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    • 22. 发明申请
    • RECEPTACLE
    • 容器
    • WO2011042783A1
    • 2011-04-14
    • PCT/IB2010/002470
    • 2010-09-30
    • PANASONIC ELECTRIC WORKS CO., LTD.HASHIMOTU, NoboruKONDOU, Maki
    • HASHIMOTU, NoboruKONDOU, Maki
    • H01R13/52
    • H01R13/5213H01R13/447
    • There is provided a receptacle capable of reducing an impact caused by closing of a receptacle cover and preventing a breakage of the receptacle cover against a plurality of opening/closing motions. The receptacle cover 2 is attached to a shaft 32 and the shaft 32 is inserted through an insertion hole 33a of a damper member 33, so that the damper member 33 is provided pivotally relative to the shaft 32. When the receptacle cover 2 pivots, the shaft 32 pivots with the receptacle cover 2 integrally. Accordingly, the shaft 32 and the damper member 33 come into friction contact with each other. This provides sliding resistance between the damper member 33 and the shaft 32 to reduce a pivot speed of the receptacle cover 2, thereby reducing an impact occurred when the receptacle cover 2 comes into contact with a receptacle body.
    • 提供了能够减少由关闭插座盖引起的冲击并防止插座盖破坏多个打开/关闭运动的插座。 插座盖2安装在轴32上,轴32穿过阻尼构件33的插入孔33a插入,阻尼构件33相对于轴32枢转地设置。当插座盖2枢转时, 轴32与插座盖2一体地枢转。 因此,轴32和阻尼构件33彼此摩擦接触。 这提供阻尼构件33和轴32之间的滑动阻力,以减小插座盖2的转动速度,从而减小当插座盖2与插座主体接触时发生的冲击。
    • 23. 发明申请
    • COOLING CONTROL CIRCUIT FOR PELTIER ELEMENT
    • 冷却元件冷却控制电路
    • WO2011037243A2
    • 2011-03-31
    • PCT/JP2010/066742
    • 2010-09-21
    • PANASONIC ELECTRIC WORKS CO., LTD.URATANI, YutakaYAMASHITA, Mikihiro
    • URATANI, YutakaYAMASHITA, Mikihiro
    • 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 (2, 3) are connected between a current detection resistor (R1) detecting current of a Peltier element and a current control circuit (IC) performing current control on the Peltier element (1) 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 (3) is supplied to the current control circuit (IC) to control the current of the Peltier element (1) so as to be constant. When the ambient temperature is less than the predetermined temperature, the output voltage of the first amplification circuit (2) is supplied to the current control circuit (IC) to control the current of the Peltier element (1) 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(2,3)连接在珀耳帖元件的电流检测电阻(R1)检测电流和对珀尔帖元件(1)进行电流控制的电流控制电路(IC)之间, 当前。 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(3)的输出电压被提供给电流控制电路(IC),以将珀尔帖元件(1)的电流控制为恒定 。 当环境温度低于预定温度时,第一放大电路(2)的输出电压被提供给电流控制电路(IC),以根据温度特性来控制珀耳帖元件(1)的电流。
    • 24. 发明申请
    • SENSOR DEVICE
    • WO2011025048A3
    • 2011-03-03
    • PCT/JP2010/064852
    • 2010-08-25
    • PANASONIC ELECTRIC WORKS CO., LTD.LAU, Choon HowKUMAHARA, Minoru
    • LAU, Choon HowKUMAHARA, Minoru
    • H03F3/393H03F3/45H03F3/387
    • A sensor device is provided with a voltage detection type sensor unit (20) for converting a physical quantity into a voltage value and outputting a voltage signal indicating the voltage value; a chopper amplifier unit (10) for generating a modulation signal by chopping the voltage signal output from the sensor unit with a predetermined chopping frequency, amplifying the modulation signal into an amplification signal, then demodulating the amplification signal and outputting it as an output signal; an integration unit (13) including an operational amplifier (14) for amplifying a voltage difference between a voltage at a non- inverting input terminal and a voltage at an inverting input terminal, an input resistor (Rl) connected to the inverting input terminal of the operational amplifier and a capacitor (Cl) connected between the inverting input terminal and an output terminal of the operational amplifier (14) and adapted to sample the output signal output from the chopper amplifier unit (10) at a predetermined sampling frequency and integrate the sampled output signal; and a digital conversion unit for converting the output signal integrated by the integration unit into a digital signal; and a digital conversion unit for converting the output signal integrated by the integration unit into a digital signal.
    • 25. 发明申请
    • SENSOR DEVICE
    • 传感器设备
    • WO2011025048A2
    • 2011-03-03
    • PCT/JP2010/064852
    • 2010-08-25
    • PANASONIC ELECTRIC WORKS CO., LTD.LAU, Choon HowKUMAHARA, Minoru
    • LAU, Choon HowKUMAHARA, Minoru
    • H03F3/393
    • H03F3/393H03F3/387H03F3/45475H03F2200/261H03F2200/264H03F2200/78H03F2203/45138H03M1/0663H03M1/52
    • A sensor device is provided with a voltage detection type sensor unit for converting a physical quantity into a voltage value and outputting a voltage signal indicating the voltage value; a chopper amplifier unit for generating a modulation signal by chopping the voltage signal output from the sensor unit with a predetermined chopping frequency, amplifying the modulation signal into an amplification signal, then demodulating the amplification signal and outputting it as an output signal; an integration unit including an operational amplifier for amplifying a voltage difference between a voltage at a non-inverting input terminal and a voltage at an inverting input terminal, an input resistor connected to the inverting input terminal of the operational amplifier and a capacitor connected between the inverting input terminal and an output terminal of the operational amplifier and adapted to sample the output signal output from the chopper amplifier unit at a predetermined sampling frequency and integrate the sampled output signal; and a digital conversion unit for converting the output signal integrated by the integration unit into a digital signal.
    • 传感器装置设有电压检测型传感器单元,用于将物理量转换成电压值并输出表示电压值的电压信号; 斩波放大器单元,用于通过以预定的斩波频率斩波从传感器单元输出的电压信号来产生调制信号,将调制信号放大为放大信号,然后解调放大信号并将其输出作为输出信号; 一个集成单元,包括用于放大非反相输入端的电压和反相输入端的电压之间的电压差的运算放大器,连接到运算放大器的反相输入端的输入电阻器和连接在运算放大器之间的电容器 反相输入端子和运算放大器的输出端子,并且适于以预定采样频率对来自斩波放大器单元的输出信号进行采样,并对采样的输出信号进行积分; 以及数字转换单元,用于将由积分单元积分的输出信号转换为数字信号。
    • 29. 发明申请
    • SEMI-CONDUCTOR LIGHT EMITTING DEVICE
    • 半导体发光器件
    • WO2010047289A1
    • 2010-04-29
    • PCT/JP2009/067957
    • 2009-10-09
    • PANASONIC ELECTRIC WORKS CO., LTD.MURAI, Akihiko
    • MURAI, Akihiko
    • H01L33/32H01L33/40
    • H01L33/32H01L33/007H01L33/02H01L33/20
    • A semi-conductor light emitting device 10 in the present invention comprises an n-type ZnO substrate 3, an emission layer 2, anode 4, and cathode 5. The n-type ZnO substrate 3 has a mounting surface 31 on one of its surfaces. The emission layer 2 is composed of a p-type GaN film 24 and an n-type GaN film 22, and superimposed on the n-type ZnO substrate 3 with the p-type GaN film 24 directly disposed on the mounting surface 31 of the n-type ZnO substrate 3. The anode 4 is disposed directly on the mounting surface 31 of the n-type GaN substrate 3 in an ohmic contact therewith and in a spaced relation from the emission layer. The cathode 4 is disposed on the n-type GaN film 22 in an ohmic contact therewith. The cathode 4 and anode 5 are of the same structure solely composed of a metallic material. The semi-conductor light emitting device in the present invention assures good ohmic contact of both the cathode 4 and the anode 5, and minimizes consumption of metallic materials.
    • 本发明的半导体发光器件10包括n型ZnO衬底3,发射层2,阳极4和阴极5.n型ZnO衬底3在其一个表面上具有安装表面31 。 发射层2由p型GaN膜24和n型GaN膜22构成,并且叠层在n型ZnO基板3上,其中p型GaN膜24直接设置在 n型ZnO基板3.阳极4直接设置在n型GaN衬底3的安装表面31上,与其发射欧姆接触并且与发射层间隔开。 阴极4以与其形成欧姆接触的方式配置在n型GaN膜22上。 阴极4和阳极5具有与金属材料完全相同的结构。 本发明的半导体发光器件确保了阴极4和阳极5两者的良好的欧姆接触,并使金属材料的消耗最小化。
    • 30. 发明申请
    • LOAD CONTROLLER
    • 负载控制器
    • WO2010020855A1
    • 2010-02-25
    • PCT/IB2009/006573
    • 2009-08-18
    • PANASONIC ELECTRIC WORKS CO., LTD.GOTO, Kiyoshi
    • GOTO, Kiyoshi
    • G05F1/45
    • H05B41/28
    • A load controller includes a main opening/closing unit which has a switch element of a transistor structure and controls supply of power to a load; a auxiliary opening/closing unit which has a switch element of a thyristor structure and controls supply of power to the load when the main opening/closing unit is non- conductive; a control circuit which controls opening/closing of the main opening/closing unit and the auxiliary opening/closing unit; a voltage detector which detects a voltage inputted to a third power source, wherein the control circuit makes the main opening/ closing unit conductive for a first period of time when the voltage detector detects that the voltage inputted to the third power source reaches a voltage threshold, and makes the auxiliary opening/closing unit conductive for a second period of time when the main opening/closing unit is made non -conductive.
    • 负载控制器包括:主开闭单元,其具有晶体管结构的开关元件,并控制向负载供电; 辅助打开/关闭单元,其具有晶闸管结构的开关元件,并且当所述主开/闭单元不导通时控制向所述负载供电; 控制电路,其控制主开/关单元和辅助打开/关闭单元的打开/关闭; 电压检测器,其检测输入到第三电源的电压,其中,当所述电压检测器检测到输入到所述第三电源的电压达到电压阈值时,所述控制电路使所述主开闭单元导通第一时间段 并且使得主开闭单元不导电时,辅助打开/关闭单元导通第二时间段。