Skip to main content

New UPS to protect Siemens traffic control systems

Siemens has teamed up with uninterruptible power supply (UPS) specialist, Harland Simon UPS, which has created a new range of UPS systems for Siemens the company to offer critical protection within key traffic control systems, reducing the chances of accidents and traffic congestion in the event of power failure. The high specification solution is based on the Harland ProtectUPS-T, which can be adapted to meet specific demands that are available in 500W, 1000W and 2000W versions. The system is equipped w
November 12, 2014 Read time: 2 mins
189 Siemens has teamed up with uninterruptible power supply (UPS) specialist, 7887 Harland Simon UPS, which has created a new range of UPS systems for Siemens the company to offer critical protection within key traffic control systems, reducing the chances of accidents and traffic congestion in the event of power failure.

The high specification solution is based on the Harland ProtectUPS-T, which can be adapted to meet specific demands that are available in 500W, 1000W and 2000W versions. The system is equipped with the new high-efficiency Lead Crystal batteries which contain no toxic fluids, cadmium or antimony, are up to 99 per cent recyclable and are ISO 14001 certified. It uses mains power to maintain the charge in the Lead Crystal batteries at an optimum level, helping to maximise battery life.

In the event of a power failure the system switches seamlessly to the backup batteries without interrupting the power to the traffic controller, ensuring there is no disruption to normal traffic control. On restoration of the site power, the system automatically switches back to mains power and begins to re-charge the batteries.

Keith Manston, Siemens head of Product Management  said the need to protect critical traffic infrastructure in the event of power failures meant their UPS systems needed to ‘set the standard’  which led to the company working with Harland Simon UPS to develop the Harland ProtectUPS-T.

“New and complex junction designs are being increasingly risk-assessed by local authorities and the agencies working for them and where a power-loss risk is identified, UPS’s are being specified. Historically there were no purpose-built UPS solutions on the market and we saw an opportunity to create a range with key performance benefits that we could offer.”

Related Content

  • ‘One-Watt’ traffic signals from Siemens
    April 6, 2016
    Small is big news on the Siemens stand as the company unveils its ultra-low consumption One-Watt technology for traffic lights. The move from incandescent bulbs to 230V LED lamp heads had seen an enormous reduction in power consumption (down from 60Watts per head to around 15W) but means the load resistors and switching elements in the signal units are often the biggest energy consumers.
  • Winsted: ‘Minimise distraction – maximise focus’
    June 13, 2022
    Traffic management is a physically and mentally demanding job – so select transportation control room furniture that provides bumper-to-bumper productivity, says Randy Smith of Winsted
  • Advanced Driver Assistance Systems: a solution or another problem?
    November 27, 2013
    Do Advanced Driver Assistance Systems represent a positive step forward for safety, or something of a safety risk? Jason Barnes discusses the issue with leading industry figures. Advanced Driver Assistance Systems (ADAS) are already common. Anti-lock brakes or electronic stability control are well understood and are either fitted as standard or frequently requested by new vehicle buyers. More advanced ADAS features are appearing on many top-end vehicles and the trickle-down has already started. Adaptive
  • IBM Research boosts Battery 500 project
    April 23, 2012
    IBM has announced that two industry leaders, Asahi Kasei and Central Glass, will join its Battery 500 Project team and collaborate on far-reaching research with the potential to accelerate the switch from gasoline to electricity as the primary power source for vehicles. In 2009, IBM Research pioneered a sustainable mobility project to develop lithium-air battery technology capable of powering a family-sized electric car for approximately 500 miles (800 km) on a single charge.