Waferpedia

ASML

Twinscan XT 1250 D

Twinscan XT 1250 D — Inventory photo
Fig. 01Twinscan XT 1250 DInventory photo[1]

Wafer size

Continuous clampable wafer table for dry WSs: Absent

Performance

Disabled[1]

Optics

Heidenhain Encoders[1]

What it is

The ASML Twinscan XT 1250 D is equipped with a Cymer XLA165 light source and a dual-chuck wafer stage configured for dry processing. The system uses a Mark I 300 FOUP carrier handler and a reticle stage with Heidenhain encoders for position measurement.[1]

How it works

The machine uses a dual-wafer-stage system that enables one wafer to be aligned and measured while another is being exposed, reducing overhead. The system's wafer stage is of Type 2 configuration and uses stainless steel balance masses, and the reticle stage uses a glued leafspring chuck with pneumatic gripping.[1]

The scanner incorporates an integrated reticle inspection system (IRIS) for reticle quality checking and an integrated reticle library (IRL) for storage. The system is configured with a dry wafer stage and does not support immersion hoods.[1]

Where it fits in the process flow

The scanner is equipped with wafer tracks (wafer handling robots) and a double-fold-arm wafer-handling robot with a 12 mm Z stroke for wafer transfer. The system also has docking plates and is configured for reticle exchange using the Retex option.[1]

What do the numbers mean?

Wafer handling22

Active wafer release for dry WSs
FALSE[1]
Accurate?
Wafer size
Continuous clampable wafer table for dry WSs: Absent[1]
Accurate?
Wafer size
Type of wafer table on chuck 1 & 2 for immersion machines: Zerodur version 1[1]
Accurate?
Wafer Stage Configurations
Wafer Stage type 2 configuration[1]
Accurate?
Wafer Carrier Locations
Right[1]
Accurate?
Wafers per Carriers
25[1]
Accurate?
Wafer Mark Sensors
Absent[1]
Accurate?
Wafer Id Readers
Absent[1]
Accurate?
Wafer Tracks
Present[1]
Accurate?
Wafer Stage Types
Dual Chuck[1]
Accurate?
Wafer Stress Relaxations
FALSE[1]
Accurate?
WH Robot Power Amplifiers
CPM 20[1]
Accurate?
Wafer size
Wafer Stage Fast Stiff X Move Electronicss: Present[1]
Accurate?
Wafer stage type
Dual Chuck[1]
Accurate?
Wafer configuration
Dry[1]
Accurate?
Carrier handler type
Mark I 300 Foup[1]
Accurate?
Wafer handling load & unload robot type
Double Fold Arm, 12 mm Z stroke[1]
Accurate?
Reticle stage chuck type
Glued Leafspring, TYPE_2: Glued LS, Pneum. GC, IFM / ENC[1]
Accurate?
Wafers per carrier
25[1]
Accurate?
Wafer stage balance mass
Stainless Steel[1]
Accurate?
Wafer size
Wafer Stage Mirror Block Down Electronicss: Present[1]
Accurate?
Wafer Handling Pneumaticss
Dedicated[1]
Accurate?

Optics & imaging5

Safeguard to prevent loading of reticles with too wide or mispositioned pellicles: Disabled[1]
Accurate?
Reticle stage measurement system on scans
Heidenhain Encoders[1]
Accurate?
Integrated reticle inspection system
PPD1 with IRIS1 functionality[1]
Accurate?
Reticle size
6 inch[1]
Accurate?
Interferometer axis version at exposures
3 plus 1 axis[1]
Accurate?

Performance1

Universal Prealignments
Disabled[1]
Accurate?

Configuration & options7

with Cymer XLA165[1]
Accurate?
Track Pre-warning signal (APR)s
APR enabled[1]
Accurate?
Avoid Track INPUT/OUTPUT conflicts, Raise AS after APRs: Avoid Track[1]
Accurate?
INPUT/OUTPUT conflicts enabled[1]
Accurate?
Lower Docking Plates
Present[1]
Accurate?
WS Balance Masss
Stainless Steel[1]
Accurate?
Light source
Cymer XLA165[1]
Accurate?
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Not publicly documented

Field notes

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Frequently asked questions

What type of wafer stage does the ASML Twinscan XT 1250 D use?

The ASML Twinscan XT 1250 D uses a dual-chuck wafer stage configured as Wafer Stage type 2.[1]

Does the ASML Twinscan XT 1250 D support immersion lithography?

No, the ASML Twinscan XT 1250 D is configured for dry processing and does not support immersion hoods.[1]

What type of reticle stage measurement system does it use?

The reticle stage uses Heidenhain encoders for position measurement.[1]

How many wafers can each carrier hold?

Each carrier can hold 25 wafers.[1]

Not publicly documented

The following facts about the Twinscan XT 1250 D are absent from this record as of this revision. First-hand knowledge or a citation closes a gap; every submission is reviewed before publication.

  • No publicly documented production dates or lifecycle milestones (introduction, end of production, EOL) for the Twinscan XT 1250 D are on record.

    Answerable by: OEM historical records or a trade-press announcement

  • No publicly documented variants, configuration options, or revision breakpoints of the Twinscan XT 1250 D are on record.

    Answerable by: an OEM product catalog or an engineer who ordered or specified the tool

  • The control-system platform and OS era of the Twinscan XT 1250 D are not on record.

    Answerable by: an engineer who operated it or OEM installation records

  • No publicly documented failure modes or field errata for the Twinscan XT 1250 D are on record.

    Answerable by: a field service engineer, process engineer, or maintenance technician

  • The process node or technology generation of the Twinscan XT 1250 D is not on record.

    Answerable by: an OEM datasheet or a fab qualification report

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Sources & citations

Sources (1)Every fact above is drawn from these public sources
  1. [1]Inventory photo
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Last updated Sep 22, 2026.

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