US2015040880A1PendingUtilityA1

Stun glove with airsoft gun device and electrical shocking device

Assignee: TSENG YING-JUNGPriority: Aug 8, 2013Filed: Aug 8, 2013Published: Feb 12, 2015
Est. expiryAug 8, 2033(~7 yrs left)· nominal 20-yr term from priority
Inventors:Ying-Jung Tseng
F41H 13/0018F41B 11/62
41
PatentIndex Score
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Claims

Abstract

A stun glove is provided with a glove member, an airsoft gun device disposed on a back side of the glove member for discharging non-lethal bullets (e.g., plastic pellets) to an assailant, and an electrical shocking device disposed on a front side and a wrist of the glove member for delivering an electric shock to stun an assailant.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . A stun glove comprising, in combination:
 a glove member shaped to receive a hand;   a support secured to a back side of the glove member;   two rails disposed on the support;   two projectile discharging assemblies slidably disposed on the rails, each of the projectile discharging assemblies comprising a rear member, a barrel disposed in front of the rear member and including a front portion for receipt of a non-lethal projectile, a rear portion, and an intermediate portion communicating each other, a lower bar having a lower end piviotably secured to the support, and an upper bar having a lower end piviotably secured to an upper end of the lower bar;   a breakable diaphragm disposed in a rear end of the front portion of the barrel;   a high pressure air canister moveably disposed in the rear portion of the barrel to be in contact with a joining portion of the upper and lower bars;   a trigger having a rear end pivotably secured to both the rear member and an upper end of the upper bar;   a hollow piercing member disposed in front of the high pressure air canister;   an electrical shocking device disposed on a front side and a wrist of the glove member, the electrical shocking device comprising:   a control assembly disposed on the wrist of the glove member and including a plurality of holes disposed on a surface, a rechargeable battery, a control circuit electrically connected to the rechargeable battery, a voltage booster circuit, a driver circuit disposed on a bottom and electrically connected to the control circuit, a plurality of first terminals disposed on the driver circuit and corresponding to the holes respectively, two opposite grooves on both sides respectively, two discharging terminals exposed on the front side of the glove member, an activation switch disposed on a thumb of the glove member, a charging circuit electrically connected to both the rechargeable battery and the control circuit, a charging socket electrically connected to the charging circuit, an on/off switch disposed on the control assembly, a laser pointing device disposed between the projectile discharging assemblies, a pointing circuit electrically interconnected the control circuit and the laser pointing device, an indicator lamp disposed on the surface of the control assembly, and an indicator circuit electrically interconnected the control circuit and the indicator lamp; and   a safety arrangement including a safety circuit electrically connected to both the activation switch and the discharging terminals, a plurality of second terminals disposed on the safety circuit and electrically connected to the safety circuit, and two opposite troughs on both sides respectively, the troughs being complementary to the grooves so as to releasably mount the safety arrangement on the control assembly by sliding the troughs along the grooves;   wherein a pressing of the trigger pivots both the upper and lower bars to cause the joining portion of the upper and lower bars to push the high pressure air canister to be pierced by the piercing member, thereby releasing high pressure air in the high pressure air canister to pass through the piercing member, break the breakable diaphragm, and discharge the projectile out of the front portion of the barrel to fire;   wherein the rechargeable battery is electrically connected to the safety circuit via the control circuit, the driver circuit, the first terminals, and the second terminals which are in electrical contact with the first terminals through the holes when the safety arrangement and the control assembly are assembled;   wherein a pressing of the on/off switch causes the voltage booster circuit to rise its voltage to a predetermined value;   wherein a subsequent pressing of the activation switch activates the safety circuit to cause the voltage booster circuit to supply high voltage electric current to the discharging terminals via the driver circuit, the first terminals, the second terminals, and the safety circuit so that the energized discharging terminals delivers a high voltage, low amperage electric shock for a predetermined period of time prior to deactivating with the indicator lamp being off;   wherein the indicator lamp is lit in green for indicating the electrical shocking device to be ready to use when the on/off switch is closed;   wherein the control assembly is required to charge if the indicator lamp is flashing in red after turning on the on/off switch;   wherein the indicator lamp is lit in yellow during charging; and   wherein the indicator lamp is lit in green after being fully charged.

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