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Code: Angolari lati disuguali
Standard Profiles
Lega | BxS Dimensione | Peso al metro |
---|---|---|
6060 | 15x10x1,5 | 0,054 |
6060 | 20x10x2 | 0,081 |
6060 | 20x15x2 | 0,108 |
6060 | 25x10x2 | 0,135 |
6060 | 25x15x2 | 0,081 |
6060 | 25x20x2 | 0,121 |
6060 | 30x10x2 | 0,162 |
6060 | 30x15x2 | 0,203 |
6060 | 30x20x2 | 0,328 |
6060 | 35x15x2 | 0,405 |
6060 | 40x15x2 | 0,108 |
6060 | 40x20x2 | 0,162 |
6060 | 40x25x2 | 0,216 |
6060 | 40x30x2 | 0,27 |
6060 | 50x20x2 | 0,324 |
6060 | 50x25x2 | 0,432 |
6060 | 50x30x2 | 0,54 |
6060 | 50x30x3 | 0,648 |
6060 | 50x30x5 | 0,815 |
6060 | 60x20x2 | 0,135 |
6060 | 60x30x2 | 0,203 |
6060 | 60x30x3 | 0,27 |
6060 | 60x40x2 | 0,338 |
6060 | 60x40x4 | 0,405 |
6060 | 60x40x5 | 1,282 |
6060 | 70x20x2 | 0,54 |
6060 | 80x20x2 | 0,675 |
6060 | 80x40x2 | 0,81 |
6060 | 80x40x4 | 1,013 |
6060 | 80x40x6 | 0,162 |
6060 | 80x50x10 | 3,24 |
6060 | 100x20x2 | 0,243 |
6060 | 100x30x2 | 0,324 |
6060 | 100x50x2 | 0,405 |
6060 | 100x50x5 | 0,486 |
6060 | 100x50x8 | 3,067 |
6060 | 100x50x10 | 3,78 |
6060 | 115x65x6 | 2,819 |
6060 | 120x60x6 | 0,648 |
6060 | 120x60x8 | 3,715 |
6060 | 160x100x12 | 7,91 |
Codice | KN MAX | I | F | H |
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Codice | KN MAX | I | F | H |
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Codice | KN MAX | I | F | H |
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Codice | KN MAX | I | F | H |
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Codice | KN MAX | I | F | H |
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Codice | KN MAX | I | F | H |
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Length: 0.00 mm
Weight: 0.00 kg/m
Weight A: 0.00 kg/m
Weight B: 0.00 kg/m
Height: 0.00 mm
Within this catalog, heat sinks are organized based on their shape and dimensions expressed in millimeters. Each profile is characterized by the following parameters:
- Weight: expressed in kilograms per meter of profile length (Kg/m).
- Length: indicated in millimeters and used for calculating thermal resistance (L).
- Width: also in millimeters, considered for calculating thermal resistance (°C/W), applicable only to high-efficiency heat sinks.
- Thermal Resistance in Natural Convection: expressed in °C/W with a temperature difference of 70°C (compared to an ambient temperature of 25°C).
- Thermal Resistance in Forced Convection: also expressed in °C/W, with an air velocity of 3 m/s and a temperature difference of 50°C.
The values of thermal resistance have been determined through a thermal simulation program designed to replicate realistic conditions. In particular:
- The heat source is uniformly distributed over approximately 50% of the dissipation surface, with central positioning on the heat sink.
- To maximize natural convection heat dissipation efficiency, the heat sink is designed with vertical fins. For horizontal installations, it is advisable to consider an increase of approximately 20% in thermal resistance.
- The surface of the heat sink is not subject to additional treatments.
Regarding black anodized heat sinks in natural convection, the thermal resistance is reduced by approximately 10%.
As the length of the heat sink increases, the thermal resistance decreases following a nonlinear law. The indicated values refer to the specified lengths; for different lengths, consult the “Length Correction Factor” graph to calculate the multiplication factor to be applied to the thermal resistance, both in natural and forced convection.