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    • 32. 发明授权
    • Electromagnetic vibrating diaphragm pump with function preventing fluid leakage to electromagnetic portion
    • 电磁振动隔膜泵,具有防止流体泄漏到电磁部位的功能
    • US09435332B2
    • 2016-09-06
    • US14006274
    • 2012-03-29
    • Hideki IshiiTsuyoshi Takamichi
    • Hideki IshiiTsuyoshi Takamichi
    • F04B43/04F04B45/04F04B43/00
    • F04B43/04F04B43/009F04B45/043
    • An electromagnetic vibrating diaphragm pump is provided which is safe even when a diaphragm of a diaphragm pump is damaged and liquid or flammable gas penetrates an electromagnetic drive. An electromagnet coil container containing electromagnet coils in an airtight manner is further provided inside a casing, preventing fluid which has penetrated into the space outside the electromagnet coil container from penetrating into the space inside the electromagnet coil container. The electromagnet coil container has a passage formed for an oscillator to move in reciprocation and the passage is formed of a partition wall outside the container. The electromagnetic coil container is configured to prevent fluid which has penetrated into the space inside the passage from penetrating into the space inside the electromagnet coil container.
    • 提供一种电磁振动隔膜泵,即使隔膜泵的隔膜损坏,液体或易燃气体也渗入电磁驱动器,也是安全的。 另外,在壳体内部还设有容纳电磁线圈的电磁线圈容器,防止渗透到电磁线圈容器外侧的空间的液体渗透到电磁线圈容器内的空间内。 电磁线圈容器具有形成为振动器往复运动的通道,并且通道由容器外部的分隔壁形成。 电磁线圈容器被构造成防止已经穿透到通道内的空间的流体渗透到电磁线圈容器内的空间。
    • 33. 发明授权
    • Electromagnetic vibrating diaphragm pump
    • 电磁振动隔膜泵
    • US09145881B2
    • 2015-09-29
    • US14005777
    • 2012-03-15
    • Hideki IshiiTsuyoshi Takamichi
    • Hideki IshiiTsuyoshi Takamichi
    • F04B43/04F04B43/02F04B43/09F04B45/04F04B45/047
    • F04B43/04F04B43/026F04B43/09F04B45/043F04B45/047
    • An electromagnetic vibrating diaphragm pump is provided with a draining structure which can easily drain water flowed into the pump without a separate member preventing inflow of water. A first communicating passage is formed at a bottom end of a partition wall between a suction chamber and a compression chamber. A bottom portion inside the suction chamber slopes down toward the passage, making its compression chamber side lower than the suction chamber side. A second communicating passage is formed at a bottom end of a partition wall between an exhaust chamber and the compression chamber. A bottom portion inside the compression chamber slopes down toward the passage, making its exhaust chamber side lower than the compression chamber side. A bottom portion inside the exhaust chamber slopes down toward the exhaust port to make the exhaust port side lower. The exhaust port slopes down to make an outlet side thereof lower.
    • 电磁振动隔膜泵设置有排水结构,其可以容易地排出流入泵中的水,而没有防止水流入的单独构件。 第一连通通道形成在吸入室和压缩室之间的分隔壁的底端。 吸入室内部的底部朝向通道倾斜,使其压缩室侧低于吸入室侧。 第二连通通道形成在排气室和压缩室之间的分隔壁的底端。 压缩室内的底部朝向通道倾斜,使其排气室侧低于压缩室侧。 排气室内的底部向排气口倾斜,使排气口侧较低。 排气口向下倾斜,使其出口侧较低。
    • 37. 发明申请
    • ELECTROMAGNETIC VIBRATING DIAPHRAGM PUMP
    • 电磁振动膜片泵
    • US20140003978A1
    • 2014-01-02
    • US14005777
    • 2012-03-15
    • Hideki IshiiTsuyoshi Takamichi
    • Hideki IshiiTsuyoshi Takamichi
    • F04B43/04
    • F04B43/04F04B43/026F04B43/09F04B45/043F04B45/047
    • An object of the present invention is to provide an electromagnetic vibrating diaphragm pump with a draining structure which is a simple structure and can easily drain water having flowed into the pump without providing a separate member for preventing inflow of water. A first communicating passage P1 is formed at a bottom end of a partition wall W1 between a suction chamber 62 and a compression chamber 61, and a bottom portion 62a inside the suction chamber 62 slopes down toward the first communicating passage P1 such that the compression chamber 61 side thereof is lower than the suction chamber 62 side; a second communicating passage P2 is formed at a bottom end of a partition wall W2 between an exhaust chamber 63 and the compression chamber 61, and a bottom portion 61a inside the compression chamber 61 slopes down toward the second communicating passage such that the exhaust chamber 63 side thereof is lower than the compression chamber 61 side; and a bottom portion inside the exhaust chamber 63 slopes down toward the exhaust port such that the exhaust port side is made lower, and the exhaust port slopes down such that an outlet side thereof is made lower.
    • 本发明的目的是提供一种具有排水结构的电磁振动隔膜泵,该排水结构是简单的结构,并且可以容易地排出流入泵中的水而不设置用于防止水流入的单独构件。 第一连通通道P1形成在吸入室62和压缩室61之间的分隔壁W1的底端,吸入室62内的底部62a朝向第一连通通道P1向下倾斜,使得压缩室 61侧比吸引室62侧低; 第二连通通道P2形成在排气室63和压缩室61之间的分隔壁W2的底端,压缩室61内的底部61a朝向第二连通通道向下倾斜,使得排气室63 一侧低于压缩室61侧; 并且排气室63内的底部朝向排气口倾斜,使得排气口侧下降,并且排气口向下倾斜,使得其出口侧较低。
    • 38. 发明授权
    • Wireless LAN device and protocol execution method
    • 无线局域网设备和协议执行方式
    • US08503417B2
    • 2013-08-06
    • US13013769
    • 2011-01-25
    • Hideki Ishii
    • Hideki Ishii
    • H04W4/00
    • H04W88/04H04W84/047H04W84/12
    • A wireless LAN device for performing wireless communication with another wireless device in a wireless communication system is disclosed. The wireless LAN device includes first and second communication sections which participate in a configuration process using a predetermined protocol. An execution section executes, based on an instruction received at a reception section, the configuration process by use of one of the first and second communication sections in cooperation with the another wireless device. An exclusion section performs, before the configuration process is completed, an exclusion process that excludes the other of the first and second communication sections from continuing to participate in the configuration process.
    • 公开了一种用于在无线通信系统中与另一无线设备进行无线通信的无线LAN设备。 无线LAN设备包括参与使用预定协议的配置处理的第一和第二通信部分。 执行部分基于在接收部分接收到的指令,通过与另一无线装置协作,通过使用第一通信部分和第二通信部分中的一个来执行配置处理。 排除部分在配置过程完成之前执行排除第一和第二通信部分中的另一个继续参与配置过程的排除过程。
    • 39. 发明授权
    • Pyroelectric ceramic composition, and infrared element, and infrared detector
    • 热电陶瓷组合物,红外元件和红外检测器
    • US07897921B2
    • 2011-03-01
    • US12251197
    • 2008-10-14
    • Katsuhiro HorikawaKoji HayashiHideki Ishii
    • Katsuhiro HorikawaKoji HayashiHideki Ishii
    • G01J5/00
    • G01J5/34C04B35/472C04B2235/3208C04B2235/3251C04B2235/3262C04B2235/3279C04B2235/768C04B2235/79C04B2235/81C04B2235/85H01L37/025
    • A pyroelectric ceramic composition contains a compound represented by (Pb1−xCax)(1+a){(Ni1/3Nb2/3)yTi(1−y)}O3 (wherein x, y, and a satisfy 0.20≦x≦0.27, 0.01≦y≦0.06, and 0.001≦a≦0.02, respectively) as a main component and 0.3 to 2.5 mol of Mn per 100 mol of the main component. The amount of segregates containing Ni, Ti, and Mn is 1.0 vol % or less (including 0 vol %) of a fired sinter. A pyroelectric ceramic composition that has an adequately low insulation resistance and a high Curie temperature while achieving satisfactory pyroelectric properties is realized. Since the composition has a high Curie temperature, a thin, small pyroelectric element that withstands a reflow process can be obtained. Since the composition has a low insulation resistance, an infrared detector incorporating a pyroelectric element composed of the composition does not require a load resistance to be provided in parallel to the pyroelectric element and size reduction is possible.
    • 热电陶瓷组合物含有由(Pb1-xCax)(1 + a){(Ni1 / 3Nb2 / 3)yTi(1-y)} O3表示的化合物(其中x,y和a满足0.20≦̸ x≦̸ 0.27 ,0.01≦̸ y≦̸ 0.06和0.001≦̸ a≦̸ 0.02)和0.3〜2.5mol的Mn / 100mol主成分。 Ni,Ti,Mn的析出物的含量为烧结体的1.0体积%以下(包括0体积%)。 实现了具有足够低绝缘电阻和高居里温度同时实现令人满意的热电性能的热电陶瓷组合物。 由于组成具有高的居里温度,所以可以获得耐受回流处理的薄的小型热电元件。 由于组合物具有低的绝缘电阻,所以并入由该组合物构成的热电元件的红外线检测器不需要与热电元件平行设置负载电阻,并且可以减小尺寸。