Description
Professional-Grade Performance. Field-Ready Reliability.
The is engineered for dependable performance in real-world environments where reliability, accessibility, and integration matter.
Why Professionals Choose This Product
- Built for consistent, real-world application
- Designed for integration into operational or preparedness setups
- Durable construction suited for demanding environments
- Structured for practical deployment and accessibility
Product Overview
The from Blaze Defense Systems is designed for reliability and real-world application.
*This item cannot be shipped internationally.*
The Avon CTCF50 Filter is a low profile combination filter containing a pleated high-efficiency filter element for removal of aerosols, particulate matter, smoke, fumes and a carbon bed for the removal of vapors that may be released from trapped particles. It is specifically designed for removal of riot control agents and tear gases including CS, CN and OC pepper spray. NIOSH Certified filter for use with Avon 50 Series APR's.
- Diameter: 111 mm
- Weight: <155 grams (typical)
- Thread: 40mm to NATO STANAG 4155
- Breathing Resistance: < 20 mm of H2O @ 85 l/min (typical)
- Operational Temperature: -32 degrees C to 71 degrees C
- Shelf Life: 5.5 years
Ideal Applications
- Professional use environments
- Training and preparedness scenarios
- Vehicle or kit integration setups (where applicable)
Important Notes
Always follow manufacturer guidance and applicable regulations for use, storage, and deployment.
Frequently Asked Questions
Who is the designed for?
The is designed for professional, preparedness, or training applications depending on the intended use outlined in the specifications.
Does the require training to use?
Proper training is recommended for safe and effective use in accordance with manufacturer guidance and applicable regulations.
Can the be integrated into an existing kit or setup?
The is built to integrate into compatible kits, vehicles, or operational setups based on its listed specifications and intended application.