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Plate Stacker

Plate stackers automate the handling of microplates to increase efficiency and throughput in laboratory workflows. They enable fast plate changes during assays and automated processes.

Product

Plate Stacker

Plate stackers automate the handling of microplates to increase efficiency and throughput in laboratory workflows. They enable fast plate changes during assays and automated processes.

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Highlights

All Highlights

Guide and selection support

Plate stackers are used for the automated stacking and exchange of microplates, significantly reducing processing time in assay workflows for research and diagnostics. They are essential components in laboratory automation systems for cell culture, bioanalysis, or molecular biology.

Key selection criteria include compatibility with various microplate formats, integration options with other laboratory devices such as washers or plate readers, as well as speed and stack capacity. Reliability and operability are also important factors.

LabFinder offers a structured overview of plate stackers, enabling quick orientation for purchasers seeking suitable systems that fit existing workflows and automation solutions.

Application and Benefits

Plate stackers automate the process of stacking and exchanging microplates, supporting efficient execution of complex assays and automated laboratory workflows. They are frequently used in cell culture, molecular biology, and bioanalytical applications where high throughput and process standardization are required. By combining with washers, dispensers, plate readers, or imaging systems, they promote seamless laboratory automation.

Selection Criteria

Key selection criteria include compatibility with different microplate formats (e.g., 96- or 384-well plates), stack capacity, exchange speed, and integration capability within existing workflow systems. In addition, ease of operation, reliability, and serviceability are relevant. Adapting to specific requirements of laboratory operations and the interfaces to connected devices should also be taken into account.

Variants and Operating Principles

Plate stackers mainly differ regarding their design (e.g., vertical or horizontal stacking) and control methods (manually programmed or integrated into automated systems). They operate without their own measurement technology and mechanically control the stacking and exchange movements of the microplates. Variants are based on different levels of automation and options for integration into laboratory robotics systems.

Calibration and Maintenance

Regular maintenance is necessary for plate stackers to ensure mechanical precision and reliability of the stacking and exchange mechanisms. Calibration often involves adjusting positioning accuracy and ensuring compatibility with microplate formats. Maintenance intervals depend on usage intensity and manufacturer specifications.

Limitations of Application

Plate stackers are designed for defined microplate formats and dimensions. Deviations or custom-designed plates may restrict functionality. They are not intended for direct sample analysis or liquid handling but primarily support the physical exchange of microplates in workflows.

Search Terms and Related Concepts

Microplate stacker, microtiter plate stacker, plate exchanger, automatic plate storage device, plate handling device, automatic plate exchanger, plate handling system, Microplate Stacker, stacker for microplates, plate stacking device, Plate Stacker, Empileur de plaques.

Also known as

Automatic plate exchanger Automatic plate storage device Empileur de plaques Microplate stacker Microtiter plate stacker Plate exchanger Plate handling device Plate handling system Plate stacking device Stacker for microplates

Frequently asked questions

What is the main function of a plate stacker?

Plate stackers automate the stacking and exchange of microplates in laboratory workflows to increase throughput and efficiency.

Which types of microplates can be handled with plate stackers?

Most plate stackers are compatible with common microplate formats such as 96- and 384-well plates, though supported plate sizes may vary depending on the model.

What criteria should be considered when selecting a plate stacker?

Important criteria include compatibility with microplate formats, integration capability with other laboratory devices, stack capacity, exchange speed, as well as ease of operation and reliability.

How is maintenance performed for plate stackers?

Maintenance tasks include mechanical inspections, calibration of positioning, and regular checks to ensure smooth and precise operation.

What are the limitations in using plate stackers?

Plate stackers are suited only for standardized microplate formats and are not intended for direct liquid handling or analysis.

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