIES LIMITED

HLMP-RM11-M0000 Datasheet(HTML) 3 Page - AVAGO TECHNOLOGIES LIMITED

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Absolute Maximum Ratings at TA = 25˚C
Parameter
Blue and Green
Red and Amber
DC Forward Current[1]
30 mA
50 mA
Peak Pulsed Forward Current
100 mA
100 mA
Average Forward Current
30 mA
30 mA
Reverse Voltage (IR = 100 µA)
5 V
5 V
Power Dissipation
120 mW
120 mW
LED Junction Temperature
100˚C
110˚C
Operating Temperature Range
–40˚C to +80˚C
–40˚C to +100˚C
Storage Temperature Range
–40˚C to +100˚C
–40˚C to +120˚C
Wave Soldering Temperature
250˚C for 3 sec.
250˚C for 3 sec.
Note:
1. Derate linearly as shown in Figure 6 and 7.
Electrical/Optical Characteristics at TA = 25˚C
Parameter
Symbol
Min.
Typ.
Max.
Units
Test Conditions
Typical Viewing Angle
Major
2
θ1/2
120
deg
Minor
60
Forward Voltage
VF
IF = 20 mA
Amber (
λd = 592 nm)
2.15
2.5
V
Red (
λd = 630 nm)
2.00
2.5
Blue (
λd = 472 nm)
3.5
4.0
Green (
λd = 526 nm)
3.5
4.0
Reverse Voltage
Amber, Red
VR
520
V
IR = 100 µA
Blue, Green
5
IR = 10 µA
Peak Wavelength
Peak of Wavelength
Amber (
λd = 592 nm)
λpeak
594
nm
of Spectral Distribution
Red (
λd = 630 nm)
639
at IF = 20 mA
Blue (
λd = 472 nm)
470
Green (
λd = 526 nm)
524
Spectral Halfwidth
Wavelength Width
Amber (
λd = 592 nm)
∆λ1/2
17
nm
at Spectral Distribution
Red (
λd = 630 nm)
17
1/2 Power Point at
Blue (
λd = 472 nm)
35
IF = 20 mA
Green (
λd = 526 nm)
47
Capacitance
VF = 0, F = 1 MHz
Amber, Red
C
40
pF
Blue, Green
43
Luminous Efficacy
Emitted Luminous
Amber (
λd = 592 nm)
ηv
500
lm/W
Power/Emitted Radiant
Red (
λd = 630 nm)
155
Power at IF = 20 mA
Blue (
λd = 472 nm)
75
Green (
λd = 526 nm)
520
Thermal Resistance
R
θJ-PIN
240
˚C/W
LED Junction-to-Cathode
Lead
Notes:
1. 2
θ1/2 is the off-axis angle where the luminous intensity is 1/2 the on-axis intensity.
2. The radiant intensity, Ie in watts per steradian, may be found from the equation Ie = Ivv where Iv is the luminous intensity in candelas and ηv is
the luminous efficacy in lumens/watt.
3. The luminous intensity is measured on the mechanical axis of the lamp package.
4. The optical axis is closely aligned with the package mechanical axis.
5. The dominant wavelength
λd is derived from the CIE Chromaticity Diagram and represents the color of the lamp.


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