Click to Download Bollard Lighting Product Information PDF

Australian Made Heavy Duty Commercial Grade Solar Lighting using LiFePo4 Cylindrical Cells with 12 years proven circuit design in the field using 100% New Zealand Made Aluminium poles.

Solar Pathway Lights Welcome to Solar Bollard Lighting the only "Certified" Australian Made solar lighting manufacturer with the "ORIGINAL" Vandal Resistant ALL IN ONE high impact outdoor Solar LED Pole Top Commercial and Industrial Solar Bollard lights exported globally to over 30 countries already Solar Bollard Lighting focus on specific solar lighting requirements within the public and infrastructure sectors for some of the following applications; (*note that we have models available for shady areas!)

     *Our lights RUN ALL NIGHT AT FULL POWER!

     *Models available for ALL DAY SHADE through to ALL DAY SUNLIGHT for full recharge

  • Solar Path Light
  • Solar Pontoon Light
  • Solar Garden Lighting
  • Solar Play Ground Lighting
  • Solar Emergency Lighting
  • Solar Walkway Light
  • Solar Jetty Light
  • Solar Landscape Lighting
  • Solar Driveway Lights
  • Solar Stairway Lighting
  • Solar Footpath Light
  • Solar Marina Light
  • Solar Mine Site Lighting
  • Solar Pole Top Lighting
  • Solar Street Light

In New Zealand, Invercargill has the longest night hours of 15.65 hours. On the longest nights, our solar light sees a runtime of 8.1 days without any sunlight (or 127.5hours of continuous operation) - model dependant. Most imported products only offer 10-12hr daily runtime which does not work for New Zealand conditions as they run short or completely flat. Our dome top design also makes it hard for birds to nest or debris to settle, as the flat top designs have this serious issue blocking the solar panel recharging the battery each day and there product eventually failing.

Our solar light has proved over its long market history to be the only commercial grade All In One solar powered bollard, solar pole top light, solar pathway light, or solar garden light suitable for continued solar lighting of projects for residential, commercial, mining and military applications from solar pathway lighting, solar path light, solar footpath lighting, solar walkway lighting, solar drive way lighting, solar jetty lighting, solar pontoon lighting, solar marina lighting, solar landscape lighting, solar garden lighting, and for so many other uses and applications.

From vandal attack, monsoonal rain, crashing waves, golf ball size hail or daily snow coverage, no similar product out performs our Solar LED Bollard light design for durability or performance. Our solar bollard light PCB circuit design which is the main operational brain of these types of sealed devices, has been fully operationally tested in the field for over 12 years now since December 2005. This shows our solar LED pole top bollard light is the only proven and market tested product available to "CONFIDENTLY STATE" a minimum of 10 years operational life expectancy as a fact and not just a sales marketing ploy used by other solar light competitors who have not been around for anywhere near this 10 year time frame operationally in Australia.

     *Our lights RUN ALL NIGHT AT FULL POWER!

     *Models available for ALL DAY SHADE through to ALL DAY SUNLIGHT for full recharge

LITHIUM ION (LiFePo4) CYLINDRICAL CELLS Vs. PRISMATIC CELLS

Cylindrical Advantages

Compared to prismatic cells, cylindrical cells can be produced much faster so more KWh per cell can be produced every day equaling lower $ per KWh. The electrodes in a cylindrical cell are wound tightly and encased in a metal casing.

This minimizes electrode material from breaking up from the mechanical vibrations, thermal cycling from charging and discharging and mechanical expansion of the current conductors inside from thermal cycling. Cylindrical cells radiate heat and control temperature more easily than prismatic cells.

Prismatic Disadvantages

Prismatic cells are made up of many positive and negative electrodes sandwiched together leaving more possibility for short circuit and inconsistency.

The larger cell size minimizes the possibility for automation leading to a lower degree of consistency. The internal electrodes can easily expand and contract causing deformation which can lead to a internal short circuit and are more prone to swelling similar to lead batteries.

ASYMMETRICAL LAYOUT DIRECTION

This image shows the correct direction the pole must be facing for even asymmetrical light distributions when light head is attached correctly with the RED both being aligned on the same side

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