Automatisering af laboratoriet

Løsninger til automatisering af laboratorier

Vores portefølje af systemer til laboratorieautomatisering og automatiserede instrumenter kan bidrag...

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1. What is the ABB and METTLER TOLEDO collaboration about?

The collaboration between ABB and METTLER TOLEDO focuses on integrating advanced robotic automation with precision measurement technologies to enhance laboratory efficiency, accuracy, and innovation. This partnership aims to provide laboratories with proven, scalable solutions that streamline workflows, improve productivity, and support compliance with regulatory standards.

2. How does automation improve laboratory efficiency?

Automation reduces manual intervention by handling repetitive tasks, which minimizes human error and accelerates processes. By automating routine workflows, laboratories can use ABB’s robots, cobots, and METTLER TOLEDO's instruments. This automation leads to higher throughput and improved accuracy. It also allows for better resource utilization. As a result, scientists can focus on critical research and value-added activities.

3. What types of tasks can ABB robots perform in laboratories?

ABB offers a wide range of robotic hardware and software. This portfolio allows automation of many tasks. These tasks include sample preparation, liquid handling, machine tending, and transporting material with Autonomous Mobile Robots.

ABB robots and cobots use future-proof OmniCore controllers. These controllers enable automation for almost any application in the lab. They provide robust motion control to ensure consistently accurate movement. ABB provides more than just robots. They offer a wide range of software to simulate, refine, and execute automation. They also provide top-tier after-sales support and service. This support ensures the systems work smoothly.

4. How do METTLER TOLEDO instruments support quality and compliance?

METTLER TOLEDO instruments are designed with built-in quality assurance features and traceability. They provide accurate measurements and generate comprehensive audit trails that support compliance with industry regulations, such as 21 CFR Part 11, ensuring data integrity and reliability.

5. What types of METTLER TOLEDO instruments can be automated?

METTLER TOLEDO offers a wide range of instruments that can be automated to enhance laboratory efficiency and accuracy. These include:

  • Balances: precise weighing of all samples sizes, including fully automated powder and liquid dispensing solutions
  • Electronic pipettes: liquid transfer, dilutions, and sample preparation
  • Titrators: Potentiometric sample preparation and instrument tending § Karl Fischer Titrators: Sample preparation and autosampler tending (oven method)
  • pH, Conductivity, and Ion-Selective Meters with a wide variety of sensors.
  • Density and refractive index meters
  • UVVIS Spectrophotometers
  • Multparameter systems: Combine the instruments into one efficient system. Use a single workflow and unified data reporting.

6. Can ABB and METTLER TOLEDO solutions be customized for specific laboratory needs?

Yes. Both ABB and METTLER TOLEDO offer customizable automation solutions tailored to meet the unique requirements of individual laboratories. This flexibility allows facilities to integrate automation seamlessly into their existing workflows and infrastructure.

7. What is the expected impact of these technologies on the future of laboratory work?

The integration of robotics and advanced measurement technologies is shaping the future of laboratory work by enabling faster, more accurate results and fostering innovation. As laboratories adopt these solutions, they can anticipate enhanced collaboration, improved data analysis, and a significant boost in overall efficiency.

8. How can laboratories get started with automation?

Laboratories interested in automation should begin by assessing their current workflows to identify repetitive tasks suitable for automation. Next, they can reach out to ABB or METTLER TOLEDO for consultation and to explore tailored automation solutions that fit their specific needs and budgets.

9. How does METTLER TOLEDO software integrate with LIMS?

METTLER TOLEDO offers software solutions that can seamlessly connect with Laboratory Information Management Systems (LIMS). This integration allows for automatic data transfer, harmonized user management and ensures that your results directly recorded in the LIMS, ELN, QMS. This not only enhances data accuracy and traceability but also streamlines workflows by reducing manual data entry and potential errors.

10. Can METTLER TOLEDO instruments connect to Electronic Notebooks (ENB)?

Yes, METTLER TOLEDO instruments can be integrated with Electronic Notebooks (ENB) to facilitate better data management and documentation. Our software solutions allow for easy transfer of measurement data directly into ENB systems, enabling researchers to maintain accurate records of their experiments, streamline documentation processes, and enhance collaboration within their teams.

11. What are the benefits of connecting METTLER TOLEDO instruments to Quality Management Systems (QMS)?

Connecting METTLER TOLEDO instruments to a Quality Management System (QMS) offers several advantages, including improved compliance with industry standards, enhanced data integrity, and better quality control. By integrating our instruments with a QMS, laboratories can automatically log measurements, monitor instrument performance, and ensure that all processes adhere to quality protocols. This connectivity supports continuous improvement and helps maintain high-quality standards in laboratory operations.

12. How does LabX integrate with OmniCore from ABB for enhanced laboratory management?

LabX™ software seamlessly integrates with OmniCore™ from ABB, providing laboratories with a powerful solution for managing their analytical workflows. This integration allows users to efficiently control and monitor ABB’s automation systems with centralized data management, compliance support and streamlined operations through LabX Software. With this synergy, laboratories can automate their processes, ensure data integrity, and improve overall efficiency, all while benefiting from real-time access to critical information and analytics.

13. What are the benefits of implementing robotic laboratory workflows?

Implementing robotic laboratory workflows offers numerous advantages, including:

  • Increased Efficiency: Robotics can handle repetitive tasks faster than human operators, significantly reducing turnaround times and increasing throughput.
  • Enhanced Precision: Robots provide consistent and accurate results, minimizing human error and variability in experiments, which is crucial for obtaining reliable data.
  • Improved Safety: By automating hazardous tasks, such as handling toxic substances or operating in high-risk environments, robotic systems enhance laboratory safety for personnel.
  • Scalability: Robotic systems can easily be scaled to accommodate increased workloads or additional processes, allowing laboratories to adapt to changing demands without significant investment in new personnel.
  • Data Management: Many robotic workflows are integrated with data management systems, ensuring that all data generated is automatically recorded and easily accessible for analysis and reporting.
  • Resource Optimization: Automation allows laboratory staff to focus on more complex tasks that require human expertise, maximizing the use of skilled personnel and resources.

These benefits collectively lead to improved laboratory productivity, accuracy, and safety, making robotic workflows an attractive option for modern laboratories.

14. What are the benefits of using multiparameter systems in laboratories?

Multiparameter systems allow laboratories to perform simultaneous analyses across various parameters, enhancing efficiency and reducing the need for multiple systems. This integration simplifies data management and reporting, leading to quicker decision-making and increased productivity.

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