Abstract:
A hand-wearable device capable of electro muscular incapacitation device is disclosed. The device may comprise a glove portion including a back side and a palm side, a stun hardware component including a charging port, a rechargeable battery, and a capacitor. First and second terminals may be positioned on the same or different finger(s) of the glove portion, and electrically connected to the stun hardware component. The glove portion may encompass a traditional five-fingered glove, cycling glove, lifting glove, gauntlet, cuff, or bracer. When the hand-wearable device comprises a glove, the glove portion may be an insulated glove. A switch for actuating discharge of an electrical charge from the first and/or second terminal may be activated when contact is made with the switch; an accelerometer may be adapted to prevent the discharge when acceleration of the glove portion has not reached a predetermined rate.
Abstract:
A conducted electrical weapon (“CEW”) may launch electrodes toward a target to electrically couple to the target. A CEW may include a signal generator, one or more electrodes, and a selector circuit. The signal generator may include a first conductor and a second conductor, wherein the first conductor has a positive potential and the second conductor has a negative potential. The signal generator may be configured to provide a stimulus signal through the first conductor and the second conductor. The selector circuit may be in electrical series between the signal generator and the one or more electrodes. The selector circuit may be configured to selectively electrically couple an electrode from the one or more electrodes to the first conductor or the second conductor of the signal generator.
Abstract:
The deterrent and electrical pulse-applying glove device includes a palm side and a back-of-the-hand side with an external face and an internal face respectively external and internal to the glove device. The outer face of the palm side has installed on it at least two application contacts to be connected, by way of electrical connection devices. The electrical connection devices include at least one contactor, to an electric power source. The two application contacts are installed on the outer face on the palm side at a distance from one another so as to generate an electric arc between said contacts, when they are connected to the electric power source through the contactor to be actuated from the internal side internal to the glove device.
Abstract:
A hand-held personal-protection shock device apparatus and method providing a safety-pin mechanism to prevent unauthorized use or use by an attacker who wrests the device away; a siren that sounds when unauthorized use is attempted; a hand-held configuration that is comfortable to grip securely, with the shocking elements positioned optimally; built-in recharging equipment; and a switch configuration which promotes safe, rapid, and efficient use in an attack by a person or animal.
Abstract:
A personal protective device is combined with a cellular telephone. Activation of either device causes activation of the other device. Activation is achieved by a switch or voice command. Upon activation, a message asking for assistance at the present location is sent to a previously agreed upon emergency contact. The smartphone also starts both audio and video recording, which are also part of the data sent to the emergency contact person or service. Additionally, the personal protective devices are integrated into a unit that may combine such items as a protective spray, Taser, strobe light, dye pack, siren and other deterrent technologies to ward off would-be attackers. These devices are integrated into a hand held unit that can be unobtrusively worn or carried in a purse or pocket or in the user's hand. An optical safety device is included to protect the user from a potential assailant approaching from rearward.
Abstract:
A safety system includes an electromagnet positioned in an area. A power controller is coupled to the electromagnet to supply power to the electromagnet in accordance with an event. A trigger mechanism configured to trigger the event when the area is traversed by a person with a weapon such that upon activation of the electromagnet a magnetic force is generated capable of attracting the weapon to make continued use difficult or impossible within the area.
Abstract:
A personal defense accessory for interaction with a mobile communications device includes a main housing. A pair of electrodes are disposed in the main housing. A controller is disposed with the main housing and connected to the pair of electrodes to deliver a stun rated shock.
Abstract:
In an embodiment, a self-defense system is disclosed. The self-defense system may include or comprise a material sized to conform to an appendage, and a defense unit coupled with the material and positioned to initiate a defense event in response to an input.
Abstract:
Disclosed is an apparatus that includes an electric power source that powers a Marx generator that is electrically coupled to a cathode emitter that is configured to discharge electrical potential into the earth. The apparatus also includes a load resistor that is coupled between the output of the Marx generator and either a relative ground or the input to the Marx generator.
Abstract:
A shield cover and a shield retaining such a cover with an electrical discharge system with an activated condition wherein electrical power is applied to an electrically conductive pathway, which can be formed from positive and negative electrical pathways running generally parallel, on the shield cover. The shield cover has a shield cover body for being applied to, retained by, and removed from the shield body. An electrical discharge system is formed by a source of electrical power, the electrically conductive pathway, and a switch or other actuator for activating the electrical discharge system to the activated condition. The shield cover body could be formed from a stretch fabric, and the electrically conductive pathway could be formed by conductive thread. Electrical insulation material can prevent arcing between the shield cover and the shield body. An arcing structure can automatically or selectively produce visible or audible electrical arcing.