Autonomous mobile robot (AMR) inside of a biotech lab.

4 layout design rules for improving mobile robot performance

When autonomous mobile robots (AMRs) support material movement within a multi-step biopharma process, equipment placement becomes a primary driver of performance. Strategically placed equipment stations and access points can enable big wins for your operations; however, a poorly planned layout will be a continuous challenge to your robot’s productivity and the ROI of your robotic investment.

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Life sciences manufacturing outlook: Key trends shaping investment and growth

Life sciences manufacturing outlook: Key trends shaping investment and growth

The life sciences industry has always operated in a dynamic environment, but today’s organizations are navigating a unique combination of evolving regulations, shifting investment priorities, workforce shortages and changing global supply chains. While specific market forces may come and go, the need to build resilient, adaptable manufacturing strategies remains constant.

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Digitized DNA strand that gradates from blue to orange to pink

Batch vs. Continuous Manufacturing: Facility Design and Cost Comparison

For years, discussions around continuous bioprocessing have focused primarily on productivity, yield and process economics. While these factors remain important, today’s manufacturing leaders face a broader question: How realistically does process intensification influence the design, cost and long-term viability of an entire facility?

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Lab Planning Innovation

How intentional lab planning supports innovation

What makes innovation in life science labs possible? Breakthroughs are often attributed to bolt-of-lightning insights or lucky accidents. Serendipity does matter, but as Louis Pasteur famously noted, chance favors only the prepared mind. We can extend his idea further to say that chance also favors those who conduct research in a prepared lab.

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automated material handling robots (MHE) in cold storage warehouse

Designing the right MHE fleet for your biopharma operations

Robots and Material Handling Equipment (MHE) can make a huge impact to biopharma productivity. But what should your fleet’s makeup and traffic flows look like to maximize efficiency and spend? Here’s how to ensure you’re getting the most out of your robotics and MHE investment.

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Biopharma vial filling line with a digital technology overlay

Your guide to pharma and biotech digital maturity assessments

Understand your operations, enable digital transformation, and transform your organization for lasting business improvements.

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Life Sciences DNA

Life science construction: Ask 8 questions before investing

Life science construction is poised for expansion. That’s what we learned when we surveyed 500+ company leaders to understand their perspective on where the industry is going next: 86% predict healthy growth over the coming years.

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Performing a risk assessment in a biotech manufacturing facility

Risk assessment strategies for life sciences manufacturing

Risk assessment is a formal methodology for evaluating potential hazards and risks to processes, programs, organizations, patients, and operators.

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abstract bag of frozen plasma in lab

5 process improvements for plasma fractionation and purification

Here are five mini-case studies that improved the production process for plasma-derived proteins because every drop of plasma counts.

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row of industrial heat pumps

High ROI, low emissions: The heat pump advantage for biopharma

Examples of why biopharma is making the switch to heat pumps from traditional gas-fueled heating systems

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