Power reduction in finFET structures
The present disclosure describes a method to reduce power consumption in a fin structure. For example, the method includes forming a first and a second semiconductor fins on a substrate with different heights. The method also includes forming insulating fins between and adjacent to the first and the second semiconductor fins. Further, the method includes forming a first and second epitaxial stacks with different heights on each of the first and second semiconductor fins.
1. A structure, comprising:
a substrate;
a first semiconductor fin on the substrate;
a second semiconductor fin on the substrate, the second semiconductor fin being taller than the first semiconductor fin;
a first insulating fin over the substrate and between the first and the second semiconductor fins;
a second insulating fin on the substrate and adjacent to the first semiconductor fin, wherein the first semiconductor fin is positioned between the first and the second insulating fins;
a third insulating fin on the substrate and adjacent to the second semiconductor fin, wherein the second semiconductor fin is positioned between the first and the third insulating fins;
a first epitaxial stack on a portion of the first semiconductor fin; and
a second epitaxial stack on a portion of the second semiconductor fin, the second epitaxial stack being taller than the first epitaxial stack.
2. The structure of claim 1 , wherein a height ratio between the first epitaxial stack and the second epitaxial stack is between about 1:4 and about 2:3.
3. The structure of claim 1 , wherein the first, second, and third insulating fins comprise:
a dielectric layer on the substrate, wherein the first and second semiconductor fins are embedded in the dielectric layers; and
insulating fin structures in the dielectric layer, wherein the insulating fin structures have substantially equal depth within the dielectric layer.
4. The structure of claim 3 , wherein the insulating layer comprises one or more of silicon oxy-carbon nitride (SiOCN), silicon oxy-carbide (SiOC), hafnium oxide (HfO 2 ), and zirconium oxide (ZrO 2 ).
5. The structure of claim 1 , wherein a fin height ratio of the second semiconductor fin to the first semiconductor fin is between about 1:4 and about 2:3.
6. The structure of claim 1 , further comprising:
a dielectric layer on the first and second epitaxial stacks; and
conductive structures on the first and second epitaxial stacks, wherein the conductive structure on the second epitaxial stack is shorter than the conductive structure on the first epitaxial stack.
7. The structure of claim 1 , wherein the second epitaxial stack is wider than the first epitaxial stack.
8. A structure, comprising:
a substrate;
first and second semiconductor fins on the substrate, the second semiconductor fin being taller than the first semiconductor fin;
a first insulating fin on the substrate, between the first and the second semiconductor fins, the first insulating fin having a first height;
a second insulating fin on the substrate, adjacent to the first semiconductor fin, the first semiconductor fin positioned between the first and the second insulating fins, and the second insulating fin having a second height;
a third insulating fin on the substrate, adjacent to the second semiconductor fin, the third insulating fin having a third height, wherein the second semiconductor fin is positioned between the first and the third insulating fins, and wherein the first, second, and third heights are substantially equal; and
a dielectric layer on the substrate, the dielectric layer covering a bottom portion of the first and second semiconductor fins and a bottom portion of the first, second, and third insulating fins.
9. The structure of claim 8 , further comprising:
a first epitaxial stack on the first semiconductor fin not covered by the dielectric layer; and
a second epitaxial stack on the second semiconductor fin not covered by the dielectric layer, wherein the second epitaxial stack is taller than the first epitaxial stack.
10. The structure, of claim 9 , further comprising
a first contact on the first epitaxial stack; and
a second contact on the second epitaxial stack, the second contact having a different height than the first contact.
11. The structure of claim 9 , wherein the second epitaxial stack comprises one or more epitaxial layers bounded by the first and the third insulating fins.
12. The structure, of claim 8 , wherein the first, second, and third insulating fins are shorter than the second semiconductor fin and taller than the first semiconductor fin.
13. The structure of claim 8 , wherein the first and second semiconductor fins comprise another dielectric layer surrounding the first and second semiconductor fins, and wherein the first semiconductor fin is shorter than the second semiconductor fin.
14. The structure of claim 8 , further comprising:
one or more sacrificial gate structures that cover top and sidewall portions of the first and second semiconductor fins not covered by the dielectric layer and that cover top and sidewall portions of the first, second, and third insulating fins.
15. A structure, comprising:
a substrate;
a first semiconductor fin and a second semiconductor fin on the substrate, the second semiconductor fin being taller than the first semiconductor fin;
a first insulating fin on the substrate disposed between the first semiconductor fin and the second semiconductor fin, the first insulating fin having a first height;
a second insulating fin on the substrate, disposed adjacent to the first semiconductor fin, the first semiconductor fin positioned between the first and the second insulating fins, the second insulating fin having a second height;
a third insulating fin on the substrate, adjacent to the second semiconductor fin, wherein the second semiconductor fin is positioned between the first and the third insulating fins, the third insulating fin having a third height,
wherein the first, second, and third heights are substantially equal;
a first epitaxial stack on a portion of the first semiconductor fin;
a second epitaxial stack on a portion of the second semiconductor fin, the second epitaxial stack being taller than the first epitaxial stack; and
a dielectric layer on the substrate, the dielectric layer covering a bottom portion of the first and second semiconductor fins and a bottom portion of the first, second, and third insulating fins.
16. The structure of claim 15 , wherein the first and second semiconductor fins are embedded in the dielectric layer.
17. The structure of claim 15 , wherein the first, second, and third insulating fins have substantially equal depth within the dielectric layer.
18. The structure of claim 15 , wherein a fin height ratio of the second semiconductor fin to the first semiconductor fin is between about 1:4 and about 2:3.
19. The structure of claim 15 , further comprising a spacer on the first semiconductor fin.
20. The structure of claim 15 , further comprising:
a first contact on the first epitaxial stack; and
a second contact on the second epitaxial stack, the second contact having a different height than the first contact.