Abstract:
The present invention is an internal combustion engine oil dissipation module, which includes a head-set (a bolt-lock made by lathe or die-casting, with one side designed a fix-device and can be oil fill measurement meter and heat contact measure-head), a major heat-pipe (a heat-stream pipe, one side linked to the head-set, the other side join to the cooling fins that is listed plates in same interval) and an advanced transfer block (provide at least one expansion heat-pipe connect to the cooling fins). By this invention, major heat-pipe and expansion heat-pipe will conduct heat stream through lowest thermal resistance with the capillary and low boiling point vacuum vapor theory, then the temperature certainly drops down quickly by transfer heat to the big scale of cooling fins. It is absolutely machinery motion parts free, so it raises a lot of convenience.
Abstract:
An atomizer used in the inner combustion engine and having energy saving and debris reducing function, which includes: a housing having an inlet pipe and an outlet pipe, the interior of the housing is installed with a flow regulating mask, and a bottom plate is installed inside the housing; a working fluid filled in the housing and disposed above the bottom plate; a floating carrier installed in the housing and floating on the liquid surface of the working fluid; at least an atomizing mechanism installed on the floating carrier; and a sensing controlling mechanism installed below the bottom plate and connected to the atomizing mechanism. Accordingly, with the driving and regulating provided by the sensing controlling mechanism, the flow regulating mask allows the atomizing mechanism to atomize proper amount of water with respect to the actual conditions of the rotation speed and loading status of an engine.
Abstract:
The present invention provides a brush wheel typed nebulizer, comprising: a drive device; a spiral pump, including a body, an outer sleeve, in which the outer periphery of the body is installed with at least a helicoid member closely attached to an inner sleeve having a flow opening inside the outer sleeve; a brush wheel, configured with multiple implant holes and having brush hairs forming at least a ditch; a sleeve lid, on which a notch is configured in correspondence with the end of the brush hair, and an inner bulge acting conjunctively with the end of the brush hair and having multiple guide grooves. With such a design, it is possible to fling off the highly viscous liquid attached on the brush hair to create atomized liquid of extremely tiny microdrops.
Abstract:
The present invention provides a brush wheel typed nebulizer, comprising: a drive device; a spiral pump, including a body, an outer sleeve, in which the outer periphery of the body is installed with at least a helicoid member closely attached to an inner sleeve having a flow opening inside the outer sleeve; a brush wheel, configured with multiple implant holes and having brush hairs forming at least a ditch; a sleeve lid, on which a notch is configured in correspondence with the end of the brush hair, and an inner bulge acting conjunctively with the end of the brush hair and having multiple guide grooves. With such a design, it is possible to fling off the highly viscous liquid attached on the brush hair to create atomized liquid of extremely tiny microdrops.
Abstract:
This invention provides a multi-purpose high performance thermoelectric module, comprising: A first impeller; a second impeller at the opposite side of the first impeller; Two FPCBs respectively positioned between the first and second impellers; Multiple T.E elements located between the two FPCBs, and combine with the first and second impellers to form a thermoelectric module; A shaft at the outer end of the second impeller; Two slip rings located at the insulation layer of the shaft; Two wires inside the shaft, with the two ends of the wires respectively attached to the ends of the T.E elements and two slip rings for connection; and two brushes installed at the slip ring. With this design, the present invention is able to convert the existing kinetic energy within the waste heat into the required rotational energy for the thermoelectric module and achieve the heat dissipation performance of a fan.
Abstract:
A compensation circuitry of gate driving pulse signal is adapted to receive a gate driving pulse signal and includes a pre-processing circuit, a peak detector, a discharge circuit, a voltage buffer and a charge pump circuit. The pre-preprocessing circuit performs a pre-processing operation to the gate driving pulse signal to adjust a voltage thereof. The pre-processed gate driving pulse signal then is transmitted to the peak detector for obtaining a peak voltage after a charging operation, and also is transmitted to the discharge circuit to determine whether to enable the discharge circuit so that providing the peak detector with a discharge loop when the discharge circuit is enabled. The charge pump circuit acquires the peak voltage through the voltage buffer and then modulates a waveform of the gate driving pulse signal according to the peak voltage. A display device using the above compensation circuitry also is provided.
Abstract:
A shift register of an LCD device operates based on two clock signals and maintains the gate voltage of an output transistor switch using two pull-down transistor switches. The gate voltages of the pull-down transistor switches are switched periodically between the high and low level of the clock signals. During the output period, the transistor switches have negative gate-source voltages so as to reduce leakage.
Abstract:
A gate driving circuit having a low leakage current control mechanism is disclosed for providing a plurality of gate signals forwarded to a plurality of gate lines respectively. The gate driving circuit includes a plurality of shift registers. Each shift register includes a driving unit, an energy store unit, a buffer unit, a voltage regulation unit, and a control unit. The driving unit generates a gate signal based on a driving control voltage and a first clock. The buffer unit functions to receive a start pulse signal. The energy store unit provides the driving control voltage through performing a charging process based on the start pulse signal. The control unit generates a control signal based on the first clock and a second clock having a phase opposite to the first clock. The voltage regulation unit regulates the driving control voltage based on the control signal.
Abstract:
A motor magnetic pre-stressing apparatus includes a stator and a rotor. The rotor is pivoted with the stator. The stator includes a lower insulating frame and a magnetic-guiding ring, and the magnetic-guiding ring is installed on the lower insulating frame. The rotor has a magnetic element, and the magnetic element has even radial magnetic poles. Thereby, by utilizing the attraction between magnetic-guiding ring and the magnetic element, a magnetic pre-stressing force is generated to absorb the rotor downwards so that the rotor rotates stably and smoothly.