Abstract:
A deodorizer control device for spraying system includes a central processing unit. A central processing unit is defined with at least one operation mode. A liquid crystal display panel is connected to the central processing unit for selecting an operation mode from the at least one operation mode and displaying a working state of the selected operation mode. The liquid crystal display panel has functions of displaying time period of operation, date, time, dose used, external power source, and insufficiency of the date, time, dose, power; a spraying can is operated under the selected operation mode so as to control the spraying amount with a predetermined value.
Abstract:
The invention described herein is a framed fluid delivery device that is made up of a fluid-delivery cartridge for the timed-release delivery of a fluid contained therein, and a frame assembly for retaining the fluid delivery cartridge. The frame assembly is made up of a base portion that facilitates the delivery of fluid released from the fluid-delivery cartridge, at least one side panel associated with the base, and that secures the fluid-delivery cartridge within the frame assembly proximate the released fluid delivering means. Additionally, a fluid delivery device is disclosed that includes a fluid-delivery cartridge for the timed-release delivery of a fluid contained therein, the cartridge having a bottom, a top, and sides, and a dispersion pad positioned proximate the bottom of the fluid-delivery cartridge, wherein the dispersion pad at least partially surrounds the sides of the fluid-delivery cartridge.
Abstract:
In an apparatus for dispensing a volatile substance from a main reservoir, a second reservoir is provided which contains an additional quantity of the volatile substance. The substance is dispensed from the second reservoir during a delay period in which it cannot be dispensed from the main reservoir.
Abstract:
Articles, systems and methods for dispensing multiple volatile materials into the environment, including but not limited to scents, are disclosed. Methods for providing volatile material-containing articles of manufacture are also disclosed.
Abstract:
A fluid delivery device comprising a container for holding a predetermined quantity of fluid, means for generating gas within the container and means for cyclically dispensing fluid at predetermined intervals out of the container. One means for generating gas within the container comprises a gas generating cell. One means for cyclically dispensing fluid at predetermined intervals comprises a one-way pressure relief valve.
Abstract:
An apparatus for providing a continuous slow release of compressed gas includes a pressure vessel and a restrictor tube. The restrictor tube has a first open end located inside the pressure vessel and an opposite second open end located outside the pressure vessel. The restrictor tube has a small diameter so as to restrict the flow of gas therethrough and out of the pressure vessel. The pressure vessel is connected to a supply of compressed gas via a valve. When a volume of gas is transferred to the vessel, the gas enters the first opening, travels through the restrictor tube and out of the second opening to provide a slow continuous release of gas. In one embodiment, the pressure vessel is incorporated in an insect trap.
Abstract:
A mosquito killing apparatus includes an electroshock unit to which a high voltage applies, a heater to generate heats, a carbon dioxide (CO2) gas introduction inlet connected to discharging portions for discharging carbon dioxide (CO2) gas around the electroshock unit, and a protection cover provided outside the electroshock unit for covering the electroshock unit. The carbon dioxide (CO2) gas introduction inlet can be connected to carbon dioxide (CO2) gas generating means of various types, and a carbon dioxide (CO2) gas staying unit is formed around the electroshock unit to stay the carbon dioxide (CO2) gas introduced from the carbon dioxide (CO2) gas introduction inlet to surely electrocute attracted mosquitoes.
Abstract:
The present invention comprises a liquid for neutralizing bugs, a liquid disbursing device to cover the bugs and insert them with the liquid and a method for neutralizing and removing bugs. The liquid for neutralizing bugs is not toxic to humans and comprises a combined solution of n-alkyl dimethyl ethylbenzyl ammonium chlorides; n-alkyl dimethyl ethylbenzyl ammonium chlorides; extract of amaranthus retroflexus; vinegar and inert ingredients. Water may also be included. The liquid disbursing device comprises a liquid container with an upper hand fingers liquid pumping cylinder. Attached to the liquid pumping cylinder is a new and improved large funnel cap type device to catch the bug and spray the liquid about the entire outer area of the cap device to contact the by or bugs in any position. In an alternate embodiment the cap type device is provided with a forward lower configuration to receive the neutralized bug as it falls from its position. In another alternate embodiment the funnel cap type device is attached to a solid tube device to be held by the user's hand and an extendable flexible tube with the upper end attached to the bottom of the solid tube and the lower end attached to the pumping cylinder.
Abstract:
A multi-purpose pest trap characterized by a container including a rodent trap portion and a bug trap portion. The passage of the rodent into the rodent trap portion towards a bait supply interrupts a photoelectric beam and causes the entry to the rodent trap portion to be closed. Thereafter, a movable partition defining a gas chamber is closed, where the rodent is then effectively eradicated by a gas discharge. In the bug trap portion, a pivotal chute directs the bug onto a rotatable brush disposed within a gas chamber. The aforesaid chute pivots and the brush rotates upon the interruption of a photoelectric beam when a bug is at a bait location. Again, gas discharge serves bug eradication.