Abstract:
A method for operating an oven including a microcomputer includes receiving in a microprocessor of an oven, a plurality of inputs from a user indicative of a conventional cooking time, a conventional cooking temperature, and a food category, wherein the oven includes an RF generation module, an upper heater module, a lower heater module, and a convection fan, and converting at least one of the conventional cooking time to a speedcooking time different than the conventional cooking time, and the conventional cooking temperature to a speedcooking temperature.
Abstract:
A wire processing apparatus includes a microwave generator, a microwave transmitter, a waveguide coaxial converter and a wire insertion pipe, and the wire insertion pipe is disposed in the wireguide coaxial converter. In wire recycling process, after a tip end of a coated wire is inserted into the wire insertion pipe, microwave is launched into the inside of the waveguide coaxial converter. The tip end of the coated wire is separated into a decomposed coating insulator and a molten electric conductor by microwave. In wire cross-linking process, after microwave is launched into the inside of the waveguide coaxial converter, the coated wire is inserted into the wire insertion pipe. The coated wire is cross-linked by high frequency heat and a coating insulator is adhered well to an electric conductor by heat shrinking.
Abstract:
A high frequency heating apparatus of the present invention includes an inverter power supply for driving the high frequency generating device, a holding member for holding the inverter power supply and cooling fan for cooling down the inverter power supply. The holding member is provided with a holding portion for holding the inverter power supply and an air guide portion for guiding cooling air from the cooling fan toward the inverter power supply, and the air guide portion covers the inverter power supply and guides the cooling air in a manner that a semiconductor switching device and a high voltage transformer of the inverter power supply are primarily cooled down.
Abstract:
A fan motor having a simple construction and a microwave oven equipped with the fan motor. The fan motor includes a stator, a rotor, a rotating shaft extending from both ends of the rotor, a support unit mounted to a front of the stator, and a bearing inserted in a through hole of the support unit. The bearing forwardly extends from the support unit, and is set into a boss mounted to a rear of the support unit. A stopper in front of the bearing fits over an insert groove formed at an outer surface of the rotating shaft, and is stopped by a front end of the bearing, preventing the rotating shaft from being rearwardly removed from the stator. A blowing fan mounted to a front end of the rotating shaft cools electrical devices and ventilates a cooking cavity of the microwave oven.
Abstract:
A plasma processing apparatus, comprising: at least, a plasma processing chamber for processing therein an object to be processed; antenna means for guiding microwaves into the plasma processing chamber; and a dielectric member disposed between the antenna means and the plasma processing chamber; wherein a surface of the dielectric member facing the inside of the plasma processing chamber has a projecting shape.
Abstract:
Disclosed is an electric oven which increases temperature fast and reduces heat loss in accordance with that a cavity surface generates its own heat by using an induction heating. The electric oven comprises: a case having a door at a front side and having a cavity for receiving food therein; a magnetron installed at one side of an upper portion of the cavity for generating microwave of high frequency and supplying heat to the cavity; an inverter for generating high frequency at a space between the case and the cavity; first, second, third, and fourth heating units installed each side of the cavity for supplying heat. Since temperature of a cooking chamber can be set as wanted uniformly and faster, preheating time and actual cooking time can be reduced. Also, since inner temperature of the cavity rises faster and simultaneously, an automatic cleaning in the cavity using pyrolysis can be performed faster and uniformly, thereby reducing power consumption.
Abstract:
A wall-mounted type microwave oven includes an oven body having a cooking chamber and an electrical component compartment which are isolated from each other, an exhaust flow path which is extended between a bottom and a top of the oven body to exhaust gas positioned below the oven body to the outside, an exhaust fan assembly which is provided at an outlet of the exhaust flow path, a convection fan which is provided at a side wall of the cooking chamber to forcibly circulate air in the cooking chamber, a convection motor which drives the convection fan, and a cooling flow path which cools the convection motor using the exhaust fan assembly. The exhaust fan assembly communicates with the outside of the microwave oven at an end thereof and is extended at the other end thereof to an inlet of the cooling flow path.
Abstract:
A surgical and dental instrument sterilizer is described. Liquid water is rapidly vaporized by microwave heating and steam is generated to attain a steam pressure of approximately 47 psi and a temperature of approximately 135null C. in the region of the articles to be sterilized. Micron-size water-droplets are intermittently sprayed onto the articles which are arranged on a tray, from both the top and from underneath thereof so as to thoroughly wet the surfaces. A 30-90 s duration of droplet spray is followed by pulsed microwave irradiation of the top and underneath surfaces for a similar period, as an example; this is followed by a plurality of spray/microwave cycles. Sterilizing conditions in the sterilizer chamber are maintained in the presence of the water spray/microwave flashing cycles since introducing small aliquots of water will not affect the desired sterilizing condition provided by superheated steam augmented by microwave radiation necessary to kill microbes including spores; however arcing from metal instruments when subjected to microwave radiation is substantially reduced.
Abstract:
A wall-mounted microwave oven having an enhanced blowing capability. The wall-mounted microwave oven includes a cabinet which defines an external appearance of the microwave oven and an exhaust fan unit. An internal duct is provided in the cabinet. An external duct is installed at a predetermined position outside the cabinet so as to communicate with the internal duct. The exhaust fan unit is installed in the external duct and generates a blowing force which discharges contaminated indoor air to the outside of the microwave oven through the internal and external ducts. The wall-mounted microwave oven having such a construction allows a large-capacity exhaust fan and a large-capacity fan motor to be used without increasing the size of the cabinet. Additionally, a capacity of a cooking chamber can be increased without increasing the size of the cabinet.
Abstract:
A microwave oven and a method of controlling the same that is capable of detecting the respective positions of heaters using detectors for which a number thereof is less than a number of cooking modes. Cooking is performed with the heaters in respective horizontal positions in a cooking mode in which cooking requiring the heaters to heat food is performed, while cooking is performed with the heaters positioned in the respective initial positions in a cooking mode in which the cooking not requiring the heaters to heat the food is performed. Each of the detectors is a micro switch operated by a cam. Accordingly, in the microwave oven and in the method of controlling the same, the number of the detectors to detect the respective positions of the heaters is decreased. Further, an electrical wire is connected to a single micro switch to detect the respective positions of the heaters.