Skip to main content

Heavy-duty radar detection

Brigade has launched a new heavy-duty radar detection system to enable construction vehicles and mobile plant equipment to manoeuvre more safely, preventing costly vehicle damage.
February 3, 2012 Read time: 2 mins
4065 Brigade Electronics has launched a new heavy-duty radar detection system to enable construction vehicles and mobile plant equipment to manoeuvre more safely, preventing costly vehicle damage. As the company points out, most construction vehicles and mobile plant equipment have extensive blind spots which make manoeuvring both difficult and dangerous. Brigade's Xtreme Backsense system solves this by detecting moving and stationary objects around the vehicle and warning the driver in the cab.

The system warns the driver that an object is in range by means of both graduated visual and audible warnings. The visual display has five LEDs each representing one fifth of the detection range, whilst the intermittent audible sound increases in rate as an object becomes closer. Xtreme Backsense can be programmed to maximum detection ranges of six, eight or ten metres depending on requirements and has improved precision with the last graduation only 80cm from the sensor. This graduated warning system allows the driver to judge speed and direction with limited visibility.

Multiple sensors can be connected to the rear, front or side with a single display to increase the detection area and maximise safety. Additionally, Xtreme Backsense can be integrated with other vehicle safety devices which enhance operator awareness, such as camera monitor systems and reversing alarms, the latter also helping to warn other workers.

For more information on companies in this article

Related Content

  • Debating the future development of ANPR
    July 31, 2012
    What future is there for automatic number plate recognition? Will it be supplanted by electronic vehicle identification, or will continuing development maintain the technology's relevance? In recent years, digitisation and IP-based communication networks have allowed Automatic Number Plate Recognition (ANPR) to achieve ever-greater utility and a commensurate increase in deployments. But where does the technology go next - indeed, does it have a future in the face of the increasing use of, for instance, Dedi
  • LeddarTech receives Frost & Sullivan Product Innovation award
    January 8, 2016
    Based on its recent analysis of the advanced driver assistance systems (ADAS) market, Frost & Sullivan has awarded LeddarTech the 2016 North American Frost & Sullivan Award for Product Innovation.The company markets an innovative time-of-flight optical detection and ranging technology, Leddar, which brings many new capabilities to the table. These include short- and long-range detection capabilities for a variety of automotive and transportation applications, narrow to wide fields of view, low sensitivity t
  • New ANPR solutions overcome variables
    May 18, 2018
    The sheer range of variables makes it difficult to find a single algorithm to ensure a 100% standard of ANPR. David Crawford investigates new processing technology. Automatic number plate recognition (ANPR), using optical character recognition and image-processing to identify vehicles, plays key roles in traffic monitoring and law enforcement, access and parking control, electronic toll collection, vehicle security and crime deterrence. Overall, system performance is well rated, with high levels of
  • Road safety systems on show at ITS World Congress
    January 30, 2012
    A vast array of new products and systems for aiding road safety were displayed at the ITS World Congress in October. David Crawford assesses a selection of safety initiatives exhibited in Orlando. Vital roles for ITS applications in road traffic safety emerge clearly from a new report from the US Transportation Safety Advancement Group. The report has been carried out for the Next Generation 911 What's Next Forum, which is preparing the way for future development of the US national 911 emergency single call