The Blackhawk Stache IWB holster delivers reliable concealed carry performance for Glock compact and full-size pistols. This polymer construction holster features an ambidextrous design that accommodates both right and left-handed shooters without modification.
What Makes This Different
The Stache holster utilizes a minimalist profile that reduces printing while maintaining secure retention. Unlike bulky leather alternatives, the polymer construction resists moisture and maintains consistent draw characteristics in all weather conditions. The integrated belt clip system distributes weight evenly across a 1.5-inch belt width for enhanced comfort during extended carry periods.
Key Features
- Compatible with Glock 19, 23, 32, and 45 pistols
 
- Ambidextrous design works for right or left-handed carry
 
- Black polymer construction resists corrosion and wear
 
- Belt clip accommodates belts up to 1.50 inches wide
 
- Low-profile design minimizes printing under clothing
 
- Adjustable retention system secures firearm during movement
 
- Open muzzle design accommodates threaded barrels
 
Field testing demonstrates consistent draw performance across temperature ranges from -20°F to 120°F. The holster maintains retention through rigorous movement including running, climbing, and vehicle operations. Law enforcement agencies report successful deployment in both uniformed and plainclothes applications. The polymer material shows minimal wear after 10,000+ draw cycles in controlled testing.
Technical Specs
- Material: High-impact polymer construction
 
- Color: Black finish
 
- Belt compatibility: Up to 1.50 inches wide
 
- Carry position: Inside the waistband (IWB)
 
- Retention: Passive friction retention system
 
- Weight: Approximately 2.1 ounces
 
- Pistol compatibility: Glock 19/23/32/45
 
- Country of origin: United States
 
The Blackhawk Stache represents proven concealment technology at an accessible price point. Professional users and civilian carriers rely on this holster's consistent performance across diverse operational environments.