The subject matter herein generally relates to power supplies.
A Wilson power divider has advantages of a simple structure, 3-dB power distribution, and good isolation between the outputs, thus it is often used in power combining application circuits and feed networks for array antennas.
Performing 3-dB power distribution at design frequency, the Wilson power divider includes two 70.7 ohm quarter-wave transmission lines. However, when using a thin substrate having dielectric constant, a line width (typically 0.096 mm) of the Wilson power divider is very narrow, and the narrower line width is more sensitive to lack of precision in manufacturing.
There is room for improvement within the art.
Implementations of the present disclosure will now be described, by way of embodiment, with reference to the attached figures.
It will be appreciated that for simplicity and clarity of illustration, where appropriate, reference numerals have been repeated among the different figures to indicate corresponding or analogous elements. In addition, numerous specific details are set forth in order to provide a thorough understanding of the embodiments described herein. However, it will be understood by those of ordinary skill in the art that the embodiments described herein can be practiced without these specific details. In other instances, methods, procedures, and components have not been described in detail so as not to obscure the related relevant feature being described. Also, the description is not to be considered as limiting the scope of the embodiments described herein. The drawings are not necessarily to scale and the proportions of certain parts have been exaggerated to better illustrate details and features of the present disclosure.
Several definitions that apply throughout this disclosure will now be presented.
The term “substantially” is defined to be essentially conforming to the particular dimension, shape, or other feature that the term modifies, such that the component need not be exact. For example, “substantially cylindrical” means that the object resembles a cylinder, but can have one or more deviations from a true cylinder. The term “comprising” when utilized, means “including, but not necessarily limited to”; it specifically indicates open-ended inclusion or membership in the so-described combination, group, series, and the like.
The present disclosure is described in relation to power dividing circuits and a power divider.
Referring to
Each of the first output port P2 and the second output port P3 is configured for connecting to a matching load.
The isolation element 20 is electrically connected between the first output port P2 and the second output port P3 to ensure isolation therebetween. In this embodiment, the isolation element 20 is a resistor having an impedance of 100 ohms. In other embodiment, the isolation element 20 may be omitted as long as an isolation of the power divider 100 can meet practical application requirements.
An end of the first microstrip line L1 and an end of the second microstrip line L2 are connected to the impedance converter 30. Another end of the first microstrip line L1 is connected to the first output port P2. Another end of the second microstrip line L2 is connected the second output port P3.
In this embodiment, the first microstrip line L1 and the second microstrip line L2 both have an impedance of 50 ohms and a wave length of 90 degrees (i.e., a quarter wavelength). In this embodiment, the first microstrip line L1 and the second microstrip line L2 have a line width of 0.2 mm.
Referring to
A structure of the second microstrip line L2 is substantially the same as that of the first microstrip line L1. Microstrip line L2 is also substantially U-shaped, and includes a third bending section L21, a fourth bending section L22, and a second connecting section L23. The third bending section L21 is parallel to and apart from the fourth bending section L22. The second connecting section L23 is positioned between the third bending section L21 and the third bending section L22. Two ends of the second connecting section L23 are perpendicularly connected to the third bending section L21 and the fourth bending section L22. An end of the third bending section L21 opposite to the second connecting section L23 is connected to the first bending section L11. The fourth bending end L22 and the second bending end 12 are collinear. The isolation element 20 is positioned between the second bending section L12 and the fourth bending section L22. Thus, the first microstrip line L1, the second microstrip line L2, and the isolation element 20 cooperatively form a closed rectangular structure.
In this embodiment, the impedance transformer 30 includes a third microstrip line L3 and a fourth microstrip line L4. The impedance converter 30 is configured for matching impedances of the input port P1 and the first and second output ports P2 and P3. In this embodiment, the impedance transformer 30 has a length of 7.2 mm and a width of 2.7 mm.
In this embodiment, an end of the third microstrip line L3 is connected to the input port P1, and another end of the third microstrip line L3 is connected to the first microstrip line L1 and the second microstrip line L2. An end of the fourth microstrip line L4 is connected between the input port P1 and the third microstrip line L3, and other end of the fourth microstrip line L4 is in an open state.
In this embodiment, the third microstrip line L3 and the fourth microstrip line L4 both have an impedance of 50 ohms and a wave length of 35.26 degrees. Each line width of the third microstrip line L3 and the fourth microstrip line L4 is 0.2 mm.
Referring to
A structure of the fourth microstrip line L4 is substantially the same as that of the third microstrip line L3. The fourth microstrip line L4 is also substantially U-shaped, and includes a seventh bending section L41, an eighth bending section L42, and a fourth connecting section L43. The seventh bending section L41 is parallel to and apart from the eighth bending section L42. The fourth connecting section L43 is positioned between the seventh bending section L41 and the eighth bending section L42. Two ends of the fourth connecting section L43 and the seventh bending section L41 are perpendicularly connected to the eighth bending section L42. An end of the seventh bending section L41 opposite to the fourth connecting section L43 is connected to the fifth bending section L31. The eighth bending end L42 and the sixth bending end 32 are collinear. The third microstrip line L3 and the fourth microstrip line L4 cooperatively form a rectangular structure having an opening.
It can be seen from simulation results in
In this embodiment, the substrate 10 has a height of 0.12 mm and a width of 4 mm. The substrate 10 is made of FR4 material and has a loss tangent of 0.02.
It can be seen from simulation results in
Therefore, the power divider 100 can be positioned on a thin substrate having a higher dielectric constant in any operating frequency band (e.g. 5.5 GHz, 2.45 GHz), and still has better matching performance at each port. In addition, the power divider 100 can be constructed on a thin substrate, and the line widths of the first to fourth microstrip lines L1-L4, having line widths of 0.2 mm, renders large manufacturing tolerances irrelevant.
The embodiments shown and described above are only examples. Many details are often found in the relevant art. Therefore, many such details are neither shown nor described. Even though numerous characteristics and advantages of the present disclosure have been set forth in the foregoing description, together with details of the structure and function of the present disclosure, the disclosure is illustrative only, and changes may be made in the details, especially in matters of shape, size, and arrangement of the parts within the principles of the present disclosure, up to and including the full extent established by the broad general meaning of the terms used in the claims. It will therefore be appreciated that the embodiments described above may be modified within the scope of the claims.
Number | Date | Country |
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107634298 | Jan 2018 | CN |
107634298 | Jan 2018 | CN |
Number | Date | Country | |
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20200388900 A1 | Dec 2020 | US |