HLMP-K155 Avago Technologies US Inc., HLMP-K155 Datasheet

LED 3MM 645NM RD WTR CLR LOW CUR

HLMP-K155

Manufacturer Part Number
HLMP-K155
Description
LED 3MM 645NM RD WTR CLR LOW CUR
Manufacturer
Avago Technologies US Inc.
Type
Uni-Colorr
Datasheet

Specifications of HLMP-K155

Viewing Angle
45°
Package / Case
Radial - 2 Lead
Color
Red
Millicandela Rating
3mcd
Current - Test
1mA
Wavelength - Dominant
637nm
Wavelength - Peak
645nm
Voltage - Forward (vf) Typ
1.6V
Lens Type
Clear
Lens Style/size
Round, 3mm, T-1
Height
4.70mm
Mounting Type
Through Hole
Resistance Tolerance
637nm
Led Size
T-1
Illumination Color
Red
Lens Color/style
Water Clear
Operating Voltage
1.8 V
Wavelength
645 nm
Luminous Intensity
3 mcd
Mounting Style
Through Hole
Package Type
T-1
Emitting Color
Red
Test Current (it)
1mA
Forward Current
20mA
Dominant Wave Length
637nm
Forward Voltage
1.8V
Product Length (mm)
3.43mm
Product Height (mm)
4.7mm
Product Depth (mm)
3.43mm
Mounting
Through Hole
Peak Wavelength
645nm
Shape Type
Circular
Chip Material
GaAlAs
Main Category
Standard LED
Number Of Elements
1
Pin Count
2
Operating Temperature Classification
Commercial
Operating Temp Range
-20C to 100C
Reverse Voltage
5V
Power Dissipation
87mW
Lens Dimensions
3.17x3.17x3.56mm
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Luminous Flux @ Current - Test
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
516-1312

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HLMP-K155
Manufacturer:
QUALITYT
Quantity:
587
Part Number:
HLMP-K155
Manufacturer:
AVAGO
Quantity:
40 000
Part Number:
HLMP-K155-D0002
Manufacturer:
EVERLIGH
Quantity:
40 000
Part Number:
HLMP-K155-D0002
Manufacturer:
AVAGO
Quantity:
50 000
HLMP-D150, HLMP-D155, HLMP-K150 and HLMP-K155
T-13/4 (5 mm), T-1 (3 mm), Low Current, Double Heterojunction
AlGaAs Red LED Lamps
Data Sheet
Description
These solid state LED lamps utilize double heterojunction
(DH) AlGaAs/GaAs material technology. This LED material
has outstanding light output efficiency at very low drive
currents. The color is deep red at the dominant wave-
length of 637 nanometres. These lamps are ideally suited
for use in applications where high light output is required
with minimum power output.
Package Dimensions
Notes:
1. ALL DIMENSIONS ARE IN MILLIMETERS (INCHES)
2 AN EPOXY MENISCUS MAY EXTEND ABOUT 1mm MAX. DOWN THE LEADS
A
B
Features
x Minimum luminous intensity specified at 1 mA
x High light output at low currents
x Wide viewing angle
x Outstanding material efficiency
x Low power/low forward voltage
x CMOS/MOS compatible
x TTL compatible
x Deep red color
Applications
x Low power circuits
x Battery powered equipment
x Telecommunication indicators
1.52 (0.060)
1.02 (0.040)
(0.95)
6.35 (0.250)
5.58 (0.220)
24.1
CATHODE
MIN.
C
SHOULDER
3.43 (0.135)
2.92 (0.115)
3.17 (0.125)
2.67 (0.105)
2.79 (0.110)
2.29 (0.090)
0.65 (0.026) MAX.
0.55 (0.022)
0.40 (0.016)
1.14 (0.045)
0.51 (0.020)
4.70 (0.185)
4.19 (0.165)
SQ. TYP.

Related parts for HLMP-K155

HLMP-K155 Summary of contents

Page 1

... HLMP-D150, HLMP-D155, HLMP-K150 and HLMP-K155 T-13/4 (5 mm), T-1 (3 mm), Low Current, Double Heterojunction AlGaAs Red LED Lamps Data Sheet Description These solid state LED lamps utilize double heterojunction (DH) AlGaAs/GaAs material technology. This LED material has outstanding light output efficiency at very low drive currents ...

Page 2

... T-1 3/4 Red Untinted Non-diffused T-1 Red Tinted Diffused T-1 Red Untinted Non-diffused Note: 1. θ is the off axis angle from lamp centerline where the luminous intensity is 1/2 Part Numbering System HLMP - Luminous Intensity Iv (mcd Device HLMP- Min. D150 1.3 D150-C00xx 1 ...

Page 3

... V Notes: 1. The dominant wavelength, λ derived from the CIE chromaticity diagram and represents the color of the device The radiant intensity watts per steradian, may be found from the equation I e luminous efficacy in lumens/watt. 3. HLMP-D150. 4. HLMP-D155. 5. HLMP-K150/-K155. 3 Value 300 500 mA 110°C -20 to +100° ...

Page 4

... Figure 1. Relative intensity vs. wavelength. Figure 3. Relative luminous intensity vs. dc forward current. Figure 5. Relative luminous intensity vs. angular displacement. HLMP-D150. 4 Figure 2. Forward current vs. forward voltage. Figure 4. Maximum forward dc current vs. ambient temperature. Derating based on TJ Max. = 110 °C. Figure 6. Relative luminous intensity vs. angular displacement. HLMP-K150. ...

Page 5

... T 2400.0 U 3400.0 V 4900.0 W 7100.0 X 10200.0 Y 14800.0 Z 21400.0 Note: Maximum tolerance for each bin limit is r 18%. 5 Figure 8. Relative luminous intensity vs. angular displacement. HLMP-K155. Max. 2.4 3.8 6.1 9.7 15.5 24.8 39.6 63.4 101.5 162.4 234.6 340.0 540.0 850.0 1200.0 1700.0 2400 ...

Page 6

Mechanical Option Matrix Mechanical Option Code Note: All categories are established for classification of products. Products may not be available in all categories. Please contact your local Avago representative for further ...

Page 7

Precautions: Lead Forming: x The leads of an LED lamp may be preformed or cut to length prior to insertion and soldering on PC board. x For better control recommended to use proper tool to precisely form and ...

Page 8

Example of Wave Soldering Temperature Profile for TH LED TURBULENT WAVE 250 200 150 100 50 PREHEAT Packaging Label: (i) Avago Mother Label: (Available on packaging box of ammo pack and shipping box) 8 LAMINAR ...

Page 9

Avago Baby Label (Only available on bulk packaging) /DPSV %DE\ /DEHO For product information and a complete list of distributors, please go to our web site: Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in ...

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