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PDF HLMP-Q105A Data sheet ( Hoja de datos )

Número de pieza HLMP-Q105A
Descripción SUBMINIATURE T-3/4 LED DIFFUSED and CLEAR LAMPS
Fabricantes Fairchild Semiconductor 
Logotipo Fairchild Semiconductor Logotipo



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H
Subminiature High
Performance TS AlGaAs Red
LED Lamps
Technical Data
HLMP-P106/P156
HLMP-Q10X/Q15X
Features
• Subminiature Flat Top
Package
Ideal for Backlighting and
Light Piping Applications
• Subminiature Dome
Package
Diffused Dome for Wide
Viewing Angle
Non-diffused Dome for High
Brightness
• Wide Range of Drive
Currents
500 µA to 50 mA
• Ideal for Space Limited
Applications
• Axial Leads
• Available with lead
configurations for Surface
Mount and Through Hole
PC Board Mounting
Description
Flat Top Package
The HLMP-PXXX Series flat top
lamps use an untinted, non-
diffused, truncated lens to
provide a wide radiation pattern
that is necessary for use in
backlighting applications. The
flat top lamps are also ideal for
use as emitters in light pipe
applications.
Dome Packages
The HLMP-QXXX Series dome
lamps, for use as indicators, use
a tinted, diffused lens to provide
a wide viewing angle with high
on-off contrast ratio. High
brightness lamps use an
untinted, nondiffused lens to
provide a high luminous inten-
sity within a narrow radiation
pattern.
Lead Configurations
All of these devices are made by
encapsulating LED chips on
axial lead frames to form
molded epoxy subminiature
lamp packages. A variety of
package configuration options is
available. These include special
surface mount lead configura-
tions, gull wing, yoke lead, or Z-
bend. Right angle lead bends at
2.54 mm (0.100 inch) and 5.08
mm (0.200 inch) center spacing
are available for through hole
mounting. For more information
refer to Standard SMT and
Through Hole Lead Bend
Options for Subminiature LED
Lamps data sheet.
Technology
These subminiature solid state
lamps utilize a highly optimized
LED material technology,
transparent substrate
aluminum gallium arsenide (TS
AlGaAs). This LED technology
has a very high luminous
efficiency, capable of producing
high light output over a wide
range of drive currents (500 µA
to 50 mA). The color is deep red
at a dominant wavelength of
644 nm deep red. TS AlGaAs is
a flip-chip LED technology, die
attached to the anode lead and
wire bonded to the cathode lead.
Available viewing angles are
75°, 35°, and 15°.
1-168
5964-9365E

1 page




HLMP-Q105A pdf
Electrical Characteristics at TA = 25°C
Part
Number
HLMP-
Forward
Voltage
VF (Volts)
@ IF = 20 mA
Typ. Max.
Reverse
Breakdown
VR (Volts)
@ IR = 100 µA
Min. Typ.
Capacitance
C (pF)
VF = 0,
f = 1 MHz
Typ.
Q106
1.9 2.4
5 20
20
Thermal
Resistance
RθJ-PIN (°C/W)
170
Speed of Response
τs (ns)
Time Constant
e-t/τ s
Typ.
45
Q102
1.9 2.4
5 20
20
170
45
P106
1.9 2.4
5 20
20
170
45
Electrical Characteristics at TA = 25°C
Part
Number
(Low
Current)
HLMP-
Forward
Voltage
VF (Volts)
@ IF = 0.5 mA
Typ. Max.
Reverse
Breakdown
VR (Volts)
@ IR = 100 µA
Min. Typ.
Capacitance
C (pF)
VF = 0,
f = 1 MHz
Typ.
Q156
1.6 1.9
5 20
20
Thermal
Resistance
RθJ-PIN (°C/W)
170
Speed of Response
τs (ns)
Time Constant
e-t/τ s
Typ.
45
Q152
1.6 1.9
5 20
20
170
45
P156
1.6 1.9
5 20
20
170
45
1.0
10-1
10-2
10-3
500
600 700
WAVELENGTH – nm
1000
Figure 2. Relative Intensity vs.
Wavelength.
300
200
100
50
20
10
5
2
1
0 0.5 1.0 1.5 2.0 2.5 3.0 3.5
VF – FORWARD VOLTAGE – V
Figure 3. Forward Current vs.
Forward Voltage.
1.2
1.1
1.0
0.9
0.8
0.7
0.6
0.5
0.4
0.3
0.2
0.1
0.0
1
2
5 10 20 50 100 200 300
IPEAK – PEAK FORWARD CURRENT – mA
Figure 5. Relative Efficiency vs.
Peak Forward Current.
1-172
50
40
RθJA = 400° C/W
30
RθJA = 550° C/W
20
10
0
0 20 40 60 80 100
TA – AMBIENT TEMPERATURE – °C
Figure 6. Maximum Forward DC
Current vs. Ambient Temperature.
Derating Based on TJMAX = 110°C.
2.4
2.0
1.0
0.5
0.2
0.1
0.05
0.01
0.5
1
2
5 10 20
50
IF – DC FORWARD CURRENT – mA
Figure 4. Relative Luminous
Intensity vs. DC Forward Current.
50
40
f > 300 Hz
30
f > 100 Hz
20
f > 1000 Hz
10
0
50 100 150 200 250 300
IPEAK – PEAK FORWARD CURRENT – mA
Figure 7. Maximum Average
Current vs. Peak Forward Current.

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