Agilent Valve Kit G4731A - Instructions
Manuals | 2013 | Agilent TechnologiesInstrumentation
Preparative scale valve heads are essential components in high-pressure liquid chromatography systems, enabling precise flow control, rapid column switching, and efficient fraction collection for method development and process-scale separations.
This instruction set details the installation, configuration, and maintenance of the Agilent Valve Kit G4731A, an 8-position/9-port preparative valve head rated for operation up to 600 bar, designed for seamless integration into the Agilent 1290 Infinity series.
Proper installation requires careful removal of transport locks, precise alignment of drive pins, and manual torque application to preserve component integrity. Protecting the optical actuator from dust prevents misselection of valve ports. Use of bio-inert parts in sensitive workflows avoids sample degradation and instrument contamination. Clear labeling and adherence to module power-off intervals ensure reliable valve recognition via RFID.
Advancements may include enhanced RFID integration for automated component tracking, novel inert materials for expanded chemical compatibility, miniaturized valve designs for microfluidic platforms, and predictive maintenance algorithms to further reduce downtime.
Following the prescribed installation and handling procedures for the Agilent G4731A Valve Kit ensures optimal performance, maximizes system uptime, and maintains sample integrity in preparative liquid chromatography workflows.
No external literature cited.
HPLC
IndustriesManufacturerAgilent Technologies
Summary
Significance of the topic
Preparative scale valve heads are essential components in high-pressure liquid chromatography systems, enabling precise flow control, rapid column switching, and efficient fraction collection for method development and process-scale separations.
Objectives and Study Overview
This instruction set details the installation, configuration, and maintenance of the Agilent Valve Kit G4731A, an 8-position/9-port preparative valve head rated for operation up to 600 bar, designed for seamless integration into the Agilent 1290 Infinity series.
Methodology and Instrumentation
- Removal of the transportation lock and valve dummy to prepare the Thermostatted Column Compartment (TCC).
- Manual mounting of the valve head onto valve drives in the 1290 Infinity TCC, Flexible Cube, or Universal Valve Drive.
- Ensuring correct pin-and-groove alignment, hand-tightening of the spanner nut, and attachment of capillary fittings.
- Power-cycling the module to allow RFID-based valve recognition during initialization.
Instrumentation
- Agilent Valve Kit G4731A, part number 5067-4194 (8 pos/9 port, PEEK and stainless steel construction).
- Agilent 1290 Infinity Thermostatted Column Compartment (TCC), Flexible Cube, and Universal Valve Drive modules.
Main Findings and Discussion
Proper installation requires careful removal of transport locks, precise alignment of drive pins, and manual torque application to preserve component integrity. Protecting the optical actuator from dust prevents misselection of valve ports. Use of bio-inert parts in sensitive workflows avoids sample degradation and instrument contamination. Clear labeling and adherence to module power-off intervals ensure reliable valve recognition via RFID.
Benefits and Practical Applications
- Rapid interchangeability of valve heads supports flexible method development.
- High-pressure tolerance up to 600 bar accommodates preparative separations.
- Bio-inert configurations enable analysis of biomolecules without metal-induced degradation.
Future Trends and Potential Applications
Advancements may include enhanced RFID integration for automated component tracking, novel inert materials for expanded chemical compatibility, miniaturized valve designs for microfluidic platforms, and predictive maintenance algorithms to further reduce downtime.
Conclusion
Following the prescribed installation and handling procedures for the Agilent G4731A Valve Kit ensures optimal performance, maximizes system uptime, and maintains sample integrity in preparative liquid chromatography workflows.
References
No external literature cited.
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