Agilent 6400 Series LC/TQ - Site Preparation Checklist
Manuals | 2020 | Agilent TechnologiesInstrumentation
Ensuring correct site preparation for the Agilent 6400 Series LC/TQ is essential to maintain instrument reliability, optimize performance, and extend operational lifetime. Adequate space, environmental control, power stability, and supply infrastructure form the foundation of successful installations in analytical laboratories.
This checklist aims to guide users through pre-installation requirements for the Agilent 6400 Series LC/TQ, including bench space allocation, environmental conditions, power provisions, gas supplies, and exhaust venting. It consolidates all critical parameters to minimize installation delays and maximize instrument readiness.
The document addresses the following components:
Space and Installation Clearance:
Comprehensive site preparation reduces installation time, prevents damage from environmental or electrical issues, and supports consistent analytical performance. Laboratories benefit from predictable throughput, maintenance efficiency, and adherence to safety regulations.
Adhering to the Agilent 6400 Series LC/TQ site preparation checklist ensures optimal instrument performance, safety, and longevity. Early planning of space, utilities, and supplies is critical to maximize return on investment and maintain uninterrupted analytical operations.
No additional references provided.
LC/MS, LC/MS/MS, LC/QQQ
IndustriesManufacturerAgilent Technologies
Summary
Importance of the Topic
Ensuring correct site preparation for the Agilent 6400 Series LC/TQ is essential to maintain instrument reliability, optimize performance, and extend operational lifetime. Adequate space, environmental control, power stability, and supply infrastructure form the foundation of successful installations in analytical laboratories.
Objectives and Overview of the Document
This checklist aims to guide users through pre-installation requirements for the Agilent 6400 Series LC/TQ, including bench space allocation, environmental conditions, power provisions, gas supplies, and exhaust venting. It consolidates all critical parameters to minimize installation delays and maximize instrument readiness.
Methodology and Instrumentation
The document addresses the following components:
- LC/TQ systems: G6470A and G6495C models
- Foreline pumps: MS40+ and MS120
- Optional sources: Agilent Jet Stream, APCI, APPI, MMI, ESI, NSI
Main Results and Discussion
Space and Installation Clearance:
- Bench height, weight capacity, and depth must accommodate total instrument dimensions with sufficient lateral and vertical clearance for service access.
- Structural stability and vibration control are mandatory.
- Operating temperature between 15–35 °C with less than ±3 °C fluctuation.
- Relative humidity below 85 % at maximum temperature.
- Non-condensing, non-corrosive indoor atmosphere at altitudes up to 3,700 m.
- 200–240 VAC, 50/60 Hz single-phase or Wye configuration.
- Isolated noise-free earth ground with Total Harmonic Distortion below 3 %.
- Sufficient dedicated outlets for instrument and computer systems.
- Main nitrogen: ≥ 99.5 % purity, hydrocarbon-free, 5.5–6.8 bar, flow ≥ 30 L/min (G6470A) or ≥ 50 L/min (G6495C).
- Collision cell nitrogen: ≥ 99.999 % purity, 1–2 bar, minimal flow requirements.
- Separate negative-pressure exhaust for foreline pumps and drain bottle to manage solvent and pump oil fumes.
Practical Benefits and Application
Comprehensive site preparation reduces installation time, prevents damage from environmental or electrical issues, and supports consistent analytical performance. Laboratories benefit from predictable throughput, maintenance efficiency, and adherence to safety regulations.
Future Trends and Potential Uses
- Integration of smart site assessment tools for automated readiness checks.
- Remote diagnostics leveraging IoT to monitor environmental and power conditions.
- Streamlined digital documentation to support global compliance and rapid deployments.
Conclusion
Adhering to the Agilent 6400 Series LC/TQ site preparation checklist ensures optimal instrument performance, safety, and longevity. Early planning of space, utilities, and supplies is critical to maximize return on investment and maintain uninterrupted analytical operations.
References
No additional references provided.
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