• Unlimited lifespan
  • Zero maintenance cost
  • Top thermal performance
  • The unique choice for potable water
ATLAS TYPE
COLLECTOR
PHAETHON
TYPE COLLECTOR
TYPE TYPE
T120/1,50m² T120/1,70m²
T160/2,30m² T160/2,40m²
T160-H/2,30m² T160-H/2,40m²
T160-D/3,00m² T160-D/3,40m²
T200/3,00m² T200/3,40m²
T200-E/2,30m² T200-E/2,40m²
T300/3,80m² T300/4,00m²
T300-L/4,60m² T300-L/4,80m²

More Categories

  • Double or triple energy
  • Roof or terrace

INFORMATION           CHARACTERISTICS           DIMENSIONS

COPPER THERMOSIPHON

The boiler (main body and casing) is made of pure copper CuDHP (CW024A) certified for use in drinking water installations according to DIN 50930-6/ August 2001. The absence of the magnesium anode and its coatings ensures clean and potable water. The cold and DHW (Domestic Hot Water) outlets are ½” heavy-duty copper.

High-density expanded polyurethane foam (44kg/m3) with a thickness of 50mm and thermal conductivity of 0.0120 W/mk. It ensures hot water availability even on the following morning.

Standard pre-painted Aluzinc in grey RAL9006 color, with specially designed snap-on side covers. It is also available in terracotta upon request.

Metallic flange with a diameter of 140mm, an 8-hole snap-on connection without welding, and a copper resistance with a metallic flange of 3.5kW. A 4-contact monopolar thermostat with bipolar protection and backup safety.

In the case of a triple-energy tank, there is a spiral-type heat exchanger inside the tank with a 15mm diameter brass thread. The connection of the heat exchanger to the central heating system is recommended to be automated, achieved by connecting a special sensor in a position (bucket) located next to the thermostat position.

3 BAR closed circuit safety valve. 8 BAR non-return water inlet safety valve. ½” female brass plug for the closed circuit. Plastic pipe 18×2.5 and 22×3.0 for connection with collectors and insulation with a special cover to protect against UV radiation. 1-liter propylene glycol antifreeze in a ratio of 1:10 to prevent freezing.

PHAETHON COLLECTOR

Hydroskeleton is made of copper pipes Φ8 and Φ22mm with 4 outlets. Mirotherm Control absorber sheet, which ensures very high annual solar energy absorption above 96% and high resistance to corrosion due to moisture. The new product consists of a 4-layer package with a specially processed base. It is applied using PVD (Physical Vapour Deposition) technology in a coil-to-coil production line. The solar radiation absorption surface is perfectly applied to the copper hydroskeleton through welding by automatic LASER machines, allowing direct heat transfer to the thermal fluid.

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Made of heavy-duty oval aluminum profiles, 1.4mm thick, with high aesthetics and advanced design. It has internal angular screw-type aluminum connectors that ensure excellent fit and sealing of the frame sections, as well as great stability of the collector. The back of the frame is made of 5mm aluminum sheet, applied with a special automatic mechanical clinching machine, ensuring sealing and robustness.
It is a 3.2mm thick tempered low-iron glass. The low iron content provides the advantage of low reflection, resulting in higher absorption. Additionally, it is safety glass that can withstand hail and falling objects. On top of the glass, a special aluminum profile is applied as a fastening element, along with the additional application of a special EPDM rubber, making it fully sealed and extremely robust.
Glass wool with a density of d=30kg/m3, which is placed on the back of the collector and the side aluminum frame. It achieves the minimum possible thermal loss. Furthermore, the specially designed elastic gasket for the application at the copper pipe outlets prevents the formation of a thermal bridge between the frame and the hydroskeleton, while also absorbing contractions and expansions due to temperature changes.

ATLAS COLLECTOR

Selective surface made of 4mm thick aluminum sheet with a titanium oxide coating. The coating process is carried out in vacuum in Germany. The solar radiation absorption surface is perfectly applied to the copper hydro-skeleton through welding using automatic LASER machines for direct heat transfer to the thermal fluid. Its properties ensure maximum thermal performance of the collector, achieving an absorptivity coefficient of a>95% and an emissivity coefficient of e<5%.

Made of high-quality, aesthetic 0.8mm thick aluminum profiles with external angular connections that ensure excellent fit and sealing of the frame components, as well as high stability of the collector. The frame back is made of 5mm aluminum sheet, applied with a special automatic mechanical clinching machine to ensure tightness and robustness.
It is a 3.2mm thick tempered low-iron glass. The low iron content advantageously results in low reflection, leading to higher absorption. Additionally, it is a safety glass that can withstand hail and object impacts.
Density of 30kg/m3 glass wool is placed on the back of the collector. This achieves minimal thermal loss. Furthermore, a specially designed elastic pad for application at the copper pipe outlets prevents the creation of a thermal bridge between the frame and the hydro-skeleton while also absorbing contractions and expansions due to temperature changes.

SUPPORT BASE

A unique mechanical design of a terrace support base that allows for easy transportation, assembly, and installation of the solar system. It is processed using a LASER machine, resulting in smooth edges that do not cause injury. The solar system support has been tested to withstand the most extreme weather conditions. For assembly instructions, refer to the video link provided.

A unique mechanical design of a tile roof support base that allows easy assembly and installation of the solar system. It is processed using a LASER machine, resulting in smooth edges that do not cause injury. The solar system support has been tested to withstand the most extreme weather conditions. Please pay attention to the installation for the appropriate orientation depending on the country (e.g., the suitable orientation for Greece is south). Additionally, the buyer should consider the system’s inclination, which is recommended to be at least 30% or up to 40%. For assembly instructions, refer to the video link provided.

The packaging of the solar system support base includes all the screws required for its assembly and the components necessary for connecting the pipes that join the tank with the collector.

CHARACTERISTICS

Phaethon Type Collector

Water Volume

Pieces Collector Dimensions

System Weight Vacuum/In Operation (kg)

T120/1,70m2

115

1 ΤΕΜ. 105Χ160

93/208

T160/2,40m2

154

1 ΤΕΜ. 120Χ200 ΚΑΘΕΤΟΣ

116/270

T160-H/2,40m2

154

1 ΤΕΜ. 200Χ120 ΟΡΙΖΟΝΤΙΟΣ

116/270

T160-D/3,40m2

154

2 TEM. 105Χ160

135/289

T200/3,40m2

194

2 TEM. 105Χ160

130/324

T200-E/2,40m2

194

1 ΤΕΜ. 120Χ200

113/307

T300/4,00m2

292

2 ΤΕΜ. 100Χ200

187/479

T300-L/4,80m2

292

2 ΤΕΜ. 120Χ200

195/487

Phaethon Type Collector

Water Volume

Pieces Collector Dimensions

System Weight Vacuum/In Operation (kg)

T120/1,50m2

115

1 ΤΕΜ. 100Χ150

93/208

T160/2,30m2

154

1 ΤΕΜ. 117Χ197 ΚΑΘΕΤΟΣ

116/270

T160-H/2,30m2

154

1 ΤΕΜ. 197Χ117 ΟΡΙΖΟΝΤΙΟΣ

116/270

T160-D/3,00m2

154

2 TEM. 100Χ150

135/289

T200/3,00m2

194

2 TEM. 100Χ150

130/324

T200-E/2,30m2

194

1 ΤΕΜ. 117Χ197

113/307

T300/3,80m2

292

2 ΤΕΜ. 97Χ197

187/479

T300-L/4,60m2

292

2 ΤΕΜ. 117Χ197

195/487

DIMENSIONS

PHAETHON

TYPE A B TOTAL Γ Δ Ε Ζ Η1 Η2 Θ
120 50 100 113 105 160 8,5 160 89 89 157
160 58 100 113 120 200 8,5 193 89 89 190
160 – Η 58 100 113 200 120 8,5 158 89 89 110
160 – D
58 100 113 215 160 8,5 168 89 180 157
200 58 120 132 215 160 8,5 168 89 180 157
200 – E 58 120 132 120 200 8,5 193 89 89 190
300 58 170 183 205 200 8,5 193 89 180 190
300 – L 58 170 183 245 200 8,5 193 89 180 190

ATLAS

TYPE A B TOTAL Γ Δ Ε Ζ Η1 Η2 Θ
120 50 100 113 100 150 7,5 160 89 89 148
160 58 100 113 117 197 7,5 193 89 89 190
160 – Η 58 100 113 197 117 7,5 158 89 89 110
160 – D
58 100 113 208 157 7,5 168 89 180 148
200 58 120 132 208 157 7,5 168 89 180 148
200 – E 58 120 132 117 197 7,5 193 89 89 190
300 58 170 183 200 197 7,5 193 89 180 190
300 – L 58 170 183 240 197 7,5 193 89 180 190