Who invented mosquito bat
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An electronic mosquito racket includes a frame body holding a charged mesh, a grip accommodating a power control unit that is electrically connected to the charged mesh, and a shaft made out of a flexible material and connected between the frame body and the grip to enhance the swiping speed of the electronic mosquito racket and to provide a shock absorbing effect. Field of the Invention. The present invention relates apparatus for killing insects and more particularly, to an electronic mosquito racket, which enhances the swiping speed and provides a shock absorbing effect. A regular electronic mosquito racket generally comprises a frame body, a grip, and a shaft. The frame body holds a charged mesh on the inside.
Who invented mosquito bat
Welcome to the first product teardown by T Works. We decided that the popular electric mosquito racket would be a great candidate for our first teardown since it is a great example of how a simple working principle can be packaged into a product that is economical, effective, and fun to use. In this teardown, we will discuss the external design of the racket, the internal mechanisms and electrical components used, and the manufacturing techniques used to make the components. The racket is a device used to kill mosquitos; the user waves the racket around to catch a mosquito between the metal grid, which shorts the circuit and electrocutes the insect. The device is extremely popular in tropical countries like India, where mosquitos are a nuisance and responsible for spreading lethal diseases like malaria and dengue. There are many brands and variations of the racket available in the market. The racket is made by Akari, a company based in Hong Kong. Most of the rackets available in the Indian market are made in China. The device is packaged in a clear polypropylene bag with a sticker label which details the brand, device specifications, usage instructions, and warnings. The bag can be reused to store the device.
An electronic mosquito racket comprising a frame body, said frame body holding a charged mesh. The device is packaged in a clear polypropylene bag who invented mosquito bat a sticker label which details the brand, device specifications, usage instructions, and warnings.
A fly-killing device is used for pest control of flying insects, such as houseflies , wasps , moths , gnats , and mosquitoes. A flyswatter or fly-swat , fly swatter [1] usually consists of a small rectangular or round sheet of a lightweight, flexible, vented material usually thin metallic, rubber, or plastic mesh around 10 cm 4 in across, attached to a handle about 30 to 60 cm 1 to 2 ft long made of a lightweight material such as wire, wood, plastic, or metal. The venting or perforations minimize the disruption of air currents, which are detected by an insect and allow escape, and also reduces air resistance , making it easier to hit a fast-moving target. A flyswatter is ideally lightweight and stiff , allowing quick acceleration to overcome the fast reaction time of the fly six to ten times faster than a human , [2] while also minimizing damage caused by hitting other objects. The flyswatter usually works by mechanically crushing the fly against a hard surface, after the user has waited for the fly to land somewhere. However, users can also injure or stun an airborne insect mid-flight by whipping the swatter through the air at an extreme speed. The abeyance of insects by use of short horsetail staffs and fans is an ancient practice, dating back to the Egyptian pharaohs.
The electric mosquito bat, also known as the electronic insect-killing swatter, has become a popular tool for mosquito control. But have you ever wondered who invented this innovative device? In this article, we will explore the origins and history of the electric mosquito bat and discover the inventor behind this game-changing creation. The electric mosquito bat is intelligently crafted with a thoughtfully designed structure and functions to efficiently tackle those annoying mosquitoes. Let's delve into the details of its design and how it works. The electric mosquito bat comprises three essential components — a frame body, a grip, and a flexible shaft. The frame body securely holds a charged mesh, typically made of metal, between two open frames, ensuring stability and durability. This mesh plays a crucial role in exterminating pesky insects that come in contact with it. This compact yet powerful unit provides the necessary electrical current to the mesh, enabling it to deliver a potent electric shock to the intruding insects. The flexible shaft, often crafted from flexible materials like plastics or rubber, forms the crucial connection between the frame body and the grip.
Who invented mosquito bat
A fly-killing device is used for pest control of flying insects, such as houseflies , wasps , moths , gnats , and mosquitoes. A flyswatter or fly-swat , fly swatter [1] usually consists of a small rectangular or round sheet of a lightweight, flexible, vented material usually thin metallic, rubber, or plastic mesh around 10 cm 4 in across, attached to a handle about 30 to 60 cm 1 to 2 ft long made of a lightweight material such as wire, wood, plastic, or metal. The venting or perforations minimize the disruption of air currents, which are detected by an insect and allow escape, and also reduces air resistance , making it easier to hit a fast-moving target. A flyswatter is ideally lightweight and stiff , allowing quick acceleration to overcome the fast reaction time of the fly six to ten times faster than a human , [2] while also minimizing damage caused by hitting other objects. The flyswatter usually works by mechanically crushing the fly against a hard surface, after the user has waited for the fly to land somewhere. However, users can also injure or stun an airborne insect mid-flight by whipping the swatter through the air at an extreme speed.
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Insects enter the trap and drown in the water inside. The physical design appears structurally robust and will likely survive small drops and impacts. In this teardown, we will discuss the external design of the racket, the internal mechanisms and electrical components used, and the manufacturing techniques used to make the components. Referring to FIGS. USB1 en. The tooling marks also suggest that the moulding tool was likely made of aluminium, which is faster to produce and less expensive than a tool steel mould. The device is extremely popular in tropical countries like India, where mosquitos are a nuisance and responsible for spreading lethal diseases like malaria and dengue. Since the defects do not affect the functionality of the part nor is the part visible to the customer, the defects were deemed acceptable. There are many electrical schematics for bug zappers available online; one example has been provided below. Rameshwaram Cafe Explosion. This is also a big reason why China is the current manufacturing hub of the world: due to the availability of low cost manpower as well as access to a variety of manufacturing technology at low costs. The exposed adhesive strip makes it more stick-prone than an enclosed glue board. This one has a torch as well. The flyswatter usually works by mechanically crushing the fly against a hard surface, after the user has waited for the fly to land somewhere.
I spent my childhood in Addis Ababa, Ethiopia, where I was tormented by mosquitoes day and night. I happen to be one of those people whom the bugs find very attractive.
Another gun-like design consists of a pair of mesh sheets spring loaded to "clap" together when a trigger is pulled, squashing the fly between them. To avoid accidental entanglement with humans, the strips are often hung in relatively inaccessible spaces, such as near ceilings. A lip and groove feature is added to the edge for alignment between the enclosure shells. The racket is a device used to kill mosquitos; the user waves the racket around to catch a mosquito between the metal grid, which shorts the circuit and electrocutes the insect. The capacitor discharges when the circuit is shorted by a mosquito. A bug zapper electric grid fly zapper kills insects by electrocution from high voltage on adjacent metallic grids. In this teardown, we will discuss the external design of the racket, the internal mechanisms and electrical components used, and the manufacturing techniques used to make the components. The one object of the present invention is to provide an electronic mosquito racket, which enhances the swiping speed and operation angle. Flypaper is not reused, but is replaced when it loses effectiveness. EPA1 en. After taking the enclosure top off, we can see the electrical circuitry. Robertson Scott. Open Popup.
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