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One Platform. Multiple Configurations. A Fully Connected Biology Workflow.

BAB Goodwin brings automation, workflow integration, incubation, perfusion, and high-content imaging together into a flexible platform designed around the needs of your biology. Rather than forcing laboratories into a single fixed configuration, BAB Goodwin allows you to select the automation and imaging capabilities that best support your research today while creating a foundation that can evolve with your science.

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What is The BAB Goodwin?

The BAB Goodwin™ is an end-to-end biofabrication and perfusion platform designed to automate how living tissues are built, maintained, and studied over time. By unifying robotic bioassembly, intelligent workflow orchestration, incubation, imaging, and perfusion into a single ecosystem. BAB Goodwin enables researchers to move beyond static culture and toward dynamic, long-term, human-relevant biology.

What sets the Goodwin apart?

Traditional workflows treat biology as a fixed endpoint. BAB Goodwin is built around the reality that biology is dynamic, responsive, and time-dependent. Integrated perfusion, incubation, and feedback loops allow tissues to be sustained, observed, and refined continuously.

Who is BAB Goodwin good for?

  • Academic Institutions 

  • Research Institutions

  • Pharmaceuticals

  • Biotech

  • Innovators in Tissue Biology

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Explore The BAB Goodwin Components

Process
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Flexible Automation, Built to Scale

  • Six-axis robotic automation for complex biological workflows

  • Machine vision supports adaptive calibration and precision

  • Configurable tools and workflows for diverse applications

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Automation With Built-In Protection

  • Six-axis automation integrated within a Class II biosafety cabinet

  • Designed for workflows requiring enhanced biological containment

  • Extends BAB automation into more demanding research environments

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Keep Biology Moving

  • Modular incubation and perfusion for automated biological workflows

  • Supports up to nine independently configurable BioStorageBot nodes

  • Connects with BAB and BioBot LINK for extended, unattended workflows

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Connect the Entire Workflow

  • Moves samples between BAB, imaging, and incubation systems

  • Connects otherwise separate instruments into one coordinated workflow

  • Enables automation to continue beyond a single robotic workstation

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Integrated

PerFuseIt™ is the only automated system designed to deliver true continuous perfusion of cell cultures - without rocking, intermittent media exchange, or custom platforms. PerFuseIt integrates seamlessly with BioStorageBot® Benchtop modular incubator without the need for external reservoirs or tubing, creating a unified incubation and perfusion solution with:​

  • Continuous drip control

  • Reduced hands-on time

  • Scalable workflow management

  • Automated scheduling

Features & Benefits

Flexible Automation

Connected Biology

Scalable Configuration

Fully Integrated

Evolves With Your Research

Outcome-Focused Design

Connect with a Specialist Today!

We take your privacy seriously. Your information will never be shared, sold, or distributed to any third parties. It will only be used to respond to your inquiry.

FAQs

Is The Goodwin a single instrument? No. The Goodwin is a platform ecosystem that integrates automation, perfusion, incubation, imaging, and software into a cohesive workflow.

How does perfusion fit into the system? Perfusion is integrated directly into The Goodwin through modular hardware and workflow design, enabling sustained, physiologically relevant tissue culture.

Can The Goodwin evolve with my research? Yes. The platform is intentionally modular, allowing new workflows to be added over time.

Does this replace existing lab equipment? The Goodwin is designed to integrate with — not isolate from — existing lab infrastructure, while significantly reducing manual handling and variability.

What kinds of tissues or models can be supported? The Goodwin is adaptable to a wide range of engineered tissues and biological models, particularly those requiring automation, longevity, and dynamic culture conditions.

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