Substrate processing apparatus
A substrate processing apparatus is provided. The substrate processing apparatus includes a chuck supporting a substrate, a gas supply unit configured to supply a process gas to an edge region of the substrate supported on the chuck, and an edge electrode provided to surround the substrate supported on the chuck when viewed from above and to generate plasma from the gas, wherein the edge electrode has a ring shape and a groove recessed in a direction from an inner periphery of the edge electrode to an outer periphery of the edge electrode when viewed from above is formed in the edge electrode.
1 . A substrate processing apparatus comprising:
a chuck supporting a substrate;
a dielectric plate provided to face an upper surface of the substrate supported on the chuck;
a gas supply unit configured to supply a process gas to an edge region of the substrate supported on the chuck; and
an edge electrode provided to surround the substrate supported on the chuck when viewed from above and to generate plasma from the process gas, wherein the edge electrode has a ring shape and a groove recessed in a direction from an inner periphery of the edge electrode to an outer periphery of the edge electrode when viewed from above is formed in the edge electrode; and
a gap measurement sensor comprising a light radiator configured to radiate light and a light receiver configured to receive the light and measure a gap between the dielectric plate and the substrate supported on the chuck, based on the received light,
wherein an opening is formed between an upper portion and a lower portion of the edge electrode, and is arranged to face the light radiator and the light receiver such that the light radiated by the gap measurement sensor passes through the opening in the edge electrode to measure the gap.
2 . The substrate processing apparatus of claim 1 , wherein the groove is formed at a position facing a side of the substrate while the substrate supported on the chuck is processed by the plasma.
3 . The substrate processing apparatus of claim 2 , wherein the groove is formed in a ring shape to surround a side of the substrate supported on the chuck.
4 . The substrate processing apparatus of claim 1 , further comprising:
a base installed above the substrate supported on the chuck and fixing a position of the edge electrode.
5 . The substrate processing apparatus of claim 1 , further comprising an insulating ring provided to surround the chuck,
wherein the edge electrode is provided to surround the insulating ring.
6 . The substrate processing apparatus of claim 1 , wherein the edge electrode is grounded.
7 . The substrate processing apparatus of claim 1 , wherein the gas supply unit comprises:
a first gas supply unit configured to supply an inert gas to a central region of the substrate supported on the chuck; and
a second gas supply unit configured to supply the process gas to the edge region of the substrate supported on the chuck.
8 . The substrate processing apparatus of claim 1 , further comprising a power member configured to apply radio frequency (RF) power to the chuck.
9 . The substrate processing apparatus of claim 1 ,
wherein at least one of the dielectric plate and the chuck is configured to be movable in a vertical direction.
10 . The substrate processing apparatus of claim 1 , wherein the opening is in communication with the groove.
11 . A substrate processing apparatus comprising:
a housing having a processing space;
a support unit supporting a substrate in the processing space;
a dielectric plate disposed above the support unit and facing an upper surface of the substrate supported on the support unit;
an upper edge electrode provided to surround the dielectric plate when viewed from above;
a gas supply unit configured to supply a process gas to a space between the upper edge electrode and the dielectric plate;
a power member configured to generate plasma from the process gas; and
a gap measurement sensor comprising a light radiator configured to radiate light and a light receiver configured to receive the light and measure a gap between the dielectric plate and the substrate supported on the support unit, based on the received light,
wherein a groove recessed in a direction from an inner periphery of the upper edge electrode to an outer periphery of the upper edge electrode when viewed from above is formed in the upper edge electrode, and
wherein an opening is formed between an upper portion and a lower portion of the edge electrode, and is arranged to face the light radiator and the light receiver such that the light radiated by the gap measurement sensor passes through the opening in the edge electrode to measure the gap.
12 . The substrate processing apparatus of claim 11 , wherein the groove is formed at a position facing a side of the substrate supported on the support unit while the substrate is processed by the plasma.
13 . The substrate processing apparatus of claim 12 , wherein the groove is formed in a ring shape to surround a side of the substrate supported on the support unit.
14 . The substrate processing apparatus of claim 11 , wherein the upper edge electrode is installed such that a position thereof is fixed,
wherein the support unit comprises:
a chuck supporting the substrate; and
a driving member vertically moving the chuck.
15 . The substrate processing apparatus of claim 14 , wherein the support unit further comprises the power member configured to apply RF power to the chuck.
16 . The substrate processing apparatus of claim 11 , wherein the opening is in communication with the groove.