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Material properties and RF applications of high k and ferrite LTCC ceramics

机译:高k和铁氧体LTCC陶瓷的材料性能和RF应用

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摘要

The continuous trend in modern electronic applications towards smaller size, higher integration density and enhanced functionality requires new materials, which allow embedding passive functions into the substrate. In this paper an LTCC material system with specialized dielectric and magnetic LTCC tapes cofireable in a low-shrinkage process for RF-passive integration is reported. An LTCC dielectric with a dielectric constant of up to 80 is presented. The material is successfully used in a cofired multi-material stack to realize a fully integrated band-pass filter for Bluetooth applications of 1.3 mm~3 volume. A ferroelectric LTCC ceramic with a maximum dielectric constant of 3000 is presented and the reduction of the dielectric constant to a maximum value of 1100 under constrained-sintering is discussed. Magnetic permeabilities of 14 for a NiZnCo-ferrite and 3.5 for a Ba_3Co_2Fe_(24)O_(41) (Co_2Z) ferrite have been realized under LTCC processing conditions, with gyromagnetic resonance frequencies above 1 GHz and 3 GHz respectively. The permeability of these materials is determined for constrained and unconstrained sintering conditions. A maximum absorption of 27 dB/cm and 30 dB/cm is measured for an embedded stripline in NiZnCo- and Co_2Z ferrite respectively. Two-winding planar RF-chokes in different multi-layer stacks are compared. A maximum of 14.3 nH inductance is realized for a 1.8 mm x 2 mm coil in an LTCC research pilot line.
机译:在现代电子应用中,朝着更小尺寸,更高集成密度和增强功能性的持续趋势要求使用新材料,这些材料允许将无源功能嵌入衬底中。本文报道了一种具有专用介电和磁性LTCC胶带的LTCC材料系统,该胶带可在低收缩工艺中共烧制以实现RF无源集成。提出了介电常数高达80的LTCC电介质。该材料已成功用于共烧多材料堆叠中,从而实现了体积为1.3 mm〜3的蓝牙应用的完全集成式带通滤波器。提出了一种最大介电常数为3000的铁电LTCC陶瓷,并讨论了在约束烧结条件下介电常数降至最大值1100的问题。在LTCC处理条件下,NiZnCo铁氧体的磁导率为14,Ba_3Co_2Fe_(24)O_(41)(Co_2Z)铁氧体的磁导率分别为1 GHz和3 GHz以上。这些材料的渗透率是在受限和不受约束的烧结条件下确定的。在NiZnCo-和Co_2Z铁氧体中,对于嵌入的带状线,最大吸收分别为27 dB / cm和30 dB / cm。比较了不同多层堆叠中的两绕组平面RF扼流圈。对于LTCC研究中试线中的1.8 mm x 2 mm线圈,最大电感为14.3 nH。

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