Abstract:
The present invention provides a bracket apparatus for a bar-type ionizer, which includes a body clamp having the bar-type ionizer fitted therein and a flange having an arc-shape outer circumference; a mounting bracket having a guide rail embedded in a bottom surface thereof to surround the flange of the body clamp and to fix the body clamp such that the body clamp slides and rotates and a top surface coupled with a fixture structure; and a stopper having one side rotatably fixed to the mounting bracket and an opposite side locked with the flange of the body clamp to fix the rotation angle of the body clamp about the mounting bracket. Accordingly, the rotation central axis of the bar-type ionizer is formed in the body clamp to minimize a rotation radius, so that the space utilization can be maximized. According to the present invention, the bar-type ionizer is rotated by using the body clamp, so that the self-rotation of the bar-type ionizer is possible. Accordingly, the rotation radius can be minimized and the detaching and the maintenance of a produce are possible even in a narrow space of a factory, so that the space utilization can be maximized. As well, the bar-type ionizer is not limited to a vertical fixture ionizer or a horizontal fixture ionizer, but the rotational angles of the bar-type ionizer can be variously and flexibly set. Therefore, the bar-type ionizer can be conveniently used under various working environments and spaces, which represents superior effects.
Abstract:
The present invention relates to an independently detachable static charge removing device where the high voltage generating part and the X-ray generating part of a static charge removing device are separated to be independently supplied. A static charge removing device having a detachable high voltage generating part and an X-ray generating part according to the suggestion of the present invention has a structure where the input terminal of the X-ray generating part which is connected to the output terminal of the high voltage generating part is detachable. The input terminal of the X-ray generating part has a first connection part which is inserted into the high voltage generating part to be combined. The output terminal of the high voltage generating part has a second connection part which is combined with the first connection part. A static charge removing device according to the present invention can be supplied by separating a high voltage generating part from an X-ray generating part. If products are produced by the above-mentioned method, an effect such as replacement cost reduction, easy selection of an installation place, and thermal insulation can be obtained.
Abstract:
본 발명은 CDA 또는 N2를 포함하는 압축 기체를 이온화하고, 발생된 이온을 전달하여 피대전체가 보유한 정전기를 제거하는 코로나 방전식 정전기 제거장치에 사용되는 방전전극소켓에 관한 것으로, 보디부의 내부 양측에는 방전 전극에 인접한 축방향으로 복수의 와류 챔버를 형성하고, 상기 각각의 와류 챔버에 연결된 복수의 메인 노즐들을 구비하여 상기 와류 챔버와 메인 노즐을 통과하는 압축 기체의 유속 증가로 제전성능을 향상시키며, 방전전극 주위에는 다수의 보조 노즐을 구비하여 방전전극의 오염을 방지하도록 구성된 것이다. 본 발명에 의하면 메인 노즐의 출구 단면적은 보조 노즐의 출구 단면적보다 크게 형성되고, 종래의 노즐보다도 크게 형성되어 정전기의 제전성능을 크게 향상시킬 수 있다. 또한 본 발명에 의하면 방전전극 둘레에 형성된 작은 크기의 보조 노즐들을 통하여 저속의 압축 기체를 공급하게 되어 압축 기체의 최소 유량을 사용하면서도 방전전극의 오염을 효과적으로 방지할 수 있고, 피대전체가 보유한 정전기를 더욱 효과적으로 제거하는 우수한 효과를 얻게 된다.
Abstract:
PURPOSE: An electrostatic discharge removing device is provided to provide an ideal AC output wave by reducing electrostatic induction current flowing to a counter type electrode by decreasing the electrostatic capacity. CONSTITUTION: An electrostatic discharge removing device(100) includes multiple discharging electrode sockets(120) installed in the lower part of an insulating cover(100) consisting of incombustible ABS material. The electrostatic discharge removing device includes a discharging electrode(130) included in the center. The insulating cover is combined in the upper part of the discharging electrode socket having air spraying nozzles(132) in the periphery of the discharging electrode. An counter type electrode(140) is installed in both sides inside of the insulating cover. The counter type electrode consists of a pair of conductive wires(142a,142b).
Abstract:
PURPOSE: An apparatus for generating beam ions is provided to determine a supply of power by attaching an electron beam generation module at a socket part of a main body. CONSTITUTION: One side of a socket part(600) is opened. The socket part includes an internal space formed therein. An electron beam generation module(100) is selectively coupled with an internal space of the socket part. The electron beam generation module is attached to or is detached from the inner space of the socket part. The electron generation module generates an electron beam by receiving the electric power from the outside. A power supply unit(700) provides the electric power to the electron beam module.
Abstract:
A self rotation type ionizer is provided to rotate a vibration motor with a user setting angle by using the motor controlling a rotation angle and a motor controller. A motor driver(10) has an electric motor built in one side of a static electricity removing unit, and an electric motor driving unit communicates with a controller while applying power to the motor driver. A controller controls more than one electric motor, and a motor driver fixing plate is installed one side of the static electricity removing unit to fix the self rotation static electricity. The motor driver is integrately formed at the fixed plate of the motor driver, and a side fixing plate(60) is installed at the opposite side of the static electricity removing unit.
Abstract:
A bar type static electricity remover using a piezo ceramic element improves a static electricity removing performance and controls the low balance of the generated ion by applying a high voltage of a high frequency through the piezo ceramic element. A controller controls the piezo type apparatus for removing a static electricity. A discharge pin discharges when the high voltage of the high frequency is applied. A main socket which is the Anti-Particle tip holder prevents particles from being generated in the discharge pin positioned inside. An air body supplies the air to the static electricity remover. The piezo ceramic device generates the high voltage of the high frequency. A sensor receives the high voltage of the high frequency and measures the charge quantity induced by the discharge pin. A piezo driving unit makes the piezo ceramic element generate continuously the high voltage of the high frequency by amplifying the output signal of the sensor through a sensor amplifier and feeding back the amplified signal to the piezo ceramic element if the normal operation of the piezo ceramic element is determined by the sensed result of the sensor. If the abnormal operation of the piezo ceramic element is determined by the sensed result of the sensor, the alarm generating unit generates the alarm. A DC power supply unit supplies the DC voltage to each element inside the static electricity remover.