An offset support member gives the elevation reflector clearance at extreme steering angles, improving HPM aiming and rapid deployment.
Separate laser oscillator groups detect target position and then direct dealing beams without mechanical steering for faster, precise irradiation.
A self-powered W-band beamformer and power amplifier enable a handheld nonlethal weapon to deliver repeated focused deterrence without external power.
A trolley-mounted net drops and locks across building exits to immobilize suspects quickly until law enforcement arrives.
Physical cartridge identifiers guide correct CEW magazine loading, supporting 12-inch electrode spacing and energy-efficient NMI delivery.
Automatic electrode deployment uses orientation and distance changes to improve CEW spacing, boost NMI likelihood, and conserve battery power.
Automatic time- and sensor-based electrode deployment improves CEW spacing and pulse control for more consistent NMI with less battery drain.
A triggered trolley drops and locks heavy-duty netting over building exits to immobilize suspects until law enforcement arrives.
Sensors and a controller assess threat level and adjust CEW charge delivery to incapacitate remote targets with more balanced force.
Replacing the bulky gas reservoir, a pyrotechnic charge generates cartridge pressure to project electrodes and simplify propulsion.
Dual optical deflection helps a pod-borne laser switch rapidly among agile targets, reducing reliance on multiple weapons for drone defense.
A position sensor triggers a follow-on electrode after weapon movement, helping maintain stimulus delivery while conserving battery power.
A segmented anchor uses a biasing element to restore displaced head and tail segments, helping hooks stay engaged with clothing or the subject’s body.
Magnetic docking lets flexible-connected nunchaku members separate for compact carry while preserving assembled striking capability.
Compliant material at the deployment unit and handle-bay interface enables mechanical and electrical coupling as the unit is inserted.
This case replaces costly proximity-based MEMS jamming with pulsed-laser plasma and frequency sweeping for economical remote disruption.
Distance-based pulse control creates a plasma burst at the drone, disrupting electronics while limiting effects on nearby aircraft.
This case uses selector-controlled polarity testing to improve CEW electrode pairing, NMI delivery, and battery conservation.
A knife throwing training apparatus features molded finger and thumb portions to guide proper hand positioning during use.
A tactical lighting system emits disabling light flashes paired with protective eyewear that transitions between transparent and opaque states.
A bladed device integrates conductive elements and a power circuit to generate electrical arcing or shock effects for non-lethal defense.
Adaptive HEMI system uses biometric feedback to adjust electrical pulses, resolving reliability issues from variable human impedance.
Detachable guard rests on blade notches to stop knives passing through barrier holes, reducing safety hazards during competitive throwing.
A high energy laser system stabilizes radiation spots using a shared optical path for real-time image analysis.
A key holder uses a spring-loaded plunger to rapidly deploy weighted cordage for personal defense.
Sensors detect target characteristics to adjust current, minimizing injury risk while maintaining effectiveness.
Merging entanglement and electrical launchers reduces carrying burden while providing adaptable force levels.
A radiation device merges illumination and damage beams through a shared exit aperture to simplify optical alignment.
Modular emergency ramps use integrated hooks and glass breakers to ensure stable attachment on rough terrain without complex assembly.
A Tesla coil generates a strong electric field to induce current in an electrical target.
Pre-winding the tether inside the electrode housing ensures consistent deployment while high-voltage pulses ionize air gaps for reliable current delivery.
Extruding solid metallic conductors via pressure eliminates wire tugging and extends range beyond thirty feet.
Segmented planar antenna structure increases pulse energy density and edge steepness while managing device complexity through modular parallel connections.
An assessment system evaluates target environment engagement efficiency to control directed-energy weapon power levels.
A frangible barrier insulates the deployment unit conductors to prevent electrostatic discharge damage during storage.
A non-lethal disruption device emits specific light patterns and sound frequencies to disorient individuals during volatile situations.
A dazzle apparatus modulates beam intensity based on target range using a stray detector to inhibit exposure of secondary objects.
Segmented bodies and dynamic positioning resolve aiming errors while ensuring continuous shock delivery.
Merges personal defense capability with communication functions via integrated electrodes and controllers to resolve portability contradictions.
A telescopic radiator couples multiple laser beams using collimating and secondary mirrors to focus optical energy.
Segmenting the cover into a rigid door and brittle frangible portion minimizes rebound interference with the wire tether.
A beam focusing unit separates laser generation from optical delivery to enable high-speed target tracking.
An acoustic field system replaces mechanical force with ultrasonic vibrations to stop forward motion and drop weapons without causing physical injury.
A charged-particle intercalated graphite device accelerates ions via explosive detonation to emit electromagnetic pulses.
Relay units recollimate millimeter-wave beams to maintain power density for pain deterrence while detectors reduce energy consumption.
Weapon-locating ladar systems illuminate wake turbulence with laser beams to compute backward trajectories.
A tethered electrode assembly mechanically couples a filament to an electrode for accurate target delivery.