Product Overview
This low-profile pillow is constructed with a silk-textured synthetic shell and a calibrated fiber fill. The design focuses on a specific height-to-weight ratio (800g density) to provide a consistent elevation profile for head and neck support. The multi-layer material assembly is engineered for high air-permeability and surface smoothness.
Package Includes
1 × Low-Profile Pillow (Pillowcase not included)
Key Features & Technical Attributes
Silk-Textured Shell: The exterior is composed of high-density woven polyester, mechanically finished to achieve a low-friction, silk-like surface tension without natural silk fibers.
Structured Microfiber Fill: The interior utilizes high-loft synthetic clusters designed to maintain a consistent 800g volume and resist material compression over time.
Low-Profile Engineering: Specifically calibrated for a lower elevation height, suitable for users requiring a reduced cervical support angle.
Reinforced Perimeter: Features reinforced edge-stitch construction (piping/stitching) to stabilize the internal fill and maintain the rectangular dimensions.
Physical Specifications
Shell Material: Silk-textured Synthetic Polyester.
Fill Material: Synthetic Microfiber clusters.
Fill Weight: 800g (Low Profile).
Color: Beige.
Detailed Dimensions
Dimensions: 18.9″ × 29.1″ (48 × 74 cm) [±0.8″ / 2 cm tolerance].
Packaging & Shipping Dimensions
Outer Dimensions: 19.7″ × 13.8″ × 5.9″ (50 × 35 × 15 cm).
Total Shipping Weight: 2.0 lbs (0.9 kg).
Comprehensive Care Instructions
Daily Maintenance: The use of an external pillow protector is recommended to preserve the structural integrity of the shell fabric.
Cleaning Protocol: For localized maintenance, hand wash gently in cold water (below 30°C) with a pH-neutral liquid detergent.
Drying: Air dry thoroughly in a well-ventilated, shaded environment. Do not expose to direct high-intensity sunlight for extended periods.
Mechanical Restrictions: Do not bleach. Do not tumble dry. Do not iron. Do not wring or twist the pillow, as mechanical torsion may cause displacement of the internal fiber clusters.














