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    • 2. 发明申请
    • ELECTROSTATICALLY ATOMIZING DEVICE
    • 静电导入装置
    • US20090179093A1
    • 2009-07-16
    • US12303533
    • 2007-05-22
    • Sumio WadaAtsushi IsakaKenji ObataYutaka UrataniShousuke AkisadaHiroshi SudaTakayuki Nakada
    • Sumio WadaAtsushi IsakaKenji ObataYutaka UrataniShousuke AkisadaHiroshi SudaTakayuki Nakada
    • B05B5/053B05B5/08
    • B05B5/025B03C3/12B03C3/383B03C3/68B05B5/057B05B5/10B05B5/1691
    • An electrostatically atomizing device includes an emitter electrode, an opposed electrode disposed in an opposed relation to the emitter electrode, liquid supply means for supplying a liquid to the emitter electrode, and high voltage generating means for applying a high voltage across the emitter electrode and the opposed electrode. The liquid supplied onto the emitter electrode is electrostatically charged through application of the high voltage, as a result of which charged minute liquid particles are discharged from a discharge end of the emitter electrode. The device includes detecting means for detecting a discharge condition developed between the emitter electrode and the opposed electrode, and a controller for controlling the high voltage generating means to regulate its voltage output so as to maintain a predetermined discharge condition, based on detection results by the detecting means. Charged minute particles can be continuously generated in an amount corresponding to the predetermined discharge condition, by adjusting the discharge voltage that is applied to the emitter electrode.
    • 静电雾化装置包括发射极电极,与发射极电极相对设置的相对电极,用于向发射电极供给液体的液体供应装置,以及用于在发射极电极和/或电极之间施加高电压的高电压产生装置, 相对电极。 供给到发射电极上的液体通过施加高电压而被静电充电,结果使带电的微小液体颗粒从发射电极的放电端排出。 该装置包括用于检测在发射电极和相对电极之间产生的放电条件的检测装置,以及用于控制高压发生装置的控制器,用于调节其电压输出以便保持预定的放电条件,基于检测结果 检测装置。 可以通过调整施加到发射电极的放电电压,连续产生与预定放电条件对应的量的带电微小颗粒。
    • 3. 发明授权
    • Electrostatic atomizer
    • 静电雾化器
    • US08056839B2
    • 2011-11-15
    • US12292714
    • 2008-11-25
    • Yutaka UrataniKenji ObataAtsushi Isaka
    • Yutaka UrataniKenji ObataAtsushi Isaka
    • B05B5/00F23D11/32
    • B05B5/0531B05B5/006B05B5/0255B05B5/057
    • An electrostatic atomizer includes an atomizing electrode, a water supply unit for supplying water to the atomizing electrode, a high voltage power circuit and a control unit. The high voltage power circuit applies a high voltage to the atomizing electrode to electrostatically atomizing water supplied to the atomizing electrode and to generate electrically charged water particles. The control unit controls the high voltage power circuit such that the voltage applied to the atomizing electrode is gradually increased at the time of starting the electrostatic atomizer. Further, the control unit may control the high voltage power circuit such that the voltage is increased to a target voltage in steps at the time of starting the electrostatic atomizer, and an increment of the voltage at each step is decreased as the voltage approaches the target voltage.
    • 静电雾化器包括雾化电极,用于向雾化电极供水的供水单元,高压电源电路和控制单元。 高电压电路向雾化电极施加高电压,对供给到雾化电极的水进行静电雾化,生成带电荷的水粒子。 控制单元控制高压电力电路,使得在启动静电雾化器时施加到雾化电极的电压逐渐增加。 此外,控制单元可以控制高压电力电路,使得在启动静电雾化器时电压逐步增加到目标电压,并且随着电压接近目标,每个步骤的电压的增加减小 电压。
    • 4. 发明申请
    • ELECTROSTATICALLY ATOMIZING DEVICE
    • 静电导入装置
    • US20090135539A1
    • 2009-05-28
    • US12277161
    • 2008-11-24
    • Yutaka UrataniKenji ObataAtsushi Isaka
    • Yutaka UrataniKenji ObataAtsushi Isaka
    • H05F7/00
    • B05B5/057B05B5/006
    • The electrostatically atomizing device in this invention comprises an emitter electrode, a water supply means, a high voltage source, and an atomization detecting means and further comprises a controller. The water supply means is configured to supply water to the emitter electrode. The high voltage source is configured to apply a high voltage to the emitter electrode so as to electrostatically atomize the water on the emitter electrode. The atomization detecting means is configured to detect a condition where the water is electrostatically atomized from the emitter electrode. The controller is configured to apply a starting voltage upon energization of the device. The controller is configured to apply an operating voltage upon recognition of the condition. The starting voltage is configured to be higher than the operating voltage. With this configuration, it is possible to obtain the electrostatically atomizing device which is configured to generate a mist of charged minute water particles immediately upon energization of the electrostatically atomizing device. It is possible to obtain the electrostatically atomizing device which is configured to generate the mist of the charged minute water particles stably upon recognition of the condition.
    • 本发明的静电雾化装置包括发射电极,供水装置,高压源和雾化检测装置,并且还包括控制器。 供水装置被配置为向发射电极供水。 高电压源被配置为向发射极施加高电压,以便使发射极上的水静电雾化。 雾化检测装置被配置为检测水从发射电极静电雾化的状态。 控制器被配置为在通电装置时施加起动电压。 控制器被配置为在识别到条件时施加工作电压。 启动电压被配置为高于工作电压。 利用这种结构,可以获得静电雾化装置,其被配置为在静电雾化装置通电时立即产生带电微小水粒子的雾。 可以获得静电雾化装置,其被配置为在识别到条件时稳定地产生带电微小水粒子的雾。
    • 5. 发明授权
    • Electrostatically atomizing device
    • 静电雾化装置
    • US08448883B2
    • 2013-05-28
    • US12303533
    • 2007-05-22
    • Sumio WadaAtsushi IsakaKenji ObataYutaka UrataniShousuke AkisadaHiroshi SudaTakayuki Nakada
    • Sumio WadaAtsushi IsakaKenji ObataYutaka UrataniShousuke AkisadaHiroshi SudaTakayuki Nakada
    • B05B5/00B05B1/08B05B3/04B05B5/025F23D11/32
    • B05B5/025B03C3/12B03C3/383B03C3/68B05B5/057B05B5/10B05B5/1691
    • An electrostatically atomizing device includes an emitter electrode, an opposed electrode disposed in an opposed relation to the emitter electrode, liquid supply means for supplying a liquid to the emitter electrode, and high voltage generating means for applying a high voltage across the emitter electrode and the opposed electrode. The liquid supplied onto the emitter electrode is electrostatically charged through application of the high voltage, as a result of which charged minute liquid particles are discharged from a discharge end of the emitter electrode. The device includes detecting means for detecting a discharge condition developed between the emitter electrode and the opposed electrode, and a controller for controlling the high voltage generating means to regulate its voltage output so as to maintain a predetermined discharge condition, based on detection results by the detecting means. Charged minute particles can be continuously generated in an amount corresponding to the predetermined discharge condition, by adjusting the discharge voltage that is applied to the emitter electrode.
    • 静电雾化装置包括发射极电极,与发射极电极相对设置的相对电极,用于向发射电极供给液体的液体供应装置,以及用于在发射极电极和/或电极之间施加高电压的高电压产生装置, 相对电极。 供给到发射电极上的液体通过施加高电压而被静电充电,结果使带电的微小液体颗粒从发射电极的放电端排出。 该装置包括用于检测在发射电极和相对电极之间产生的放电条件的检测装置,以及用于控制高压发生装置的控制器,用于调节其电压输出以便保持预定的放电条件,基于检测结果 检测装置。 可以通过调整施加到发射电极的放电电压,连续产生与预定放电条件对应的量的带电微小颗粒。
    • 6. 发明申请
    • Electrostatic atomizer
    • 静电雾化器
    • US20090134249A1
    • 2009-05-28
    • US12292714
    • 2008-11-25
    • Yutaka UrataniKenji ObataAtsushi Isaka
    • Yutaka UrataniKenji ObataAtsushi Isaka
    • B05B5/00
    • B05B5/0531B05B5/006B05B5/0255B05B5/057
    • An electrostatic atomizer includes an atomizing electrode, a water supply unit for supplying water to the atomizing electrode, a high voltage power circuit and a control unit. The high voltage power circuit applies a high voltage to the atomizing electrode to electrostatically atomizing water supplied to the atomizing electrode and to generate electrically charged water particles. The control unit controls the high voltage power circuit such that the voltage applied to the atomizing electrode is gradually increased at the time of starting the electrostatic atomizer. Further, the control unit may control the high voltage power circuit such that the voltage is increased to a target voltage in steps at the time of starting the electrostatic atomizer, and an increment of the voltage at each step is decreased as the voltage approaches the target voltage.
    • 静电雾化器包括雾化电极,用于向雾化电极供水的供水单元,高压电源电路和控制单元。 高电压电路向雾化电极施加高电压,对供给到雾化电极的水进行静电雾化,生成带电荷的水粒子。 控制单元控制高压电力电路,使得在启动静电雾化器时施加到雾化电极的电压逐渐增加。 此外,控制单元可以控制高压电力电路,使得在启动静电雾化器时电压逐步增加到目标电压,并且随着电压接近目标,每个步骤的电压的增加减小 电压。
    • 8. 发明申请
    • ELECTROSTATIC ATOMIZING APPARATUS
    • 静电成型设备
    • US20130153689A1
    • 2013-06-20
    • US13819185
    • 2011-09-14
    • Hidesato UegakiYutaka Uratani
    • Hidesato UegakiYutaka Uratani
    • B05B5/053
    • B05B5/053B05B5/0255B05B5/0531B05B5/0533
    • An electrostatic atomizing apparatus includes a discharge electrode, a discharged electrode, a liquid supplying unit, a high voltage generating unit, and a controller. The discharged electrode is used to cause discharge between the discharged electrode and the discharge electrode. The liquid supplying unit supplies a liquid for atomization to the discharge electrode. The high voltage generating unit applies a high voltage to the discharged electrode. The discharge current detecting unit is arranged between the high voltage generating unit and the discharged electrode and detects a discharge current flowing through the discharged electrode. The controller controls, based on the discharge current detected by the discharge current detecting unit, the high voltage generated by the high voltage generating unit so as to achieve a predetermined discharge current.
    • 静电雾化装置包括放电电极,放电电极,液体供应单元,高压发生单元和控制器。 放电电极用于在放电电极和放电电极之间产生放电。 液体供给单元将用于雾化的液体供给到放电电极。 高电压产生单元向放电电极施加高电压。 放电电流检测单元设置在高电压产生单元和放电电极之间,并检测流过放电电极的放电电流。 控制器基于由放电电流检测单元检测到的放电电流来控制由高电压产生单元产生的高电压,以实现预定的放电电流。
    • 9. 发明授权
    • Cooling control circuit for peltier element
    • 珀尔帖元件冷却控制电路
    • US08689569B2
    • 2014-04-08
    • US13393021
    • 2010-09-21
    • Yutaka UrataniMikihiro Yamashita
    • Yutaka UrataniMikihiro Yamashita
    • F25B21/02
    • G05D23/1919G05D23/24
    • A Peltier element cooling control circuit that accurately controls a small number of elements with a simple structure. First and second amplification circuits are connected between a current detection resistor detecting current of a Peltier element and a current control circuit performing current control on the Peltier element based on voltage proportional to the current. One of two resistors determines the amplification rate of the first amplification circuit includes a thermistor. When the ambient temperature is equal to a predetermined temperature or greater, the output voltage of the second amplification circuit is supplied to the current control circuit to control the current of the Peltier element so as to be constant. When the ambient temperature is less than the predetermined temperature, the output voltage of the first amplification circuit is supplied to the current control circuit to control the current of the Peltier element in accordance with the temperature characteristics.
    • 珀耳帖元件冷却控制电路,以简单的结构精确控制少量元件。 第一和第二放大电路连接在珀耳帖元件的电流检测电阻检测电流和基于与电流成比例的电压对珀尔帖元件执行电流控制的电流控制电路之间。 两个电阻器中的一个确定第一放大电路的放大率包括热敏电阻。 当环境温度等于或大于预定温度时,第二放大电路的输出电压被提供给电流控制电路,以控制珀尔帖元件的电流恒定。 当环境温度低于预定温度时,第一放大电路的输出电压被提供给电流控制电路,以根据温度特性来控制珀耳帖元件的电流。
    • 10. 发明申请
    • COOLING CONTROL CIRCUIT FOR PELTIER ELEMENT
    • 冷却元件冷却控制电路
    • US20120151940A1
    • 2012-06-21
    • US13393021
    • 2010-09-21
    • Yutaka UrataniMikihiro Yamashita
    • Yutaka UrataniMikihiro Yamashita
    • F25B21/02
    • G05D23/1919G05D23/24
    • A Peltier element cooling control circuit that accurately controls a small number of elements with a simple structure. First and second amplification circuits are connected between a current detection resistor detecting current of a Peltier element and a current control circuit performing current control on the Peltier element based on voltage proportional to the current. One of two resistors determines the amplification rate of the first amplification circuit includes a thermistor. When the ambient temperature is equal to a predetermined temperature or greater, the output voltage of the second amplification circuit is supplied to the current control circuit to control the current of the Peltier element so as to be constant. When the ambient temperature is less than the predetermined temperature, the output voltage of the first amplification circuit is supplied to the current control circuit to control the current of the Peltier element in accordance with the temperature characteristics.
    • 珀耳帖元件冷却控制电路,以简单的结构精确控制少量元件。 第一和第二放大电路连接在珀耳帖元件的电流检测电阻检测电流和基于与电流成比例的电压对珀尔帖元件执行电流控制的电流控制电路之间。 两个电阻器中的一个确定第一放大电路的放大率包括热敏电阻。 当环境温度等于或大于预定温度时,第二放大电路的输出电压被提供给电流控制电路,以控制珀尔帖元件的电流恒定。 当环境温度低于预定温度时,第一放大电路的输出电压被提供给电流控制电路,以根据温度特性来控制珀耳帖元件的电流。