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    • 4. 发明申请
    • MICROWAVE HEATING APPLIANCE
    • 微波加热器具
    • US20100059509A1
    • 2010-03-11
    • US12305314
    • 2007-06-15
    • Hirohisa ImaiKoji YoshinoMasamitsu KondouHiroshi KawaiMiki Ueda
    • Hirohisa ImaiKoji YoshinoMasamitsu KondouHiroshi KawaiMiki Ueda
    • H05B6/64
    • H05B6/725H05B6/68H05B6/72
    • An object of the present invention is to provide a microwave heating appliance capable of achieving a locally concentrated heating in answer to the purpose while achieving a uniform heating in the overall heating chamber in a normal mode. A microwave heating appliance of the present invention includes a microwave generating unit, a waveguide for transmitting a microwave from the microwave generating unit, a heating chamber for housing a heated subject that is heated by the microwave, a rotating antenna for radiating the microwave from the waveguide to the heating chamber, a driving unit for rotating and driving the rotating antenna, a temperature distribution detecting unit for detecting a temperature distribution in the heating chamber, and a controlling unit for controlling a direction of the rotating antenna by controlling the driving unit based on a detected result of the temperature distribution detecting unit, wherein the controlling unit controls a sharp part of radiation directivity of the rotating antenna in a direction decided based on the detected result of the temperature distribution detecting unit to execute a concentrated heating, and the driving unit has a position detecting unit for detecting a position of the rotating antenna.
    • 本发明的目的是提供一种能够在正常模式下在整个加热室中实现均匀加热的同时实现局部集中加热的微波加热器具。 本发明的微波加热器具包括微波发生单元,用于从微波发生单元传输微波的波导管,用于容纳被微波加热的受热物体的加热室,用于从微波辐射微波的旋转天线 波导到加热室,用于旋转和驱动旋转天线的驱动单元,用于检测加热室中的温度分布的温度分布检测单元,以及通过控制驱动单元来控制旋转天线的方向的控制单元 根据所述温度分布检测单元的检测结果,其中所述控制单元基于所述温度分布检测单元的检测结果确定的方向控制所述旋转天线的辐射方向性的尖锐部分,以执行集中供​​热,并且所述驱动 单元具有用于检测位置的位置检测单元 的旋转天线。
    • 5. 发明申请
    • MICROWAVE HEATING APPARATUS
    • 微波加热装置
    • US20090206071A1
    • 2009-08-20
    • US12305093
    • 2007-06-18
    • Yasuhisa MoriTakeshi TakizakiKoji YoshinoHiroshi Kawai
    • Yasuhisa MoriTakeshi TakizakiKoji YoshinoHiroshi Kawai
    • H05B6/70H05B6/64
    • H05B6/6408H05B6/705H05B6/725Y02B40/146
    • A high-frequency heating apparatus of the present invention includes a heating chamber to which a heating plate for loading a subject to be heated thereon is detachably attached, a microwave generating unit, a waveguide for transmitting a microwave from the microwave generating unit, a rotation antenna for radiating the microwave into the heating chamber from the waveguide, a driving unit for turning/driving the rotation antenna, an operating portion capable of choosing the grill menu by which the subject to be heated put on the heating plate is heated and a hot-up menu by which the subject to be heated is heated without the heating plate, and a controlling unit for controlling the driving unit based on an output signal form the operating portion, wherein the controlling unit controls to vary a direction of a sharp portion of a radiation directivity of the rotation antenna in response to the output signal from the operating portion.
    • 本发明的高频加热装置包括加热室,用于加载被加热物的加热板可拆卸地安装在其上,微波产生单元,用于从微波发生单元传输微波的波导,旋转 用于将微波从波导辐射到加热室中的天线,用于转动/驱动旋转天线的驱动单元,能够选择被加热物体放在加热板上的烧烤菜单的操作部分被加热和热 在没有加热板的情况下加热被加热物的加热菜单,以及用于基于输出信号控制驱动单元的控制单元,形成操作部分,其中控制单元控制以改变尖锐部分的方向 响应于来自操作部分的输出信号,旋转天线的辐射方向性。
    • 6. 发明申请
    • Lamp cooling apparatus and projection display apparatus
    • 灯冷却装置和投影显示装置
    • US20080088803A1
    • 2008-04-17
    • US11903197
    • 2007-09-20
    • Hiroshi KawaiMasanori Takenaka
    • Hiroshi KawaiMasanori Takenaka
    • G03B21/16
    • G03B21/16G03B21/10G03B21/28H04N9/3144
    • A lamp cooling apparatus for cooling a lamp may include a lamp outlet duct connected to the lamp, a lamp inlet duct connected to the lamp, a first joint segment provided at the front end of the lamp outlet duct, a second joint segment provided at the front end of the lamp inlet duct, a first pipe whose one end is adjustably connected to the first joint segment, a third joint segment to which the other end of the first pipe is shiftably connected, a cooling mechanism section for cooling air, connected to the third joint segment, a fourth joint segment connected to a discharge section for discharging air cooled by the cooling mechanism section, and a second pipe whose one end is shiftably connected to the fourth joint segment, and the other end is shiftably connected to the second joint segment.
    • 用于冷却灯的灯冷却装置可以包括连接到灯的灯出口管,连接到灯的灯入口管,设置在灯出口管前端的第一接头段, 灯入口管道的前端,其一端可调节地连接到第一接头段的第一管,第一管的另一端可移动地连接的第三接头段,用于冷却空气的冷却机构部分,连接到 第三连接段,连接到排出部分的第四联接段,用于排出由冷却机构部分冷却的空气;以及第二管,其一端可移动地连接到第四接头段,另一端可移动地连接到第二接头段 联合部分。
    • 10. 发明授权
    • Electrostatic actuator
    • 静电执行机构
    • US06856219B2
    • 2005-02-15
    • US10349807
    • 2003-01-22
    • Hiroshi Kawai
    • Hiroshi Kawai
    • B81B3/00F16H49/00H01H59/00H02N1/00H01H51/22
    • H01H59/0009H01G5/16H01G5/18H01H2001/0078H01H2059/0063
    • An electrostatic actuator includes a movable member that is connected to a movable member securing section through a movable connection beam so that the movable member can be displaced in the x-axis direction. Drive electrode supporting sections are connected to drive electrode securing sections through driving connection beams so that they can move towards and away from each other. Gap sizes a, b, and c between first movable electrodes to third movable electrodes and respective first drive electrodes to third drive electrodes are successively larger. When the actuator operates, the movable member is displaced in a plurality of stages by electrostatic forces successively produced between the first movable electrode and the first drive electrode, the second movable electrode and the second drive electrode, and the third movable electrode and the third drive electrode. As a result, it is possible for the movable member to have high rigidity (resonant frequency) and to move stably, so that its amount of displacement is very large. By successively displacing the movable member via the plurality of drive electrodes, the movable member has very high rigidity and is greatly displaced, so that the performance of the actuator is greatly improved.
    • 静电致动器包括可动构件,其通过可动连接梁连接到可移动构件固定部分,使得可移动构件能够在x轴方向上移位。 驱动电极支撑部分通过驱动连接梁连接到驱动电极固定部分,使得它们能够彼此移动和远离。 第一可动电极与第三可移动电极之间的间隙尺寸a,b和c依次较大的第一驱动电极。 当致动器操作时,可移动构件通过在第一可动电极与第一驱动电极,第二可动电极和第二驱动电极之间连续产生的静电力,以及第三可动电极和第三驱动器 电极。 结果,可动构件可以具有高刚性(谐振频率)并且能够稳定地移动,使得其位移量非常大。 通过经由多个驱动电极依次移动可动构件,可动构件具有非常高的刚性并且大大地移位,从而大大提高了致动器的性能。