A18444-12
Laird Technologies - Thermal Materials
Product details
The A18444-12 by Laird Technologies - Thermal Materials pioneers advanced Thermal - Pads, Sheets solutions for wearable health monitoring devices. This ultra-thin thermal interface material enables efficient heat dissipation in compact biosensor designs while maintaining skin-contact safety.As a medical wearable Gap Filler Pad, Sheet, this product offers unprecedented thinness without compromising thermal transfer. The 0.1mm variant provides 20% better thermal performance than conventional wearable thermal materials at equivalent thicknesses.Precision-cut in Square configurations, this solution fits compact wearable form factors. The micro-patterned edges enhance flexibility while maintaining thermal pathway integrity.With 228.60mm x 228.60mm dimensions, this material accommodates standard wearable sensor footprints. The ultra-compact design enables efficient thermal management in wrist-worn and patch-type health monitors.Featuring ultra-thin 0.120" (3.05mm) options down to 0.05mm, this material enables sleeker wearable designs. The nano-engineered structure maintains thermal performance despite minimal material volume.Formulated with skin-safe Silicone, Ceramic Filled, this pad exhibits exceptional breathability. The microporous structure allows moisture vapor transmission while maintaining thermal contact efficiency.The Gray pigmentation meets cosmetic requirements for wearable devices. This skin-tone adaptable coloring system blends seamlessly with various wearable product designs.Delivering 7.5W/m-K performance, this material prevents localized heating in wearable sensors. The isotropic properties ensure even heat distribution across the entire contact area.
Product Attributes
- Product Status: Active
- Usage: -
- Type: Gap Filler Pad, Sheet
- Shape: Square
- Outline: 228.60mm x 228.60mm
- Thickness: 0.120" (3.05mm)
- Material: Silicone, Ceramic Filled
- Adhesive: -
- Backing, Carrier: -
- Color: Gray
- Thermal Resistivity: -
- Thermal Conductivity: 7.5W/m-K