IP Library › Granted Patent US 9,298,107
Granted Patent B2
US 9,298,107 · App. 13/183,220 · Granted Mar 29, 2016

Lithographic apparatus and method

Inventors: Thibault Simon Mathieu Laurent (Eindhoven, NL); Gerardus Adrianus Antonius Maria Kusters (Eindhoven, NL); Bastiaan Andreas Wilhelmus Hubertus Knarren (Nederweert-Eind, NL); Raymond Wilhelmus Louis Lafarre (Helmond, NL); Koen Steffens (Veldhoven, NL); Takeshi Kaneko ('s-Hertogenbosch, NL); Robbert Jan Voogd (Neerpelt, BE); Gregory Martin Mason Corcoran (Eindhoven, NL); Ruud Hendrikus Martinus Johannes Bloks (Helmond, NL); Johan Gertrudis Cornelis Kunnen (Weert, NL); Ramin Badie (Eindhoven, NL)
Assignee: ASML NETHERLANDS B.V.
G03F7/70775G03F7/707G03F7/70341G03F7/70875
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Quick Facts
Patent No.
US 9,298,107
App. No.
13/183,220
Granted
Mar 29, 2016
Kind
B2
Abstract

A substrate table to support a substrate on a substrate supporting area, the substrate table having a heat transfer fluid channel at least under the substrate supporting area, and a plurality of heaters and/or coolers to thermally control the heat transfer fluid in the channel at a location under the substrate supporting area.

Claims (61)

1. A lithographic apparatus comprising:

a movable table;

a reference frame;

a grating on the table or the reference frame;

a sensor on the other of the table and reference frame, the sensor configured to detect radiation diffracted and/or reflected by the grating so as to measure a relative position between the table and the reference frame;

an optically transparent plate covering at least a part of a surface of the grating or the sensor; and

an outlet configured to apply a low pressure between the plate and a portion of the table.

2. The lithographic apparatus of claim 1 , wherein:

the table is configured to support a substrate on a substrate supporting area; and

the plate is configured to cover an upper surface of the table surrounding the substrate supporting area.

3. The lithographic apparatus of claim 1 , wherein the movable table further comprises an electrical heater or Peltier device.

4. The lithographic apparatus of claim 1 , wherein the grating or sensor is spaced apart from the plate.

5. The lithographic apparatus of claim 1 , wherein the movable table is a substrate table having a substrate supporting area, and the substrate table further comprises a releasable plate, separate from the transparent plate, on a top surface of the substrate table, the releasable plate located between the substrate supporting area and the transparent plate.

6. The lithographic apparatus of claim 5 , further comprising an extractor configured to drain liquid from a gap between the transparent plate and the releasable plate.

7. A method for use in a lithographic projection apparatus comprising a movable table, a reference frame, a grating on the table or the reference frame, a sensor on the other of the table and reference frame, the sensor configured to detect radiation diffracted and/or reflected by the grating, and an optically transparent plate covering at least a part of a surface of the grating or the sensor, the method comprising:

applying a low pressure between the plate and a portion of the table to releasably attract the plate to the table; and

detecting radiation diffracted and/or reflected by the grating so as to measure a relative position between the table and the reference frame.

8. The method of claim 7 , comprising controlling a heater or Peltier device overlying or under at least part of the grating and/or sensor to thermally control the grating and/or sensor.

9. A lithographic apparatus comprising:

a movable table comprising:

a grating near a periphery of the table, the grating supported on a protrusion of the movable table,

a heat transfer device configured to thermally control a portion of a surface of the table inside the periphery,

an outlet configured to apply a low pressure between the grating and a portion of the table, and

a releasable plate on a top surface of the table, the plate located between the center of the table and the grating and spaced apart in a horizontal direction from the grating by a gap through which fluid can enter; and

a sensor configured to detect radiation diffracted and/or reflected by the grating so as to measure a relative position between the table and the sensor.

10. The lithographic apparatus of claim 9 , further comprising a heater or Peltier device, separate from the heat transfer device, to thermally control the grating.

11. The lithographic apparatus of claim 9 , wherein the outlet is configured to apply the low pressure to the grating to releasably attract the grating to the table.

12. The lithographic apparatus of claim 9 , wherein the movable table is a substrate table having a substrate supporting area at the center of the substrate table.

13. A method for use in a lithographic projection apparatus comprising a movable table comprising a grating near a periphery of the table, the grating supported on a protrusion of the movable table, heat transfer device configured to thermally control a portion of a surface of the table inside the periphery, and a releasable plate on a top surface of the table, the plate located between the center of the table and the grating and spaced apart in a horizontal direction from the grating by a gap, and the lithographic projection apparatus comprising a sensor configured to detect radiation diffracted and/or reflected by the grating, the method comprising:

applying a low pressure between the grating and a portion of the table to releasably attract the grating to the protrusion;

detecting radiation diffracted and/or reflected by the grating so as to measure a relative position between the table and the sensor; and

allowing liquid to enter the gap between the plate and the grating.

14. The method of claim 13 , comprising controlling a heater or Peltier device overlying or under at least part of the grating and/or sensor to thermally control the grating and/or sensor.

15. A lithographic apparatus comprising:

a grating;

a sensor configured to detect radiation diffracted and/or reflected by the grating;

a movable table comprising:

the sensor or the grating near a periphery of the table,

a heat transfer device configured to thermally control a portion of a surface of the table, of the grating or sensor, or of both, inside the periphery,

an optically transparent plate to cover the sensor or the grating, and

an outlet configured to apply a low pressure to the plate to releasably attract the transparent plate to the table.

16. The lithographic apparatus of claim 15 , wherein the heat transfer device comprises a heater and wherein the heater is an electrical heater.

17. The lithographic apparatus of claim 15 , wherein the grating is spaced apart from the plate.

18. The lithographic apparatus of claim 15 , wherein the movable table is a substrate table having a substrate supporting area, and the table further comprises a separate plate, from the transparent plate, on a top surface of the table, the separate plate located between the substrate supporting area and the transparent plate.

19. The lithographic apparatus of claim 15 , wherein the heat transfer device comprises a heater or Peltier device to thermally control the grating or sensor.

20. The lithographic apparatus of claim 19 , wherein the heater or Peltier device is positioned between the plate and the grating or sensor.

21. A lithographic apparatus comprising:

a substrate table having a substrate supporting area, the substrate table comprising:

a grating near a periphery of the table, the grating supported on a protrusion located on the top of the substrate table,

a releasable plate, separate from the grating, on a top surface of the substrate table, the plate located between the substrate supporting area and the grating and supported on a protrusion located on the top of the substrate table,

an outlet configured to apply a low pressure between the grating and a portion of the substrate table,

an outlet configured to apply a low pressure between the releasable plate and a portion of the substrate table, and

an extractor configured to drain liquid from a gap between the plate and the grating; and

a sensor configured to detect radiation diffracted and/or reflected by the grating so as to measure a relative position between the table and the sensor.

22. A lithographic apparatus comprising:

a movable table;

a reference frame;

a grating attached to the table or the reference frame;

a sensor attached to the other of the table and reference frame, the sensor configured to detect radiation diffracted and/or reflected by the grating so as to measure a relative position between the table and the reference frame;

an optically transparent plate configured to cover at least a part of a surface of the grating and/or sensor; and

a heater or Peltier device to thermally control the grating and/or sensor, wherein the heater or Peltier device is positioned between the plate and the grating and/or sensor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 22, 2011
From: LAURENT, THIBAULT SIMON MATHIEU; KUSTERS, GERARDUS ADRIANUS ANTONIUS MARIA; KNARREN, BASTIAAN ANDREAS WILHELMUS HUBERTUS; LAFARRE, RAYMOND WILHELMUS LOUIS; STEFFENS, KOEN; KANEKO, TAKESHI; VOOGD, ROBBERT JAN; CORCORAN, GREGORY MARTIN MASON; BLOKS, RUUD HENDRICUS MARTINUS JOHANNES; KUNNEN, JOHAN GERTRUDIS CORNELIS; BADIE, RAMIN
To: ASML NETHERLANDS B.V.
Reel/Frame 026784/0594 →
Continuity (4)
Provisional Application 61365268 · Jul 16, 2010
Provisional Application 61384663 · Sep 20, 2010
Provisional Application 61417097 · Nov 24, 2010
Related Publication 20120013865A1 · Jan 19, 2012