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| Brand | CooliBlade |
|---|---|
| Origin | Finland |
| Model | AURORA |
| Construction | Monolithic Aluminum Extrusion with Integrated NEOcore Phase-Change Thermal Channel |
| Thermal Load Capacity | Up to Multi-kilowatt Passive Dissipation |
| Mounting Flexibility | Horizontal or Vertical Integration |
| Compliance | Designed for ISO 9001–certified manufacturing |
| Certifications | CE-marked for industrial equipment integration |
| Brand | CooliBlade |
|---|---|
| Origin | Finland |
| Model | COMET |
| Core Technology | NEOcore® Integrated Heat Channel |
| Max Power Handling | 840 W (COMET Matrix configuration) |
| Material | High-Purity Aluminum |
| Working Fluid | Water-based Hydroxide Compound |
| Length Options | 150 mm (standard), custom lengths available |
| Diameter Options | 50 mm or 70 mm |
| Weight | 260 g (150 mm, Ø70 mm) |
| Mounting Angle Tolerance | ±85° |
| Thermal Resistance | 0.12 K/W (natural convection, 12-module COMET Matrix, Ø70 mm) |
| Lightness | 50% weight reduction vs. conventional aluminum heatsinks |
| Tooling | No mold cost — rapid prototyping from standard modules |
| Design Flexibility | Fully modular platform for iterative thermal architecture development |
| Production Scalability | Direct transition from prototype to volume manufacturing |
| Brand | CooliBlade |
|---|---|
| Origin | Finland |
| Model | ULTIMA |
| Heat Sink Material | Aluminum |
| Working Fluid | Hydrocarbon-based Phase-Change Medium |
| Weight | 2.7 kg |
| Mounting Angle | 0° ±5° |
| Thermal Resistance | 0.028 K/W |
| Max Operating Temperature | 150 °C |
| Operating Temperature Range | −20 °C to +150 °C |
| Ambient Temperature Range | −20 °C to +60 °C |
| Storage Temperature Range | −50 °C to +90 °C |
| Brand | CooliBlade |
|---|---|
| Origin | Finland |
| Manufacturer Type | Authorized Distributor |
| Origin Category | Imported |
| Model | SIRIUS |
| Pricing | Upon Request |
| Thermal Resistance | 0.44–0.77 K/W |
| Max Thermal Channel Length | 500 mm |
| Material | Monolithic Aluminum NEOcore Structure |
| Cooling Mechanism | Passive Two-Phase Heat Transfer (Evaporation–Condensation Cycle) |
| Weight Class | Ultra-Lightweight |
| Design Flexibility | Customizable Fin Angle & 3D Geometry |
| Power Handling Capacity | Hundreds of Watts (Application-Dependent) |
| Compliance | Designed for ISO 9001-certified manufacturing |
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