Nanowire and planar transistors co-integrated on utbox SOI substrate
Fabrication of a microelectronic device on a semiconductor on insulator type substrate, the device being provided with a transistor of a given type, the channel structure of which is formed from semiconducting bar(s), a dielectric area different from the insulating layer of the substrate being provided to replace the insulating layer, facing the transistor channel structure, specifically for this given type of transistor.
1. A microelectronic device comprising:
a substrate comprising a thin semiconducting layer supported on an insulating layer, said insulating layer being supported on a semiconducting support layer,
at least one first transistor of a first type comprising a region suitable for forming a channel, the region comprising one or several adjacent bars, arranged in and/or on said thin semiconducting layer and an encasing gate arranged on said bars and around side faces of said bars, said channel of said first transistor being arranged on an area based on a given dielectric material different from that of said insulating layer,
the composition and thickness of said given dielectric material facilitating capacitive coupling between said channel of said first transistor and said semiconducting support layer of said substrate and/or said given dielectric material with a dielectric constant k 2 such that k 2 >k 1 , where k 1 is the dielectric constant of the insulating layer material.
2. The microelectronic device according to claim 1 , comprising at least one other transistor, the channel area of which is formed in a semiconducting region arranged on and in contact with the semiconducting support layer of the substrate.
3. The microelectronic device according to claim 1 , said area of said insulating layer being based on SiO 2 and being less than 20 nm thick.
4. The microelectronic device according to claim 3 , comprising at least a second transistor of which the channel area is formed in a region of the thin semiconducting layer arranged on and in contact with the insulating layer of the substrate.
5. The microelectronic device according to claim 4 , the thickness and composition of said insulating layer facilitating a capacitive coupling between the channel of said second transistor and said semiconducting support layer of said substrate.