The Glock 50962 Magazine Catch provides ambidextrous operation for left-handed shooters and enhanced ergonomics for right-handed users. This factory component reverses the magazine release function to accommodate different shooting preferences and hand positions.
What Makes This Different
Unlike aftermarket magazine catches that may compromise reliability, this genuine Glock part maintains factory tolerances and specifications. The reversible design allows shooters to position the magazine release on either side of the frame without additional modifications. Factory engineering ensures consistent engagement and positive magazine retention across all compatible models.
Key Features
- Genuine Glock factory part with OEM quality assurance
- Reversible configuration for left or right-handed operation
- Black polymer construction matches factory frame finish
- Compatible with Glock 36, 36FGR, 42, 43X, and 48 models
- Maintains original spring tension and engagement geometry
- Drop-in installation with standard Glock tools
- Retains factory warranty coverage when properly installed
This magazine catch performs reliably under stress conditions including competition shooting and defensive applications. The polymer construction resists corrosion and maintains consistent operation in various weather conditions. Professional armorers and experienced shooters recognize the importance of using genuine Glock components to preserve reliability and accuracy standards.
Technical Specs
- Material: Black polymer construction
- Compatibility: Glock 36, 36FGR, 42, 43X, 48
- Function: Reversible left/right configuration
- Installation: Drop-in replacement part
- Finish: Matte black polymer
- Part Number: 50962
- Country of Origin: Austria
- Warranty: Covered under Glock factory warranty
Shooters requiring left-handed controls or seeking enhanced ergonomics will find this magazine catch delivers the reliability expected from genuine Glock components. The factory specifications ensure proper fit and function without compromising the pistol's mechanical integrity.