Waferpedia

J.A. Woollam

RC2

Precision Optics200mmJ.A. Woollam RC2 family
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The Woollam RC2 is a spectroscopic ellipsometer for measuring thin film thickness and refractive indices. The Woollam RC2 accepts wafers up to 200 mm and uses a Xenon Arc lamp (75 W) with a wavelength range of 210 nm to 2500 nm.[1]

RC2 — epfl.ch
Fig. 01RC2epfl.ch[1]

Wafer size

200mm

Performance

Automatic tilt alignment[1]

Optics

210 nm to 2500 nm[1]

What it is

The J.A. Woollam RC2 is a spectroscopic ellipsometer used to measure the thicknesses and refractive indices of thin films.[1]

It is an optical measurement tool for thin-film metrology at CMi.[1]

How it works

Spectroscopic ellipsometry uses polarized light after interaction with a surface to determine refractive indices and thicknesses of thin films. In this method, linearly polarized light is directed at a material at a certain angle of incidence, separated into parallel and perpendicular components, and the reflected light becomes elliptically polarized.[1]

The instrument estimates thickness from measurements of the ratio Rp/Rs, the reflection coefficients of the s- and p-components, with Ψ and Δ related to film thickness and refractive index. It does not directly measure refractive index or thickness; an algorithm is used to resolve those values from Ψ and Δ.[1]

The system includes a xenon arc lamp light source, a wavelength range from 210 nm to 2500 nm, an X-Y-Z motorized stage, motorized Z and autofocus, and an automatic tilt alignment routine.[1]

Where it fits in the process flow

The system accepts wafers up to 200 mm and chips with a surface for measurement larger than the cross section of the incident beam.[1]

It is used to study thin films in optical measurement workflows, including measurements on transparent or non-transparent films.[1]

Applications

The instrument is used for dielectric and semiconductor films such as silicon dioxide, silicon nitride, polysilicon, and amorphous silicon.[1]

It is also used for metallic films, with the note that the film generally needs to be very thin, and for organic layers such as carbon and photosensitive resists.[1]

  • Dielectric films such as silicon dioxide, silicon nitride, polysilicon, and amorphous silicon
  • Semiconductor films
  • Metallic films
  • Organic layers such as carbon and photosensitive resists

What do the numbers mean?

Wafer handling5

Substrate size
Up to 200 mm wafers; chips with a surface larger than the cross section of the incident beam[1]
Accurate?
Substrate size
Up to 200 mm wafers; chips with surface bigger than incident beam cross-section[1]
Accurate?
Substrate size
Up to 200 mm wafers, chips with surface larger than incident beam cross section[1]
Accurate?
Substrate size
Up to 200 mm wafers; chips with surface larger than beam cross-section[1]
Accurate?
Substrate size
Up to 200 mm wafers; chips with a measurement surface larger than the incident beam cross section[1]
Accurate?

Optics & imaging2

Wavelength range
210 nm to 2500 nm[1]
Accurate?
Wavelength range
210 nm to 2500 nm (UV - Visible - NIR)[1]
Accurate?

Performance4

Alignment
Automatic tilt alignment[1]
Accurate?
Stage
Motorized XY stage mapping, motorized Z and autofocus, automatic tilt alignment routine[1]
Accurate?
Stage
Motorized XY stage, motorized Z and autofocus, automatic tilt alignment[1]
Accurate?
Stage
X-Y-Z Motorized XY stage mapping; Motorized Z and Autofocus; Automatic Tilt Alignment Routine[1]
Accurate?

Control & software1

Software
CompleteEASE[1]
Accurate?

Configuration & options11

Instrument type
Spectroscopic ellipsometer[1]
Accurate?
Measured quantities
Thicknesses and refractive indices of thin films[1]
Accurate?
Light source
Xenon Arc lamp 75W[1]
Accurate?
Spot size without focusing probes
3 to 4 mm beam diameter[1]
Accurate?
Spot size with focusing probes
120 microns beam diameter[1]
Accurate?
Stage
Motorized XY stage mapping[1]
Accurate?
Vertical motion
Motorized Z and autofocus[1]
Accurate?
Equipment type
Spectroscopic ellipsometer[1]
Accurate?
Measurement capability
Measures thicknesses and refractive indices of thin films (transparent or not)[1]
Accurate?
Measureable material classes
Dielectric and semiconductor films (silicon dioxide, silicon nitride, polysilicon, amorphous silicon); metallic films; organic layers such as carbon and photosensitive resists[1]
Accurate?
Measurement principle
Measures the ratio of reflection coefficients Rp/Rs expressed as Ψ and Δ; refractive index (n) and thickness (t) are resolved by an algorithm from measured Ψ and Δ values[1]
Accurate?
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Not publicly documented

Field notes

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Frequently asked questions

What substrate sizes can the RC2 handle?

The RC2 accepts wafers up to 200 mm in diameter, as well as chips whose surface is larger than the incident beam cross‑section.[1]

What light source does the RC2 use?

The RC2 uses a 75 W Xenon arc lamp.[1]

What spot sizes can be achieved on the RC2?

Without focusing probes the beam diameter is 3 mm to 4 mm. With focusing probes the spot size is 120 micrometers.[1]

What types of films can the RC2 measure?

The RC2 can measure dielectric and semiconductor films (silicon dioxide, silicon nitride, polysilicon, amorphous silicon), metallic films (when very thin), and organic layers such as carbon and photosensitive resists.[1]

What are the key measurable parameters?

The RC2 determines thickness and refractive index of thin films.[1]

Not publicly documented

The following facts about the RC2 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 RC2 are on record.

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

  • No publicly documented variants, configuration options, or revision breakpoints of the RC2 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 RC2 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 RC2 are on record.

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

  • The process node or technology generation of the RC2 is not on record.

    Answerable by: an OEM datasheet or a fab qualification report

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Sources & citations

Sources (2)Every fact above is drawn from these public sources
  1. [1]epfl.ch — epfl.chepfl.ch
  2. [2]alpha-se-ellipsometer-1 - J.A. Woollam — jawoollam.com (May 12, 2026)web.archive.org
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Last updated Oct 8, 2026.

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