Inductor having high current coil with low direct current resistance
An inductor and method for making the same are provided. The inductor includes a coil formed from a conductor and having a serpentine shape. The coil may have an “S”-shape. The coil has two leads extending from opposite ends of the coil. An inductor body surrounds the coil and portions of the leads. The leads may be wrapped around the body to create contact points on the exterior of the inductor.
1. An inductor comprising:
a single serpentine first coil and formed from a flat continuous piece of conductive metal, the coil comprising:
a first portion having a first end adjacent a first side of the inductor and a second end extending away from the first side of the inductor,
a third portion having a first end adjacent a second side of the inductor and a second end extending away from the second side of the inductor, the first side of the inductor and the second side of the inductor on opposite sides of the inductor,
at least a part of an inner side of the first portion facing at least a part of an inner side of the third portion and forming a space between the first portion and the third portion, and
a second portion connecting the second end of the first portion and the second end of the third portion, the second portion traversing the space between the first portion and the third portion, wherein the second portion connects to the first portion at a first position and wherein the second portion connects to the third portion at a second position, and wherein the first position is closer to the second side of the inductor than the second position;
a first lead extending from the first end of the first portion of the coil;
a second lead extending from the first end of the third portion of the coil; and
a body comprising a pressed magnetic powder pressed around the coil and portions of the first lead and the second lead;
wherein the first portion curves outwardly toward a third side of the inductor, and wherein the third portion curves outwardly toward a fourth side of the inductor, the third side of the inductor and the fourth side of the inductor on opposite sides of the inductor.
2. The inductor of claim 1 , wherein the coil is generally in the shape of an S, Z, or N.
3. The inductor of claim 1 , wherein portions of the first lead and second lead extend from the body and are bent around the body to form surface mount portions on a surface of the body.
4. The inductor of claim 1 , wherein the leads are surface mount leads formed separately from the coil and attached to the coil.
5. The inductor of claim 1 , wherein the coil shape is configured to optimize the path length of the coil to fit the space available within the body of the inductor while minimizing resistance and optimizing inductance.
6. The inductor of claim 1 , wherein the second portion extends from adjacent a first corner of the inductor to adjacent a second opposite corner of the inductor.
7. The inductor of claim 1 , wherein the coil is formed by stamping, cutting, folding or a combination thereof.
8. The inductor of claim 1 , wherein the second portion crosses a central area of the inductor.
9. The inductor of claim 8 , wherein the first portion and third portion curve away from a center central area of the coil.
10. The inductor of claim 1 , further comprising a second serpentine coil formed from a conductor and positioned adjacent to the first coil.
11. The inductor of claim 10 , further comprising insulation between the first coil and the second coil.
12. The inductor of claim 1 , wherein the coil is formed from a conductor folded to form a first layer and a second layer.
13. The inductor of claim 12 , further comprising insulation between the first layer and the second layer.
14. The inductor of claim 1 , wherein the coil is arranged along a plane.
15. The inductor of claim 14 , wherein the coil and at least portions of the leads are arranged along the same plane.
16. An inductor having a first side and a second side opposite the first side, a third side and a fourth side opposite the third side, comprising:
a single serpentine first coil and formed from a flat continuous piece of conductive metal, the coil comprising:
a first portion having a first end adjacent the first side of the inductor and a second end extending toward the second side of the inductor, the second end of the first portion positioned closer to the second side of the inductor than the first end of the first portion,
a second portion having a first end connected to the second end of the first portion adjacent the second side of the inductor and a second end extending toward the first side of the inductor, the second end of the second portion positioned closer to the first side of the inductor than the first end of the second portion;
a third portion having a first end adjacent the second side of the inductor and a second end extending toward the first side of the inductor, the second end of the third portion connected to the second end of the second portion adjacent the first side of the inductor, the second end of the third portion positioned closer to the first side of the inductor than the first end of the third portion,
at least a part of an inner side of the first portion facing at least a part of an inner side of the third portion and forming a space between the first portion and the third portion, the second portion traversing the space, and
a first lead extending from the first end of the first portion of the coil;
a second lead extending from the first end of the third portion of the coil; and
a body comprising a pressed magnetic powder pressed around the coil and portions of the first lead and the second lead;
wherein the first portion curves outwardly toward the third side of the inductor, and wherein the third portion curves outwardly toward the fourth side of the inductor.