Explore the cutting-edge capabilities of the Eppendorf EpMotion system, equipped with an integrated TMX module for versatile sample processing. This module allows for shaking, heating, or cooling of samples, with the ability to load and unload using the gripper. Pipetting to the mixer is seamless before and after mixing steps, and fully software-controlled operation enables pipetting on other worktable positions concurrently with mixing. 

Utilizing Eppendorf's innovative 2DMix-Control technology, TMX mixing ensures optimal stirring results by combining orbital shaking with precise speed and mixing radius. Say goodbye to additional centrifugation steps, as the 2DMix-Control prevents droplets from collecting on the side of tubes or plate wells, streamlining your workflow for maximum efficiency.

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Question & Answers For:

Eppendorf EpMotion

Past Questions, Helpful Answers.

q.

What is the Eppendorf EpMotion system designed for?

a.

The Eppendorf EpMotion system is designed for automated liquid handling and sample processing. It is equipped with an integrated TMX module for advanced shaking, heating, and cooling of samples, and can efficiently handle pipetting tasks during sample preparation or mixing procedures.

q.

How does the TMX module enhance sample processing?

a.

The TMX module enhances sample processing by enabling sample shaking, heating, and cooling, all while allowing for smooth and simultaneous pipetting. This integration reduces the need for additional steps like centrifugation, improving overall workflow efficiency.

q.

What is 2DMix-Control technology, and how does it work?

a.

2DMix-Control technology is an innovative feature in the Eppendorf EpMotion system that combines orbital shaking with precise control over speed and mixing radius. This ensures optimal mixing and prevents droplets from collecting on tube sides or plate wells, eliminating the need for additional centrifugation.

q.

Can I perform pipetting and mixing at the same time with the Eppendorf EpMotion?

a.

Yes, the system's fully software-controlled operation allows pipetting to be performed on other worktable positions concurrently with mixing, enhancing overall efficiency during complex workflows.

q.

What are the benefits of using the Eppendorf EpMotion system?

a.

The main benefits include reduced manual intervention, improved accuracy and reproducibility in sample processing, and time-saving by automating complex tasks such as mixing, heating, and cooling. The system also minimizes the need for additional centrifugation steps, streamlining the process.

q.

Is the Eppendorf EpMotion system suitable for high-throughput labs?

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Yes, the Eppendorf EpMotion system is ideal for high-throughput laboratories that require fast, accurate, and automated liquid handling for a wide range of sample types. Its versatile capabilities are designed to handle complex workflows efficiently.

q.

How does the gripper function in the EpMotion system?

a.

The gripper in the Eppendorf EpMotion system is used to load and unload samples, ensuring precise handling and integration of mixing steps without disrupting the workflow.

q.

Can the Eppendorf EpMotion be integrated into existing laboratory setups?

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Yes, the Eppendorf EpMotion system is designed to integrate seamlessly into existing laboratory setups. Its flexible configuration options allow it to adapt to various work environments and processes, making it an easy addition to automated workflows.

q.

Does the system allow for flexible sample processing?

a.

Yes, the Eppendorf EpMotion provides flexible sample processing through its ability to shake, heat, and cool samples, and its advanced TMX module ensures precise control over these conditions. The system's versatility allows for efficient processing of various sample types.

q.

How does the Eppendorf EpMotion improve efficiency compared to traditional methods?

a.

The EpMotion system automates multiple steps in the sample processing workflow, such as pipetting, shaking, heating, and cooling. This reduces human error, minimizes the need for manual intervention, and accelerates the overall process, leading to significant efficiency gains in labs.