Abstract:
An image forming apparatus includes a main body of the image forming apparatus; at least one image forming unit disposed in the main body; a light scanning unit that is disposed in the main body and scans light to form an electrostatic latent image on a photosensitive medium of the at least one image forming unit; a window open-closing shutter that is disposed to slidably move on a surface of the light scanning unit from which light emits, and moves between an open position where a light moving path is opened and a blocking position where the light moving path is blocked; a shutter operating lever that is disposed in the main body, and activates the window open-closing shutter to be positioned at either of the open position and the blocking position; and a pressure member that is disposed in the main body and presses the shutter operating lever.
Abstract:
An image forming apparatus includes a main body and at least one handle unit disposed on the main body. The handle unit includes a fixing bracket disposed on the main body and having a stop portion, a hinge shaft disposed on the fixing bracket, a handle member disposed to rotate with respect to the fixing bracket by the hinge shaft, a hook formed at an end of the handle member, and a hook catching portion formed on the main body, the hook catching portion to which the hook is caught. The hook is caught to the hook catching portion by weight of the handle member.
Abstract:
An image forming apparatus includes a main body frame, an image forming unit disposed in the main body frame and comprising an image carrier and a developing member, a gap control unit to selectively allow the image carrier to be in contact with or spaced apart from the developing member, a lever member disposed at one end of the gap control unit to operate the gap control unit to be moved between a contact position where the image carrier contacts the developing member and a separation position where the image carrier is spaced apart from the developing member, and a waste developer receptacle detachably disposed in the main body frame and having a lever member receiving groove to receive the lever member, wherein if the waste developer receptacle is removed from the main body frame, the image carrier is spaced apart from the developing member.
Abstract:
A waste toner collecting structure of an image forming apparatus includes a waste toner collector to be removably installed in a main body of an image forming apparatus to collect waste toner that is exhausted through exhaust holes of at least one waste toner exhaust parts installed in the main body a negative pressure generator to form negative pressure around shutters of the waste toner exhaust parts that open and close the exhaust holes, to form an intake air current into the waste toner collector and a waste toner separator to be connected to the waste toner collector to separate some of the waste toner, which flows into the waste toner collector and then moves toward the negative pressure generator, from air in order to collect the waste toner.
Abstract:
Wafer processing methods are provided. The methods may include cutting respective edges of a wafer and an adhesive a predetermined angle before grinding a back surface of the wafer.
Abstract:
A developing apparatus includes a developing unit having a developing member, a photosensitive unit hinge-connected to the developing unit and having an image carrier, and a pushing unit disposed below the photosensitive unit and configured to selectively push a lower portion of the developing unit, wherein the pushing unit includes a pushing member disposed to move linearly in a base and having an end configured to be in contact with the lower portion of the developing unit, a link member having a first end connected to the pushing member, a crank arm rotatably connected to a second end of the link member, an elastic member disposed on the link member and that elastically supports the pushing member, and a rotation shaft rotatably disposed in the base and connected to the crank arm.
Abstract:
An image forming apparatus includes a main body having a fusing unit, a first temperature sensor which is disposed in an external surface of the main body and measures an outside temperature, a humidity sensor which is disposed in the external surface of the main body and measures an outside humidity, a second temperature sensor which is disposed inside the main body and measures an inside temperature, at least one fan disposed in the main body, and a controller configured to calculate a dew point temperature using the inside temperature and the outside humidity and operate the at least one fan based on the calculated dew point temperature.