Patent classifications
H05C1/02
ANTI-PEST DEVICE FOR FRUIT TREES AND THE LIKE
An anti-pest device for fruit trees and the like that prevents trees from being affected by crawling insect pests includes a rectangular sheet of electrical insulating material, which can adopt the shape of an inverted truncated cone or a cylindrical configuration around the trunk of the tree; a band of low-density foam under the sheet that adapts to the physiognomy of the bark, and deforms with the growth of the trunk, whereas the sheet includes a sector that is superimposed thereon and slides on it to adapt to said growth; a pair of parallel conducting wires, separated a distance according to the size of the body of the insect to be exterminated, subjected to a high difference in electrical potential by means of a power supply circuit, such that when an insect tries to get past them, it is automatically electrocuted.
METHODS AND APPARATUS FOR A HIGH VOLTAGE CIRCUIT
A conducted electrical weapon (“CEW”) comprises one or more switch devices and a charge storage circuit for delivering a stimulus signal via a deployed electrode. A charge may be stored in the charge storage circuit. A first switch device of the one or more switch devices may be selectively turned on according to the charge of the charge storage circuit. The stimulus signal may be delivered via a current flow path comprising the first switch device and the deployed electrode according to the charge of the charge storage circuit.
METHODS AND APPARATUS FOR A HIGH VOLTAGE CIRCUIT
A conducted electrical weapon (“CEW”) comprises one or more switch devices and a charge storage circuit for delivering a stimulus signal via a deployed electrode. A charge may be stored in the charge storage circuit. A first switch device of the one or more switch devices may be selectively turned on according to the charge of the charge storage circuit. The stimulus signal may be delivered via a current flow path comprising the first switch device and the deployed electrode according to the charge of the charge storage circuit.
Electronic bait box assembly
An electronic bait box assembly for storing earthworms includes a box for containing earth and earthworms. A lid is removably attached to the box for closing the box. A voltage unit is coupled to the bait box and the voltage unit is in electrical communication with an interior of the box. Moreover, the voltage unit is placed in electrical communication with the earth that is positioned in the box. The voltage unit induces an electrical voltage through the earth when the voltage unit is turned on. In this way the voltage unit urges the earthworms to move upwardly in the earth thereby facilitating a user to remove the earthworms for fishing bait.
Electronic Bait Box Assembly
An electronic bait box assembly for storing earthworms includes a box for containing earth and earthworms. A lid is removably attached to the box for closing the box. A voltage unit is coupled to the bait box and the voltage unit is in electrical communication with an interior of the box. Moreover, the voltage unit is placed in electrical communication with the earth that is positioned in the box. The voltage unit induces an electrical voltage through the earth when the voltage unit is turned on. In this way the voltage unit urges the earthworms to move upwardly in the earth thereby facilitating a user to remove the earthworms for fishing bait.
Electronic Bait Box Assembly
An electronic bait box assembly for storing earthworms includes a box for containing earth and earthworms. A lid is removably attached to the box for closing the box. A voltage unit is coupled to the bait box and the voltage unit is in electrical communication with an interior of the box. Moreover, the voltage unit is placed in electrical communication with the earth that is positioned in the box. The voltage unit induces an electrical voltage through the earth when the voltage unit is turned on. In this way the voltage unit urges the earthworms to move upwardly in the earth thereby facilitating a user to remove the earthworms for fishing bait.
Methods and apparatus for a high voltage circuit
A conducted electrical weapon (CEW) comprises one or more switch devices and a charge storage circuit for delivering a stimulus signal via a deployed electrode. A charge may be stored in the charge storage circuit. A first switch device of the one or more switch devices may be selectively turned on according to the charge of the charge storage circuit. The stimulus signal may be delivered via a current flow path comprising the first switch device and the deployed electrode according to the charge of the charge storage circuit.
Methods and apparatus for a high voltage circuit
A conducted electrical weapon (CEW) comprises one or more switch devices and a charge storage circuit for delivering a stimulus signal via a deployed electrode. A charge may be stored in the charge storage circuit. A first switch device of the one or more switch devices may be selectively turned on according to the charge of the charge storage circuit. The stimulus signal may be delivered via a current flow path comprising the first switch device and the deployed electrode according to the charge of the charge storage circuit.
Electric shock insecticidal device
The present invention provides an electric shock insecticidal device reducing noise and light pollution emitted to an outside. The electric shock insecticidal device converts output voltage and output current supplied to a grid electrode into AC voltage and AC current or into DC voltage and DC current selectively; controls levels of the converted output voltage and current; adjusts an amount of light of the ultraviolet lamp emitted to an outside by using a light blocking layer or an adjusting unit adjusting illumination of an ultraviolet lamp; and easily separates the grid electrode having high voltage from a body unit to remove electrocuted flying insects from the grid electrode.
Electric shock insecticidal device
The present invention provides an electric shock insecticidal device reducing noise and light pollution emitted to an outside. The electric shock insecticidal device converts output voltage and output current supplied to a grid electrode into AC voltage and AC current or into DC voltage and DC current selectively; controls levels of the converted output voltage and current; adjusts an amount of light of the ultraviolet lamp emitted to an outside by using a light blocking layer or an adjusting unit adjusting illumination of an ultraviolet lamp; and easily separates the grid electrode having high voltage from a body unit to remove electrocuted flying insects from the grid electrode.