This firearm sight uses a spring-loaded adjustment element and keyhole opening to allow lateral movement only when intentionally released.
Secondary alignment dots appear during misalignment, guiding users back to the primary reticle for faster target acquisition.
UP and R mechanisms with spring resetting and limiting parts reduce tilt and jumping for precise inner red dot reticle alignment.
An actuation element shifts between positions to create opposing end stops, enabling approximately two turret rotations.
A movable light source and collimator path align target and dot images, improving aiming accuracy across distances.
This case shows how a modular foam grip and integrated hand loop improve comfort, engagement, and leverage on a shotgun pump handle.
A cam pin and spiral-groove stop ring limit turret rotation, helping shooters return to zero without counting clicks.
A screw-adjusted base lets users replace sight inserts quickly while preserving precise elevation and windage control.
This shotgun mounting plate supports optics and traditional aiming, enabling quick changes without permanently modifying the receiver.
This case uses segmented rings, pins, and followers to block reverse rotation while tracking impact-point adjustments.
This optical sight uses rings, pins, and protrusions to add zero stop control without vertical dial movement.
This case uses a modular riser and flexible circuit to elevate accessories above the handguard while enabling remote keypad operation.
A detachable display and programmable foregrip combine sensor data into a unified scene, addressing fragmented battlefield information.
A diamond-shaped post, single detent, and 180° flip aperture address misalignment and lateral shift in compact backup sights.
This case combines a centered aperture, friction-fit post, and ring-shaped leaf spring to improve aiming consistency.
A connector and fastening mechanism between tapered ribs enables infinite ancillary-device adjustment for improved firearm ergonomics.
A range-finder and actuator dynamically align the exit pupil with the eye, preserving visual contact during head movement.
Tapered tubular projections guide optical sight locking and prevent false lock impressions.
This optical sight uses peripheral non-aiming marks to show misalignment direction and guide rapid reacquisition in low light.
A modular bow sight support separates elevation and windage adjustment for quicker, more stable optical alignment.
An adjustable transmission mechanism calibrates one distance scale to varied arrow trajectories without interchangeable sight tapes.
Flexible-tethered lens covers use dedicated snap-fit structures for secure, quiet attachment and easy removal without obstructing vision.
A recessed slide surface uses pre-aligned pin openings to attach multiple optical sights and reduce installation misalignment.
A mechanically aligned secondary imager links to the sight and superimposes different wavelength images for clearer targets.
This case miniaturizes a collimated-light aiming sight for one-eye use, fast target acquisition, and iron-sight backup.
Convert visible screen images to infrared for data viewing in dark observatories.
A ranging unit calculates ballistic compensation positions and guides aiming, eliminating manual recalibration when offsets change.
A pivoting, calibratable level vial moves between operational and stowed positions to detect weapon cant without obstructing aiming.
A directional and omnidirectional sensor pair adjusts reticle LED intensity to prevent washout across uneven user and target lighting.