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Manufacturing Automation
  • Future Networks


    The next generation of networks will move beyond disconnected device-specific networks and systems and toward a distributed infrastructure, with intelligent functions residing across the entire network, from its edge to its core.

    Future Networks


    The next generation of networks will move beyond disconnected device-specific networks and systems and toward a distributed infrastructure, with intelligent functions residing across the entire network, from its edge to its core.

    Optimizing Motion Control—Getting the Most from Resolvers


    To take full advantage of the resolver's potential, you have to compensate for error sources. Simulating resolver and cable functions go a long way toward helping you achieve this goal.

    Choosing the Right Pressure Transmitter:


    Choosing the right pressure transmitter for your application involves more than specifying the pressure range. Don't forget to consider the technologies available, the environmental stresses and strains that will be involved, and the lifetime cost.

    Choosing the Right Pressure Transmitter:


    Choosing the right pressure transmitter for your application involves more than specifying the pressure range. Don't forget to consider the technologies available, the environmental stresses and strains that will be involved, and the lifetime cost.

    Pressure-Resistant Proxes: New Generation Proximity Switches For Hydraulic Applications


    A new generation of inductive proximity sensors are engineered to withstand the high pressures now common in fluid power applications.

    A New Breed of Tilt Sensors


    High accuracy at a low cost over a wide temperature range makes thermal MEMS accelerometers the hot choice in tilt sensing. Find out whether they're right for your application.

    Keeping it Sealed


    App Snaps

    A Machine That Watches



    During an automated manufacturing process, the product typically moves along a production line at either constant or variable speeds. The first task of optoelectronic inspection is to discard that motion. For example, machine vision systems use triggers and shutters and photoelectric sensors use gates to freeze the object at a particular point in time so that it can be analyzed.

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