EP1598706B1

Lithographic appartus and device manufacturing method

Abstract

This record has no abstract on file.

EP1598706B1, drawing sheet 1
Sheet 1 of 8

Term

Term ended

Expired 18 May 2025, 1.4 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

14 claims: 7 independent, 7 dependent

  1. 1
    A lithographic apparatus comprising:- an illumination system (IL) arranged to condition a radiation beam (PB);- a support structure (MT) configured to hold a patterning device (MA), the patterning device (MA) being capable of imparting the radiation beam (PB) with a pattern in its cross-section, thus providing a patterned radiation beam;- a substrate table (WT) configured to hold a substrate (W);- a substrate table servo system (9) configured to adjust the position of the substrate table (WT);- a projection system (PL) arranged to project the patterned radiation beam onto a target portion of the substrate (W);- a seal member (4) configured to contain a liquid in a space between the projection system (PL) and the substrate (W);wherein - said substrate table (WT) is moveable relative to said projection system (PL) and said seal member (4) is fixed so as to be substantially stationary relative to the projection system (PL) in a plane perpendicular to the optical axis of the projection system (PL), characterized in that the lithographic apparatus further comprises - a seal member compensator (2) further comprising a focus calibration device (6), - the seal member compensator (2) being arranged to compensate for a force interaction between the seal member (4) and the substrate table (WT) and wherein the focus calibration device (6) is configured to calculate and transmit compensation data based on said force interaction to the substrate table servo system (9) to compensate for de-focus effects.
  2. 8
    A lithographic apparatus according to anyone of the preceding claims, wherein the force interaction comprises an external force.
  3. 9
    A lithographic apparatus according to anyone of the preceding claims, wherein the force interaction comprises an external position dependent force.
  4. 10
    A device manufacturing method comprising:- containing a liquid in a space between a projection system (PL) of a lithographic apparatus and a substrate table (WT) using a seal member (4);- projecting a patterned radiation beam through the liquid onto a target portion of the substrate (W) using the projection system (PL);and moving said substrate table (WT) relative to said seal member (4) using a substrate table servo system (9) in a plane perpendicular to the optical axis of the projection system (PL), characterized by further comprising: - compensating for a force interaction between the seal member (4) and the substrate table (WT) using a seal member compensator (2) that further comprises a focus calibration device (6), compensating for de-focus effects due to said force interaction, wherein the focus calibration device (6) is configured to calculate and transmit compensation data based on said force interaction to the substrate table servo system (9).
  5. 12
    A device manufacturing method according to anyone of claims 10 or 11, comprising determining the surface height profile, the surface tilt profile, or both of the substrate table (WT) as a function of a horizontal position of the seal member (4) relative to the substrate table (WT).
  6. 13
    A device manufacturing method according to anyone of claims 10 to 12, wherein the compensation data based on said force interaction is derived from a mechanical mathematical model of the substrate table (WT), which is arranged to forecast substrate table force disturbance as a function of a position dependent applied force.
  7. 14
    A device manufacturing method according to anyone of claims 10 to 12, wherein the compensation data based on said force interaction is derived from an analysis of an exposed focus test pattern, arranged to reveal the extent of focus error as a function of position.