Preparation method of multilayer heterogeneous ceramic high temperature co-fired lc filter
An LC filter and high-temperature co-firing technology, which is applied to ceramic molding machines, manufacturing tools, multi-terminal pair networks, etc., can solve the problems of material co-firing mismatch, affecting device performance and reliability, cracking, etc., and achieve product volume reduction Effects of small size, high dielectric constant, and improved integration
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Embodiment 1
[0073] Embodiment 1: the dielectric constant is 25 microwave dielectric ceramics (K25) and Ni-Zn-Fe ferrite multi-layer high temperature co-fired LC filter preparation
[0074] according to figure 1 The process shown prepares K25 microwave dielectric ceramics and Ni-Zn-Fe ferrite multilayer high-temperature co-fired LC filter. The technical specifications are as follows: passband frequency (GHz): (3.94-5.5); insertion loss (dB): ≤4.5; In-band fluctuation (dB): ≤1.5; Out-of-band suppression: ≥45dB@(f≤2.75GHz&f≥6.34GHz); Input and output standing waves: ≤1.5. The final filter size is 1608 (metric system, 1.6×0.8mm), and the specific preparation steps are as follows:
[0075] (a) Simulation design of a multilayer heterogeneous ceramic LC filter: a sandwich structure in which the upper and lower layers are microwave dielectric layers and the middle is a microwave ferrite layer. Among them, the inductance layer is made of Ni-Zn-Fe ferrite magnetic material with a permeability of ...
Embodiment 2
[0092] Example 2: Preparation of a multilayer high temperature co-fired LC filter with a dielectric constant of 38 microwave dielectric ceramics (K38) and ferrite
[0093] The index of the filter in Embodiment 2 is the same as that of the LC filter in Embodiment 1. However, due to the replacement of K25 with a barium-titanium-based microwave dielectric ceramic layer (K38), the dielectric constant increases and the sintering temperature decreases. In order to make heterogeneous ceramics high-temperature matching co-firing, the microwave ferrite material is adjusted to Ni-Zn -Fe-Cu system. The size of the final filter can be further reduced to 1005 (1×0.5mm). The specific preparation steps are as follows:
[0094] (a) The simulation design of the multilayer heterogeneous ceramic LC filter: also adopts the sandwich structure of microwave dielectric ceramic sandwiched by microwave ferrite on both sides. Among them, the inductance layer is made of Ni-Zn-Fe-Cu ferrite magnetic mat...
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