Athena Sky Shield Bollard Light
The Athena Sky Shield Bollard Light is exceptionally durable, thanks to TetraCoat, Unios' four-layer body construction method developed to withstand harsh outdoor conditions. With Sky Shield, the luminaire ensures no upward light waste (0% UWLR), reducing environmental impacts and enhancing visual comfort for occupants, making it an excellent choice for outdoor lighting.
Part of the Athena Bollard collection
Available Models
Sky Shield 180° 600mm
- LED Power:Up to 12W
- Lumens:Up to 379lm
- Beam:180°
Sky Shield 180° 1000mm
- LED Power:Up to 12W
- Lumens:Up to 379lm
- Beam:180°
Sky Shield 180° 250mm.
- LED Power:Up to 12W
- Lumens:Up to 379lm
- Beam:180°
Sky Shield 360° 250mm
- LED Power:Up to 24W
- Lumens:Up to 825lm
- Beam:360°
Sky Shield 360° 600mm
- LED Power:Up to 24W
- Lumens:Up to 825lm
- Beam:360°
Sky Shield 360° 1000mm
- LED Power:Up to 24W
- Lumens:Up to 825lm
- Beam:360°
Specifications
Finishes
- Textured Black
Colour rendering index (CRI)
- 90+
Colour temperature
- 2700K
- 3000K
- PC Amber (1800K)
IP rating
- IP66
Efficacy
- Up to
34.38lm/W
Control
- DALI
- Non-dim
SDCM
- ≤3
LED Lifetime
- >50000h L90B10
Materials
- TetraCoat Aluminium
Unified Glare Rating
- <10
Warranty
- 7 Years
Impact Protection (IK)
- 10
Class
- Class I
Resources
IK10 rating
Protection against an impact of 20J of force.IP66 rating
Complete protection against dust and high-pressure jets of water from all directions, similar to heavy seas.7-year warranty
Ensure lasting performance with a 7-year warrantyLow-glare lens design
With an advanced UV-stabilised lens and a specifically designed top for glare reduction, the Athena ensures a downward-focused beam and controlled light over extended distances.
0% Upward Light Waste Ratio
By ensuring a downward-focused illumination, the Athena leaves no room for upward waste light at 0% ULWR for optimum visual comfort.
Warm CCT options only
Available in warm CCT options exclusively, including PC Amber, the Athena Bollard reduces light pollution footprint and environmental impact while enhancing nighttime visibility for occupants' safe movement.