SCIEX 6500+ Series of Instruments - Site Planning Guide
Manuals | 2019 | SCIEXInstrumentation
The successful deployment and operation of advanced LC-MS/MS platforms relies on meticulous site planning and clear definition of responsibilities. Proper preparation avoids installation delays, protects expensive instrumentation, and ensures compliance with safety, electrical and environmental regulations. This guide underlines why rigorous planning is essential for analytical laboratories implementing SCIEX Triple Quad 6500+ and QTRAP 6500+ systems.
This site planning document aims to:
This guide systematically surveys each infrastructure domain and prescribes measurement, installation and compliance criteria. Key instrumentation and components addressed include:
By applying the prescribed checklists, customers can confirm:
Following this guide allows laboratories to:
Emerging directions that may enhance site planning and system operation include:
Comprehensive site planning underpins the reliable installation and long-term operation of high-performance mass spectrometry systems. By clearly assigning tasks, verifying infrastructure specifications, and preparing personnel and equipment in advance, laboratories can accelerate time to data, maintain compliance, and maximize uptime.
LC/MS, LC/MS/MS, LC/QQQ, LC/QTRAP
IndustriesManufacturerSCIEX
Summary
Importance of the Topic
The successful deployment and operation of advanced LC-MS/MS platforms relies on meticulous site planning and clear definition of responsibilities. Proper preparation avoids installation delays, protects expensive instrumentation, and ensures compliance with safety, electrical and environmental regulations. This guide underlines why rigorous planning is essential for analytical laboratories implementing SCIEX Triple Quad 6500+ and QTRAP 6500+ systems.
Study Objectives and Overview
This site planning document aims to:
- Define roles and responsibilities for customers and field service engineers (FSEs).
- Specify laboratory layout, electrical, gas, ventilation, IT and environmental requirements.
- Provide detailed checklists to verify readiness prior to installation.
- Facilitate hands-on customer familiarization and training preparation.
Methodology and Instrumentation
This guide systematically surveys each infrastructure domain and prescribes measurement, installation and compliance criteria. Key instrumentation and components addressed include:
- SCIEX Triple Quad 6500+ or QTRAP 6500+ mass spectrometer.
- Roughing pumps (each requiring dedicated outlets).
- Acquisition computer, monitor, printer and software (Analyst® software and optional SCIEX packages).
- Optional liquid chromatography systems (ExionLC™, Agilent, Shimadzu, nanoLC).
- Gas supplies (zero-grade air, UHP nitrogen) and recommended Swagelok or quick-connect fittings.
- House bench or moveable bench rated for equipment weight and service clearances.
- Optional UPS or power conditioner sized for 5 000 VA online double-conversion protection.
Main Results and Discussion
By applying the prescribed checklists, customers can confirm:
- Laboratory bench dimensions and clearances meet service access requirements (1 m around fixed, 0.3 m around mobile benches).
- Electrical branch circuits are correctly rated (15 A, 200–240 VAC for instruments and pumps; 120 VAC for computer).
- Gas pressures and flow rates satisfy source, curtain and collision gas specifications (55–105 psi; up to 26 L/min for DMS).
- Ventilation/exhaust capacity (≥10 air exchanges/hour, 283 L/min negative flow).
- IT readiness: LAN connectivity, network credentials, availability of SCIEX software installers or DVDs.
- Environmental controls: 15–30 °C ambient, 20–80 % relative humidity, noise and vibration thresholds.
Benefits and Practical Applications
Following this guide allows laboratories to:
- Reduce installation downtime and unexpected service delays.
- Ensure operator safety and regulatory compliance (electrical, biohazard, chemical).
- Facilitate efficient customer training and system qualification.
- Optimize instrument performance by controlling environmental and utility parameters.
Future Trends and Applications
Emerging directions that may enhance site planning and system operation include:
- Integration of cloud-based remote monitoring and predictive maintenance via StatusScope® services.
- Increased adoption of on-bench gas generators and modular UPS solutions to streamline utilities.
- Advances in differential mobility separation (SelexION®) demanding higher gas purity and flow control.
- Automation of pre-installation self‐assessment tools and real-time utility validation sensors.
Conclusion
Comprehensive site planning underpins the reliable installation and long-term operation of high-performance mass spectrometry systems. By clearly assigning tasks, verifying infrastructure specifications, and preparing personnel and equipment in advance, laboratories can accelerate time to data, maintain compliance, and maximize uptime.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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