The Templar MZMOB121 delivers reliable out-the-front deployment in a compact profile built for demanding applications. This premium weighted knife combines D2 tool steel performance with tactical aesthetics in a package that balances precision cutting capability with dependable mechanical function.
What Makes This Different
The black oxide stonewashed finish on the D2 steel blade provides superior corrosion resistance compared to standard carbon steel alternatives. The premium weighted design creates optimal balance during deployment and cutting tasks. The aluminum zinc alloy construction reduces overall weight while maintaining structural integrity under stress.
Key Features
- 3.16-inch D2 tool steel blade with black oxide stonewashed finish for enhanced durability
- Premium weighted slim profile optimizes balance and control during operation
- 4.93-inch Mossy Oak Bottomland aluminum zinc alloy handle for lightweight strength
- Out-the-front deployment mechanism for single-handed operation
- Dagger point configuration provides versatile cutting geometry
- Plain edge design delivers clean cutting performance across materials
- Compact overall length suitable for everyday carry applications
The D2 steel construction maintains edge retention through extended cutting sessions while the stonewashed finish masks wear patterns from regular use. The OTF mechanism functions reliably in various environmental conditions, making this knife suitable for outdoor activities, utility tasks, and professional applications. The Mossy Oak Bottomland pattern provides effective visual camouflage in natural environments.
Technical Specs
- Blade Length: 3.16 inches
- Handle Length: 4.93 inches
- Blade Material: D2 tool steel with black oxide stonewashed finish
- Handle Material: Aluminum zinc alloy
- Deployment: Out-the-front automatic mechanism
- Blade Style: Dagger point, plain edge
- Handle Pattern: Mossy Oak Bottomland camouflage
- Weight: Premium weighted configuration
- Model: MZMOB121
This knife represents solid engineering focused on functional performance rather than unnecessary complexity. The combination of proven materials and reliable mechanics creates a tool that performs consistently when needed most.