FAQ

FAQ

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  • What is FFI – Forced Frontal Irradiation technology?

    FFI (Forced Frontal Irradiation) is a revolutionary technology launched after over 24 months of research and testing. This patented technology allows all heat to be transferred directly to the emitting surface of the panel. The heat transfer is not approximate; it is “forced” through the simultaneous application of three different physical principles. This entirely new technology converts every single watt absorbed into useful thermal energy.

  • Why does it require 50% less installed power than traditional endothermic panels?

    FFI technology requires significantly less electrical energy than other endothermic panels on the market while delivering extraordinary performance. This is why Radiant installations average 50% less installed power.

  • Why is energy consumption 50% lower than other endothermic panels?

    Thanks to our specific technology, Radiant transforms all absorbed energy into a radiant effect by meticulously optimizing heat transfer to the surface. Once it reaches the surface, the heat is fully and rapidly emitted as infrared rays. The radiant surface is made of a special alloy designed to transfer all produced infrared rays to surrounding objects with extreme speed.

  • What is the average cost per coating cycle?

    The cost of a coating cycle varies depending on operating conditions. However, here is a practical example: For a side panel, activating the corresponding group of panels continuously for 1 hour (painting + flashing + curing), the maximum cost will be €1.41, calculated as follows:

    System Type: Radiant XL10 L10

    Wall Power Absorption: 6.44 kW x 1 hour x €0.22/kWh (average energy cost) = €1.41

    This amount does not account for the intervals when Radiant reaches the set temperature range and power absorption drops to zero.

  • What are the advantages of the radiation emitted by Radiant?

    The benefits are numerous and scale according to the chosen configuration:

    1. Maximum cost-efficiency per job.
    2. Elimination of burner use: Thanks to uniform heat diffusion and ideal application temperatures, the burner may not be needed, improving operator comfort.
    3. Residual Heat: Heat absorbed by the booth walls is released slowly and uniformly, often allowing subsequent painting jobs to proceed without re-activating the panels.
    4. Increased Speed: Depending on the configuration, productivity can be significantly boosted.
    5. Superior Quality: Perfect product cross-linking (curing).
  • How does Radiant improve work quality?

    During the painting phase, applying the product onto a warm surface yields a noticeably better finish. For the subsequent phases, it ensures excellent flashing and perfect curing thanks to the uniform diffusion of infrared rays.

  • How are the operations set up?

    Setting up a job is extremely simple. We designed the interface to be direct and fast. The screen is divided into two sections:

    Simultaneously activate all panel groups on all walls.

    Click directly on the specific group(s) you wish to activate.

    In both cases, you can select the phase and set timers with a single click.

    We avoided unnecessary sub-menus to keep all information under control on a single, clear page.

  • What maintenance or mandatory inspections are required?

    None. There are no scheduled maintenance tasks, periodic checks, or mandatory legal requirements.

  • What is the life expectancy of Radiant panels?

    Theoretically, a Radiant system lasts forever.
    It contains no “wear and tear” components or maximum working hour limits. Every component has exceeded the rigorous standards required during the design phase.

  • What are the advantages compared to traditional burners?

    The advantages are economic, productive, and qualitative:

    1. Reduced costs in all phases, starting from painting.
    2. Increased productivity, which can be significant depending on the configuration.
    3. Enhanced quality, from product flow-out to full curing.
    4. Thermal Stability: Booth surfaces retain heat much longer, even with external air ventilation. Conversely, hot air from a burner is immediately exhausted, leaving the environment cold.
    5. Space Saving: No bulky thermal central unit required.
    6. Zero Maintenance.
  • What are the advantages compared to infrared robots?

    Compared to both gas and electric IR robots, Radiant is:

    1. More flexible: Can be used during the painting phase.
    2. Less bulky: No moving parts taking up space.
    3. Cleaner: Does not stir up dust.
    4. More reliable: No mechanical components requiring adjustment or repair.
    5. Simpler to use: Does not require the operator to change their working methods.
  • What are the advantages compared to fixed wall or ceiling electric infrared systems?

    Unlike traditional bulb-based infrared systems, Radiant:

    1. Has no hourly usage limits (unlike IR lamps/bulbs).
    2. Requires significantly lower installed power.
    3. Is more flexible during painting because it does not emit blinding light.
    4. Does not require backup burners or electric batteries to handle winter temperature peaks.
    5. Has no mechanical movements needed to expose bulbs.
    6. Allows the use of protective films on walls to manage overspray.
    7. Has a significantly lower purchase cost.
  • What after-sales services are provided? Does this include warranty replacement?

    Our products, as well as their individual components, have been engineered and selected to ensure maximum reliability. However, we believe that after-sales support is just as important as the product itself.
    To this end, we have established a support network of highly qualified professionals capable of resolving any issues quickly. To minimize any potential downtime for our customers, we offer a panel replacement service should a unit experience malfunctions due to manufacturing defects during the warranty period.