The invention refers to a hybrid coupler with sum and difference ports located on the same side. In particular, the hybrid coupler in this invention uses the slot structure, it is the passive component used for power combining and dividing in many microwave circuit applications.
The hybrid coupler is a four port network device commonly used for power combining and dividing. Due to its versatile operational characteristics it is also used to get sum and difference of two input signals. It has been used as a key component in many microwave circuit applications such as balanced mixers and amplifiers, antenna beamforming networks. The hybrid coupler technical requirements include: Operating frequency band, impedance, standing wave ratio, amplitude and phase imbalance at the two output ports when signal enters the sum and difference port, the isolation between the sum port and difference port.
Current hybrid couplers (typically rat race couplers) are usually designed to meet the above technical requirements but the sum port and difference port are located opposite to each other, making it difficult to integrate the hybrid coupler into the system. In particular, the cable connected to the sum port is usually longer than the cable connected to the difference port. New design methods in this invention can put the sum port and the difference port of the hybrid coupler on the same side, which means the two ports are adjacent to each other. Combined with its simple structure, using common materials, the hybrid coupler can be efficiently fabricated to microwave circuits.
The purpose of this invention is to put the sum port and difference port of the hybrid coupler on the same side. The hybrid coupler has 4 ports based on 2 layer printed circuit that overcome the disadvantage of known hybrid couplers, and has many advantages such as simpler, more efficient structure.
To achieve the above purpose, the hybrid coupler is designed based on the 2-layer printed circuit and has 4 ports: Sum port, difference port, output 1, output 2, connection line 1, connection line 2 and the microstrip line.
The hybrid coupler in this invention includes: Sum port (1), difference port (2), output port 1 (3), output port 2 (4), connection line 1 (5), connection line 2 (6) and the microstrip line (7)
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The microstrip line dimensions are designed based on the microstrip line calculation principle, the slot-line dimensions are designed based on the calculation principle of coplanar waveguide and the material characteristic of dielectric layer (dielectric constant, dielectric layer thickness) to meet the operating frequency requirement and the impedance requirement of the (1), (2), (3) and (4) ports (the impedance of ports in this invention is 50 Ohm). The dielectric layer characteristics in this invention: dielectric constant is 2.64, dielectric layer thickness is 1.542 mm, top and bottom copper layers thickness is 0.035 mm.
The sum port (1) and difference port (2) are arranged on the same side and symmetrically to the slot-line. The lengths of microstrip lines (7) connected to sum port (1) and difference port (2) are calculated and designed so the phases of received signal from port 1 (3) to the sum port (1) and difference port (2) are in-phase.
Because the even mode and odd mode have the 180° phase-shifted characteristic so the signal from sum port (1) will almost be canceled at the difference port and vice versa, thereby the isolation between sum and difference ports is perfect.
In conclusion, this invention introduces a hybrid coupler with sum port and difference port located on the same side, the fabrication of hybrid coupler to the system becomes much simpler. The invention presents the hybrid coupler taking advantages of 2 layer printed circuit technology, using common material to meet the hybrid coupler's technical requirements.
Number | Date | Country | Kind |
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1-2018-05349 | Nov 2018 | VN | national |
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Number | Date | Country | |
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20200176849 A1 | Jun 2020 | US |