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序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
21 线圈内置端子 CN201710173910.3 2017-03-22 CN107425303A 2017-12-01 北田浩志
发明提供一种能够得到充分的噪音抑制效果的线圈内置端子台。线圈内置端子台具备由一个端子以及另一个端子构成的端子对、安装有至少三个上述端子对的端子安装部件、以及将至少三个上述端子对的上述一个端子与至少三个上述端子对的上述另一个端子分别连接的多个线圈。
22 一种可贴片式的工字电感 CN201710330864.3 2017-05-11 CN107134349A 2017-09-05 刘天明; 涂梅仙; 张沛; 石红丽; 刘亭
发明创造涉及一种可贴片式的工字电感,通过把原插件式工字电感的两个引脚贯穿基座后贴合于基座底面,被折弯的两个引脚位于同一直线上,使得工字电感贴片化,达到编带包装,便于自动化装配效果,且由于工字电感内部构造没发生改变,因此其电流承受能不下降,另外,贴片化后的工字电感,其本体与基座不会轻易被分开,稳固性好。
23 一种磁珠及其制备方法 CN201611237697.X 2016-12-28 CN106816264A 2017-06-09 许光; 李美帆
发明公开了一种磁珠及其制备方法。铁氧体磁珠的制备方法包括以下步骤:S1,制备铁氧体磁珠半成品,所述磁珠半成品中磁体由铁氧体材料烧结而成,磁体上设置有电极;S2,将所述铁氧体磁珠半成品放入氧气体积分数为60%~95%的炉内在400℃~600℃的温度下进行高温处理2h~10h,处理结束后,随炉冷却;S3,将经过步骤S2处理后的磁珠半成品进行电处理,在磁珠半成品的电极上沉积金属镀层,制得铁氧体磁珠。本发明的制备方法可提高制得的产品的外观合格率,且制造成本较低。
24 陶瓷层叠元器件 CN201310681946.4 2013-12-12 CN103974536B 2017-05-24 江原明宏
发明的目的在于提供一种通过抑制过孔导体的突出来使安装面的平坦性较高的陶瓷层叠元器件。本发明的陶瓷层叠元器件(100)包括:层叠多个陶瓷层(1)而成的陶瓷层叠体(10);形成在陶瓷层叠体(10)内部的内部电极(2);形成在陶瓷层叠体(10)的安装面上的端子电极(4);以及以使得内部电极(2)与端子电极(4)相连接的方式来形成在陶瓷层叠体(10)内的过孔导体(3),以横跨在陶瓷层叠体(10)的表面上及端子电极(4)的表面上的方式来一体形成绝缘部(5),从安装面一侧进行观察时,绝缘部(5)覆盖过孔导体(3)的至少一部分,且覆盖端子电极(4)的一部分。
25 垂直集成系统 CN201410454358.1 2011-12-22 CN104362143B 2017-04-12 A·奥都奈尔; S·艾瑞阿尔特; M·J·姆菲; C·莱登; G·卡塞; E·E·恩格利什
发明涉及垂直集成系统。本发明的实施方式提供了一种集成电路系统,包括:衬底;在所述衬底上的第一半导体管芯,所述第一半导体管芯包括制造在前侧的有源层和在背侧的部件层,其中所述部件层包括分立的无源部件;在所述衬底上的第二半导体管芯,具有与所述第一半导体管芯不同的操作电压;隔离阻挡物,配置为将所述第一和第二半导体管芯彼此电隔离;以及通信电路,配置为在所述第一和第二半导体管芯之间传输数据。
26 一种薄膜电感和电源转换电路 CN201610248079.9 2016-04-20 CN105761880A 2016-07-13 杨和钱; 朱勇发; 骆孝龙
发明公开了一种薄膜电感。该薄膜电感包括:薄膜磁芯,该薄膜磁芯包括多个磁柱、第一端部和第二端部,多个磁柱之间相隔离且均呈杆状,每个磁柱的一端与第一端部相接触,另一端与第二端部相接触;该多个磁柱包括两个以上绕组磁柱和一个非绕组磁柱,非绕组磁柱位于两个以上绕组磁柱的一侧;或,该多个磁柱包括两个以上绕组磁柱和两个非绕组磁柱,两个以上绕组磁柱位于两个非绕组磁柱之间;该薄膜磁芯包括至少一层磁性薄膜,每层磁性薄膜中位于第一端部和第二端部且位于相邻的两个绕组磁柱之间的区域设有至少一个第一类间隙,第一类间隙的长度方向与磁性薄膜的难磁化方向平行;磁性薄膜层叠并重合,每层磁性薄膜上的所有第一类间隙的宽度之和相等。
27 垂直集成系统 CN201410454353.9 2011-12-22 CN104269388A 2015-01-07 A·奥都奈尔; S·艾瑞阿尔特; M·J·姆菲; C·莱登; G·卡塞; E·E·恩格利什
发明涉及垂直集成系统。本发明的实施方式提供了一种集成电路系统,包括:在半导体管芯的前侧制造的有源层;在所述半导体管芯的背侧的能量收集层,所述能量收集层配置为将非电形式的能量转换为电荷;以及至少一条电气路径,配置为分配所述电荷以向所述集成电路系统中的部件供电。
28 垂直集成系统 CN201110433902.0 2011-12-22 CN102569291B 2014-10-15 A·奥都奈尔; S·艾瑞阿尔特; M·J·姆菲; C·莱登; G·卡塞; E·E·恩格利什
发明涉及垂直集成系统。本发明的实施方式提供了一种集成电路系统,其包括在半导体管芯的前侧上制造的第一有源层及在所述半导体管芯的背侧上并且具有包含在其中的电气部件的第二预制层,其中所述电气部件包括至少一个分立的无源部件。所述集成电路系统还包括至少一条耦合所述第一有源层与第二预制层的电气路径。
29 垂直集成系统 CN201110433902.0 2011-12-22 CN102569291A 2012-07-11 A·奥都奈尔; S·艾瑞阿尔特; M·J·姆菲; C·莱登; G·卡塞; E·E·恩格利什
发明涉及垂直集成系统。本发明的实施方式提供了一种集成电路系统,其包括在半导体管芯的前侧上制造的第一有源层及在所述半导体管芯的背侧上并且具有包含在其中的电气部件的第二预制层,其中所述电气部件包括至少一个分立的无源部件。所述集成电路系统还包括至少一条耦合所述第一有源层与第二预制层的电气路径。
30 CERAMIC ELECTRONIC COMPONENT AND METHOD FOR PRODUCING SAME EP15838924.7 2015-07-29 EP3190598A1 2017-07-12 SAWADA, Eriko; ITO, Hiromasa; SASAKI, Tsutomu

Provided is a ceramic electronic component which suppresses deposition of glass components on external electrode surfaces, and keeps plated layers from being formed defectively.

Provided is a ceramic electronic component which includes: a ceramic body; a first internal electrode provided in the ceramic body, and exposed at one end surface of the ceramic body; a second internal electrode provided in the ceramic body, and exposed at the other end surface of the ceramic body; a first external electrode provided on one end surface of the ceramic body and electrically connected to the first internal electrode; and a second external electrode provided on the other end surface of the ceramic body and electrically connected to the second internal electrode, and has, between the external electrode and the internal electrode, a columnar structure that provides electrical conduction at least between the external electrode and the internal electrode, and has, on both sides of the columnar structure, a glass accumulation formed in contact with the columnar structure.

31 SYSTEM AND METHOD FOR WIRELESS POWER TRANSFER IN IMPLANTABLE MEDICAL DEVICES EP10751119 2010-03-09 EP2406655A4 2014-09-10 DERBAS JUSTIN R; SINGH VINIT
A resonator is provided for use in a system for energy transfer between a first device and a second device. The resonator includes a coil having multiple layers, each layer including inductive and insulative layers. The thickness of a conductor layer may be relative to the skin depth of the conductor.
32 Method for compensation of temperature dependent variation of coil resistance and inductive proximity swich using said method EP07360014.0 2007-04-04 EP1978641A1 2008-10-08 Kirchdoerffer, Rémy; Frolov, Vladimir

The present invention concerns a method for compensating the resistance variation of a multilayer coil depending on the temperature variation of said coil.

Method characterised in that it consists in determining at least one particular frequency or range of frequencies at which the dependency on the temperature of the ohmic resistance of the coil is less than or equal to a preset value, preferably at its lowest or minimum, and in feeding said coil, in use, at a frequency value equal to said at least one aforementioned particular frequency or situated within said at least one particular range of frequencies.

33 Composant électronique inductif pour le report à plat EP84401338.3 1984-06-26 EP0130902A2 1985-01-09 Granjean, Daniel; Larue, Henri

La présente invention concerne un composant électronique inductif pour le report à plat, comportant une poulie constituée de deux joues (2, 3) solidaires d'un mandrin (1) sur lequel est bobiné un enrÓulement électrique dont les extrémités (13, 14) sont respectivement reliées à une électrode (4, 5), une résine (11) enrobant l'enroulement sensiblement jusqu'à hauteur des joues (2, 3). Selon l'invention, les joues (2, 3) sont recouvertes exclusivement sur leur face extérieure d'une couche conductrice formant électrode (4, 5). Chaque joue (2, 3) et sa couche conductrice comportant une gorge (6, 7) s'étendant parallèlement au mandrin (1) au moins jusqu'au prolongement de celui-ci au niveau des joues (2, 3). Chaque extrémité (13, 14) de l'enroulement est respectivementfixée dans chaque gorge (6, 7), par l'intermédiaire d'une brasure électriquement conductrice assurant le contact électrique entre les électrodes (13,14) et les extrémités de l'enroulement, ladite brasure remplissant au moins partiellement chacune des gorges (6, 7).

34 TRANSFORMER, AND SWITCHING POWER SUPPLY AND ISOLATOR USING TRANSFORMER EP16782781 2016-04-13 EP3288048A4 2018-05-23 KAWADA HIROSHI; KUMAHARA MINORU; MIYATAKE TAKAHIRO; KAJIMOTO YOSHIYUKI
A transformer includes a multilayer board including insulation layers stacked in a thickness direction, a primary coil provided on at least one of the insulation layers, and a secondary coil provided on at least one of the insulation layers. The primary coil includes first sub coils electrically connected in series to each other, and second sub coils electrically connected in series to each other. Surfaces of the plurality of insulation layers constitute layer planes of the multilayer board. At least two of the first sub coils are provided on layer planes out of the layer plane different from each other. At least two of the second sub coils are provided on layer planes out of the layer planes different from each other. An average of positions of the first sub coils in the thickness direction is aligned with an average of positions of the second sub coils in the thickness direction.
35 LOWPASS FILTER EP16768108 2016-01-15 EP3168989A4 2018-02-21 MASUDA HIROSHI
An object of the present invention is to provide a low pass filter that allows the interval between attenuation poles to be easily adjusted. A low pass filter according to the present invention includes: a first via-hole conductor connected to a first end portion of a first inductor and a third end portion of a second inductor and extending to another side in a lamination direction with respect to a second end portion of the first inductor and a fourth end portion of the second inductor; and a first capacitor connected in parallel with at least a portion of the first inductor and a portion of the second inductor and formed by a first capacitor conductor layer.
36 Electromagnetic interference filter EP11152845.1 2011-02-01 EP2357727A1 2011-08-17 Ho, Ho Yan

A differential mode and common mode combination choke (DCCC) includes: a theta-shaped magnetic core including an essentially round magnetic ring and a magnetic plate engaged with magnetic ring across the area surrounded by the magnetic ring; and two common mode coils with the same number of turns and the same winding direction being wound around the magnetic ring. An EMI (electromagnetic interference) filter and an EMI filter module including the DCCC are also provided.

37 ELEKTRISCHER HOCHFREQUENZ-ÜBERTRAGER EP85902961.3 1985-06-11 EP0187771B1 1988-10-05 PFIZENMAIER, Heinz; SCHMIDT, Ewald
The high frequency transformer proposed in the printed circuit field is provided with inductances and capacities. The inductances consist of a coil arrangement (9, 17; 10, 18) presenting a ferrite core (5) which is closed and made in the form of conducting tracks on an insulating support (1). The capacities are comprised of a conductor coating (28), the coil arrangement (9, 17; 10, 18) being capacitively coupled to the conductor coating (29) by a dielectric (27).
38 Inductive electronic component for transmission by flat contacts EP84401338 1984-06-26 EP0130902A3 1985-03-06 Granjean, Daniel; Larue, Henri
39 COMMON MODE NOISE FILTER US15771385 2017-09-26 US20180336987A1 2018-11-22 TAKUJI KAWASHIMA; YOSHIHARU OOMORI; YOICHI NAGASO; ATSUSHI SHINKAI
A common mode noise filter includes a non-magnetic body and first to third coil conductors provided inside the non-magnetic body. The second coil conductor is provided in a downward direction from the first coil conductor. The third coil conductor is provided in the downward direction from the second coil conductor. The first and third coil conductors deviate in a direction perpendicular to the downward direction with respect to the second coil conductor. At least one of the first and third coil conductors overlaps the second coil conductor viewing from the direction perpendicular to the downward direction. This common mode noise filter allows these coil conductors to be magnetically coupled to each other with a preferable balance, thereby preventing degradation of differential signals.
40 ELECTRONIC COMPONENT AND METHOD FOR MANUFACTURING THE SAME US16031638 2018-07-10 US20180323000A1 2018-11-08 Hironobu KUBOTA; Mitsunori INOUE; Tomohiko MORI; Gota SHINOHARA; Kenji NISHIYAMA
An electronic component includes a main body composed of an insulator, a coating film covering the main body, a circuit element located inside the main body, and outer electrodes. The insulator contains a metal magnetic powder. The coating film is composed of a resin and a cationic element contained in the insulator.
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