PLANAR TYPE MAGIC TEE
20180034127 · 2018-02-01
Assignee
Inventors
- Dal AHN (Cheonan-si, Chungcheongnam-do, KR)
- HanJu DO (Pyeongtaek-si, Gyeonggi-do, KR)
- Heehwang KIM (Incheon, KR)
- YouNa JANG (Asan-si, Chungcheongnam-do, KR)
- JongSik LIM (Daejeon, KR)
Cpc classification
International classification
Abstract
A planar type magic tee includes a first coupling unit, a second coupling unit, and transmission lines for connecting the first coupling unit and the second coupling unit to each other in a cascading manner, the transmission lines having different characteristic impedances. The planar type magic tee is capable of solving the problem caused due to the intrinsic limitation in bandwidth of a conventional ring hybrid coupler.
Claims
1. A planar type magic tee comprising: a first coupling unit; a second coupling unit; and transmission lines, through which the first coupling unit and the second coupling unit are connected to each other in a cascading manner in a planar state, the transmission lines having different characteristic impedances.
2. The planar type magic tee according to claim 1, wherein the transmission lines comprise: a first conductor having impedance Z.sub.A formed at the first coupling unit; and a second conductor having impedance Z.sub.B formed at the second coupling unit, the first conductor and the second conductor being connected to each other.
3. The planar type magic tee according to claim 2, wherein the first coupling unit and the second coupling unit are provided with ports having impedance Z.sub.0.
4. The planar type magic tee according to claim 3, wherein impedance Z.sub.A and the impedance Z.sub.B are calculated using following equations:
Z.sub.A={square root over (Z.sub.1Z.sub.0)},Z.sub.B={square root over (Z.sub.2Z.sub.0)} where Z.sub.1 is an impedance of the first coupling unit, Z.sub.2 is an impedance of the second coupling unit, and Z.sub.1 and Z.sub.2 are calculated using a following equation:
Description
DESCRIPTION OF DRAWINGS
[0017]
[0018]
[0019]
[0020]
[0021]
BEST MODE
[0022] The present invention relates to a planar type magic tee using 3 dB directional couplers and transmission lines.
[0023] The planar type magic tee according to the present invention is configured such that transmission lines are additionally inserted into a structure in which two directional couplers are connected to each other in a cascading manner. Two output ports have a power of 3 dB. The phase difference between the output ports is an in-phase or an out-of-phase. The bandwidth of the planar type magic tee according to the present invention is 97% greater than that of a conventional ring hybrid coupler.
[0024] A description will be given of a change in the phase difference between outputs whenever the characteristic impedances of the four transmission lines, each of which has an electrical length of 90, connected to the two 3 DB directional couplers of the planar type magic tee according to the present invention are changed. In addition, a description will be given of the power division ratio and desired output values that are obtained by changing a reflection coefficient of the planar type magic tee according to the present invention.
MODE FOR INVENTION
[0025] Hereinafter, the planar type magic tee according to the present invention will be described in detail with reference to the accompanying drawings.
[0026]
[0027] Referring to
[0028] In an example, the first coupling unit 1 has an input port, an output port, a P.sub.11 port, and a P.sub.12 port, and the second coupling unit 2 has an isolation port, an output port, a P.sub.21 port, and a P.sub.22 port. In this embodiment, the first coupling unit 1 is described as having an input port. Alternatively, the second coupling unit 2 may have an input port, in terms of the functionality thereof. That is, function switching is possible.
[0029] Conductors 31 and 31, each of which has impedance Z.sub.A, are formed at sides of the P.sub.11 port and the P.sub.12 port, respectively, and conductors 32 and 32, each of which has Z.sub.B, formed at sides of the P.sub.21 port and the P.sub.22 port, respectively. The transmission lines are formed through connection between the conductors.
[0030] Conductors formed at the input port, the isolation port, the output port, the P.sub.11 port, the P.sub.12 port, the P.sub.21 port, and the P.sub.22 port each have impedance Z.sub.0.
[0031] In the planar type magic tee according to the present invention, as described above, two 3 dB directional couplers are connected to each other in a cascading manner, and four /4 transmission lines having characteristic impedance Z.sub.A or Z.sub.B are inserted into the cascading structure. In the case in which Port 1 becomes an input port, Port 2 becomes an isolation port, and Port 3 and Port 4 become output ports that are in phase with each other. In an out-of-phase mode, Port 2 becomes an input port, Port 1 becomes an isolation port, and Port 3 and Port 4 become output ports.
[0032] In order to reflect half of an input signal, a reflection coefficient is represented by Equation 1.
[0033] Impedances Z.sub.1 and Z.sub.2 (Z.sub.1,2) are represented by Equation 2.
[0034] where j indicates a pure imaginary number, 3 indicates the phase constant of the transmission lines, and 1 indicates the length of the lines.
[0035] In the case in which the electrical length of a matching circuit is /4 in Equation 2, Z.sub.A and Z.sub.B are represented by Equations 3 and 4, respectively.
Z.sub.A={square root over (Z.sub.1Z.sub.0)}Equation 3
Z.sub.B={square root over (Z.sub.2Z.sub.0)}Equation 4
[0036] In
[0037]
[0038] Referring to
[0039]
[0040] Specifically,
[0041] Referring first to
[0042] Meanwhile,
[0043] As shown in
[0044] As described above, the planar type magic tee according to the present invention is configured such that additional transmission lines are inserted into a structure in which two 3 dB directional couplers are connected to each other in a cascading manner. Having output ports having the same directivity, the planar type magic tee according to the present invention may be realized to have a cascading planar structure. The measurement results (magnitude) and the phase characteristics of the planar type magic tee according to the present invention were theoretically identical to the characteristics of the conventional ring hybrid coupler. Furthermore, in the in-phase mode, the 20 dB fractional bandwidth of the planar type magic tee according to the present invention was twice or more of the fractional bandwidth of the conventional ring hybrid coupler. In the out-of-phase mode, the fractional bandwidth of the planar type magic tee according to the present invention was 97% greater than the fractional bandwidth of the conventional ring hybrid coupler. It could be seen that the phase differences between the output ports are also regularly changed depending on the impedance change of Z.sub.1. It is also possible to change the power division ratio by changing the reflection coefficient, whereby it is also possible to obtain a desired output value. Having the entire functionality of the conventional ring hybrid coupler and, in addition, having a greater bandwidth than the conventional ring hybrid coupler while having a cascading planar structure, therefore, the planar type magic tee according to the present invention may be usefully applied to various applications, such as a balun.
[0045]
[0046] Referring to
[0047] Although the preferred embodiments of the present invention have been disclosed for illustrative purposes, those skilled in the art will appreciate that various modifications, additions and substitutions are possible, without departing from the scope and spirit of the invention as disclosed in the accompanying claims.
INDUSTRIAL APPLICABILITY
[0048] The planar type magic tee according to the present invention has a greater bandwidth than the conventional ring hybrid coupler and, in addition, has a cascading planar structure. Consequently, the planar type magic tee according to the present invention is usefully applicable to various applications, such as a balun.