Release layer paste and method of production of a multilayer type electronic device
    23.
    发明申请
    Release layer paste and method of production of a multilayer type electronic device 失效
    剥离层糊剂和多层型电子器件的制造方法

    公开(公告)号:US20070190251A1

    公开(公告)日:2007-08-16

    申请号:US11702632

    申请日:2007-02-06

    IPC分类号: B05D5/00 B05D3/02 C09D5/20

    摘要: A release layer paste used for producing a multilayer type electronic device and forming a release layer of a thickness of 0.05 to 0.1 μm, used in combination with an electrode layer paste including one or more solvents selected from limonene, dihydroterpinyl methyl ether, α-terpinyl acetate, terpinyl methyl ether, isobornyl acetate, caryophyllene, 1-dihydrocarvyl acetate, menthone, menthyl acetate, perillyl acetate, carvyl acetate, d-dihydrocarvyl acetate, and butyl carbitol acetate and a binder comprised of ethyl cellulose, including a ceramic powder, organic vehicle, plasticizer, and dispersion agent, the organic vehicle containing a binder having polyvinyl acetal as its main ingredient, a ratio (P/B) of the ceramic powder with respect to the binder and plasticizer being controlled to 1.33 to 5.56 (however, excluding 5.56).

    摘要翻译: 一种用于制造多层电子器件并形成厚度为0.05至0.1μm的剥离层的剥离层糊料,与包含一种或多种选自柠檬烯,二氢喹喔啉甲基醚,α-萜烯基的溶剂的电极层糊剂组合使用 乙酸酯,萜品烯基甲基醚,乙酸异冰片酯,石竹烯,乙酸1-二乙醇酯,薄荷酮,乙酸薄荷酯,乙酸环己酯,醋酸乙酰酯,乙酸二氢芹果酯和丁基卡必醇乙酸酯和由乙基纤维素组成的粘合剂,包括陶瓷粉末, 载体,增塑剂和分散剂,含有具有聚乙烯醇缩醛作为主要成分的粘合剂的有机载体,陶瓷粉末相对于粘合剂和增塑剂的比例(P / B)控制在1.33至5.56(然而,不包括 5.56)。

    Method for manufacturing multilayered unit for multilayered electronic component

    公开(公告)号:US20060286500A1

    公开(公告)日:2006-12-21

    申请号:US10553714

    申请日:2004-04-12

    IPC分类号: F27D5/00

    CPC分类号: H01G4/30 H01G4/12 H01G4/308

    摘要: It is an object of the present invention is to provide a method for manufacturing a multi-layered unit for a multi-layered ceramic electronic component which can prevent a ceramic green sheet from being deformed and destroyed and prevent a solvent contained in an electrode paste from sinking into a ceramic green sheet, thereby enabling manufacture of a multi-layered unit including a ceramic green sheet and an electrode layer laminated to each other in a desired manner. The method for manufacturing a multi-layered unit for a multi-layered ceramic electronic component according to the present invention includes a step of forming a ceramic green sheet on the surface of a first carrier film including a surface-treated region and non-surface-treated regions on which no surface treatment is performed on both sides of the surface-treated region, a step of forming a release layer on the surface of a second carrier film having a width substantially equal to that of the first carrier film, a step of forming an electrode layer in a predetermined pattern and a spacer layer in a complementary pattern to that of the electrode layer on the surface of the release layer, thereby forming an inner electrode layer, a step of forming an adhesive layer on the surface of a third carrier film having a width substantially equal to that of the first carrier film, a step of transferring the adhesive layer formed on the surface of the third carrier film onto the surface of the ceramic green sheet, and a step of transferring the inner electrode layer formed on the surface of the second carrier film onto the adhesive layer formed on the surface of the ceramic green sheet, thereby fabricating a multi-layered unit including the ceramic green sheet and the inner electrode layer laminated onto each other, wherein the adhesive layer is formed by coating the surface of the third carrier film with an adhesive agent solution so that the width of the adhesive layer is narrower than that of the third carrier film by at least 2a where α is a positive value, wider than the width of the ceramic green sheet formed on the surface of the first carrier film and the widths of the release layer and the inner electrode layer formed on the surface of the second carrier film by at least 2a and wider than the width of the surface-treated region of the first carrier film at least 2a.

    Electronic parts and method for manufacture thereof
    26.
    发明申请
    Electronic parts and method for manufacture thereof 有权
    电子部件及其制造方法

    公开(公告)号:US20060138590A1

    公开(公告)日:2006-06-29

    申请号:US10544008

    申请日:2004-02-03

    IPC分类号: H01L29/00

    摘要: An electronic device having an element body comprising an internal electrode layer, wherein the internal electrode layer includes an alloy, the alloy contains a nickel (Ni) element and at least one kind of element selected from ruthenium (Ru), rhodium (Rh), rhenium (Re) and platinum (Pt), and a content of each component is Ni: 80 to 100 mol % (note that 100 mol % is excluded) and a total of Ru, Rh, Re and Pt: 0 to 20 mol % (note that 0 mol % is excluded).

    摘要翻译: 一种电子器件,具有包括内部电极层的元件本体,其中所述内部电极层包括合金,所述合金含有镍(Ni)元素和选自钌(Ru),铑(Rh), 铼(Re)和铂(Pt),各成分的含量为Ni:80〜100摩尔%(注意,除去100摩尔%),Ru,Rh,Re和Pt的总和:0〜20摩尔% (注意不包括0mol%)。

    Optical-element holding mechanism, image-shake correcting device and optical apparatus
    29.
    发明授权
    Optical-element holding mechanism, image-shake correcting device and optical apparatus 有权
    光学元件保持机构,图像抖动校正装置和光学装置

    公开(公告)号:US06738198B2

    公开(公告)日:2004-05-18

    申请号:US09236339

    申请日:1999-01-25

    IPC分类号: G02B1514

    CPC分类号: G02B27/646

    摘要: An optical-element holding mechanism includes a first holding member arranged to hold a first optical element, a second holding member arranged to hold a second optical element, a coupling member arranged to couple the first and second holding members with each other and to permit relative positions of the first and second holding members to be varied in process of being coupled, and an urging member disposed between the coupling member and the second holding member and arranged to urge and press the second holding member against the first holding member at least when the coupling member is in process of coupling the first and second holding members. Further, an image-shake correcting device mounted on an optical apparatus includes a body member, and a lens unit arranged to be moved with respect to the body member in a direction orthogonally intersecting an optical axis for correcting an image shake, wherein the body member is provided with a recessed part formed in a periphery thereof to insert therein a member which extends before and after the body member in a direction of an optical axis and which constitutes the optical apparatus.

    摘要翻译: 光学元件保持机构包括:第一保持构件,其被配置为保持第一光学元件;第二保持构件,布置成保持第二光学元件;联接构件,其被布置成将第一和第二保持构件彼此联接并且允许相对 所述第一和第二保持构件在被联接过程中要变化的位置;以及推动构件,其设置在所述联接构件和所述第二保持构件之间,并且布置成至少在所述第二保持构件 联接构件正在连接第一和第二保持构件。 此外,安装在光学装置上的图像抖动校正装置包括主体部件和透镜单元,其被布置成沿与光轴正交的方向相对于主体部件移动以校正图像抖动,其中主体部件 设置有形成在其周边中的凹部,以在其中插入在主体构件之前和之后在光轴方向上延伸并构成光学装置的构件。

    Dielectric ceramics and electronic component

    公开(公告)号:US06548437B2

    公开(公告)日:2003-04-15

    申请号:US09835492

    申请日:2001-04-17

    IPC分类号: C04B35468

    CPC分类号: H01G4/1227

    摘要: Provided are dielectric ceramics and an electronic component capable of enhancing the longevity of insulation resistance under load at high temperature, namely, the so-called lifetime of IR degradation. A dielectric layer comprises dielectric ceramics containing BaTiO3 that is a main component; a first auxiliary component containing at least one element in a group consisting of Mg, Ca, Ba, Sr and Cr; a second auxiliary component containing SiO2; a third auxiliary component containing at least one element in a group consisting of V, Mo and W; and a fourth auxiliary component containing at least one element in a group consisting of Er, Tm, Yb, Y, Dy and Ho. Preferably, the rate of existence of crystal particles having voids in the dielectric ceramics is 10% or lower in terms of the count rate, and an average crystal particle diameter is more than 0.1 &mgr;m and not more than 0.7 &mgr;m. Thus, the lifetime of IR degradation is improved. Preferably, BaTiO3 powders synthesized by oxalate process or solid phase method and having a Ba/Ti ratio of more than 1 and less than 1.007 are used as a raw material.