Skip to main content

Low power retrofit LED wait indicators from Siemens

Siemens’ new energy saving LED pedestrian crossing wait indicator retrofit solution allows both Siemens and Peek 48 volt incandescent wait indicators to be upgraded to the latest Central Light Source (CLS) LED technology, says the company. Siemens claim the low power consumption the solution offers power savings typically in excess of 70% and represents a highly cost effective upgrade option for existing wait indicators, particularly when undertaken alongside a wider LED traffic signal upgrade program. The
January 7, 2013 Read time: 2 mins
189 Siemens’ new energy saving LED pedestrian crossing wait indicator retrofit solution allows both Siemens and Peek 48 volt incandescent wait indicators to be upgraded to the latest Central Light Source (CLS) LED technology, says the company.

Siemens claim the low power consumption the solution offers power savings typically in excess of 70% and represents a highly cost effective upgrade option for existing wait indicators, particularly when undertaken alongside a wider LED traffic signal upgrade program.

The new solution uses yellow LEDs to provide improved visibility, particularly in bright sunlight, providing excellent optical performance, combined with easy installation and a full lamp monitoring compatibility with Siemens controllers

According to head of product management, Keith Manston, Siemens’ customers are looking at every opportunity to reduce power consumption and this latest addition to the Siemens low-power LED retrofit portfolio provides a sustainable solution with minimum waste, high optical brightness and outstanding phantom performance.

Siemens says the new wait indicators complement the existing Siemens retrofit solution for Helios and Peek Elite signals, now allowing all signalling equipment on a site to be efficiently upgraded to modern LED technology, re-using as much of the existing roadside equipment as possible.

This latest development not only enables customers to benefit from the overall energy savings of low power LED solutions, it eliminates the ongoing need to regularly replace lamps, reducing the carbon footprint in both the lamp manufacturing process and the vehicle miles travelled to the site to undertake lamp changes.

For more information on companies in this article

Related Content

  • Yunex shrinks to Plus+ size
    September 1, 2022
    ST950S and ST950SP cabinets have reduced footprints designed for small junctions
  • Siemens signs partnership agreement with OptaSense
    March 12, 2015
    A new two-year traffic monitoring partnership between Siemens and OptaSense, a QinetiQ company, has been agreed to further explore the performance and potential commercial deployment of OptaSense Distributed Acoustic Sensing (DAS), a fully networked traffic monitoring solution for the UK traffic industry. The partnership follows successful road monitoring trials by OptaSense in the UK and overseas comparing the performance of the DAS system with conventional inductive loop technology to provide information
  • Siemens introduces latest traffic management solutions
    April 9, 2014
    Siemens is launching a new range of traffic solutions, including the ST950 traffic controller, its Stratos traffic management solution and a complete range of above-ground detectors. The new ST950 traffic controller family represents the very latest in a long line of proven and highly successful traffic controllers designed and built in the UK by Siemens and includes a host of new features and new levels of accessibility and safety to the market. Integral UTMC OTU, 4-stream MOVA 7, easy to follow web sty
  • Reducing detection costs benefits intersection management
    February 3, 2012
    The continuing, favourable performance-versus-cost situation concerning detection and monitoring technologies is driving the proliferation of intelligence across road networks. The effective and safe management of intersections is a focus for network operators and systems manufacturers alike. The most complicated of road environments, and statistically among the least safe, intersections enjoy particular emphasis in longer-term work on cooperative infrastructure solutions. However there are current developm