The Fierce Firearms CT Rage delivers precision long-range performance with its match-grade carbon fiber barrel and advanced stock design. This 6.5 PRC rifle combines lightweight construction with consistent accuracy for demanding shooting applications.
What Makes This Different
The CT Rage features a full carbon fiber barrel that reduces weight by 40% compared to steel barrels while maintaining thermal stability during extended shooting sessions. The Fierce Tech C3 carbon fiber stock provides superior rigidity and vibration dampening. Black Cerakote finish offers enhanced corrosion resistance beyond standard bluing or parkerizing.
Key Features
- 24" carbon fiber barrel for optimal velocity and accuracy in 6.5 PRC
- Fierce Tech C3 fixed stock with blackout camo pattern
- 3+1 round capacity with detachable magazine system
- Black Cerakote metal finish for durability and weather resistance
- Right-hand configuration with ergonomic grip geometry
- Precision-machined action with smooth bolt operation
- Threaded muzzle ready for suppressor or brake attachment
Field performance centers on the 6.5 PRC cartridge's flat trajectory and retained energy at extended ranges. The carbon fiber barrel maintains consistent point of impact through temperature changes while reducing overall rifle weight for easier handling during long hunts. Competition shooters benefit from the stock's stable platform and repeatable cheek weld.
Technical Specs
- Caliber: 6.5 PRC (Precision Rifle Cartridge)
- Barrel Length: 24 inches, carbon fiber construction
- Capacity: 3+1 rounds with detachable magazine
- Stock: Fierce Tech C3 carbon fiber, blackout camo finish
- Metal Finish: Black Cerakote ceramic coating
- Action: Right-hand bolt action
- Overall Length: Approximately 44 inches
- Weight: Approximately 6.5-7 pounds
- Twist Rate: 1:8 inches (optimized for heavy bullets)
- Manufacturer: Fierce Firearms, USA
The CT Rage represents proven engineering focused on accuracy and reliability rather than unnecessary features. Carbon fiber components reduce fatigue during extended use while maintaining the structural integrity required for consistent shot placement.