HLMP-Q150-F001L Avago Technologies US Inc., HLMP-Q150-F001L Datasheet - Page 9

LED, 1.91MM, RED, 1.8MCD, 637NM

HLMP-Q150-F001L

Manufacturer Part Number
HLMP-Q150-F001L
Description
LED, 1.91MM, RED, 1.8MCD, 637NM
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HLMP-Q150-F001L

Bulb Size
1.91mm
Led Color
Red
Luminous Intensity
1.8mcd
Viewing Angle
90°
Forward Current If
1mA
Forward Voltage
1.6V
Led Mounting
Through Hole
Lens Shape
Round
Wavelength Typ
637nm
Color
Red
Millicandela Rating
1.8mcd
Current - Test
1mA
Wavelength - Dominant
637nm
Wavelength - Peak
645nm
Voltage - Forward (vf) Typ
1.6V
Lens Type
Diffused, Red Tinted
Lens Style/size
Round, 1.78mm
Package / Case
Axial, Right Angle Bend (2.54mm Center)
Size / Dimension
2.08mm L x 2.21mm W
Height
2.92mm
Mounting Type
Through Hole
Resistance Tolerance
637nm
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Luminous Flux @ Current - Test
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HLMP-Q150-F001L
Manufacturer:
AVAGO
Quantity:
50 000
Yellow
Device
HLMP-
P302-F00xx
P305-F00xx
6400-F00xx
6400-JK000
6405-J00xx
6405-MN0xx
7019-D00xx
6700-G00xx
6720-F00xx
All
6700
6720
All
P305
6405
All Diffused
All
9
Parameter
Luminous Intensity
Forward Voltage
(Nonresistor Lamps)
Forward Current
(Resistor Lamps)
Reverse Breakdown
Voltage
Included Angle Between
Half Intensity Points
Peak Wavelength
Dominant Wavelength
Spectral Line Half Width
Speed of Response
Capacitance
Thermal Resistance
Luminous Efficacy
[4]
[1]
[2]
[3]
Symbol
I
V
I
V
2q
l
l
Dl
t
C
Rq
h
V
F
s
F
R
PEAK
d
v
1
J-PIN
1/2
/
2
Min.
1.0
1.0
1.0
4.0
3.6
16
0.4
1.4
0.9
5.0
Typ.
3.0
4.0
9.0
20
0.6
5.0
2.0
2.0
9.6
3.5
50.0
125
28
90
583
585
36
90
15
170
500
Max.
12.5
50
2.4
13.0
5.0
Units
mcd
V
mA
V
Deg.
nm
nm
nm
ns
pF
lm/W
C/W
Test Conditions
I
I
V
I
V
Measured at Peak
V
Junction-to-Cathode Lead
F
F
F
F
F
F
= 10 mA
= 2 mA
= 10 mA
= 5.0 Volts
= 5.0 V
= 0; f = 1 MHz

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