D30 HALO Helmet Liner System
$0.00
The D30-HALO-Helmet-Liner-System is designed for superior protection and reliability, making it an essential piece of gear for law enforcement, military personnel, and security professionals. The worlds lightest, most ventilated, comfortable helmet liner to exceed ACH blunt impact requirements (AR/PD 10-02). 25% Lighter than the next best competitor. Shed Weight – Reduce Trauma – Save Lives
Halo has been designed with end-user comfort and fit in mind. The Delta Three Oscar team of engineers has maximized the comfort foam thickness – without altering the 0.75” fit – to guarantee best-in-class short- and long-term comfort. The comfort foam has been scientifically developed to provide a familiar plush, full coverage fit and is wrapped in premium MIILSPEC anti-microbial wicking fabrics. Stay prepared and secure with the D30-HALO-Helmet-Liner-System, your ultimate safeguard against evolving threats.
Features
KEY FEATURES:
• Lightest helmet liner (80g) to exceed ACH blunt impact requirements (AR/PD 10-02)
• Most comfortable liner on the market with plush, full coverage fit
• Ventilation and moisture management via integrated air channels
• Versatile, self-conforming crown pad accommodates a number of comms headset configurations
• Unmatched thermodynamic impact consistency thanks to all-new D3O® technology
SECONDARY FEATURES:
• D3O-proven blunt impact performance consistency from 1st to 2nd impact
• Premium anti-bacterial treated, moisture wicking MILSPEC fabrics
• Available either in single thickness (0.75” and 1”) or customizable (0.75” plus shims) fit
• 2 liner sizes (M and L/XL) available to accommodate all shell sizes
• Compatible with most Aramid and PE ACH, LW-ACH, MICH, ECH, LWH-type shells
Specifications
Halo exceeds the AR/PD 10 02 requirements by 33%33%, averaging <100g across all conditions in the most challenging liner shell configurations.
Halo boasts the same overall impact performance as competitor Team Wendy Epic Air in a 25% lighter weight package whilst offering a much more consistent behavior across impact locations/temperatures.