Wilkinson power divider based on glass through hole technology

A technology of through-glass holes and power splitters, which is applied to waveguide devices, electrical components, connecting devices, etc., can solve problems such as large signal loss, and achieve the effects of small dielectric loss, reduced volume, and reduced production costs

Inactive Publication Date: 2018-11-16
NINGBO UNIV
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  • Summary
  • Abstract
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Problems solved by technology

[0004] Traditional power splitters are generally prepared on the surface of a lossy silicon substrate, which has a large signal loss. For example, the insertion loss of the microstrip line power splitter prepared by Najieb.N et al. has reached 3.5dB, and the low temperature The insertion loss of the co-fired ceramic power divider reaches 4.1dB

Method used

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  • Wilkinson power divider based on glass through hole technology
  • Wilkinson power divider based on glass through hole technology
  • Wilkinson power divider based on glass through hole technology

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Embodiment Construction

[0021] The present invention will be further described in detail below in conjunction with the accompanying drawings and embodiments.

[0022] The Wilkinson power splitter based on through glass via technology of the embodiment, such as Figure 1 ~ Figure 3 As shown, it includes a parallel plate capacitor unit, a rewiring layer, a three-dimensional solenoid inductor unit and an isolation resistor 6. The parallel plate capacitor unit is composed of a ground capacitor 11 and a jumper capacitor 12. The rewiring layer includes an input terminal 21, a first Output terminal 22, second output terminal 23, ground plate 24, first metal interconnection layer 31, second metal interconnection layer 32, third metal interconnection layer 33, fourth metal interconnection layer 34, fifth metal interconnection layer The connecting layer 35 , the sixth metal interconnection layer 36 and the seventh metal interconnection layer 37 , and the three-dimensional solenoid inductor unit includes a firs...

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Abstract

The invention discloses a Wilkinson power divider based on a glass through hole technology. The Wilkinson power divider comprises a parallel plate condenser unit, a rewiring layer, three-dimensional solenoid inductor units and an isolating resistor; the power divider is composed of a reactance network consisting of lumped parameter elements, the three-dimensional solenoid inductor units and the parallel plate condenser unit which are compact in structure and low in loss are adopted, solenoid inductors passing through a glass substrate are taken as the lumped parameter elements of the power divider, the solenoid inductors take full advantage of the characteristics of glass through hole vertical arrangement and low electric loss, the power divider is small in area, large in inductance valueand low in loss, and the dimensions of the power divider are greatly decreased; the volume of the power divider is greatly reduced, and the performance of the power divider is guaranteed while the integration level of the circuit is improved. According to the power divider disclosed by the invention, input signal power can be halved into two output ports, the power divider has the advantages of low power loss, high port isolation, small phase difference, compact dimensions and the like, and the power divider is particularly applicable for micro three-dimensional heterogeneous integration packaging.

Description

technical field [0001] The invention belongs to the technical field of microwave passive devices, and in particular relates to a Wilkinson power splitter based on through-glass-hole technology. Background technique [0002] Heterogeneous three-dimensional integration is an advanced packaging technology. It realizes the horizontal interconnection and vertical communication of different chips through glass vias and glass substrates, which significantly improves the performance of the circuit and reduces the packaging size of the communication system. However, traditional RF passive devices, such as power splitters, filters, antennas, etc., usually contain inductors with large inductance values ​​and large intrinsic dimensions, which cannot be integrated into the same package with other communication circuit units, and still require Placed on the printed circuit board outside the package structure, resulting in an increase in the size of the entire communication system. [000...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01P5/16
CPCH01P5/16
Inventor 钱利波桑吉飞励达何锡涛叶益迭夏桦康
Owner NINGBO UNIV
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