Whitepaper: How to Reduce Motor Size

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Executive Summary Today’s challenge is to make electronic applications smaller, cheaper and more accurate. PCBMotor builds accurate and high resolution, motors directly onto the PCB itself. In addition to a world of new design opportunities, this new motor technology significantly reduces the size, building height and cost of applications while maintaining a high torque motor […]

Deploy – Go to market

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From Prototype To New Product Introduction For the best and most effective way forward into volume production, PCBMotor can help make this transition easier, faster and less risky. Discover how we can help decrease assembly costs and improve production quality.   Our promise Decreased assembly time – 2 seconds/motor Improved accuracy and quality of the final product […]

Develop – Fast prototyping

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Rapid Prototyping Build your next application prototype with a PCBMotor solution integrated into your application.   Our promise Free engineering “kick-start” consultancy Professional engineering expertise and project management To sharpen up your project/product requirements specification A “No cure, no pay” development incentive A shorter path to NPI and product launch date     What If […]

Evaluate – Learn and Turn

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Piezo Technology That Beats Electromagnetic Motors Start your research with relevant information designed to get you up to speed with our piezo motor PCB technology and then test it with your colleagues. Our Promise Free information & white papers Affordable, full-featured evaluation kits 6-Month money back guarantee on evaluation kit Easy transition into a totally […]

PCBMotor v Stepper

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How to Solve High Resolution and Low Speed Motion Control Dilemmas at a Lower Cost We’re often asked, “How are our PCBMotors different from stepper motors?” It’s an excellent question and why we wrote this white paper – How to Solve High Resolution and Low Speed Motion Control Dilemmas. Sign up for this free white […]

Performance

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PCBMotor performance vs. diameter The calculations in the table below are based on a 6-wave, double-sided, 30 mm diameter stator.

White Paper: Design Rules & Layout Guidelines

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Discover how our innovative technology can improve the design, weight & height of your end-product Many customers like to keep the development data of their application to themselves. We offer a simple design package (free of charge), enabling you to design PCBMotor by yourself. By signing up you’ll get a (one) standard layout for a […]

White Paper: An Engineer’s Guide to Building Applications with PCBMotor

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Download now and learn more about our traveling wave and piezomotor technology.   Previously known as and replacing “An Engineers Guide to Building Applications With PCBMotor”, this white paper includes a host of new and updated informationas well as motor performance results. Download it now and discover how to: Leverage patented technology for revolutionary surface-mounted […]

How does PCBMotor’s technology work?

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PCBMotors consist of two parts: The Stator, which holds the actuators and electrical connecting circuit; and The Rotor, which is pressed onto the surface of the stator and delivers the mechanical output. A traveling wave is generated over the stator surface, acting like a flexible ring to produce elliptical motion on the rotor interface. The […]

What are the advantages of a PCBMotor compared to a stepper motor?

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By driving the integration of the motor (including electronics) into the PCB itself, we’re facilitating the design of smaller, cheaper and faster applications. PCBMotor uses less space and material. Electronics (driver) and mechanics (motor) are mounted directly on the PCB – so it’s totally flat and without gears and connections. PCB enables more design flexibility […]