Patent classifications
F41A19/69
Electronic operating mechanism for a firearm
There is disclosed herein systems, methods and apparatus relating to a firearm with an electronically operable firing system to fire projectiles from the firearm. The electronic firing system includes an electronic actuator with a switch for electronically firing the firearm and a trigger lever connected to the trigger. The trigger lever is reciprocally moveable along the fastening member in response to a pull of the trigger to displace the trigger lever and actuate the switch to fire the firearm.
Handgun Laser Sight with Passive Switch
A handgun mounted accessory such as a laser sight is combined with a triggerguard mounted flush profile switch to provide high reliability of operation. The switch is designed and located to provide passive user switching in use without separate movement or applied force of the user's hand or fingers.
ELECTRONIC OPERATING MECHANISM FOR A FIREARM
There is disclosed herein systems, methods and apparatus relating to a firearm with an electronically operable firing system to fire projectiles from the firearm. The electronic firing system includes an electronic actuator with a switch for electronically firing the firearm and a trigger lever connected to the trigger. The trigger lever is reciprocally moveable along the fastening member in response to a pull of the trigger to displace the trigger lever and actuate the switch to fire the firearm.
ELECTRONIC OPERATING MECHANISM FOR A FIREARM
There is disclosed herein systems, methods and apparatus relating to a firearm with an electronically operable firing system to fire projectiles from the firearm. The electronic firing system includes an electronic actuator with a switch for electronically firing the firearm and a trigger lever connected to the trigger. The trigger lever is reciprocally moveable along the fastening member in response to a pull of the trigger to displace the trigger lever and actuate the switch to fire the firearm.
Operating mode selection mechanism and method for a firearm
There is disclosed herein systems, methods and apparatus relating to a selective fire firearm. A firing mechanism is provided for mechanically and electronically firing a firearm depending on the operating mode selected by the user. A selector mechanism allows for selection of a safety mode of operation, a semi-automatic firing mode of operation, an automatic firing mode of operation, and an electronic firing mode of operation.
Operating mode selection mechanism and method for a firearm
There is disclosed herein systems, methods and apparatus relating to a selective fire firearm. A firing mechanism is provided for mechanically and electronically firing a firearm depending on the operating mode selected by the user. A selector mechanism allows for selection of a safety mode of operation, a semi-automatic firing mode of operation, an automatic firing mode of operation, and an electronic firing mode of operation.
System and method for authorizing and executing safe semi-autonomous engagement of a safety-critical device
Disclosed is a system and method for authorizing and executing safe semi-autonomous engagement of a safety critical firing device at a remote location. A Human Machine Interface at the near location has an input including a hardware safety barrier and hardware barrier communication unit with interfaces connected to a network. At the remote location, a control unit and an Robotic Operator Server are connected to a fire control system of the safety critical firing device and to the network. The Robotic Operator Server includes software for detecting and locking to a target and for providing authorization information to the Human Machine Interface, and to transfer trigger signals to the fire control system when authorization of engagement is confirmed by an operator via a control panel. The safety critical firing device is engaged if all of activation control, arming control, and trigger signals are present in the fire control system.
System and method for authorizing and executing safe semi-autonomous engagement of a safety-critical device
Disclosed is a system and method for authorizing and executing safe semi-autonomous engagement of a safety critical firing device at a remote location. A Human Machine Interface at the near location has an input including a hardware safety barrier and hardware barrier communication unit with interfaces connected to a network. At the remote location, a control unit and an Robotic Operator Server are connected to a fire control system of the safety critical firing device and to the network. The Robotic Operator Server includes software for detecting and locking to a target and for providing authorization information to the Human Machine Interface, and to transfer trigger signals to the fire control system when authorization of engagement is confirmed by an operator via a control panel. The safety critical firing device is engaged if all of activation control, arming control, and trigger signals are present in the fire control system.
Operating systems for electronically actuated firearms
There is disclosed herein systems, methods and apparatus relating to a firearm with an operating system for electronically firing the firearm to fire projectiles from the firearm. The operating system includes an electronic firing system with a switch that is actuated by pulling the trigger of the firearm.
Operating systems for electronically actuated firearms
There is disclosed herein systems, methods and apparatus relating to a firearm with an operating system for electronically firing the firearm to fire projectiles from the firearm. The operating system includes an electronic firing system with a switch that is actuated by pulling the trigger of the firearm.