The Lumen Maintenance Gap

Lumens

October 3, 2018

This article is an excerpt from a technical brief, “Understanding LM-80, Lumen Maintenance, and LED Fixture Lifetime,” by Philips Color Kinetics.

Test results of lumen maintenance in conventional and LED light sources differ considerably. This is known as the lumen maintenance gap. These tests are performed to determine the useful life of a light source. But how do we compare lighting technologies satisfactorily if test results of a same designation do not mean the same thing? These lumen maintenance measurement distinctions are those we will examine in this article, as a clear understanding of this gap will have a significant impact on the installation, maintenance and replacement cost calculations of lighting products.

As an example of the benefits offered by lumen maintenance, the World Market Center in Las Vegas, Nevada (shown in photo), uses over 8,000 ft (2,438.4 m) of eW Cove Powercore linear LED lighting fixtures from Philips Color Kinetics to illuminate the complex geometries of the atrium in one of its buildings. LED cove lighting offers advantages over conventional cove lights in high-end installations such as this one. With useful life of up to 70,000 hours, and a very low failure rate, LED cove lights virtually guarantee reliable illumination around the clock for many years, without dark spots from lamp outages that can mar the elegant and uniform presentation of a premier space.

Lumen maintenance of LED and traditional light sources

When controlled, LED light sources can have a useful life that lasts considerably longer than the rated life of a conventional lighting source. Here’s an example: the World Market Center in Las Vegas, Nevada (shown in photo) uses over 8,000 ft (2,438.4 m) of eW Cove Powercore linear LED lighting fixtures from Philips Color Kinetics to illuminate the complex geometries of the atrium in one of its buildings. LED cove lighting offers advantages over conventional cove lights in high-end installations such as this one. With useful life of up to 70,000 hours, and a very low failure rate, LED cove lights virtually guarantee reliable illumination around the clock for many years, without dark spots from lamp outages that can mar the elegant and uniform presentation of a premier space.

The following table presents comparative data for the typical useful life range of various light sources.

Testing conventional light sources

LM-65-14 is a document that defines life testing procedures for compact fluorescent lamps (CFLs), while LM-49-12 defines life testing procedures for incandescent filament lamps. Both publications establish testing conditions, testing sample sizes, and valuation methods used for generalizing test data.

For CFLs, LM-65 specifies that a statistically valid sample be tested at an ambient temperature varying between 15⁰C and 40⁰C, in a cycle of three hours on and 20 minutes off (CFL life is appreciably shortened by the frequency with which the lamp is turned on and off). The point at which half the lamps fail is the rated average life for that lamp.

For incandescent filament lamps, LM-49 stipulates that a statistically valid sample be tested within the manufacturer’s stated operating temperature range and voltage. Lamps are turned off and allowed to cool to ambient temperature once a day (usually for 15 to 30 minutes). As with CFLs, rated life for incandescent filament lamps is the total operating time at which half the lamps cease to operate.

Lumen 2Testing conventional LED sources

As of 2014, the technical publication entitled LM-84-14 was introduced as a means to fill a gap created by the lack of standardized LED fixtures and lamps testing methods. Even today, the rated life is calculated according to tests performed on lighting system diodes and not on the overall lamp or fixture system. Unfortunately, at this point, the LM-84 publication has disclosed only light system test parameters and is unable to provide other calculation methodology to issue results that might establish a specific rated life.

Many fixture manufacturers develop their individual interpretation of the life test results and establish in their own way the useful life of light sources. Often, they do not share the extrapolation or evaluation methods, so any comparison between the products of various manufacturers becomes both difficult and imprecise.
Lumen 3

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Useful life is not fixture lifetime

It’s important to keep in mind that useful life and fixture lifetime are two very different things. The useful life of a fixture refers to the lumen maintenance projections of the LED sources integrated into that fixture — in plain English, the number of hours an LED lighting fixture will deliver a sufficient amount of light in a given application.

Fixture lifetime, on the other hand, has to do with the reliability of the components of an LED lighting fixture as a system, including the electronics, materials, housing, wiring, connectors, seals, and so on. The entire system lasts only as long as the critical component with the shortest life, whether that critical component is a weather seal, an optical element, an LED, or something else. From this point of view, LED light sources are simply one critical component among many, although they are often the most reliable component of the whole lighting system.

Read the full document here: www.colorkinetics.com/Learn/docs/LEDLifetime.pdf

Related Articles


Latest Articles

  • Early Identification of Critical Risks in Construction Can Save Lives

    Early Identification of Critical Risks in Construction Can Save Lives

    January 26, 2026 The Canadian Construction Safety Council (CCSC), a coalition of leading construction companies dedicated to building a safer Canada, has released its Critical Risks Guideline, a comprehensive framework designed to prevent serious injuries and fatalities (SIFs) in the construction industry.  “Safety is a shared responsibility, not a tool for competitive advantage,” says Ryan Tones, President, Peter Read More…

  • ANNQUAN Brand Power Strips Recalled Due to Fire Hazard

    ANNQUAN Brand Power Strips Recalled Due to Fire Hazard

    January 23, 2026 Summary Affected products This recall involves ANNQUAN-branded power strips models EX-D112-05 and EX-D106-25. Power strip model EX-D112-05 has a black metal enclosure with 12 receptacles made of yellow plastic. There is one on/off switch located at the end of the housing closest to the power cord. Power strip model EX-D106-25 has a yellow Read More…

  • Lighting Case Study: The Historic Congregation Emanu-El

    Lighting Case Study: The Historic Congregation Emanu-El

    January 23, 2026 By Mac’s II Agencies Nestled in the heart of Victoria, the historic Congregation Emanu-El presented a unique opportunity for Mac’s II Agencies to craft a lighting experience that enhances worship while respecting the architectural heritage of the space. True to our “Design, Supply, Support” approach, we led the project from design concept Read More…

  • Electrical Permit Requirements for Alarm System and Voice, Data, Video Installations

    Electrical Permit Requirements for Alarm System and Voice, Data, Video Installations

    January 19, 2026 Other than the exceptions listed below, electrical permits and inspections are required for all electrical work involved in the installation of intrusion and similar alarm systems in all structures. Electrical permits and inspections ensure that low -voltage systems are installed safely and in compliance with Code requirements. A permit and inspections must Read More…


Changing Scene

  • Leviton Celebrates 120 Years of Innovation

    Leviton Celebrates 120 Years of Innovation

    January 26, 2026 Leviton is celebrating the 120th anniversary of its founding this year. Established in 1906, Leviton began as a small tin smithing business founded by Isidor Leviton, where he produced mantle tips used for gas lighting. Since those humble beginnings, Leviton has grown from a single-product manufacturer into a global leader delivering comprehensive Read More…

  • LaPlante Joins the Champion Fiberglass® Manufacturers Representative Network in Quebec

    LaPlante Joins the Champion Fiberglass® Manufacturers Representative Network in Quebec

    January 26, 2026 Champion Fiberglass® welcomes LaPlante as the new representative agency for Quebec. With deep roots in Canada’s electrical industry and a reputation built over multiple generations, the firm brings experience, steady leadership, and a clear understanding of the province’s commercial and industrial markets. LaPlante carries the distinction of being one of the oldest electrical Read More…

  • Mersen Canada Toronto Celebrate 2000 Days with No Lost Time Accidents

    Mersen Canada Toronto Celebrate 2000 Days with No Lost Time Accidents

    January 26, 2026 On December 29, 2025, MERSEN CANADA TORONTO Inc. achieved a significant safety milestone at its Canadian manufacturing facility, Mersen Canada Toronto Inc., marking 2,000 consecutive days without a lost-time accident. “This achievement would not have been possible without the employees’ consistent commitment to safety and their diligent adherence to established procedures,” said Read More…

  • New Skills Program to Help Veterans Build Construction Careers in Nova Scotia

    New Skills Program to Help Veterans Build Construction Careers in Nova Scotia

    January 23, 2026 The Province is helping Canadian Armed Forces veterans, reservists and their family members transition to construction careers. The assistance is through the new Skills Bridge initiative that will support up to 100 people over the next three years. The program, funded by the Province and delivered by the non-profit organization Helmets to Read More…