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    • 5. 发明申请
    • FAN FRAME HAVING TEMPERTURE DETECTING ELEMENT AND FAN HAVING TEMPERTURE DETECTING ELEMENT
    • 具有温度检测元件的风扇和风扇具有温度检测元件
    • US20150063979A1
    • 2015-03-05
    • US14456523
    • 2014-08-11
    • SUNONWEALTH ELECTRIC MACHINE INDUSTRY CO., LTD.
    • MING-SHENG WANGYUNG-HUI WUSZU-YING TU
    • F04D27/00F04D29/52F04D19/00
    • F04D29/522F04D25/0666
    • A fan frame and a fan having temperature detecting element are provided. The fan frame includes a body and a circuit board. The body includes an inlet. The circuit board is installed around the inlet of the body. The temperature detecting element traverses the inlet. The first wire electrically connects the first contact end and the first external contact terminal. The second wire electrically connects the second contact end and the second external contact terminal. At least one of the first wire and the second wire includes a plurality of bending sections. By utilizing the bending sections of the first wire or the second wire, the length of the first wire or the second wire can be increased. Therefore, the influence in the temperature detecting element caused by the circuit board can be lowered and the error of the detecting temperature can be decreased.
    • 提供了具有温度检测元件的风扇框架和风扇。 风扇框架包括主体和电路板。 身体包括一个入口。 电路板安装在机体的入口周围。 温度检测元件穿过入口。 第一线电连接第一接触端和第一外部接触端子。 第二线将第二接触端和第二外部接触端子电连接。 第一线和第二线中的至少一个包括多个弯曲部。 通过利用第一线或第二线的弯曲部分,可以增加第一线或第二线的长度。 因此,可以降低由电路板引起的温度检测元件的影响,并且可以降低检测温度的误差。
    • 7. 发明申请
    • DEPOSITION METHOD AND APPARATUS
    • 沉积方法和装置
    • US20140137802A1
    • 2014-05-22
    • US14164322
    • 2014-01-27
    • Ofer Sneh
    • Ofer Sneh
    • C23C16/455F04D25/06
    • C23C16/45502C23C16/45544F04D25/0666
    • A method of depositing a material on a substrate comprises placing a substrate into a process space in fluidic communication with a Gaede pump stage (GPS). A precursor gas is then injected into the process space while injecting a draw gas at a draw gas flow rate into the GPS such that the injected precursor gas achieves a precursor pressure and a precursor gas flow rate in the process space. Subsequently, substantially all of the precursor gas remaining in the process space is swept from the process space by injecting a sweep gas into the process space such that the injected sweep gas achieves a sweep pressure and sweep gas flow rate in the process space. The precursor pressure is higher than the sweep pressure, and the precursor gas flow rate is lower than the sweep gas flow rate.
    • 将材料沉积在衬底上的方法包括将衬底放置在与Gaede泵级(GPS)流体连通的过程空间中。 然后将前体气体注入工艺空间,同时以拉伸气体流速将抽吸气体注入到GPS中,使得注入的前体气体在处理空间中实现前体压力和前体气体流速。 随后,通过向处理空间注入吹扫气体,从处理空间中剩余的基本上所有的前体气体都被扫过,使得喷射的吹扫气体在处理空间中达到吹扫压力和吹扫气体流量。 前体压力高于吹扫压力,前体气体流速低于吹扫气体流量。
    • 9. 发明授权
    • Fan having a sensor
    • 风扇有传感器
    • US07841541B2
    • 2010-11-30
    • US10966134
    • 2004-10-14
    • Helmut ArdeltRodica Peia
    • Helmut ArdeltRodica Peia
    • F24F3/14F25B49/00F04B49/10
    • F04D25/0633F04D25/0646F04D25/0666F04D27/001
    • A fan has a sensor (86; 186) for sensing at least one value of the air that flows through the fan (20; 120). The fan has a fan housing (22, 24; 122, 124); an electronically commutated external-rotor motor, arranged in that housing, having an internal stator (30; 130) and an external rotor (46; 146); a fan wheel (56; 156) coupled to the external rotor (46; 146); an air inlet opening (58; 90; 158) for the inflow of air that is to be moved by the fan wheel (56; 156); a circuit board (68; 185) having a portion (66; 188) that extends adjacent the air passage opening (58; 158); and conductors (82, 84; 182′, 182″) arranged on that portion (66; 188), to which conductors the sensor (86; 186) is connected, preferably by a Surface Mounted Device (SMD) method. Premounting the sensor on the circuit board facilitates automated manufacture and reduces cost.
    • 风扇具有用于感测流过风扇(20; 120)的空气的至少一个值的传感器(86; 186)。 风扇具有风扇壳体(22,24; 122,124); 一个电子换向的外转子电动机,设置在该壳体中,具有一个内部定子(30; 130)和一个外部转子(46; 146); 联接到外转子(46; 146)的风扇叶轮(56; 156); 用于由风扇叶轮(56; 156)移动的空气流入的进气口(58; 90; 158); 具有邻近空气通道开口(58; 158)延伸的部分(66; 188)的电路板(68; 185); 以及布置在该部分(66; 188)上的导体(82,84; 182',182“),优选地通过表面贴装设备(SMD)方法连接传感器(86; 186)的导体。 预先安装电路板上的传感器有助于自动化生产并降低成本。
    • 10. 发明申请
    • METHOD OF PRODUCING A MINI FAN AND A MINI FAN PRODUCED ACCORDING TO SAID METHOD
    • 生产迷你风扇的方法和按照方法生产的迷你风扇
    • US20090232677A1
    • 2009-09-17
    • US11816912
    • 2005-12-10
    • Rodica Peia
    • Rodica Peia
    • F04B35/04B23P15/00
    • F04D29/023F04D25/062F04D25/064F04D25/0666F04D29/601F05D2230/53F05D2300/43F05D2300/507F05D2300/603Y10T29/49245
    • The invention relates to a method of producing a mini-fan that has a fan wheel equipped with fan blades (80) and an electric drive motor (61). The latter has an internal stator (90) and an external rotor (62). The rotor has a supporting part (64) made of plastic and is connected to a shaft (60), which part is implemented integrally with the fan blades (80). The external rotor (62) has at least one permanent magnet (72; 72′) having hard ferromagnetic particles (74). The plastic supporting part (64) is connected by plastic injection molding to the shaft (60), and by two-component injection molding to a plastic in which the hard ferromagnetic particles (74) of the rotor permanent magnet (72; 72′) are arranged, so that at least a portion of a transition zone (76) between the supporting part (64) and rotor permanent magnet (72; 72′) forms a materially engaging connection.
    • 本发明涉及一种具有风扇叶轮(80)和电动马达(61)的迷你风扇的制造方法。 后者具有内部定子(90)和外部转子(62)。 转子具有由塑料制成的支撑部分(64)并且连接到轴(60),该部分与风扇叶片(80)整体地实现。 外转子(62)具有至少一个具有硬铁磁颗粒(74)的永磁体(72; 72')。 塑料支撑部分(64)通过塑料注射成型连接到轴(60),并且通过双组分注塑成型到其中转子永磁体(72; 72')的硬质铁磁颗粒(74)的塑料, 被布置成使得支撑部分(64)和转子永磁体(72; 72')之间的过渡区域(76)的至少一部分形成物质接合的连接。