The Mechanix Wear M-Pact 2 Covert Black tactical gloves deliver professional-grade hand protection for law enforcement, military personnel, and serious shooters. These gloves combine Armortex palm reinforcement with impact-resistant knuckle protection to handle demanding tactical operations and firearms training.
What Makes This Different
The M-Pact 2 series features dual-layer Armortex synthetic leather palms that resist abrasion 5x longer than standard work gloves. Thermoplastic Rubber (TPR) knuckle guards absorb impact while maintaining finger dexterity for trigger control and equipment manipulation. The covert black colorway eliminates reflective surfaces that could compromise tactical positioning.
Key Features
- Armortex synthetic leather palms provide superior grip and durability
- TPR knuckle protection guards against impact without restricting movement
- Secure Velcro closure system ensures proper fit during dynamic activities
- Breathable mesh panels reduce hand fatigue during extended wear
- Reinforced fingertips maintain tactile sensitivity for fine motor tasks
- Machine washable construction for easy maintenance
- Touchscreen compatible index finger and thumb
Field testing demonstrates excellent performance across temperature ranges from 20°F to 120°F without material degradation. The gloves maintain grip security on wet surfaces and provide reliable protection during vehicle operations, weapons handling, and tactical maneuvers. Law enforcement agencies report extended service life compared to standard duty gloves.
Technical Specs
- Size: Small
- Color: Covert Black
- Palm Material: Armortex synthetic leather
- Back Material: Stretch spandex with mesh ventilation
- Closure: Velcro wrist strap
- Protection: TPR knuckle guards
- Care: Machine washable, air dry
- Country of Origin: Vietnam
- Manufacturer Warranty: 30 days
The M-Pact 2 Covert represents proven tactical gear engineering backed by Mechanix Wear's reputation among professional users. Small sizing accommodates users requiring precise fit for optimal dexterity and control.