Self-aligned process to fabricate a memory cell array with a surrounding-gate access transistor
A memory array including a plurality of memory cells. Each word line is electrically coupled to a set of memory cells, a gate contact and a pair of dielectric pillars positioned parallel to the word line with a spacer of electrically insulating material surrounding the gate contact. Also a method to prevent a gate contact from electrically connecting to a source contact for a plurality of memory cells on a substrate. The method includes depositing and etching gate material to partially fill a space between the pillars and to form a word line for the memory cells, etching a gate contact region for the word line between the pair of pillars, forming a spacer of electrically insulating material in the gate contact region, and depositing a gate contact between the pair of pillars to be in electrical contact with the gate material such that the spacer surrounds the gate contact.
1. A memory array comprising:
a plurality of memory cells, the plurality of memory cells including a memory cell;
a word line electrically coupled to the memory cell and a gate contact;
a pair of pillars including a dielectric material, wherein a first pillar of the pair of pillars is disposed on a first side of the gate contact and a second pillar of the pair of pillars is disposed on a second side of the gate contact, the pair of pillars positioned on top of and in physical contact with a source line, the source line positioned on top of a substrate, the source line including an electrically conductive material electrically coupled to the plurality of memory cells and a source contact; and
a spacer made of electrically insulating material surrounding the gate contact, wherein the insulating material is disposed between the gate contact and the pair of pillars.
2. A memory array as in claim 1 , wherein each of the plurality of memory cells includes a vertical access transistor, the vertical access transistor includes a gate terminal electrically coupled to the gate contact.
3. A memory array as in claim 1 , wherein the insulating material is made of silicon nitride.
4. A memory array as in claim 1 , wherein the plurality of memory cells are phase change memory cells.
5. A memory array as in claim 4 , wherein the memory cells include Ge 2 Sb 2 Te 5 .
6. A memory array as in claim 1 , wherein the plurality of memory cells, gate contact, and pair of pillars are aligned along the word line.