Biotage TurboVap® 96 Dual - Evaporation Reinvented
Brochures and specifications | 2022 | BiotageInstrumentation
The evaporation of solvent from microplate formats is a fundamental step in sample preparation workflows across pharmaceuticals, environmental testing and food safety. Efficient and reproducible solvent removal directly impacts throughput, data reliability and cost of analysis. Innovations that reduce gas consumption, accelerate processing times and maintain consistency are essential for high-throughput laboratories and GLP environments.
This document introduces the TurboVap 96 Dual evaporator, designed to combine dual-plate functionality with intelligent controls. The primary goals are to demonstrate how top-and-bottom heating, programmable plate lifting, and gas-monitoring features can improve evaporation efficiency, decrease operational costs and integrate seamlessly into varied laboratory workflows.
The TurboVap 96 Dual employs two independent evaporation channels within a compact footprint (34 x 36 cm). Key instrumentation elements include:
The TurboVap 96 Dual combines two single-plate evaporators into one unit, enabling three modes of operation: single-plate, dual-plate or simultaneous independent runs. Its intelligent software reduces training requirements, while real-time gas and energy monitoring allows resource planning and cost control. The small footprint makes it suitable for space-constrained labs. The Smart Door Technology pauses and resumes runs automatically, safeguarding samples during interruptions.
By delivering rapid and consistent evaporation, the system increases laboratory throughput and sample reproducibility. Reduced nitrogen consumption and idle-heating capability lower operating expenses. Flexible plate support and GLP-compliant service packages (installation, maintenance, IQ/OQ qualification) make it attractive for contract research, QC/QA and academic facilities.
Emerging laboratory automation and digital integration trends point to future evaporators with remote monitoring, IoT connectivity and LIMS compatibility. Further advances in energy recovery and smart gas regulation will enhance sustainability. Expansion into biomolecule workflows and coupling with downstream analytical platforms (e.g., LC-MS, ELISA) will broaden application scope.
The TurboVap 96 Dual represents a significant step in plate-based evaporation technology. Its combination of dual-mode operation, advanced heating strategies and resource-aware controls addresses modern laboratory demands for speed, consistency and cost-efficiency. By supporting multiple plate formats and offering comprehensive service options, it offers a versatile solution for diverse analytical workflows.
Sample Preparation
IndustriesManufacturerBiotage
Summary
Importance of the Topic
The evaporation of solvent from microplate formats is a fundamental step in sample preparation workflows across pharmaceuticals, environmental testing and food safety. Efficient and reproducible solvent removal directly impacts throughput, data reliability and cost of analysis. Innovations that reduce gas consumption, accelerate processing times and maintain consistency are essential for high-throughput laboratories and GLP environments.
Objectives and Overview
This document introduces the TurboVap 96 Dual evaporator, designed to combine dual-plate functionality with intelligent controls. The primary goals are to demonstrate how top-and-bottom heating, programmable plate lifting, and gas-monitoring features can improve evaporation efficiency, decrease operational costs and integrate seamlessly into varied laboratory workflows.
Methodology and Used Instrumentation
The TurboVap 96 Dual employs two independent evaporation channels within a compact footprint (34 x 36 cm). Key instrumentation elements include:
- Pre-heated nitrogen delivery from above and adjustable convection heating from below for uniform solvent removal.
- Programmable flow ramping and step- or gradient-based plate lifting to optimize evaporation profiles.
- Integrated touch-screen interface offering Manual, Time or Method modes for each channel.
- Built-in fume exhaust system with removable shield for bench-top or hood operation.
- Support for 96-, 48- or 24-well plate formats, with adaptable nozzle configurations.
Main Features and Discussion
The TurboVap 96 Dual combines two single-plate evaporators into one unit, enabling three modes of operation: single-plate, dual-plate or simultaneous independent runs. Its intelligent software reduces training requirements, while real-time gas and energy monitoring allows resource planning and cost control. The small footprint makes it suitable for space-constrained labs. The Smart Door Technology pauses and resumes runs automatically, safeguarding samples during interruptions.
Benefits and Practical Applications
By delivering rapid and consistent evaporation, the system increases laboratory throughput and sample reproducibility. Reduced nitrogen consumption and idle-heating capability lower operating expenses. Flexible plate support and GLP-compliant service packages (installation, maintenance, IQ/OQ qualification) make it attractive for contract research, QC/QA and academic facilities.
Future Trends and Potential Applications
Emerging laboratory automation and digital integration trends point to future evaporators with remote monitoring, IoT connectivity and LIMS compatibility. Further advances in energy recovery and smart gas regulation will enhance sustainability. Expansion into biomolecule workflows and coupling with downstream analytical platforms (e.g., LC-MS, ELISA) will broaden application scope.
Conclusion
The TurboVap 96 Dual represents a significant step in plate-based evaporation technology. Its combination of dual-mode operation, advanced heating strategies and resource-aware controls addresses modern laboratory demands for speed, consistency and cost-efficiency. By supporting multiple plate formats and offering comprehensive service options, it offers a versatile solution for diverse analytical workflows.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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