Oxford Instruments
Oxford Instruments Plasmalab 100 is a PECVD system. Oxford Instruments Plasmalab 100 is configured with a single automated wafer transfer load lock. Oxford Instruments Plasmalab 100 supports φ2', φ4', φ6', and φ8' single wafer auto transfer.[1][2]

Plate 01Oxford Plasmalab 100 ICP (ID# 3894)
Plate 02Oxford Plasmalab 100 ICP Etcher (ID# 3811)
Plate 03Oxford Plasmalab 100 ICP Etcher (ID# 3811)
Plate 04Video 1 - Oxford Plasmalab 100 ICP System (ID# 3589)
Wafer size
φ2’, φ4’, φ6’, φ8’ single wafer auto transfer
Power
208 VAC, 3 Phase[1]
Vacuum
Edwards QDP 40[1]
Gas delivery
Gas Box:[1]
The Oxford Instruments Plasmalab 100 is a plasma-based semiconductor process tool used for thin-film deposition and related plasma processing.
| Designation | Generation | Vintage | Changes | Source |
|---|---|---|---|---|
| System 100 PECVD / FlexAL ALD (thermal/plasma) cluster system | — | — | Described as a cluster comprised of a FlexAL ALD system and a PlasmaLab 100 PECVD system sharing a common loadlock. | uwaterloo.ca[7] |
| Plasmalab 100 PECVD | — | — | Configured for plasma-enhanced chemical vapor deposition | Equipment inventory listing[1] |
| Plasmalab 100 ICP Dielectric Etcher | — | — | Configured for fluorine-based dielectric etching with ICP | cnfusers.cornell.edu[2] |
| Plasmalab 100 ICP (Compound III-V) | — | — | Configured for compound III-V material etching | nanolab.berkeley.edu[8] |
Site utility requirements, footprint, and infrastructure needed to install and operate this tool. Sourced from public records.
Tracked replaceable assemblies, spares criticality, and availability status across all major subsystems. Each entry cites its source.
Publicly hosted documents referencing this tool, linked at their original location. Hosted by the linked institutions — availability may change.
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It is a deposition system, meaning it belongs to the class of equipment used to create thin films on substrates.
It adds a material layer to a surface under controlled conditions so that the resulting film has the intended composition and properties.
It is used whenever a new layer must be formed before later patterning, treatment, or assembly steps.
Such systems are used for a range of functional films, including insulating, conductive, protective, and other engineered layers.
The following facts about the Plasmalab 100 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 Plasmalab 100 are on record.
Answerable by: OEM historical records or a trade-press announcement
The control-system platform and OS era of the Plasmalab 100 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 Plasmalab 100 are on record.
Answerable by: a field service engineer, process engineer, or maintenance technician
The process node or technology generation of the Plasmalab 100 is not on record.
Answerable by: an OEM datasheet or a fab qualification report
The operating principle of the Plasmalab 100 is not documented in this record.
Answerable by: an equipment physicist or OEM application engineer
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Last updated Oct 10, 2026.
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