会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Inductor with thermally stable resistance
    • 具有耐热稳定电阻的电感器
    • US08975994B2
    • 2015-03-10
    • US13768039
    • 2013-02-15
    • Vishay Dale Electronics, Inc.
    • Thomas T. HansenJerome J. HoffmanTimothy SchaferNicholas J. SchadeDavid LangeClark SmithRod Brune
    • H01F27/30
    • H01F27/40H01F3/08H01F17/04H01F27/292H01F41/02H01F2017/048
    • An inductor includes an inductor body having a top surface and a first and second opposite end surfaces. There is a void through the inductor body between the first and second opposite end surfaces. A thermally stable resistive element positioned through the void and turned toward the top surface to forms surface mount terminals which can be used for Kelvin type sensing. Where the inductor body is formed of a ferrite, the inductor body includes a slot. The resistive element may be formed of a punched resistive strip and provide for a partial turn or multiple turns. The inductor may be formed of a distributed gap magnetic material formed around the resistive element. A method for manufacturing the inductor includes positioning an inductor body around a thermally stable resistive element such that terminals of the thermally stable resistive element extend from the inductor body.
    • 电感器包括具有顶表面和第一和第二相对端表面的电感体。 电感体在第一和第二相对端面之间存在空隙。 一个热稳定的电阻元件,定位在空隙中并朝向顶面转动,形成可用于开尔文型感应的表面贴装端子。 在电感体由铁氧体构成的地方,电感体包括槽。 电阻元件可以由冲压的电阻带形成,并且提供部分转弯或多匝。 电感器可以由围绕电阻元件形成的分布式间隙磁性材料形成。 一种用于制造电感器的方法包括将电感器体定位在热稳定电阻元件周围,使得热稳定电阻元件的端子从电感体延伸出来。
    • 4. 发明申请
    • WIRELESS SIDE CHARGING
    • 无线侧充电
    • US20140197784A1
    • 2014-07-17
    • US14152246
    • 2014-01-10
    • Vishay Dale Electronics, Inc.
    • Randall B. Boldt
    • H02J7/02
    • H02J50/10H01F38/14H02J7/02H02J7/025H02J50/40
    • Devices to be charged and wireless charging devices are disclosed. A DTBC includes a processing unit, a battery, an axially wound receiver coil and battery charging components. The battery powers the processing unit. The axially wound receiver coil has a first end and a second end located at opposite ends of a central axis of the axially wound receiver coil and receives electromagnetic flux via either one of the first end or the second end. The battery charging components are coupled between the battery and the axially wound receiver coil, convert the electromagnetic flux into direct current (DC) and apply the DC to charge the battery.
    • 公开了要充电和无线充电装置的装置。 DTBC包括处理单元,电池,轴向卷绕的接收器线圈和电池充电部件。 电池为处理单元供电。 轴向卷绕的接收器线圈具有位于轴向缠绕的接收器线圈的中心轴线的相对端处的第一端和第二端,并且经由第一端或第二端中的任一端接收电磁通量。 电池充电部件耦合在电池和轴向卷绕的接收器线圈之间,将电磁通量转换为直流电(DC)并施加DC以对电池充电。
    • 6. 发明授权
    • Resistor and method for making same
    • 电阻及其制作方法
    • US08686828B2
    • 2014-04-01
    • US13569721
    • 2012-08-08
    • Clark L. SmithThomas L. BertschTodd L. WyattThomas L. VeikRodney Brune
    • Clark L. SmithThomas L. BertschTodd L. WyattThomas L. VeikRodney Brune
    • H01C1/02
    • H01C17/003H01C1/142H01C3/00H01C17/24H01C17/288Y10T29/49082Y10T29/49098
    • A metal strip resistor is provided. The metal strip resistor includes a metal strip forming a resistive element and providing support for the metal strip resistor without use of a separate substrate. There are first and second opposite terminations overlaying the metal strip. There is plating on each of the first and second opposite terminations. There is also an insulating material overlaying the metal strip between the first and second opposite terminations. A method for forming a metal strip resistor wherein a metal strip provides support for the metal strip resistor without use of a separate substrate is provided. The method includes coating an insulative material to the metal strip, applying a lithographic process to form a conductive pattern overlaying the resistive material wherein the conductive pattern includes first and second opposite terminations, electroplating the conductive pattern, and adjusting resistance of the metal strip.
    • 提供金属条电阻。 金属带状电阻器包括形成电阻元件的金属条,并且在不使用单独基板的情况下为金属带状电阻器提供支撑。 存在覆盖金属条的第一和第二相对端子。 每个第一和第二相对端子上都有电镀。 还有在第一和第二相对端子之间覆盖金属​​带的绝缘材料。 提供一种用于形成金属带状电阻器的方法,其中金属带为不使用单独基板的金属带状电阻器提供支撑。 该方法包括将绝缘材料涂覆到金属条上,施加光刻工艺以形成覆盖电阻材料的导电图案,其中导电图案包括第一和第二相对端子,电镀导电图案,以及调整金属带的电阻。
    • 9. 发明申请
    • RESISTOR AND METHOD FOR MAKING SAME
    • 电阻和制造方法
    • US20120299694A1
    • 2012-11-29
    • US13569721
    • 2012-08-08
    • Clark L. SmithThomas L. BertschTodd L. WyattThomas L. VeikRodney Brune
    • Clark L. SmithThomas L. BertschTodd L. WyattThomas L. VeikRodney Brune
    • H01C1/142H01C17/00
    • H01C17/003H01C1/142H01C3/00H01C17/24H01C17/288Y10T29/49082Y10T29/49098
    • A metal strip resistor is provided. The metal strip resistor includes a metal strip forming a resistive element and providing support for the metal strip resistor without use of a separate substrate. There are first and second opposite terminations overlaying the metal strip. There is plating on each of the first and second opposite terminations. There is also an insulating material overlaying the metal strip between the first and second opposite terminations. A method for forming a metal strip resistor wherein a metal strip provides support for the metal strip resistor without use of a separate substrate is provided. The method includes coating an insulative material to the metal strip, applying a lithographic process to form a conductive pattern overlaying the resistive material wherein the conductive pattern includes first and second opposite terminations, electroplating the conductive pattern, and adjusting resistance of the metal strip.
    • 提供金属条电阻。 金属带状电阻器包括形成电阻元件的金属条,并且在不使用单独基板的情况下为金属带状电阻器提供支撑。 存在覆盖金属条的第一和第二相对端子。 每个第一和第二相对端子上都有电镀。 还有在第一和第二相对端子之间覆盖金属​​带的绝缘材料。 提供一种用于形成金属带状电阻器的方法,其中金属带为不使用单独基板的金属带状电阻器提供支撑。 该方法包括将绝缘材料涂覆到金属条上,施加光刻工艺以形成覆盖电阻材料的导电图案,其中导电图案包括第一和第二相对端子,电镀导电图案,以及调整金属带的电阻。
    • 10. 发明申请
    • HIGH POWERED INDUCTORS USING A MAGNETIC BIAS
    • 使用磁性偏置的高功率电感器
    • US20110298572A1
    • 2011-12-08
    • US13213877
    • 2011-08-19
    • Thomas T. Hansen
    • Thomas T. Hansen
    • H01F27/26
    • H01F3/14H01F17/043H01F27/2847Y10T29/49073
    • A biased gap inductor includes a first ferromagnetic plate, a second ferromagnetic plate, a conductor sandwiched between the first ferromagnetic plate and the second ferromagnetic plate, and an adhesive between the first ferromagnetic plate and the second ferromagnetic plate, the adhesive comprising magnet powder to thereby form at least one magnetic gap. A method of forming an inductor includes providing a first ferromagnetic plate and a second ferromagnetic plate and a conductor, placing the conductor between the first ferromagnetic plate and the second ferromagnetic plate, adhering the first ferromagnetic plate to the second ferromagnetic plate with a composition comprising an adhesive and a magnet powder to form magnetic gaps, and magnetizing the inductor.
    • 偏置间隙电感器包括第一铁磁板,第二铁磁板,夹在第一铁磁板和第二铁磁板之间的导体,以及在第一铁磁板和第二铁磁板之间的粘合剂,所述粘合剂包括磁粉,从而 形成至少一个磁隙。 形成电感器的方法包括提供第一铁磁板和第二铁磁板和导体,将导体放置在第一铁磁板和第二铁磁板之间,将第一铁磁板粘附到第二铁磁板上,组合物包括 粘合剂和磁粉形成磁隙,并使电感器磁化。