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Details
LM-85-14
IES Approved Method for Electrical & Photometric Measurements of High Power LEDs
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LM-9-09
Electrical and Photometric Measurements of Fluorescent Lamps
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LM-46-04
Photometric Testing of Indoor Luminaires Using High Intensity Discharge or Incandescent Filament Lam
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LM-52-03
Photometric Measurements of Roadway Sign Installations (Reaffirmed 2014)
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LM-62-06
Laboratory or Field Thermal Measurements of Fluorescent Lamps and Ballasts in Luminaires, Reaffirmed
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LM-73-04
Testing of Entertainment Luminaires Using Incandescent Filament Lamps or High Density Discharge Lamp
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LM-76-02
Photometric Testing of Fiber Optics Lighting Systems (Reaffirmed 2008)
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LM-78-07
Approved Method for Total Luminous Flux Measurement of Lamps Using an Integrating Sphere Photometer
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LM-79-08
Approved Method: Electrical and Photometric Measurements of Solid-State Lighting Products
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LM-77-09
Intensity Distribution Measurement of Luminaires and Lamps Using Digital Screen Imaging Photometry
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LM-81-10
Photometric Testing of Skylights and Tubular Daylighting Devices under Hemispherical Sky Conditions
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LM-40-10
Life Testing of Fluorescent Lamps
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LM-47-12
IES Approved Method For Life Testing of High Intensity Discharge (HID) Lamps
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LM-49-12
Life Testing of Incandescent Filament Lamps
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LM-51-13
Electrical and Photometric Measurement of High Intensity Discharge Lamps
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LM-58-13
IES Approved Method for Spectroradiometric Measurement Methods for Light Sources
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LM-84-14
IES Approved Method for Measuring Luminous Flux and Color Maintenance of LED Lamps, Light Engines, a
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LM-41-14
Approved Method for Photometric Testing Of Indoor Fluorescent Luminaires
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LM-66-14
Electrical and Photometric Measurements of Single-Based Fluorescent Lamps
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LM-65-14
IES Approved Method for Life Testing of Single-Based Fluorescent Lamps
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LM-80-15
IES Approved Method: Measuring Luminous Flux and Color Maintenance of LED Packages, Arrays and Modul
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LM-45-15
IES Approved Method for the Electrical and Photometric Measurement of General Service Incandescent F
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IEC 61000-4-16
Electromagnetic compatibility (EMC) - Part 4-16: Testing and measurement techniques - Test for immunity to conducted, common mode disturbances in the frequency range 0 Hz to 150 kHz.
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ITU G650.3
Definitions and test methods for installed single mode fiber cable sections
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EIA/TIA-455-FOTP-33
Fiber Optic Cable Tensile Load and Bending
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EIA/TIA-455-FOTP-111
Vibration Test Procedure for Fiber Optic Components and Cables
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EIA/TIA-455-FOTP-195
Coating Geometry Measurement for Optical Fiber
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MIL-DTL-38999
General Specifications for Electrical Circular Connectors
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IEC 60793-1-48
Measurement Methods and Test Procedures: Polarization Mode Dispersion
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IEC 60793-2-50 (C5)
Measurement methods and test procedures: Hydrogen Aging
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IEC-TR-62284
Effective area measurements of single-mode optical fibres - Guidance
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ITU G650.1
Definitions and test methods for linear, deterministic attributes of single-mode fibre and cable
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ITU G650.2
Definitions and test methods for statistical and non-linear related attributes of single-mode fiber
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LM-86-15
IES Approved Method: Measuring Luminous Flux and Color Maintenance of Remote Phosphor Components (LM
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IEC 60793-1-44
Measurement methods and test procedures - Cut-off wavelength
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IEC 60793-1-45
Measurement methods and test procedures - Mode field diameter
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IEC 60793-1-47
Measurement methods and test procedures - Macrobending loss
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MIL-DTL-83526
General Specification for Fiber Optic Circulars Connector, Hermaphroditic
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IEC 60793-1-42
Measurement methods and test procedures - Chromatic dispersion
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IEC 60793-1-40
Measurement methods and test procedures - Attenuation
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IEC 60793-1-43
Measurement methods and test procedures - Numerical aperture measurement.
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IEC 60793-1-20
Measurement methods and test procedures - Fiber geometry
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IEC 60793-1-21
Measurement methods and test procedures - Coating geometry
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IEC 60793-1-34
Measurement methods and test procedures - Fiber curl
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TO-3
BTEX and TPH
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ASTM F150
Standard Test Method for Electrical Resistance of Conductive and Static Dissipative Resilient Flooring
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IEC 61300-2-14
Fibre optic interconnecting devices and passive components -Basic test and measurement procedures- Part 2-14: Tests- High optical power
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LM-85-14
01-Jan-2014
IES Approved Method for Electrical & Photometric Measurements of High Power LEDs
This document describes the procedures to be followed and precautions to be observed in performing accurate measurements of total luminous flux, total radiant flux (optical power), total photon flux, electrical power, luminous efficacy, color quantities, and wavelength characteristics of high-power light emitting diodes (LEDs) including white LEDs as well as single color LEDs. This document covers LED packages (defined in ANSI/IES RP-16-10) including those with multiple chips and remote-phosphor LED packages. This document covers measurement under pulse operation as well as steady DC operation of LEDs, and in all cases, the thermal condition of LEDs refers to their junction temperature. The approved methods apply to laboratory measurements.
This document does not cover LED arrays or modules, nor LED lighting products; it does not cover AC driven LEDs, and does not apply to measurements in LED manufacturer’s production control nor relative measurements of LED thermal characteristics.
Contents
Scope
Normative References
Definitions
Preparation for Measurements
Methods of Measurement under Pulse-Mode Operation of DUT
Method of Measurement under DC-Mode Operation of DUT
Optical Measurement and Equipment
Electrical Measurement and Equipment
Test Report
References
Annex A Pulse-Mode and DC-Mode Methods for LED Operation
Annex B Estimation of Tj Rise and Correction
Annex C Caution for Optical Measurement Instruments for Pulse-Mode Methods
Annex D Integrating Sphere and Goniophotometer
Annex E Integrating Sphere Geometries and Calibration Methods
Annex F General Design of Integrating Spheres
Annex G Self-Absorption Correction
Annex H Calibration of Sphere-Spectroradiometer
Annex I Use of Spectroradiometer
Annex J Other Sources of Error
Annex K Sphere-Photometer System
Annex L Goniophotometric Method for Total Luminous Flux
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TI-IND-MAT-6-3