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    • 1. 发明授权
    • Microwave dielectric ceramic composition
    • 微波介电陶瓷组合物
    • US5310710A
    • 1994-05-10
    • US864357
    • 1992-04-06
    • Masanori TakaseHirofumi Ozeki
    • Masanori TakaseHirofumi Ozeki
    • C04B35/46C04B35/468H01B3/12H01P7/10
    • C04B35/4686
    • A dielectric ceramic composition which comprises a composition represented by xBaO.yNd.sub.2 O.sub.3.zTiO.sub.2 (where 8.5.ltoreq.x.ltoreq.20, 5.ltoreq.y.ltoreq.23, 62.ltoreq.z.ltoreq.85, and x+y+z=100), Y.sub.2 O.sub.3 in an amount not more than 15 wt % of the amount of said composition, and Al.sub.2 O.sub.3 in an amount not more than 2 wt % of the total amount of the principal components BaO, Nd.sub.2 O.sub.3, TiO.sub.2, and Y.sub.2 O.sub.3. And a relative permittivity .epsilon.r of the dielectric ceramic is not less than 59, its dielectric loss (tan .delta.) is 3.times.10.sup.-4 .about.8.times.10.sup.-4 (2.7 GHz), and its temperature coefficient of resonant frequency .tau.f may be -30.about.+10 ppm/.degree.C. This microwave ceramic dielectric will be used for dielectric resonators in the microwave frequency region, microwave IC substrates, and impedance matching of microwave circuits.
    • 一种介电陶瓷组合物,其包含由xBaO.yNd2O3.zTiO2表示的组合物(其中8.5≤x≤20,5≤y≤23,62≤z= 85,x + y + z = 100),所述组合物的量不超过15重量%的Y 2 O 3,以及不超过主成分BaO,Nd 2 O 3,TiO 2的总量的2重量%以下的Al 2 O 3 Y2O3。 并且介电陶瓷的相对介电常数εr不小于59,其介电损耗(tanδ)为3×10 -4 DIFFERENCE 8×10 -4(2.7GHz),其谐振频率τf的温度系数可以为-30DIFF + 10ppm /℃。该微波陶瓷电介质将用于微波频域,微波IC基片中的介质谐振器和微波电路的阻抗匹配。
    • 2. 发明授权
    • Ceramic composition for microwave dielectric
    • 微波介电陶瓷组成
    • US5238887A
    • 1993-08-24
    • US907640
    • 1992-07-02
    • Tokiomi KatoHirofumi Ozeki
    • Tokiomi KatoHirofumi Ozeki
    • C04B35/46C04B35/468H01B3/12H01P7/10H05B6/64
    • C04B35/4686H01B3/12H05B6/64
    • Disclosed herein is a ceramic composition which gives a microwave dielectric having a permittivity and unloaded Q in a practical range and a small temperature coefficient (.tau.f) in the neighborhood of zero of resonance frequency owing to the controlled amount of ZnO and Ta.sub.2 O.sub.5 added. The .tau.f value may be positive or negative in the neighborhood of zero according to need. The ceramic composition comprises a principal component represented by (BaO-3.7TiO.sub.2).xZnO, where x is in the range of 15.ltoreq.x.ltoreq.17 wt % and a secondary component containing 2-6 wt % Ta.sub.2 O.sub.5 and not more than 1 wt % MnO.sub.2 based on the amount of the principal component. The ceramic composition may also contain BaO-3.8TiO.sub.2, 12-16 wt % ZnO, and 2-6 wt % Ta.sub.2 O.sub.5, or contain BaO-3.6TiO.sub.2, 17-19 wt % ZnO, and 2-6 wt % Ta.sub.2 O.sub.5.
    • 本文公开了一种陶瓷组合物,其在实际范围内提供具有介电常数和无载Q的微波电介质,并且由于加入的ZnO和Ta 2 O 5的受控量,共振频率零附近的温度系数(τf)小。 根据需要,τf值可以在零附近为正或负。 陶瓷组合物包含由(BaO-3.7TiO 2)xZnO表示的主要成分,其中x在15≤x≤17重量%的范围内,次要组分含有2-6重量%的Ta 2 O 5,而不是更多 基于主成分量的1重量%以下的MnO 2。 该陶瓷组合物还可含有BaO-3.8TiO 2,12-16wt%ZnO和2-6wt%Ta 2 O 5,或含有BaO-3.6TiO 2,17-19wt%ZnO和2-6wt%Ta 2 O 5。
    • 4. 发明授权
    • Microwave dielectric ceramic composition
    • 微波介电陶瓷组合物
    • US5340784A
    • 1994-08-23
    • US101252
    • 1993-08-02
    • Tokiomi KatohHirofumi Ozeki
    • Tokiomi KatohHirofumi Ozeki
    • C04B35/465H01P7/10C04B35/46
    • H01P7/10C04B35/465
    • Disclosed herein is a microwave dielectric ceramic composition which comprises as the main ingredient, a composition represented by xMgTiO.sub.3 .multidot.(1-x)CaTiO.sub.3 (0.93.ltoreq.x .ltoreq.0.95), to which 3-9 wt % of ZnO, 2-4 wt % of Ta.sub.2 O.sub.5, 1-6 wt % of Nb.sub.2 O.sub.5, 0.1-6 wt % of MnO.sub.2, 3-12 wt % of Al.sub.2 O.sub.3 or 3-12 wt % of Co.sub.2 O.sub.3 to xMgTiO.sub.3 .multidot.(1-x)CaTiO.sub.3. And the microwave dielectric ceramic compositions have a Qu value in the range of 3000 to 4600 (at 6 GHz), a temperature coefficient of the resonance frequency (.tau.f) in the range of -10 to +10 ppm/.degree.C. and relative dielectric constant (.epsilon..sub.r) in the range of 18 to 22. The dielectric ceramic compositions are capable of reducing .tau.f approximately to zero or optionally and stably controlling .tau.f to a desired value both to positive and negative sides around zero as the center while maintaining .epsilon..sub.r and Qu within practical characteristic ranges by controlling the addition (constitution) ratio of the specified oxides. Further, even if the sintering temperature is changed within a wide range, the sintering products of high density and high quality can be attained due to the addition of the specified oxides.
    • 本文公开了一种微波介电陶瓷组合物,其包含作为主要成分的由xMgTiO 3 x(1-x)CaTiO 3(0.93≤x≤0.95)表示的组合物,3-9重量%的ZnO, 4wt%的Ta2O5,1-6wt%的Nb2O5,0.1-6wt%的MnO2,3-12wt%的Al2O3或3-12wt%的Co2O3与xMgTiO3x(1-x)的CaTiO3。 并且微波介电陶瓷组合物的Qu值在3000〜4600(6GHz)范围内,共振频率(τf)的温度系数在-10〜+ 10ppm /℃的范围内,相对 介电常数(εr)在18至22的范围内。介电陶瓷组合物能够将τf大致降至零,或者可选地并且稳定地将tau f控制在作为中心的零点附近的正和负两侧的期望值,同时 通过控制特定氧化物的添加(构成)比,将εr和Qu保持在实用特征范围内。 此外,即使烧结温度在宽范围内变化,由于加入规定的氧化物,也可以得到高密度,高品质的烧结物。
    • 5. 发明授权
    • Microwave dielectric ceramic composition and preparing method thereof
    • 微波介电陶瓷组合物及其制备方法
    • US5457076A
    • 1995-10-10
    • US292777
    • 1994-08-18
    • Hiroshi KatagiriHirofumi Ozeki
    • Hiroshi KatagiriHirofumi Ozeki
    • C04B35/00C04B35/495H01B3/12H01L23/66H01P7/10H01P11/00C04B35/26C04B35/46
    • H01B3/12C04B35/495H01L23/66H01P7/10H01L2924/0002H01L2924/3011
    • A ceramic composition having a high value .epsilon.r while maintaining Qu and .tau.f each in a range of practical characteristic. The present invention is applicable to dielectric resonators and impedance matching of various kinds of microwave circuits. The ceramic composition comprises Ba.sub.1-x Sr.sub.x (Zn.sub.1/3 Nb.sub.2/3)O.sub.3 (in which 0.6.ltoreq..times..ltoreq.1.0) as the main ingredient, to which TiO.sub.2 is incorporated by 0.01 to 1 parts by weight based on 100 parts by weight of the main ingredient. The ceramic composition may have a Qu value of 2000 to 2900 (at 4.5 GHz), relative dielectric constant of 39 to 42, and a temperature constant of resonance frequency (.tau.f) in the range of -8 to +10 ppm/.degree.C. The ceramic composition may not contain Sr.sub.5 Nb.sub.4 O.sub.15 or Ba.sub.4 Nb.sub.2 O.sub.9. It may index for the regularity of the B site ingredient of 7-9.times.10.sup.-2. The ceramic composition may be prepared by calcination, sintering, and an annealing treatment after sintering. A calcination atmosphere and a sintering atmosphere may be ZnO atmosphere.
    • 具有高值εr同时在实用特性范围内保持Qu和τf的陶瓷组合物。 本发明适用于各种微波电路的介质谐振器和阻抗匹配。 陶瓷组合物包含作为主要成分的Ba1-xSrx(Zn1 / 3Nb2 / 3)O3(其中0.6≤x≤1.0),其中加入TiO 2为0.01〜1重量份,相对于100重量份 主要成分的重量。 陶瓷组合物的Qu值可以为2000〜2900(4.5GHz),相对介电常数为39〜42,共振频率(τf)的温度常数在-8〜+ 10ppm /℃的范围内 该陶瓷组合物不含Sr5Nb4O15或Ba4Nb2O9。 它可能索引B位点成分的规则为7-9x10-2。 陶瓷组合物可以通过煅烧,烧结和烧结后的退火处理来制备。 煅烧气氛和烧结气氛可以是ZnO气氛。
    • 8. 发明授权
    • Composition for producing low sintering temperature ceramic dielectrics
and method of manufacturing such dielectrics
    • 用于生产低烧结温度陶瓷电介质的组合物和制造这种电介质的方法
    • US5759935A
    • 1998-06-02
    • US617273
    • 1996-03-14
    • Hidetoshi MizutaniMasahiko OkuyamaNoritaka YoshidaHirofumi OzekiHiroshi Katagiri
    • Hidetoshi MizutaniMasahiko OkuyamaNoritaka YoshidaHirofumi OzekiHiroshi Katagiri
    • C04B35/46C04B35/468H01B3/12H01P7/10
    • C04B35/4688
    • Powders of BaCO.sub.3, TiO.sub.2, ZnO, etc. are mixed to each other at a predetermined ratio of quantity, calcined in an atmospheric air at 90.degree.-120.degree. C., and pulverized to obtain a calcined powder having an average grain size from 1 to 3 .mu. m. 0.1 to 20 parts-by weight of a powder having an average grain size from 0.1 to 1.5 .mu.m comprising a glass having a transition point of not higher than 450.degree. C. obtained by mixing powders of Pb.sub.3 O.sub.4, SiO.sub.2, Na.sub.2 O, etc. to each other, melting and then pouring into water and pulverizing the thus obtained glass is admixed to the calcined powder. The mixture is dried, pelleted by adding a resin and the pellet powder is molded into a cylindrical shape, applied with CIP (Cold isotactic press), and the molding product after the treatment is sintered in an atmospheric air at 850.degree. to 1000.degree. C. to obtain a dielectric ceramic sintered at low temperature. The resultant dielectric ceramic has high denseness and high unloaded Q value while maintaining .tau.f within a practical range.
    • 将BaCO 3,TiO 2,ZnO等的粉末以规定的量彼此混合,在大气中在90〜120℃下煅烧,粉碎,得到平均粒径为1的煅烧粉末 至3亩。 0.1〜20重量份平均粒径为0.1〜1.5μm的粉末,其包含通过将Pb 3 O 4,SiO 2,Na 2 O等的粉末混合而成的转变点不高于450℃的玻璃 彼此熔融,然后倒入水中并粉碎由此获得的玻璃与煅烧粉末混合。 将混合物干燥,通过加入树脂沉淀,将颗粒粉末成型为圆筒形,涂敷CIP(冷全同立构压机),将处理后的成型体在大气中在850〜1000℃下烧结 以获得在低温下烧结的电介质陶瓷。 所得介电陶瓷具有高密度和高卸载Q值,同时将τf保持在实际范围内。