ZTA.50.PLP
Born from an opportunity to put waste to use, Plastic Light Pendant is partially manufactured from the mixed fine powder overspray collected from our finishing processes. Together with a PMMA monomer binder and, if desired, granulated acrylic waste, PLP is a decorative addition to the ZTA.50 range.
PW (Powder Waste): 12% captured fine powder waste, 88% clear acrylic
AW (Acrylic Waste): 40% granulated clear acrylic waste, 60% clear acrylic.
P+AW (Powder and Acrylic Waste): 12% captured fine powder waste, 45% granulated clear acrylic waste, 43% clear acrylic.
Product Description
The ZTA.50.PLP is manufactured entirely from Stoane Lightings recycled waste aluminium stream, avoiding the need for off-site recycling and manufactured entirely in house.
Cast and machined, the product marries artisanal craftsmanship with a contemporary design, the innovative shade allows for both technical and decorative optics, additionally more traditional E27 Light sources.
Available in static white colour temperatures from 2700K to 4000K as standard, but also with warm dimming capability to 1800K.
The product is height adjustable via a site cuttable suspension and power cable, with various cable colour options available.
It can be used individually or in clusters to create dynamic lighting arrangements.
Key Features
• Sustainable construction: made from recycled aluminium.
• Height adjustable suspension with various cable colour options.
• Static and warm dim LED options available with technical optics providing Very Narrow to Wide Flood beam distributions.
• Advanced dimming options: DALI, 0-10V, DMX and Wireless dimming, down to 0.1%.
• High-performance lighting: up to 98 CRI LEDs.
Compliance
Environmental
TM65.2
CIBSE’s TM65.2 provides a calculation methodology to assess the embodied carbon in lighting products.
ZTA.50.plp (fixed focus)
TM66
CIBSE’s TM66 includes a calculator called the Circular Economy Assessment Method (CEAM). An independent metric assessing a luminaire’s Circular Economy credentials in terms of product design, materials, manufacturing and ecosystem.
ZTA.50.PLP - 2.7
LCA and EPD
A report containing Life Cycle Assessment results, including environmental impacts across the full life cycle of the product. Impacts cover a wide range of effects on the environment, in addition to carbon emissions.
Please contact the Specifier Support team should your project have a requirement for additional environmental reporting. For more information, please click here.
Electrical
Supply
Remote constant current LED driver required
Power
9.8mm LES COB
Warm Dim
8.4W
33.8Vf
8.6W
34.7Vf
Technical
Light Source
9.8mm LES COB
90 CRI 250mA
1091lm initial output at 2700K 130lm/W
1151lm initial output at 3000K 137lm/W
1204lm initial output at 3500K 143lm/W
1233lm initial output at 4000K 147lm/W
95 CRI 250mA
971lm initial output at 2700K 115lm/W
1020lm initial output at 3000K 121lm/W
1081lm initial output at 3500K 129lm/W
1129lm initial output at 4000K 134lm/W
Warm Dim
90 CRI 250mA
864lm initial output at 3000K 94.9lm/W
Light Distribution
9.8mm LES COB
Narrow 19.7°
Medium 27°
Flood 35.9°
Wide Flood 50.1°
Omnidirectional
Warm Dim
Narrow 19.9°
Medium 26.8°
Flood 36°
Wide Flood 53.1°
Omnidirectional
Lumen Maintenance L70 B0 F0 50,000 hours (9.8mm COB)
Colour Consistency 1 x 2 SDCM (9.8mm COB), 3 SDCM (Warm Dim)
Colour Maintenance ± 0.003 ∆u’v’ (9.8mm COB)
IP Rating IP20
Weight 0.9kg
Lumen
Maintenance: L70 B0 F0 50,000 hours
Colour
Consistency: 1 x 2 SDCM
Colour Maintenance: ± 0.003 ∆u’v’
IP Rating: IP20
Weight: 0.9kg
Photometry
These files represent the highest available initial output for each light source in 3000K. Lower outputs and other colour temperatures are available.
9.8mm LES COB
90 CRI (1151lm initial output)
Narrow 19.7°
Medium 27°
Flood 35.9°
Wide Flood 50.1°
Omnidirectional
9.8mm LES COB
95 CRI (1020lm initial output)
Narrow 19.7°
Medium 27°
Flood 35.9°
Wide Flood 50.1°
Omnidirectional
Warm Dim
90 CRI (864lm initial output)
Narrow 19.9°
Medium 26.8°
Flood 36°
Wide Flood 53.1°
Omnidirectional
Photometry
To access our photometry files please view this page from a desktop device.