Miniature data acquisition system

  • What is an example of a DAQ system?

    A Data Acquisition (DAQ) system is an essential tool used to collect and process data from various sources.
    In its simplest form, a technician logging the temperature of an oven on a piece of paper is performing data acquisition..

SLICE6 is a modular data acquisition system designed for test applications that require high-speed sampling with precision timing. SLICE6 features […].
The Mini-DAQ is an open-source compact data acquisition system intended for laboratory testing of wave energy converters. It interfaces to a variety of sensors 

What is a miniature network data acquisition unit (TTC mndau)?

Miniature Network Data Acquisition Units (TTC MnDAU) deliver network-based, high-speed data acquisition and encoding in an environmentally sealed package and small footprint.
Axon/ADAU airborne data acquisition systems are the most advanced available today, offering low SWaP with the best feature set and performance on the market.

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What is DTS data acquisition system?

The miniature, high speed, rugged DAS has extensive sensor support and flexible configurations making DTS the world leader in DAS (data acquisition systems).
Ultra-small, modular, rugged data acquisition system (DAS) Ultra-rugged 20,000 g, miniature, 3-channel data acquisition system (DAS) .

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What is the difference between a DAQ and a modular data acquisition system?

DAQ systems with data-collecting devices are more sophisticated than data-recording systems.
Modular data acquisition systems are made for complicated systems that call for the integration and synchronization of a wide variety of sensors, as well as devices with a high channel count and numerous input channels.

Miniature data acquisition system
Miniature data acquisition system
A miniature mass spectrometer (MMS) is a type of mass spectrometer (MS) which has small size and weight and can be understood as a portable or handheld device.
Current lab-scale mass spectrometers however, usually weigh hundreds of pounds and can cost on the range from thousands to millions of dollars.
One purpose of producing MMS is for in situ analysis.
This in situ analysis can lead to much simpler mass spectrometer operation such that non-technical personnel like physicians at the bedside, firefighters in a burning factory, food safety inspectors in a warehouse, or airport security at airport checkpoints, etc. can analyze samples themselves saving the time, effort, and cost of having the sample run by a trained MS technician offsite.
Although, reducing the size of MS can lead to a poorer performance of the instrument versus current analytical laboratory standards, MMS is designed to maintain sufficient resolutions, detection limits, accuracy, and especially the capability of automatic operation.
These features are necessary for the specific in-situ applications of MMS mentioned above.

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