SPTS
The SPTS Rapier is an optimized Deep Reactive Ion Etching (DRIE) system for silicon and silicon-on-insulator wafers. The SPTS Rapier features a dual high-density Inductively Coupled Plasma source and a patented dual plasma source module with two RF-independent sources. The SPTS Rapier supports wafer biasing in radio or low frequency modes with pulsing capability.[1]

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Wafer size
Silicon and Silicon on Insulator (SOI) wafers
Power
Up to 3 kW each (two sources)[1]
Vacuum
25 wafers (single vacuum cassette loader)[1]
Gas delivery
High speed digital mass flow controllers[1]
The SPTS Rapier is a deep reactive ion etching system for silicon and silicon on insulator wafers. The SPTS Rapier is a dry etch tool used for deep silicon pattern transfer in microfabrication.[1][3][4][5]
The SPTS Rapier uses a dual high density inductively coupled plasma source, electrostatic clamping, and radio frequency or low frequency wafer biasing. The tool includes dual independent gas inlets and separate center and edge gas showers for control of plasma distribution and uniformity.[1][4][5]
The SPTS Rapier supports Bosch switched processing and non-switched etching for tapered profiles, wafer thinning, and via reveal. The tool also uses endpoint detection and process control functions for controlled etch progression.[5]
The SPTS Rapier is used for deep silicon structures in microelectromechanical systems, advanced packaging, power semiconductor work, and radio frequency integrated circuit fabrication. The tool is also used for micro pillars, nano pillars, micro trenches, nano trenches, via etch, through wafer via etch, and wafer thinning.[5][4]
The SPTS Rapier is used on silicon and silicon on insulator wafers, and it supports process families for deep reactive ion etching, high aspect ratio features, optical etch variants, isotropic silicon release, oxide reactive ion etching, anti reflective coating opening, wafer thinning, and plasma dicing related work.[1]
Documented failure modes, common issues, and field considerations.
Site utility requirements, footprint, and infrastructure needed to install and operate this tool. Sourced from public records.
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Each of the two RF sources can deliver up to 3 kW.[1]
Yes, it supports nano-pulsed processes for features as small as 330 nm wide.[1]
For trenches deeper than 200 micrometers, the etch rate is approximately 800 nm per loop.[1]
The following facts about the Rapier 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 Rapier are on record.
Answerable by: OEM historical records or a trade-press announcement
No publicly documented variants, configuration options, or revision breakpoints of the Rapier 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 Rapier are not on record.
Answerable by: an engineer who operated it or OEM installation records
The process node or technology generation of the Rapier is not on record.
Answerable by: an OEM datasheet or a fab qualification report
No publicly documented compatible parts, consumables, or accessories for the Rapier are on record.
Answerable by: an OEM parts catalog or a service engineer
Last updated Oct 8, 2026.
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