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    • 8. 发明申请
    • ENERGY CONDITIONER STRUCTURES
    • 能源调节器结构
    • US20090040686A1
    • 2009-02-12
    • US12281726
    • 2007-03-07
    • David J. Anthony
    • David J. Anthony
    • H01G4/228
    • H01G4/35H01G4/012H01G4/232
    • Disclosed are energy conditioner structures, method of making and using them wherein the structure comprises a sequence of conductive layers including a first A layer, a G layer, and a first B layer; wherein said first A layer, said G layer, and said first B layer are each conductive, and are conductively isolated from one another in said energy conditioner structure; wherein said first A layer includes a first A layer main body and a first A layer tab, said first B layer includes a first B layer main body and a first B layer tab, and said G layer includes a G layer main body and a G layer first tab; wherein said G layer is in a plane between a plane containing said first A layer and a plane containing said first B layer; where the main body of at least one of said first A layer and said first B layer opposes a portion of said G layer main body; wherein two of said first A layer tab, said first B layer tab, and said G layer first tab are on a first side of said energy conditioner, and the remaining one of said first A layer tab, said first B layer tab, and said G layer first tab is on a second side of said energy conditioner, and said second side is opposite from said first side; and said method comprising applying electrical energy to one of said first A layer, said G layer, and said first B layer.
    • 公开了能量调节器结构,制造和使用它们的方法,其中所述结构包括包括第一A层,G层和第一B层的导电层序列; 其中所述第一A层,所述G层和所述第一B层都是导电的,并且在所述能量调节器结构中彼此导电隔离; 其中所述第一A层包括第一A层主体和第一A层片,所述第一B层包括第一B层主体和第一B层片,所述G层包括G层主体和G层 第一层 其中所述G层在包含所述第一A层的平面和包含所述第一B层的平面之间的平面中; 其中所述第一A层和所述第一B层中的至少一个的主体与所述G层主体的一部分相对; 其中所述第一A层接片,所述第一B层接头和所述G层第一接头中的两个位于所述能量调节器的第一侧上,并且所述第一A层接头,所述第一B层接头和所述第一层 G层第一突片位于所述能量调节器的第二侧,所述第二侧与所述第一侧相对; 并且所述方法包括向所述第一A层,所述G层和所述第一B层之一施加电能。
    • 9. 发明授权
    • Energy conditioning circuit assembly
    • 节能电路组件
    • US07042303B2
    • 2006-05-09
    • US10443778
    • 2003-05-23
    • Anthony A. AnthonyWilliam M. Anthony
    • Anthony A. AnthonyWilliam M. Anthony
    • H04B3/28
    • H01R13/719H01G2/065H01G4/232H01L23/50H01L23/552H01L2924/0002H01L2924/09701H03H1/0007H05K1/0237H05K1/141H05K1/162H05K1/18H05K1/181H05K3/3436H01L2924/00
    • The present invention is a component carrier (132) consisting of a plate of insulating material having a plurality of apertures (140) for accepting the leads of a thru-hole differential and common mode filter (130). Another embodiment consists of a surface mount component carrier (10) comprising a disk (16) of insulating material having a plurality of apertures (24). The same concept for the above described carrier is also incorporated into several alternate embodiments, either independently, embedded within electronic connectors. The overall configuration and electrical characteristics of the concepts underlying the present inventions are also described as an energy conditioning circuit assembly which encompasses the combination of differential and common mode filters and component carriers optimized for such filters. The various embodiments of component carriers provide increased physical support and protection to differential and common mode filters and substantially improve the electrical characteristics of the filters due to the increased shielding provided by the carriers. Embodiments of the carrier energy conditioning assembly include integrated circuit construction for a differential and common mode filter coupled to the power bus of an integrated circuit.
    • 本发明是一种由绝缘材料板组成的部件载体(132),其具有用于接纳通孔差分和共模滤波器(130)的引线的多个孔(140)。 另一个实施例由表面安装分量载体(10)组成,其包括具有多个孔(24)的绝缘材料盘(16)。 对于上述载体的相同概念也被并入几个替代实施例中,独立地嵌入在电子连接器内。 本发明基础概念的总体配置和电气特性也被描述为能量调节电路组件,其包含针对这种滤波器优化的差模和共模滤波器和分量载波的组合。 分量载波的各种实施例为差分和共模滤波器提供了增加的物理支持和保护,并且由于载波提供的增加的屏蔽而实质上改善了滤波器的电特性。 载波能量调节组件的实施例包括用于耦合到集成电路的电力总线的差分和共模滤波器的集成电路结构。