Skip to main content

Report finds LED replacement lamps don’t meet criteria

The Lighting Research Center (LRC) at Rensselaer Polytechnic Institute has been conducting evaluations of LED replacement lamps, most recently those with a mogul base. Its report on phase 1 of the project, Mogul based LED replacement lamps, provides details of the market characterisation and pilot photometric testing of 18 representative mogul base LED lamps alone and in luminaires. LRC found that only four of the 18 lamps met the minimum DesignLights Consortium Qualified Products List criteria for retro
January 13, 2015 Read time: 2 mins
The Lighting Research Center (LRC) at Rensselaer Polytechnic Institute has been conducting evaluations of LED replacement lamps, most recently those with a mogul base. Its report on phase 1 of the project, Mogul based LED replacement lamps, provides details of the market characterisation and pilot photometric testing of 18 representative mogul base LED lamps alone and in luminaires.

LRC found that only four of the 18 lamps met the minimum DesignLights Consortium Qualified Products List criteria for retrofit kits when the lamps were placed in area lighting and roadway luminaires. The lamps tested in wall pack and high bay luminaires did not meet the applicable minimum efficacy criteria for retrofit kits.

LRC also conducted a comprehensive survey of specifiers to identify key considerations for lamp selection and relevant luminaire performance characteristics for various lighting applications, such as light output, intensity distribution, size, to support the development of a performance testing plan, the results of which are also included in the report.

Phase 2 is now underway, consisting of additional performance testing of mogul base LED lamps in representative luminaire types. The results of Phase 2 testing will be released as they become available.

The report was funded by the Bonneville Power Administration (BPA) as an assessment of the state of technology development and the potential for emerging technologies to increase the efficiency of electricity use. BPA is undertaking a multi-year effort to identify, assess and develop emerging technologies with significant potential for contributing to efficient use of electric power resources in the Northwest.

“The market is changing so rapidly—and with any new product, it’s important to understand the full range of quality and performance available to consumers,” said John Wilson, Commercial and Industrial Lighting program manager at the Bonneville Power Administration. “This research will help utilities in the Pacific Northwest to make smart and reliable investments in energy efficiency.”

Related Content

  • Africa transport projects win ITF green awards
    May 27, 2022
    Cash prizes will be spent on data collection to make decarbonisation case in Uganda and Kenya
  • Observing driver behaviour in real traffic condition
    March 16, 2016
    The EU’s UDRIVE project will investigate driver behaviour in terms of road safety and the decarbonisation of road transport, as Nicole van Nes and Silvia Curbelo explain. There were nearly 25,700 fatalities on European Union (EU) roads in 2014 or, to look it another way, roughly 70 people are killed in traffic accidents on European roads every day - and many more are injured. Around 22% of the fatalities are pedestrians, 15% will be motorcycle riders and 8% cyclists. So despite the improvements in road safe
  • ITS Australia Awards: finalists revealed
    November 29, 2022
    Cisco, Moovit and Q-Free are among the companies up for 13th ITS Australia Annual Awards
  • Grant to develop thermoelectric-based energy recovery system for cars
    April 16, 2012
    Amerigon Incorporated has been awarded an US$8 million grant from the US Department of Energy (DOE) to lead the development of an energy recovery system that can improve passenger car fuel efficiency by five per cent by converting waste heat from gas exhaust into electric power using a thermoelectric generator.