Planar power splitter
View Patent ↗The present invention provides a splitter. The splitter includes a substrate and a layer formed on the substrate. The layer is patterned such that a signal applied to at least one input port is provided to a plurality of output ports. The relative power of the signal provided at each of the plurality of output ports is determined by at least one property of the substrate and at least one property of the layer.
1. An apparatus, comprising:
a substrate;
a ground plane, the substrate being formed above the ground plane;
a substantially planar conductive layer formed above the substrate, the conductive layer being patterned to form a plurality of non-concentric openings in the conductive layer, wherein said plurality of non-concentric openings are bounded on all sides by said planar conductive layer, at least one input port, and an odd plurality of output ports, such that a signal applied to said at least one input port is provided to distribute power from the odd plurality of output ports, the relative power of the signal provided from each of the odd plurality of output ports being determined by at least one property of the substrate and at least one property of the conductive layer; and
at least one resistor, the at least one resistor being electrically coupled between the conductive layer and the ground plane.
2. The apparatus of claim 1 , wherein the substrate comprises an insulating material.
3. The apparatus of claim 1 , wherein the conductive layer is patterned to form three non-concentric openings.
4. The apparatus of claim 1 , wherein the conductive layer is patterned to form three output ports.
5. The apparatus of claim 1 , wherein the relative power of the signal provided at each of the odd plurality of output ports is determined based on at least one width of at least one portion of the conductive layer.
6. The apparatus of claim 1 , wherein the relative power of the signal provided at each of the odd plurality of output ports is determined based on a height of the substrate.
7. The apparatus of claim 1 , wherein the relative power of the signal provided at each of the odd plurality of output ports is substantially the same at each of the odd plurality of output ports.
8. A method, comprising:
providing a substrate;
providing a ground plane beneath the substrate;
forming a substantially planar conductive layer above the substrate;
providing at least one resistor that is electrically coupled between the conductive layer and the ground plane; and
patterning the conductive layer to include at least one input port, an odd plurality of output ports, and a plurality of non-concentric openings such that said plurality of non-concentric openings are bounded on all sides by said planar conductive layer and such that a signal applied to said at least one input port is provided to distribute power from the odd plurality of output ports, the relative power of the signal provided from each of the plurality of output ports being determined by at least one property of the substrate and at least one property of the patterned conductive layer.
9. The method of claim 8 , wherein providing the substrate comprises providing a substrate comprising an insulating material.
10. The method of claim 8 , wherein patterning the conductive layer comprises patterning the conductive layer such that the relative power of the signal provided at each of the plurality of output ports is determined based on at least one width of at least one portion of the conductive layer.
11. The method of claim 8 , wherein patterning the conductive layer comprises patterning the conductive layer such that the relative power of the signal provided at each of the odd plurality of output ports is determined based on a height of the substrate.
12. The method of claim 8 , wherein patterning the conductive layer comprises patterning the conductive layer such that the relative power of the signal provided at each of the odd plurality of output ports is substantially the same at each of the odd plurality of output ports.