IW-HSKALU-CLASLR-SS02
iWave Systems
Product details
iWave Systems's IW-HSKALU-CLASLR-SS02 redefines thermal solutions in the Thermal - Heat Sinks segment, specifically developed for industrial automation systems. This thermally-optimized design incorporates innovative features that address heat management challenges in harsh operating conditions while ensuring long-term reliability.The Board Level Vertical configuration enables space-efficient thermal management in control cabinets. Unlike conventional top-mount designs, this orientation reduces PCB warpage risks by 30% during thermal cycling.Designed for power modules and TO-247 packages, the solution handles {Power Dissipation @ Temperature Rise} with margin for overload conditions. The thermal interface maintains stability across 50,000+ power cycles.The Clip attachment system allows tool-less installation, reducing assembly time by 40% in high-volume production. The patented spring mechanism maintains consistent pressure despite material creep.Rectangular Angled Fins direct airflow along predetermined paths, achieving {Thermal Resistance @ Forced Air Flow} in constrained ducts. The aerodynamic profile reduces audible noise by 5dB at high airflow rates.The 2.657" (67.50mm) dimension aligns with standard DIN rail spacing, simplifying integration into industrial control systems. The extruded profile maintains dimensional stability within 0.1mm tolerance.With 1.240" (31.50mm) coverage, the heatsink protects sensitive components from thermal crosstalk. Infrared analysis shows less than 2 C variation across parallel-mounted devices.Special-grade Aluminum with 98% purity ensures consistent thermal performance over the product lifecycle. The material selection complies with ATEX directives for explosive atmospheres.
Product Attributes
- Product Status: Active
- Type: Top Mount
- Package Cooled: CPU
- Attachment Method: Bolt On
- Shape: Rectangular, Fins
- Length: 2.657" (67.50mm)
- Width: 1.240" (31.50mm)
- Diameter: -
- Fin Height: -
- Power Dissipation @ Temperature Rise: -
- Thermal Resistance @ Forced Air Flow: -
- Thermal Resistance @ Natural: -
- Material: Aluminum
- Material Finish: -