Dielectric Filter with Orthogonal Resonator

A dielectric filter and resonant cavity technology, which is applied in the field of communication, can solve the problems of dielectric filter insertion loss and difficulty in realization, and achieve the effect of eliminating insertion loss and reducing insertion loss
CN113594653BActive Publication Date: 2022-03-29PIVOTONE COMM TECH

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
PIVOTONE COMM TECH
Publication Date
2022-03-29

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Abstract

The invention discloses a dielectric filter with an orthogonal resonant cavity, which belongs to the technical field of communication. The dielectric filter includes a body; the body is loaded with six resonant cavities connected in sequence and symmetrically arranged in two rows; the first resonant cavity, the third resonant cavity, the fourth resonant cavity in the six resonant cavities The first resonant cavity and the sixth resonant cavity are located in the same plane; the second resonant cavity and the fifth resonant cavity in the six resonant cavities are perpendicular to the plane, and the second resonant cavity and the fifth resonant cavity are perpendicular to the plane. The coupling window between the fifth resonator is broadside coupling, which is used to achieve negative cross-coupling, which forms two transmission zeros. Broadside coupling in the present invention is negative cross-coupling, like this, does not need to adopt a very deep blind hole to realize negative cross-coupling, also just eliminated the insertion loss that this blind hole brings, thereby reduces the dielectric filter insertion loss.
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Description

technical field

[0001] Embodiments of the present invention relate to the field of communication technologies, and in particular to a dielectric filter with a quadrature resonant cavity. Background technique

[0002] 5G (5 th Generation, the fifth generation mobile communication system) communication is the most cutting-edge communication technology at present, and various communication companies are competing to carry out related research. The Sub 6GHz segment in 5G communication adopts MIMO (Multi Input Multi Output) technology. Therefore, it is necessary to integrate a large number of filters inside the antenna, which poses a challenge to the insertion loss, out-of-band rejection, volume and weight of the filter. higher requirements. Traditional metal filters cannot be integrated inside the antenna due to their large size and weight, while dielectric filters can meet the needs of 5G systems. Therefore, dielectric filters are currently a hot research field.

[0003] Th...

Claims

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