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    • 54. 发明授权
    • Method of making multi-layer capacitors
    • 制造多层电容器的方法
    • US3992761A
    • 1976-11-23
    • US526272
    • 1974-11-22
    • David E. McElroyGeorge D. Mackenzie
    • David E. McElroyGeorge D. Mackenzie
    • H01G2/12H01G4/232H01G4/30H01G13/00H01G1/14
    • H01G4/232H01G2/12H01G4/30Y10T29/435
    • A multi-layer capacitor includes a body of alternate layers of a dielectric and a conductor with each conductor layer being sandwiched between a pair of dielectric layers and with alternate ones of the conductor layers extending to opposite ends of the body. A nickel termination film is on each end of the body and contacts the conductor layers which extend to the respective end of the body and a solder film is on each termination layer. The capacitor bodies are terminated by mounting a plurality of the bodies on a support sheet and encapsulating the support sheet and capacitor bodies in a plastic block with the ends of the capacitor bodies being exposed at opposed surfaces of the block. The exposed ends of the capacitor bodes are simultaneously coated with the termination film and then the solder film, and the terminated capacitor bodies are removed from the block.
    • 多层电容器包括绝缘体和导体的交替层的主体,每个导体层被夹在一对电介质层之间,并且导体层的交替的导体层延伸到主体的相对端。 镍终端膜位于主体的每个端部,并与导体层接触,导体层延伸到主体的相应末端,焊料膜位于每个端接层上。 通过将多个本体安装在支撑片上并将支撑片和电容器本体封装在塑料块中,电容器本体的端部暴露在块的相对表面处,来终止电容器本体。 电容器端子的露出端同时涂覆有终止膜,然后焊接膜,并且端接电容器体从块中移除。
    • 56. 发明授权
    • Miniature metalized film capacitor
    • 微型金属化电容器
    • US3854075A
    • 1974-12-10
    • US42023673
    • 1973-11-29
    • ILLINOIS TOOL WORKS
    • UHI J
    • H01G4/245H01G4/18H01G4/228H01G4/26H01G1/14
    • H01G4/228H01G4/26Y10T29/435
    • The embodiment of the invention disclosed herein is directed to a capacitor and the method of making such capacitor. The capacitor can be wound and includes a layer of dielectric material metalized surfaces disposed on both sides of the layer of dielectric material. A metal foil contact member is placed in contact with the metalized surfaces and a lead wire member having a pair of closely spaced apart bight portions formed at one end thereof engages the metal foil and further has a bight portion formed at the other end thereof ultimately to be severed to form independent lead wires for the wound capacitor. The lead wire member can serve as a mandrel upon which the length of dielectric material and the metalized surfaces thereof are wound.
    • 本文公开的本发明的实施例涉及电容器和制造这种电容器的方法。 电容器可以被卷绕并且包括设置在电介质材料层两侧的电介质材料金属化表面层。 金属箔接触构件被放置成与金属化表面接触,并且具有在其一端形成的一对间隔开的弯曲部分的引线构件与金属箔接合,并且还具有形成在其另一端的弯曲部分, 切断以形成绕组电容器的独立导线。 导线构件可以用作心轴,电介质材料的长度和金属化表面被卷绕在心轴上。
    • 57. 发明授权
    • Metallized capacitor with wire terminals
    • 金属电容器与电线终端
    • US3766451A
    • 1973-10-16
    • US3766451D
    • 1972-09-15
    • TRW INC
    • VODA EJOHNSON B
    • H01G2/06H01G1/14
    • H01G2/065
    • Terminal units for metallized capacitors. A capacitor utilizing metallized dielectric layers is convolutely wound into a compact unit having a pair of regions represented by metallized layers separated by the dielectric. Each transverse end of the convolutely wound layers provide a region for making electrical contact thereto. Sturdy terminal units having predetermined geometry are coupled to the segregated metallized regions, the terminal units adapting the capacitor for use with automatic insertion equipment and reflow soldering techniques.
    • 金属化电容器的端子单元。 使用金属化电介质层的电容器被卷绕成具有由电介质隔开的金属化层表示的一对区域的紧凑单元。 卷绕卷层的每个横向端部提供与其接触的区域。 具有预定几何形状的坚固的端子单元耦合到分离的金属化区域,端子单元使电容器适应于自动插入设备和回流焊接技术。
    • 60. 发明授权
    • Wound film capacitor
    • 绕线电容器
    • US3638086A
    • 1972-01-25
    • US3638086D
    • 1970-03-05
    • ILLINOIS TOOL WORKS
    • RAYBURN CHARLES C
    • H01G4/245H01G4/32H01G1/14H01G3/17
    • H01G4/245H01G4/32
    • Wound film capacitor and method of making wherein at least two layers of shrinkable thermoplastic dielectric are sandwiched between two layers of metallized or, preferably, foil, electrodes. A pair of lead wires are then positioned against the outer surfaces of the foils and rotated together in the manner of mandrels to wind the film and foil layers into a capacitor body. Flat, or otherwise deformed portions formed on a short portion of one end of each lead wire which is outside of the capacitor during winding are then drawn into the center of the capacitor by pulling on the other end of the wires. The capacitor body is then heated to shrink the dielectric and thereby cause the leads to be held in extremely firm engagement with the foil layers. Since the foils encircle at least 270* of the periphery of the lead wires, a very firm, low resistance, pressure bond is made which renders the capacitor able to withstand substantial amounts of heat applied during a soldering operation. The elimination of mandrel holes allows the capacitor to be extremely compact and usable for many applications without the addition of additional thicknesses of sealing materials.
    • 缠绕膜电容器及其制造方法,其中至少两层可收缩热塑性电介质夹在两层金属化或优选箔片电极之间。 然后将一对引线定位在箔的外表面上并以心轴的方式一起旋转,以将薄膜和箔层卷绕成电容器本体。 在卷绕期间在电容器外侧的每个引线的一端的短边部分上形成平坦的或其它变形的部分,然后通过拉动导线的另一端而被拉入电容器的中心。 然后将电容器体加热以使电介质收缩,从而使引线与箔层保持非常牢固的接合。 由于箔片环绕引线周边的至少270°,所以制造了非常牢固的低电阻压力键,这使得电容器能够承受在焊接操作期间施加的大量热量。 消除心轴孔允许电容器非常紧凑并且可用于许多应用,而不增加额外厚度的密封材料。