Non-contact surface resistance tester
Non-contact, online sheet resistance measurement is possible.
Non-contact sheet resistance measuring instrument using eddy current magnetic field
- 企業:マツボー
- 価格:Other
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Non-contact, online sheet resistance measurement is possible.
Non-contact sheet resistance measuring instrument using eddy current magnetic field
Measurement of Young's modulus and natural frequency can be easily and accurately performed by anyone in a very short time.
When an object receives an instantaneous external shock, it vibrates until it consumes all its kinetic energy in an attempt to return to its original state. This device utilizes the damping nature of these vibrations to extract and display the fundamental elements of the object. It is used in research and development to investigate the effects of processes such as firing, freezing, and radiation damage.
It is possible to measure the particle size distribution under optimal conditions tailored to various samples.
- Measurement in the submicron range is possible with a dry method. - Adaptable to a wide range of sample particle sizes. - A variety of options for different dispersion units. - Measurement range and dispersion units can be expanded after delivery.
The measurement range is 0.8 to 1.0 aw! Ideal for meat processing!
It is a highly precise moisture activity (aw) measuring instrument manufactured by the German company NAGY.
Non-contact, online sheet resistance measurement is possible! Measurements can be taken with a gap of up to 20mm.
NAGY's non-contact surface resistance meter allows for non-contact, online measurement of sheet resistance. It is a non-contact sheet resistance meter that uses an eddy current magnetic field to measure conductive films on non-conductive substrates online. It is ideal for online monitoring of transparent electrodes such as ITO and metal film deposition processes. It can be integrated into existing deposition equipment and transport lines. Additionally, it supports a variety of applications and can accommodate various substrates (glass, plastic films, etc.) with an opening of up to 23mm. It supports multiple channels (1 to 99 channels) and can operate under atmospheric pressure or vacuum. For more details, please contact us or refer to the catalog.
You can measure ion energy during etching, sputtering, and film deposition processes.
The detection probe can be mounted on the electrode/substrate holder, allowing for plasma optimization under the same conditions as the actual process. Measurements can be taken under various bias conditions (floating, DC, pulsed DC, RF). The following measurements can be performed during the plasma discharge process: - Ion energy distribution - Ion flux - Ion current - Electron flux and energy
This is a testing device that continuously measures the tap density of powder and powdered products and can automatically calculate parameters such as the Hausner ratio.
In conventional tap density measurement devices, the test specimen may become tilted within the cylinder, and since the memory is read by the human eye, discrepancies can occur in the measured and calculated values. GranuPack automatically performs the measurement and calculation of tap density, allowing for continuous recording of the changes in bulk density with each tap, thereby eliminating errors due to human error. An option for measuring tap density at temperatures up to 200°C is also available.
The world's first! This device is the only one that can measure nanoparticles inline! No sample dilution is needed!
This device has made continuous measurement of nanoparticles possible for the first time in the world, and if used for evaluating and managing processes from research to production, it can significantly improve quality control and production efficiency.
Prism Coupler Type Optical Loss Measurement Device (Achieving World’s Highest Precision of 0.01 dB/cm!)
● Up to four lasers can be simultaneously mounted, including 633nm, 830nm, 1310nm, and 1550nm. ● Low price, with a one-year manufacturer warranty. ● Holds TL-9000 and ISO-9001 certifications. ● If you send us a sample, we will conduct a demo measurement.
Prism Coupler Type Optical Loss Measurement Device (Achieving World’s Highest Precision of 0.01 dB/cm!)
● Up to four lasers can be simultaneously mounted, including 633nm, 830nm, 1310nm, and 1550nm. ● Low price, with a one-year manufacturer warranty. ● Holds TL-9000 and ISO-9001 certifications. ● If you send us a sample, we will conduct a demo measurement.
Measurement of changes in optical performance due to temperature rise of the LED lamp.
Various characteristics of LED lamps, including temperature dependence, can be measured with a single device.
Real-time process monitoring is possible through inline particle size measurement.
This is a groundbreaking laser diffraction dry particle size measurement device that enables inline measurement. It performs real-time dry sampling of products and semi-finished products during air transport, demonstrating advantages in collecting particle size distribution data for quality control purposes. Additionally, it can be integrated into the plant's control system, allowing not only for particle size management but also for the control of the plant itself. It is an effective system for predicting and preventing process troubles.
Up to 20mm! Measurement is possible with a wide measurement gap!
This is a non-contact surface resistance measuring device that can be used both online and offline, utilizing eddy current magnetic fields from the German company NAGY. It can measure with a wide measurement gap of up to 20mm, which allows it to accommodate various applications from our customers compared to other products.
It measures the thickness of metal coils, transparent films on metal containers, opaque films, wet films, and dry films non-contactly.
- Inline compatibility (no problem with fluctuations) - Non-contact measurement of paint and coating thickness (measurable film thickness: 0.2 to 250 µm) - Capable of measuring both wet and dry films - Can reduce the cost of paint/coating materials - Improvement of production throughput
We measure the carbon dioxide that permeates from the liquid filled in the bottle to the outside of the bottle.
- The measurement environment (temperature, humidity) can be set. - It can measure down to the world's smallest detection limit (0.0013 to 100 cm3·pkg-1·24h-1).