The Walker's Razor Slim Passive Ear Muffs deliver essential hearing protection with a compact profile that accommodates rifle stocks and scoped firearms. These 27dB NRR-rated muffs feature Walker's signature low-profile design that eliminates interference with shouldering long guns.
What Makes This Different
The ultra-slim headband design sets these muffs apart from bulky traditional hearing protection. Standard passive muffs often interfere with proper rifle mounting and cheek weld, forcing shooters to compromise their shooting position. The Razor Slim's streamlined profile maintains full 27dB noise reduction while allowing natural rifle positioning and scope alignment.
Key Features
- 27dB Noise Reduction Rating blocks harmful gunshot noise
- Ultra-slim headband design accommodates rifle stocks and scoped firearms
- Soft foam ear cushions provide comfortable extended wear
- Adjustable headband fits head sizes from youth to adult
- Teal and black polymer construction resists impact and weather
- Compact folding design for easy storage and transport
- No batteries required for reliable passive protection
These muffs excel across shooting disciplines from precision rifle competitions to hunting expeditions. The passive design eliminates battery concerns during extended range sessions or multi-day hunting trips. The slim profile proves particularly valuable for prone shooting positions and when using high-mounted scopes that require close cheek contact with the stock.
Technical Specs
- Noise Reduction Rating: 27dB
- Construction: Polymer headband and ear cups
- Color: Teal and black finish
- Design: Over-ear passive protection
- Adjustment: Multi-position headband sizing
- Cushions: Soft foam ear seals
- Power: No batteries required
- Folding: Compact storage design
The Walker's Razor Slim Passive Muffs combine proven hearing protection with practical shooting ergonomics. Their reliable passive design and rifle-friendly profile make them a solid choice for shooters who prioritize consistent protection without electronic complexity.