AEROVISION
Street name identification

Of rugged construction and revolutionary design, the AEROVISION system offers enhanced visibility for street name identification thus improving the safety of both drivers and pedestrians. The AEROVISION sign's elliptical shape eliminates almost all excessive structure load in high wind environment. It can easily be installed safely under traffic lights without affecting the existing structure load.
  CHARACTERISTICS ADVANTAGES
Aluminium and stainless steel
  • Strong and durable
  • Maintenance free
Elliptical shape
  • Minimizes wind load
    (up to 85% EPA reduction)

  • Aesthetic and resistent
  • Better visibility
  • Improves retro-reflexion
100% usable surface
  • Allows street generic to be placed
    above name
  • Minimizes effect on lenght

Size of lettering (minimal requirements)
      Arterials & Collectors: 7 7/8'' (200 mm)
      Main streets: 6 in. (150 mm)
      Residential streets: 4 in. (100 mm)

  • Increase reaction time
  • Better visibility
    (The recommended lettering size offers a reason-
      able reaction time to perform manoeuvers at
      speeds up to 20 to 35 mph (30 to 65 km/h)).
Font
      Clearview Highway CD-35
  • Excellent height-width ratio of letters
  • Better visibility
Consistent positioning
      In the immediate field of view, as close
      as possible to the middle of the road.
  • Develops automatic function
  • Easier to locate
  • Increase safety
  • Maximizes reaction time
  • Improves traffic flow
Level of reflectivity
      Sheeting providing a wide angle of
       retroreflexion and a high level of
       reflextivity (min. Type III, ideal Type VII)
  • Develops automatic reaction
  • Facilitates points of reference
  • Increases safety
  • More visible by night, stands out in
    bad weather.
Suspension system
  • Minimizes wind load up to 70 to 85%
  • Flexible and multipurpose
  • Easy to install (1 person)
Attachement system
     
  • Eliminates breakage due to repeated impacts
  • Allows sign to bend under impact and
    return to its original position.