IP Library Granted Patent US 10,218,331
Granted Patent B2
US 10,218,331 · App. 15/309,982 · Granted Feb 26, 2019

Quadrature hybrid with multi-layer structure

Inventors: Bo Zhou (Nanjing, CN); Yang Ji (Nanjing, CN); Junyou Chen (Jiangsu, CN)
Assignee: Telefonaktiebolaget LM Ericsson (publ)
H03H7/0115H01P5/187H01P5/227H03H7/0138H03H7/075H03H7/09H01G4/40H03H2001/0021H03H2001/0085
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Quick Facts
Patent No.
US 10,218,331
App. No.
15/309,982
Granted
Feb 26, 2019
Kind
B2
Abstract

The disclosure provides a quadrature hybrid. The quadrature hybrid has a first, second, third and fourth ports. The quadrature hybrid comprises: a substrate having a plurality of dielectric layers; a first, second and third capacitors, each capacitor having a first predetermined number of layers each being arranged on one of the plurality of dielectric layers; and a first, second, third and fourth inductors, each inductor having a second predetermined number of layers each being arranged on one of the plurality of dielectric layers.

Claims (7)

1. A quadrature hybrid having a first, second, third and fourth ports, the quadrature hybrid comprising: a substrate having a plurality of dielectric layers; a first, second and third capacitors, each capacitor having a first predetermined number of layers each being arranged on a different one of the plurality of dielectric layers; and a first, second, third and fourth inductors, each inductor having a second predetermined number of layers each being arranged on a different one of the plurality of dielectric layers, wherein a first terminal lead of the first inductor and a first terminal lead of the first capacitor are connected to the first port, a first terminal lead of the second inductor and a second terminal lead of the first capacitor are connected to the second port, a first terminal lead of the third inductor and a second terminal lead of the third capacitor are connected to the third port, a first terminal lead of the fourth inductor and a first terminal lead of the third capacitor are connected to the fourth port, a second terminal lead of the first inductor and a second terminal lead of the fourth inductor are connected to a first terminal lead of the second capacitor, and a second terminal lead of the second inductor and a second terminal lead of the third inductor are connected to a second terminal lead of the second capacitor, wherein the first and second terminal leads of each inductor are arranged in a first direction, and the first and second terminal leads of each capacitor are arranged in a second direction orthogonal to the first direction.

2. The quadrature hybrid of claim 1 , wherein projections of the first, second and third capacitors on a surface of the substrate are squares having a same first size, the first and second terminal leads of each capacitor extending from a pair of opposite sides of the square on which the capacitor is projected, respectively.

3. The quadrature hybrid of claim 1 , wherein projections of the first, second, third and fourth inductors on a surface of the substrate are squares having a same second size, the first and second terminal leads of each inductor extending from a pair of opposite sides of the square on which the inductor is projected, respectively.

4. The quadrature hybrid of claim 1 , wherein each capacitor is a vertically-interdigital-capacitor.

5. The quadrature hybrid of claim 1 , wherein each inductor is a spiral inductor.

6. The quadrature hybrid of claim 1 , wherein each layer of the substrate is made of Low Temperature Co-fired Ceramic (LTCC) material.

7. The quadrature hybrid of claim 1 , wherein the first and second predetermined number of layers comprises more than 3 layers.

Continuity (1)
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