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SEMICONDUCTOR INDUSTRY SOLUTIONS - SYFT TECHNOLOGIES

Brochures and specifications | 2017 | Syft TechnologiesInstrumentation
SIFT-MS
Industries
Semiconductor Analysis
Manufacturer
Syft Technologies

Summary

Significance of the Topic


Modern semiconductor fabrication demands rigorous control of trace contaminants to preserve device performance, yield and personnel safety. VOCs, SVOCs and inorganic gases at parts-per-trillion levels can degrade product quality, increase maintenance cycles and pose health and environmental hazards.

Study Objectives and Overview


This document illustrates the application of Selected Ion Flow Tube Mass Spectrometry (SIFT-MS) for comprehensive monitoring across key production stages. Target areas include cleanroom airborne molecular contaminants, raw material and finished product screening, worker exposure assessment and stack/fenceline emission surveillance.

Methodology


SIFT-MS employs soft chemical ionization with eight reagent ions (H3O+, NO+, O2+, O–, O2–, OH–, NO2–, NO3–) in a reaction flow tube. A quadrupole mass filter and particle multiplier detector quantify analyte ions in real time at sub-pptv concentrations without preconcentration or chromatographic separation.

Used Instrumentation


  • Microwave plasma-based reagent ion source generating eight selectable ions
  • Reaction flow tube for controlled ion–molecule reactions
  • Quadrupole mass filter and particle multiplier for high-sensitivity detection
  • Optional autosampler and multipoint sampling systems for continuous monitoring

Key Results and Discussion


  • Cleanroom and ambient air analysis detected trace VOCs, SVOCs and acid gases, enabling immediate interventions to prevent equipment corrosion and process drift.
  • High-throughput screening of solvents and components achieved rapid identification of out-of-spec materials, reducing test costs and defective inventory.
  • Worker exposure monitoring for hazardous substances (e.g., HCl, HF) delivered instant feedback across multiple sampling points, ensuring compliance with occupational limits.
  • Stack and fenceline surveillance tracked hydrocarbons, halocarbons and sulfides in real time, supporting early warning and regulatory adherence.

Benefits and Practical Applications


  • Real-time, full-spectrum gas analysis accelerates decision-making and minimizes product loss.
  • Wide dynamic and linear ranges allow a single instrument to address diverse monitoring tasks.
  • Solvent-free operation supports sustainable laboratory practices and lowers maintenance.
  • Push-button simplicity and robust performance enable seamless integration into existing QA/QC workflows.

Future Trends and Applications


Expanding reagent-ion libraries and advanced data analytics will enhance specificity and quantitation. Integration with Industry 4.0 and IoT platforms will enable remote, predictive monitoring. Emerging uses include real-time detection of novel contaminants and continuous process optimization in next-generation fabs.

Conclusion


SIFT-MS offers a versatile, high-throughput solution for trace-level gas analysis throughout semiconductor operations. Its speed, sensitivity and selectivity drive improvements in yield, safety and environmental stewardship.

Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.

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