Abstract:
A foldable dust collector of the present invention includes a supporting portion, a case and an air pump. The supporting portion is foldable. The case is disposed on the supporting portion. The case is pivotable with respect to the supporting portion. The air pump is disposed on the case. The air pump is used for drawing air into the case.Therefore, the foldable dust collector of the present invention can be transformed. A width of the foldable dust collector is changeable. As such, the foldable dust collector is easier to be stored or be transported. Moreover, the foldable dust collector can be used in a small space.
Abstract:
A dust collector of the present invention includes a main body, a first dust container, and two lifting apparatuses. The main body includes a shell, an expandable pipe, and a lid. The expandable pipe, which is vertically expandable, is connected between the shell and the lid. The first dust container is detachably disposed on the main body and is used to be selectively covered by the lid. The two lifting apparatuses respectively include a base, a linking up mechanism, and an operating rod. The two bases are respectively fixed on two sides of an outer wall surface of the shell. The operating rod is movably disposed on the base. One end of the linking up mechanism is disposed on the operating rod, and the other end is fixed on the lid. Thereby, the lifting apparatus can horizontally lift the lid.
Abstract:
The present invention provides an air filter including a main body, a pressure fan, a filter mode and a fixing assembly. The main body has a containing room, an entrance hole and an exit hole. The pressure fan is disposed in the containing room. The filter mode comprises a first filter layer, a second filter layer and a frame body. The first filter layer is disposed in the entrance hole, and the second filter layer is disposed in the frame body. As such, users can select to use only the first filter layer or both filter layers at one time. Moreover, users only need to let the frame body pivot to a position away from the entrance hole so that users can change the filter layers faster and easier.
Abstract:
A locking mechanism for a glider rocker having a gliding chair seat mounted on a stationary base, including an operating assembly mounted on the gliding chair seat, a pair of bearing brackets mounted on the stationary base respectively, and a pair of mounting assemblies. Each mounting assembly includes a prop, a strut, a curved elongated member, a mounting bracket, and a restoring spring connected with the curved elongated member and the prop.
Abstract:
A dust collector includes a shell, an exit tube, an inner tube, a suction device, a first dust container, a bypass tube and a first dust bag. The shell defines a first receiving room therein. The exit tube defines an exit passage therein. The inner tube defines a connection passage which has a first opening and a second opening. The first opening communicates the first receiving room, and the second opening communicates the exit passage. The suction device provides the exit passage with a negative pressure. The first dust container defines a second receiving room therein. A mesh is disposed on a bottom surface of the first dust container to divide the second receiving room into a first chamber and a second chamber. The bypass tube defines a bypass passage therein, and it communicates the connection passage with the second chamber. The first dust bag is disposed in the first chamber.
Abstract:
A dust collector includes a shell, an exit tube, an inner tube, a suction device, a first dust container, a bypass tube and a first dust bag. The shell defines a first receiving room therein. The exit tube defines an exit passage therein. The inner tube defines a connection passage which has a first opening and a second opening. The first opening communicates the first receiving room, and the second opening communicates the exit passage. The suction device provides the exit passage with a negative pressure. The first dust container defines a second receiving room therein. A mesh is disposed on a bottom surface of the first dust container to divide the second receiving room into a first chamber and a second chamber. The bypass tube defines a bypass passage therein, and it communicates the connection passage with the second chamber. The first dust bag is disposed in the first chamber.
Abstract:
Utilization of a resource by an application can be optimized in response to an optimization event. The event may include an expiration of a timer, a change in an operating condition of the application, a detection of work to be performed by the application, or some other event. Optimizing the application increases the operating efficiency of the application on the client as well as the application itself. Data used to optimize the application on a client may include environmental data, application operation data, and other data. The data may be weighted or considered equally.
Abstract:
A shallow trench isolation (STI) structure and fabricating method thereof is provided. A substrate is provided. A patterned mask layer is formed over the substrate. Using the patterned mask layer as an etching mask, the substrate is patterned to form a trench. A nitridation process is performed to form a silicon nitride liner on the surface of the trench. An insulating material is deposited to fill the trench. Since the silicon nitride liner within the STI is very thin, residual stress within the substrate is reduced, and the silicon nitride liner has very little or negligible impact on the trench aspect ratio.
Abstract:
A method for fabricating a transistor having a fully silicided gate is described. A silicon substrate with a semi-finished transistor formed thereon is provided, wherein the transistor comprises a gate dielectric film, a silicon gate, a cap layer on the silicon gate, a spacer and a source/drain region. A raised source/drain is formed on the source/drain region, and then the cap layer is removed. Subsequently, a full silicidation process is performed to fully silicide the silicon gate.