TORRI
Product design
ConfigurationGlass - Polymer
ColourSilver frame / White background
Cell technologyTOPCon
Number of cells108 cells
Layout ratio0,230 kWp/m²
Number of busbars16 Bus Bar
Dimensions1158 mm x 1768 mm
Frame thickness15 mm
Weight26 Kg
Cable length+1000 mm
Snow load resistance750 Kg/m²
Hail resistanceHW5 (Ø45mm, 110Km/h)
Hail resistance — IEC 61215 MQT 17
Modules verified with controlled impact tests: the panel's entire architecture dissipates the hail's energy.
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Description

Monocrystalline TOPCon silicon photovoltaic module > 25%. PRISMA 4.0 technology: 4 mm internal prismatic glass, front POE polymer with a density of 430 g/m², white backsheet, silver frames. Static load resistance 750 kg/m², hail resistance 45 mm at 110 km/h. 30-year warranty on manufacturing defects and 30-year linear performance warranty. Class 1 fire reaction, Class E certified, Broof (t2).

Innova
Front glass
Glass thickness4,0 mm
Glass compositionlow-iron tempered
Glass typeinternal prismatic
Nanotechnology treatmentARC (Anti-reflecting-coating)
Solar transmittance≥ 93,8 %
Front encapsulant
Polymer compositionPOE (Polyoxyethylene)
Polymer density430 gr/m²
Solrif® technology — Photovoltaics integrated into the roof
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Electrical characteristics STC**
Pmpp (Wp)Vmpp (V)Impp (A)Voc (V)Isc (A)Prod. eff. (%)Circuit eff. (%)
TRS 450-54M-H8N INNOVA450 Wp32,50 V13,85 A39,16 V14,49 A23,0 %25,1 %
Temperature coefficients
Coefficiente PmppCoefficiente VocCoefficiente IscNOCT
TRS 450-54M-H8N INNOVA-0,30 % / °C-0,25 V % / °C+0,046 % / °C45°C ± 2°C
Product certifications
IEC 61215 - 2:2017 (ed.II)TÜV SÜD
IEC 61730 - 2:2018 (ed.II)TÜV SÜD
PID / Salt Mist / AmmoniaTÜV SÜD
Fire reaction: Class 1 (UNI 917A)Istituto Giordano
PRISMA 4.0 technologyUniversity of Brescia
Company certifications
ISO 9001:2015 QualityKIWA
ISO 14001:2015 EnvironmentKIWA
ISO 45001:2018 SafetyKIWA
Factory Inspection Attestation Photovoltaic (PV) PanelsKIWA
Warranties
Manufacturing defects30 years
Linear performance30 years
PPSReserved for partner installers
NOTES

*We define all our products through circuit efficiency, an index we developed to relate the maximum cell efficiency to the size of the photovoltaic panel in order to achieve the best thermal performance.

**STC (standard test conditions) - 1000 Watt/m², AM 1.5, 25°C

***PPS (Product/Performance/Service) - Warranty reserved for partners covering the labour required for the possible replacement of defective products for the first two years.

****Factory Inspection is not available for all products; please ask the sales office before purchase.

Technical specifications are subject to continuous updates and may change at any time without notice. Please verify warranty conditions and validity directly with the company at the time of purchase.

Il marchio TORRI. Beyond Ordinary Solar è proprietà di FIER S.p.a. a socio unico cap.sociale 500.000 i.v. P.IVA 03720770985
TORRI — Beyond Ordinary Solar
Products
Innova
Photovoltaic Modules · BIPV

Innova

Innovative integrated module for prestigious residential and commercial systems.

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01 · Description

The product

Monocrystalline TOPCon silicon photovoltaic module > 25%. PRISMA 4.0 technology: 4 mm internal prismatic glass, front POE polymer with a density of 430 g/m², white backsheet, silver frames. Static load resistance 750 kg/m², hail resistance 45 mm at 110 km/h. 30-year warranty on manufacturing defects and 30-year linear performance warranty. Class 1 fire reaction, Class E certified, Broof (t2).

25,1 %

Circuit efficiency

30 years

Product warranty

57,8

IRSf · Static Robustness Index

02 · Technologies used

Technologies used

High-efficiency TOPCon cells

TORRI modules use the latest-generation N-Type TOPCon (Tunnel Oxide Passivated Contact) cells.

TOPCon technology introduces a very thin layer of silicon oxide and a passivated polycrystalline silicon contact on the back of the cell, reducing charge carrier recombination and therefore internal electrical losses.

Compared with previous PERC technologies, it allows higher conversion efficiency, better behaviour at high temperatures, greater response in low-irradiance conditions and less degradation over time.

Struttura semplificata cella TOPCon N-Type

ARC — Anti-Reflective Coating

The front glass is treated with a nanostructured ARC anti-reflective coating, designed to increase the transmittance of solar radiation towards the cells.

The coating creates a layer with a refractive index intermediate between air and glass, reducing the index jump at the interface and therefore the optical losses due to reflection according to Fresnel's laws.

The structure and optical thickness of the coating are also designed to generate destructive interference between the components of reflected light, further decreasing reflectance at the wavelengths relevant to photovoltaic conversion.

The result is greater solar transmittance of the glass and an increase in the photon flux incident on the cells, with a reduction in the module's optical losses.

Come funziona il rivestimento antiriflesso ARC del vetro solare
Technology · BIPV

Solrif® Technology — Photovoltaics integrated into the roof

Solrif® is the patented photovoltaic integration system developed by Ernst Schweizer AG to transform the photovoltaic module into a true functional element of the roof.

The special Solrif® perimeter profile allows modules to be installed directly on the roof structure with an overlapping modular layout, similar to the principle of tiles. The photovoltaic field thus replaces the traditional roof covering, integrating energy production, weather protection and architectural continuity into a single system.

The system uses a floating installation of the modules on battens: the elements are not rigidly clamped to the frame, but laid and secured by specific fastening elements. The configuration of the anchoring points is determined according to the wind and snow loads expected in the project. The underlying structure also maintains a ventilation chamber and a secondary sealing and drainage layer.

The modular geometry makes it possible to achieve complete or partial roof integrations, managing ridges, eaves, edges, changes in slope, roof windows, chimneys and other architectural elements with specific components. The individual modules also remain removable and replaceable even after installation.

The particular profile configuration leaves the lower edge of the glass free, promoting water runoff, self-cleaning and snow sliding. The profiles are made of aluminium and the fastening elements of stainless steel.

The result is a BIPV system in which the photovoltaic module and the roof become a single construction element.

Download the Solrif® manual
Schema di integrazione Solrif® nella copertura
03 · Datasheet

Complete datasheet

Product design
ConfigurationGlass - Polymer
ColourSilver frame / White background
Cell technologyTOPCon
Number of cells108 cells
Layout ratio0,230 kWp/m²
Number of busbars16 Bus Bar
Dimensions1158 mm x 1768 mm
Frame thickness15 mm
Weight26 Kg
Cable length+1000 mm
Snow load resistance750 Kg/m²
Hail resistanceHW5 (Ø45mm, 110Km/h)
Technical insight

Hail resistance — IEC 61215 MQT 17

The hail resistance of a photovoltaic module is verified through controlled impact tests in accordance with IEC 61215-2 – MQT 17 Hail Test.

The test uses ice balls of defined diameter and mass, accelerated to a preset speed and directed at specific points of the module. It therefore evaluates not only the size of the hailstone: the fundamental physical parameter is the kinetic energy transferred during impact, determined by mass and, above all, by the square of the speed:

Ec = ½ × m × v²

Test levels and impact energy

DiameterMassSpeedKinetic energy
25 mm7,5 g23,0 m/s≈ 2,0 J
35 mm20,7 g27,2 m/s≈ 7,7 J
45 mm43,9 g30,7 m/s≈ 20,7 J
55 mm80,2 g33,9 m/s≈ 46,1 J
65 mm132 g36,7 m/s≈ 88,9 J
75 mm203 g39,5 m/s≈ 158 J

Why impact energy matters

The base level of 25 mm subjects the module to about 2 Joules. As the hailstone diameter increases, the rise in severity is not linear: a 55 mm ball reaches about 46 Joules, over 23 times the kinetic energy of the 25 mm test. With a 75 mm ball it reaches about 158 Joules, almost 80 times the energy of the base level.

For this reason, knowing only the diameter of the hail is not enough to assess a module's resistance: diameter, mass, speed and impact energy must be considered together.

What is stressed during impact

The impact does not affect the glass alone. The energy is transferred through the entire module structure and can cause:

  • breakage or damage to the front glass
  • microcracks and cell fractures
  • damage to the interconnections
  • local deformation of the laminate
  • loss of insulation or deterioration of the electrical characteristics

This is why TORRI works on the module's resistance as a complete system: 4 mm front glass, laminate structure, high-density encapsulation and mechanical protection of the cells all contribute to the panel's ability to dissipate the energy generated by the impact.

Hail resistance is therefore not just glass resistance: it is the resistance of the entire architecture of the photovoltaic module.

Front glass
Glass thickness4,0 mm
Glass compositionlow-iron tempered
Glass typeinternal prismatic
Nanotechnology treatmentARC (Anti-reflecting-coating)
Solar transmittance≥ 93,8 %
Front encapsulant
Polymer compositionPOE (Polyoxyethylene)
Polymer density430 gr/m²
Electrical characteristics STC**
Pmpp (Wp)
Vmpp (V)
Impp (A)
Voc (V)
Isc (A)
Prod. eff. (%)
Circuit eff. (%)
TRS 450-54M-H8N INNOVA
450 Wp
32,50 V
13,85 A
39,16 V
14,49 A
23,0 %
25,1 %
Temperature coefficients
Coefficiente Pmpp
Coefficiente Voc
Coefficiente Isc
NOCT
TRS 450-54M-H8N INNOVA
-0,30 % / °C
-0,25 V % / °C
+0,046 % / °C
45°C ± 2°C
Product certifications
IEC 61215 - 2:2017 (ed.II)TÜV SÜD
IEC 61730 - 2:2018 (ed.II)TÜV SÜD
PID / Salt Mist / AmmoniaTÜV SÜD
Fire reaction: Class 1 (UNI 917A)Istituto Giordano
PRISMA 4.0 technologyUniversity of Brescia
Company certifications
ISO 9001:2015 QualityKIWA
ISO 14001:2015 EnvironmentKIWA
ISO 45001:2018 SafetyKIWA
Factory Inspection Attestation Photovoltaic (PV) PanelsKIWA
Warranties
Manufacturing defects30 years
Linear performance30 years
PPSReserved for partner installers
Notes

*We define all our products through circuit efficiency, an index we developed to relate the maximum cell efficiency to the size of the photovoltaic panel in order to achieve the best thermal performance.

**STC (standard test conditions) - 1000 Watt/m², AM 1.5, 25°C

***PPS (Product/Performance/Service) - Warranty reserved for partners covering the labour required for the possible replacement of defective products for the first two years.

****Factory Inspection is not available for all products; please ask the sales office before purchase.

Technical specifications are subject to continuous updates and may change at any time without notice. Please verify warranty conditions and validity directly with the company at the time of purchase.

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