
基本信息:
- 专利标题: Capacitor fabrication using nano materials
- 专利标题(中):Herstellung eines Kondensators unter Verwendung von Nanomaterialien
- 申请号:EP14181285.9 申请日:2014-08-18
- 公开(公告)号:EP2846338A1 公开(公告)日:2015-03-11
- 发明人: Taylor, Ralph S.
- 申请人: Delphi Technologies, Inc.
- 申请人地址: P.O.Box 5052 Troy MI 48007 US
- 专利权人: Delphi Technologies, Inc.
- 当前专利权人: Delphi Technologies, Inc.
- 当前专利权人地址: P.O.Box 5052 Troy MI 48007 US
- 代理机构: Robert, Vincent
- 优先权: US201361874409P 20130906; US201414320979 20140701
- 主分类号: H01G4/30
- IPC分类号: H01G4/30 ; H01G4/232
摘要:
A multi-layer capacitor (10) includes an anode (12), a cathode (16), a dielectric material (20), a first endcap (22A), and a second endcap (22B). The anode (12) and cathode (16) are formed of one or more layers (14A, 14B) of interlaced conductive material. The dielectric material (20) is interposed between each of the layers (14A, 14B) of the anode (12) and the cathode (16). The first and second endcaps configured to interconnect each of the layers (14A, 14B) of the anode (12) and cathode (16), respectively. The endcaps are formed of conductive nano material. A method of forming an endcap of a capacitor (10) configured to interconnect one or more layers (14A, 14B) of conductive material includes the step of applying conductive nano material (34) to exposed conductive surfaces of at least one of an anode (12) and a cathode (16) of the one or more layers (14A, 14B) of conductive material. The method also includes the step of exposing the nano material to a source of energy effective to initiate self-sintering of the nano material.
摘要(中):
多层电容器(10)包括阳极(12),阴极(16),电介质材料(20),第一端盖(22A)和第二端盖(22B)。 阳极(12)和阴极(16)由交织导电材料的一个或多个层(14A,14B)形成。 介电材料(20)插入在阳极(12)和阴极(16)的每个层(14A,14B)之间。 第一和第二端盖被配置成分别互连阳极(12)和阴极(16)的每个层(14A,14B)。 端盖由导电纳米材料形成。 一种形成电容器(10)的端帽的方法,该电容器被构造成将导电材料的一个或多个层(14A,14B)互连,包括将导电纳米材料(34)施加到阳极(至少一个)的暴露的导电表面的步骤 12)和导电材料的一个或多个层(14A,14B)的阴极(16)。 该方法还包括将纳米材料暴露于有效地引发纳米材料的自烧结的能量源的步骤。
IPC结构图谱:
H | 电学 |
--H01 | 基本电气元件 |
----H01G | 电容器;电解型的电容器、整流器、检波器、开关器件、光敏器件或热敏器件 |
------H01G4/00 | 固定电容器;及其制造方法 |
--------H01G4/30 | .叠层电容器 |