Power semiconductor device having guard ring structure, and method of formation
In one embodiment, a power semiconductor device may include a semiconductor substrate, wherein the semiconductor substrate comprises an active device region and a junction termination region. The power semiconductor device may also include a polysilicon layer, disposed over the semiconductor substrate. The polysilicon layer may include an active device portion, disposed over the active device region, and defining at least one semiconductor device; and a junction termination portion, disposed over the junction termination region, the junction termination portion defining a ring structure.
1. A method of forming a semiconductor device, comprising:
providing a semiconductor substrate, wherein the semiconductor substrate comprises a first dopant type;
forming a polysilicon layer over the semiconductor substrate;
patterning the polysilicon layer using a poly-level mask, the poly-level mask defining an active device portion and a junction termination portion;
implanting the substrate with the poly-level mask in place, at a relatively lower dopant concentration of a dopant of a second type,
wherein an active device region is formed in the semiconductor substrate, subjacent the active device portion, and defining at least one semiconductor device, wherein
a junction termination region is formed in the semiconductor substrate, disposed subjacent the junction termination portion, wherein
the junction termination portion defines a ring structure, and wherein a total of six masks are used to form the semiconductor device; and
covering the junction termination region with a further mask before performing an additional implant at a relatively higher dopant concentration of the dopant of the second type.
2. The method of claim 1 , the ring structure comprising a plurality of polysilicon rings, arranged in a concentric fashion.
3. The method of claim 1 , wherein the junction termination region comprises a plurality of doped regions, arranged in concentric rings within the semiconductor substrate.
4. The method of claim 1 , the semiconductor device comprising at least one insulated gate bipolar transistor (IGBT) device.
5. The method of claim 1 , the semiconductor device comprising at least one metal oxide semiconductor field effect transistor (MOSFET) device.