HLMP-6505 Avago Technologies US Inc., HLMP-6505 Datasheet

LED, 1.91MM, GREEN, 40MCD, 569NM

HLMP-6505

Manufacturer Part Number
HLMP-6505
Description
LED, 1.91MM, GREEN, 40MCD, 569NM
Manufacturer
Avago Technologies US Inc.
Type
Uni-Colorr
Datasheets

Specifications of HLMP-6505

Bulb Size
1.9mm
Led Color
Green
Luminous Intensity
40mcd
Viewing Angle
28°
Forward Current If
30mA
Forward Voltage
2.1V
Led Mounting
Through Hole
Lens Shape
Round
Wavelength Typ
569nm
Color
Green
Millicandela Rating
40mcd
Current - Test
10mA
Wavelength - Dominant
569nm
Wavelength - Peak
565nm
Voltage - Forward (vf) Typ
2.1V
Lens Type
Clear
Lens Style/size
Round, 1.78mm
Package / Case
Axial, Flat Leads
Size / Dimension
2.08mm L x 2.21mm W
Height
2.92mm
Mounting Type
Through Hole
Resistance Tolerance
569nm
Led Size
2.1 mm x 2.2 mm
Illumination Color
High Performance Green
Lens Color/style
Untinted Non-Diffused
Wavelength
569 nm
Operating Current
10 mA
Operating Voltage
2.1 V
Package Type
SMD
Emitting Color
Yellow Green
Test Current (it)
10mA
Forward Current
30mA
Dominant Wave Length
569nm
Product Length (mm)
2.34mm
Product Height (mm)
2.92mm
Product Depth (mm)
2.34mm
Mounting
Surface Mount
Peak Wavelength
565nm
Shape Type
Circular
Main Category
Resistor LED
Number Of Elements
1
Pin Count
2
Operating Temperature Classification
Industrial
Operating Temp Range
-40C to 100C
Reverse Voltage
5V
Lens Dimensions
1.91x1.91x1.4mm
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Luminous Flux @ Current - Test
-
Lead Free Status / Rohs Status
 Details
Other names
516-1406

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HLMP-6505
Manufacturer:
Avago Technologies US Inc.
Quantity:
33 711
Part Number:
HLMP-6505#011
Manufacturer:
OSRAM
Quantity:
19 300
Company:
Part Number:
HLMP-6505#011
Quantity:
3 000
Part Number:
HLMP-6505-L0011
Manufacturer:
AVAGO
Quantity:
40 000
Part Number:
HLMP-6505-L0011
Manufacturer:
AVAGO
Quantity:
50 000
Part Number:
HLMP-6505-L0012
Manufacturer:
AVAGO
Quantity:
40 000
Part Number:
HLMP-6505-L0031
Manufacturer:
AVAGO/安华高
Quantity:
20 000
Subminiature LED Lamps
Technical Data
Features
• Subminiature Flat Top
• Subminiature Dome
• Arrays
• TTL and LSTTL
• Available in Six Colors
• Ideal for Space Limited
• Axial Leads
• Available with Lead
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.
1-174
Package
Light Piping Applications
Package
Viewing Angle
Brightness
Compatible 5 Volt Resistor
Lamps
Applications
Configurations for Surface
Mount and Through Hole
PC Board Mounting
Ideal for Backlighting and
Diffused Dome for Wide
Nondiffused Dome for High
Dome Packages
The HLMP-6XXX Series dome
lamps for use as indicators use
a tinted, diffused lens to provide
a wide viewing angle with a
high on-off contrast ratio. High
brightness lamps use an
untinted, nondiffused lens to
provide a high luminous
intensity within a narrow
radiation pattern.
Arrays
The HLMP-66XX Series
subminiature lamp arrays are
available in lengths of 3 to 8
elements per array. The
luminous intensity is matched
within an array to assure a 2.1
to 1.0 ratio.
Resistor Lamps
The HLMP-6XXX Series 5 volt
subminiature lamps with built
in current limiting resistors are
for use in applications where
space is at a premium.
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 avail-
able. These include special
H
HLMP-PXXX Series
HLMP-QXXX Series
HLMP-6XXX Series
HLMP-70XX Series
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.
5964-9350E

Related parts for HLMP-6505

HLMP-6505 Summary of contents

Page 1

... 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 ...

Page 2

... Device Selection Guide Part Number: HLMP-XXXX DH AS High Standard AlGaAs Efficiency Red Red Red P105 P205 P102 P202 6000/6001 Q101 6300 Q105 6305 Q150 7000 Q155 6600 6620 6203 6653 6204 6654 6205 6655 6206 6656 6208 6658 Package Dimensions (A) Flat Top Lamps NOTES: 1 ...

Page 3

Package Dimensions (cont.) (B) Diffused and Nondiffused NOTES: 1. ALL DIMENSIONS ARE IN MILLIMETERS (INCHES). 2. PROTRUDING SUPPORT TAB IS CONNECTED TO CATHODE LEAD. (C) Arrays NOTES: 1. ALL DIMENSIONS ARE IN MILLIMETERS (INCHES). 2. PROTRUDING SUPPORT TAB IS CONNECTED ...

Page 4

Absolute Maximum Ratings at T Standard AlGaAs Parameter [1] DC Forward Current [2] Peak Forward Current DC Forward Voltage (Resistor Lamps Only) Reverse Voltage (I = 100 A) R Transient Forward Current [3] (10 s Pulse) Operating Temperature Range: Non-Resistor ...

Page 5

... Electrical/Optical Characteristics, T Standard Red Device HLMP- Parameter 6000 [1] 6001 Luminous Intensity 6203 to 6208 Forward Voltage All Reverse Breakdown Voltage P005 Included Angle Between Half Intensity Points [2] All Others Peak Wavelength Dominant Wavelength Spectral Line Half Width All Speed of Response Capacitance Thermal Resistance ...

Page 6

... DH AS AlGaAs Red Device HLMP- Parameter P102 P105 Q101 Q105 Luminous Intensity Q150 Q155 Q101 P205/P505 Forward Voltage Q101/Q105 Q150/Q155 All Reverse Breakdown Voltage P105 Q101/Q150 Included Angle Between Half Intensity Points Q105/Q155 Peak Wavelength Dominant Wavelength Spectral Line Half Width ...

Page 7

... High Efficiency Red Device HLMP- Parameter P202 P205 6300 6305 7000 Luminous Intensity [1] 6600 6620 6653 to 6658 All Forward Voltage (Nonresistor Lamps) 6600 Forward Current (Resistor Lamps) 6620 All Reverse Breakdown Voltage P205 6305 Included Angle Between Half Intensity Points [2] All ...

Page 8

... Orange Device HLMP- Parameter P402 P405 Luminous Intensity Q400 Forward Voltage All Reverse Breakdown Voltage P405 Included Angle Between [2] Half Intensity Points Q400 Peak Wavelength Dominant Wavelength Spectral Line Half Width All Speed of Response Capacitance Thermal Resistance Luminous Efficacy [4] Symbol Min. Typ. Max. Units 1 ...

Page 9

... Yellow Device HLMP- Parameter P302 P305 6400 [1] 6405 Luminous Intensity 7019 6700 6720 6753 to 6758 All Forward Voltage (Nonresistor Lamps) 6700 Forward Current 6720 (Resistor Lamps) All Reverse Breakdown Voltage P305 6405 Included Angle Between [2] Half Intensity Points All Diffused Peak Wavelength ...

Page 10

... High Performance Green Device HLMP- Parameter P502 P505 6500 6505 [1] 7040 Luminous Intensity 6800 6820 6853 to 6858 All Forward Voltage (Nonresistor Lamps) 6800 Forward Current 6820 (Resistor Lamps) All Reverse Breakdown Voltage P505 6505 Included Angle Between Half Intensity Points [2] All ...

Page 11

... Emerald Green [1] Device HLMP- Parameter P605 Luminous Intensity Q600 Forward Voltage Reverse Breakdown Voltage P605 Included Angle Between Half Intensity Points [2] Q600 Peak Wavelength Dominant Wavelength Spectral Line Half Width P605/ Q600 Speed of Response Capacitance Thermal Resistance Luminous Efficacy [4] Note: 1. Please refer to Application Note 1061 for information comparing stnadard green and emerald green light ouptut degradation. ...

Page 12

Figure 1. Relative Intensity vs. Wavelength. Standard Red and DH AS AlGaAs Red Figure 2. Forward Current vs. Forward Voltage. (Non-Resistor Lamp) Standard Red AlGaAs Red Figure 3. Relative Luminous Intensity vs. Forward Current. (Non-Resistor Lamp) High Efficiency ...

Page 13

Standard Red Figure 4. Relative Efficiency (Luminous Intensity per Unit Current) vs. Peak Current (Non-Resistor Lamps). Figure 5. Maximum Forward dc Current vs. Ambient Temperature. Derating Based on T (Non-Resistor Lamps). Standard Red Figure 6. Maximum Tolerable Peak Current vs. ...

Page 14

Figure 7. Resistor Lamp Forward Current vs. Forward Voltage. Figure 9. Relative Intensity vs. Angular Displacement. Figure 8. Resistor Lamp Luminous Intensity vs. Forward Voltage. 1-187 ...

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