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TurboVap Release Notes

Others | 2020 | BiotageInstrumentation
Sample Preparation
Industries
Manufacturer
Biotage

Summary

Significance of Topic


Sample evaporation is a critical step in many analytical workflows, affecting throughput, reproducibility, and data quality. Advancements in evaporation control and automation directly impact laboratory efficiency and result reliability across fields such as environmental analysis, pharmaceutical development, and industrial quality control.

Goals and Overview


The TurboVap 1.2.0 release aims to enhance user flexibility, improve reliability of end-point detection, and extend compatibility with new sample racks. This update builds on the previous 1.1.0 version by introducing continuous end-point evaporation, configurable sleep behavior, and support for a high-density P+ manifold.

Used Instrumentation


The system comprises the Biotage TurboVap evaporation platform running software v1.2.0. Key hardware components include:
  • TurboVap P+ manifold with 48 gas nozzles
  • Racks accommodating 16 × 100 mm tubes or 12–13 mm OD tubes of 75–100 mm length
  • Integrated solvent bath with temperature control up to 55 °C
  • End-point detection sensors

Main Results and Discussion


New and improved features:
  • Continuous End-Point Evaporation – Allows individual rack positions to restart end-point monitoring after tube replacement without halting the overall run, boosting throughput.
  • Lid Sleep Option – Users can disable the automatic 90-minute lid-open sleep mode, reducing interruptions for extended protocols.
  • P+ Manifold Support – Compatibility with a 48-nozzle manifold increases sample capacity; racks can host 16 × 100 mm or 12–13 mm OD × 75–100 mm tubes with minimal hardware adjustments.
  • Error Handling and Calibration – Enhanced data storage error alerts and refined heater temperature sensor calibration improve system reliability and accuracy.

Benefits and Practical Applications


The 1.2.0 features drive significant advantages:
  • Greater Flexibility – Continuous end-point control reduces downtime and manual interventions.
  • Higher Throughput – Expanded rack compatibility and manifold capacity support larger sample batches.
  • Improved Reliability – Better error reporting and sensor calibration lower the risk of process failures.
  • Customizable Operation – Optional sleep mode and easy rack modifications adapt to diverse laboratory workflows.

Future Trends and Applications


Potential developments in sample evaporation include:
  • Integration with laboratory information management systems (LIMS) for seamless data tracking.
  • Advanced sensor arrays and AI-driven end-point prediction to further reduce manual oversight.
  • Remote monitoring and control via IoT platforms to support distributed laboratory environments.
  • Expansion of manifold designs for specialized tube formats and microplates.

Conclusion


TurboVap 1.2.0 delivers meaningful enhancements in automation, capacity, and reliability. Continuous end-point evaporation and P+ manifold support address key laboratory challenges by minimizing interruptions and maximizing sample throughput. Improved error handling and calibration further ensure consistent performance, making this release a valuable upgrade for analysts seeking efficiency and reproducibility.

References


No external references were cited in the release notes.

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

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