Skip to main content

SRL shows green for highway workzone stop and go

Company launches Rosgo as well as enhancing Urban64 traffic control system
By Adam Hill June 5, 2023 Read time: 2 mins
Rosgo is SRL's first remotely-operated stop/go sign (image: SRL)

SRL Traffic Systems has launched a product designed to improve safety in highway workzones.

The Remotely Operated Stop Go (Rosgo) System is the company’s first remotely-operated stop/go sign, to be used by staff engaged in temporary works on the road.

SRL says the portable wireless device can be easily and cost-effectively deployed and operated by a single person from a location of safety up to 200m away.

Its 24kg base is the lightest available, the company says, and means one person can lift it.

The 900mm diameter signs may be used as part of an integrated system comprising up to four units, which means it is capable of managing four-way stop/go sites.

It has lithium batteries, which means it can be recharged using an in-vehicle charger, while one button enables the user to coordinate multiple signs - automatically precluding green conflicts.  

SRL’s CEO Adrian Murphy says the company "is committed to ongoing product innovation to help promote the safety of road workers, while facilitating the cost-effective operation of efficient traffic management projects".

SRL has also launched a hand-held device for long-distance control of its Eurolight portable traffic signals.

The Euro Remote Control can also facilitate more unusual scenarios - such as train crossings or slow-moving vehicles – that standard traffic light settings would not be able to accommodate.

It features feedback LEDs, confirming phase settings from a 300m distance, allowing the user "an unparalleled degree of control".  

The unit facilitates the management of manual mode and all-red setting and is rechargeable via USB-C.

SRL also says its existing Urban64 temporary traffic control system has been enhanced with the introduction of an extendable pole on which the signals are mounted.  

Previously constructed on site, lights incorporating the new structure are built off-site, before being transported to their destination, where the poles are swiftly extended to full height, the firm says.

It estimates that the new units "may be cost-effectively installed up to 30% more quickly than the originals". 

This reduces the time for which customers are required to manage traffic while the solution is established, minimising road user disruption.

For more information on companies in this article

Related Content

  • Foundation funds research for informed campaigning
    April 29, 2015
    ITS International talks to Professor Stephen Glaister, director of the transport research and lobbying organisation, the RAC Foundation. It is through the eyes of an economist that Professor Stephen Glaister, emeritus professor of transport and infrastructure at Imperial College London and director of the RAC Foundation, views current and future transport problems. Having spent 30 years at the London School of Economics and another 10 at Imperial, the move to the RAC Foundation was a radical departure from
  • Centralised traffic control, managing changing traffic demands
    January 23, 2012
    Paul van Koningsbruggen and Dave Marples of Technolution BV describe, using a national example from the Netherlands, how smart add-ons to traffic control centres combine to increase cross-centre capabilities and cost-efficiency. Increasingly, traffic management is becoming the natural partner of the civil engineer, improving flows over existing infrastructure to deliver an alternative to laying more blacktop. As in any emerging market, the first steps towards mature traffic management have not necessarily r
  • Spot speed deterrent proved to be transient
    October 18, 2013
    As research and trials show the benefits of average speed enforcement - David Crawford reviews developments on two continents. August 2013 saw the switch on of the Australian State of Victoria’s latest combined point-to-point (P2P) average speed enforcement (ASE) and spot camera control system. Installed on the 27km Peninsula Link to the south-east of Melbourne, the system uses high-resolution automatic number plate recognition (ANPR) cameras and optical character recognition (OCR) technology developed b
  • Tri-nation cooperation on C-ITS Corridor
    June 20, 2016
    In the European C-ITS Corridor project, authorities from three countries are working with the automotive industry on the deployment of Cooperative (V2X) Systems. Cooperative Intelligent Transport Systems/Services (C-ITS) has the potential to improve road safety, transport efficiency and environmentally friendly mobility, as well as creating additional services and new business models. A set of international standards have been developed to provide the technical basis for the deployment of Cooperative ITS.