Data Loggers

Data loggers record sensor data over longer periods of time for monitoring, testing, and analyzing asset health and performance.  Yokogawa data loggers are recognized by industry for superior reliability, noise immunity, measurement accuracy, and ease of use.

  • Modular GM10

    For industrial and lab applications, the GM10 offers Bluetooth wireless connection and modular I/O that offers accurate and reliable measurements.

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  • Standalone MW100

    For industrial DAQ applications, the MW100 offers scalability and can operate either standalone or integrated as a node within a larger automated system including SCADA or DCS.

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  • PC-Based MX100

    For test applications with data logging requirements, the MX100 scales from four to 1200 channels. It streams, records, displays, and reports with no programming required.

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  • Touch Screen Paperless Recorder GX10/GX20

    The SMARTDAC+TM GX10/GX20 is a panel mount paperless recorder with a modular architecture on the back panel and has a data logging function to acquire the required data. By supporting not only I/O but also many communication protocols, you can connect to various devices. GX utilizes AI. Supporting FDA 21 CFR Part11 and AMS2750E/NADCAP.

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  • Touch Screen GP10/GP20

    SMARTDAC+TM GP10/GP20 is a paperless recorder that provides intuitive, human-centric design, web-enabled functionality, and scalable architecture.

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  • Product Finder

    This web tool makes it easier to find products according to the application, measurement conditions and required specifications.

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Resources

Overview:

Caustic soda and hydrochloric acid, produced in electrolyzer plants, are fundamental materials used in varieties of industries; chemicals, pharmaceuticals, petrol-chemicals, pulp and papers, etc. Profit is the result of the effective production with minimized running / maintenance cost. Proper control of the process brings you stabilized quality of products with the vast operational profit.

Industries:
Yokogawa Technical Report
Overview:

The development of difficult to recover unconventional energy resources, is progressing. Figure 1 shows an example of how unconventional heavy oil is extracted from tar sand by reducing its viscosity with steam. To ensure efficient mining, changes in the underground temperature distribution will need to be monitored.

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