List of Other analytical equipment products

  • classification:Other analytical equipment

1711~1755 item / All 2627 items

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Wide-range observation and measurement are also possible! Introducing contract analysis using a laser microscope.

  • Other analytical equipment
  • Analysis and prediction system

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Optical film light transmission characteristics

At Aites Co., Ltd., we conduct "optical film analysis." Optical films used in smartphones and other devices have various functions depending on their structure and materials. We measured the light transmittance of privacy protection films at different angles and combined cross-sectional observation with Raman analysis to investigate the mechanism of function manifestation. By investigating the transmittance characteristics of privacy protection films using angle-variable spectrophotometry, we were able to analyze the mechanism of function manifestation through cross-sectional observation and Raman analysis. At Aites, we provide consistent evaluation and analysis from material properties to the mechanisms of function manifestation.

A system-type Schlieren that plays a significant role in research and development as well as inspection processes!

  • Measurement and Inspection
  • Other analytical equipment

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A basic tool that enables high-precision visualization of "cross-sections"!

  • Measurement and Inspection
  • Other analytical equipment

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The simple operating system of the conventional system-type Schlieren remains unchanged, achieving visualization of shield gas behavior!

  • Measurement and Inspection
  • Other analytical equipment

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For authenticity verification and quality control of precious metals! Non-destructive, quick, and accurate measurement is possible.

  • Other analytical equipment
  • Other measuring instruments
  • Non-destructive testing

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A device equipped with a small module that contains a LoRaWAN communication chip and an AVR microcontroller on a single board.

  • IoT
  • Analysis and prediction system
  • Other analytical equipment

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De facto standard lighting for transparent body and reflective surface inspection

  • Other analytical equipment

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GC-FID for automatic continuous monitoring in the atmosphere, water, and soil.

  • Analysis and prediction system
  • Other analytical equipment

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Online quantitative analysis and monitoring of sulfur compounds.

  • Other analytical equipment
  • Environmental Survey

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Non-destructive depth analysis of thin films on the nm order is possible! We will also introduce analysis cases.

  • Other analytical equipment
  • Measurement and Analysis Equipment

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Chemical Analysis Trusted Service

We would like to introduce our "Chemical Analysis - Trust Us Service." When conducting component analysis of foreign substances or stains on products, it can be challenging to determine whether organic analysis or inorganic analysis is more suitable, and which specific analysis within organic or inorganic is the most appropriate. We provide a comprehensive service for customers who are struggling with the selection of analysis methods. Since each analytical instrument is capable of measuring different targets, it is necessary to choose the method that fits the purpose based on the information available.

Applicable to change observation, with support for additional analysis! We evaluate the subject in a time series and non-destructive manner.

  • Other analytical equipment
  • Analysis and prediction system

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Measurement of moisture absorption distortion

We would like to introduce the results of our investigation into the behavior of strain during moisture absorption and drying using a strain gauge. It was observed that the material expands when it absorbs moisture due to humidification, contracts when it dries due to dehumidification, and the strain returns to the state it was in before humidification. Regarding FR-1, it is presumed that the material did not return to its original state due to changes in its chemical structure caused by hydrolysis.

Observe the crystal structure with EBSD! Data can be obtained for each metal.

  • Electrical Equipment Testing
  • Other analytical equipment

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Example of analysis of compounds at the interface between SAC solder and Ni pads.

We will introduce an example of the analysis of compounds formed at the interface between Sn-Ag-Cu solder and NiP pads. At the interface between the NiP pad and Sn-Ag-Cu solder, compounds such as (Ni,Cu)3Sn4 and (Cu,Ni)6Sn5 grow, and surface analysis using EDX reveals the distribution of Ni, Cu, and Sn within these compounds. The EBSD method is an analytical technique based on the crystallographic information of the sample. By combining it with elemental analysis using EDX, it is possible to estimate the composition, and in some cases, it may be feasible to analyze using the crystallographic data of Ni3Sn4 and Cu6Sn5 as substitutes.

Visualize the features that appeared in the graph! You can check the distribution of crystal sizes and the orientation of crystal orientations.

  • Electrical Equipment Testing
  • Other analytical equipment

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Example of analysis of compounds at the interface between SAC solder and Ni pads.

We will introduce an example of the analysis of compounds formed at the interface between Sn-Ag-Cu solder and NiP pads. At the interface between the NiP pad and Sn-Ag-Cu solder, compounds such as (Ni,Cu)3Sn4 and (Cu,Ni)6Sn5 grow, and surface analysis using EDX reveals the distribution of Ni, Cu, and Sn within these compounds. The EBSD method is an analytical technique based on the crystallographic information of the sample. By combining it with elemental analysis using EDX, it is possible to estimate the composition, and in some cases, it may be feasible to analyze using the crystallographic data of Ni3Sn4 and Cu6Sn5 as substitutes.

The EBSD method allows for the estimation of crystal states and residual stresses! Here is an example of BGA analysis.

  • Electrical Equipment Testing
  • Other analytical equipment

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Example of analysis of compounds at the interface between SAC solder and Ni pads.

We will introduce an example of the analysis of compounds formed at the interface between Sn-Ag-Cu solder and NiP pads. At the interface between the NiP pad and Sn-Ag-Cu solder, compounds such as (Ni,Cu)3Sn4 and (Cu,Ni)6Sn5 grow, and surface analysis using EDX reveals the distribution of Ni, Cu, and Sn within these compounds. The EBSD method is an analytical technique based on the crystallographic information of the sample. By combining it with elemental analysis using EDX, it is possible to estimate the composition, and in some cases, it may be feasible to analyze using the crystallographic data of Ni3Sn4 and Cu6Sn5 as substitutes.

We will introduce an example of crystal analysis of intermetallic compounds at solder joints.

  • Electrical Equipment Testing
  • Other analytical equipment

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Example of analysis of compounds at the interface between SAC solder and Ni pads.

We will introduce an example of the analysis of compounds formed at the interface between Sn-Ag-Cu solder and NiP pads. At the interface between the NiP pad and Sn-Ag-Cu solder, compounds such as (Ni,Cu)3Sn4 and (Cu,Ni)6Sn5 grow, and surface analysis using EDX reveals the distribution of Ni, Cu, and Sn within these compounds. The EBSD method is an analytical technique based on the crystallographic information of the sample. By combining it with elemental analysis using EDX, it is possible to estimate the composition, and in some cases, it may be feasible to analyze using the crystallographic data of Ni3Sn4 and Cu6Sn5 as substitutes.

I will introduce an example of analysis using EBSD where orientation was observed in the Al wiring.

  • Electrical Equipment Testing
  • Other analytical equipment

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Example of analysis of compounds at the interface between SAC solder and Ni pads.

We will introduce an example of the analysis of compounds formed at the interface between Sn-Ag-Cu solder and NiP pads. At the interface between the NiP pad and Sn-Ag-Cu solder, compounds such as (Ni,Cu)3Sn4 and (Cu,Ni)6Sn5 grow, and surface analysis using EDX reveals the distribution of Ni, Cu, and Sn within these compounds. The EBSD method is an analytical technique based on the crystallographic information of the sample. By combining it with elemental analysis using EDX, it is possible to estimate the composition, and in some cases, it may be feasible to analyze using the crystallographic data of Ni3Sn4 and Cu6Sn5 as substitutes.

We will introduce an example of analysis using EBSD for screws (Cu2Zn).

  • Electrical Equipment Testing
  • Other analytical equipment

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Example of analysis of compounds at the interface between SAC solder and Ni pads.

We will introduce an example of the analysis of compounds formed at the interface between Sn-Ag-Cu solder and NiP pads. At the interface between the NiP pad and Sn-Ag-Cu solder, compounds such as (Ni,Cu)3Sn4 and (Cu,Ni)6Sn5 grow, and surface analysis using EDX reveals the distribution of Ni, Cu, and Sn within these compounds. The EBSD method is an analytical technique based on the crystallographic information of the sample. By combining it with elemental analysis using EDX, it is possible to estimate the composition, and in some cases, it may be feasible to analyze using the crystallographic data of Ni3Sn4 and Cu6Sn5 as substitutes.

I will introduce an example of analysis using EBSD for pipes (austenite).

  • Electrical Equipment Testing
  • Other analytical equipment

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Phasemap.png

Example of analysis of compounds at the interface between SAC solder and Ni pads.

We will introduce an example of the analysis of compounds formed at the interface between Sn-Ag-Cu solder and NiP pads. At the interface between the NiP pad and Sn-Ag-Cu solder, compounds such as (Ni,Cu)3Sn4 and (Cu,Ni)6Sn5 grow, and surface analysis using EDX reveals the distribution of Ni, Cu, and Sn within these compounds. The EBSD method is an analytical technique based on the crystallographic information of the sample. By combining it with elemental analysis using EDX, it is possible to estimate the composition, and in some cases, it may be feasible to analyze using the crystallographic data of Ni3Sn4 and Cu6Sn5 as substitutes.

The EBSD method allows for the estimation of crystal size distribution and residual stress.

  • Electrical Equipment Testing
  • Other analytical equipment

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Phasemap.png

Example of analysis of compounds at the interface between SAC solder and Ni pads.

We will introduce an example of the analysis of compounds formed at the interface between Sn-Ag-Cu solder and NiP pads. At the interface between the NiP pad and Sn-Ag-Cu solder, compounds such as (Ni,Cu)3Sn4 and (Cu,Ni)6Sn5 grow, and surface analysis using EDX reveals the distribution of Ni, Cu, and Sn within these compounds. The EBSD method is an analytical technique based on the crystallographic information of the sample. By combining it with elemental analysis using EDX, it is possible to estimate the composition, and in some cases, it may be feasible to analyze using the crystallographic data of Ni3Sn4 and Cu6Sn5 as substitutes.

Changes in crystal orientation and crystal grain size can be analyzed! We introduce the EBSD (Electron Backscatter Diffraction) method.

  • Electrical Equipment Testing
  • Other analytical equipment

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Example of analysis of compounds at the interface between SAC solder and Ni pads.

We will introduce an example of the analysis of compounds formed at the interface between Sn-Ag-Cu solder and NiP pads. At the interface between the NiP pad and Sn-Ag-Cu solder, compounds such as (Ni,Cu)3Sn4 and (Cu,Ni)6Sn5 grow, and surface analysis using EDX reveals the distribution of Ni, Cu, and Sn within these compounds. The EBSD method is an analytical technique based on the crystallographic information of the sample. By combining it with elemental analysis using EDX, it is possible to estimate the composition, and in some cases, it may be feasible to analyze using the crystallographic data of Ni3Sn4 and Cu6Sn5 as substitutes.

Observe the changes before and after compression on the copper plate! You can compare the half-life of the crystal grain size before and after compression.

  • Electrical Equipment Testing
  • Other analytical equipment

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Phasemap.png

Example of analysis of compounds at the interface between SAC solder and Ni pads.

We will introduce an example of the analysis of compounds formed at the interface between Sn-Ag-Cu solder and NiP pads. At the interface between the NiP pad and Sn-Ag-Cu solder, compounds such as (Ni,Cu)3Sn4 and (Cu,Ni)6Sn5 grow, and surface analysis using EDX reveals the distribution of Ni, Cu, and Sn within these compounds. The EBSD method is an analytical technique based on the crystallographic information of the sample. By combining it with elemental analysis using EDX, it is possible to estimate the composition, and in some cases, it may be feasible to analyze using the crystallographic data of Ni3Sn4 and Cu6Sn5 as substitutes.

We will introduce an example of analyzing EBSD patterns (Kikuchi patterns) at gold wire bond joints.

  • Electrical Equipment Testing
  • Other analytical equipment

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Example of analysis of compounds at the interface between SAC solder and Ni pads.

We will introduce an example of the analysis of compounds formed at the interface between Sn-Ag-Cu solder and NiP pads. At the interface between the NiP pad and Sn-Ag-Cu solder, compounds such as (Ni,Cu)3Sn4 and (Cu,Ni)6Sn5 grow, and surface analysis using EDX reveals the distribution of Ni, Cu, and Sn within these compounds. The EBSD method is an analytical technique based on the crystallographic information of the sample. By combining it with elemental analysis using EDX, it is possible to estimate the composition, and in some cases, it may be feasible to analyze using the crystallographic data of Ni3Sn4 and Cu6Sn5 as substitutes.

You can achieve this much in Microsoft Excel without purchasing expensive software, using only spreadsheets, built-in functions, and analysis tools, without using macros!

  • Scientific Calculation and Simulation Software
  • Other analytical equipment
  • Analysis and prediction system

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Waterproof and pressure-resistant, usable even on the deep seabed! A compact thermometer with built-in memory and battery.

  • Other measuring instruments
  • Other analytical equipment

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Gas detectors require regular maintenance.

  • Other analytical equipment

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Wireless + equipped with a mandown feature!

  • Environmental Survey
  • Other analytical equipment

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Flammable gas, oxygen, carbon monoxide, hydrogen sulfide, and an additional fifth sensor can be selected! Equipped with wireless functionality!

  • Environmental Survey
  • Other analytical equipment

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Using hyperspectral imaging enables even smarter food inspection.

  • Other analytical equipment

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A mobile measurement device that understands the surrounding environment in three dimensions using omnidirectional camera footage!

  • Surveying
  • Other analytical equipment

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Equipped with VOC detection function! A multi-gas detector that supports detection of over 20 types of gases.

  • Environmental Survey
  • Other analytical equipment

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3-year manufacturer warranty! Compact, lightweight, and easy-to-use multi-gas detector.

  • Other analytical equipment

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Please use this for the characteristic evaluation of lithium-ion batteries (gas emission analysis).

  • Other analytical equipment
  • Measurement and Inspection
  • Batteries and Capacitors

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Eight sizes of cut-out circles are arranged on concentric circles.

  • Other analytical equipment
  • others

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To meet recent demands, Fit has produced a chart with a maximum spatial frequency of 1000 lines/pair mm (practical performance value of 800 lines/mm).

  • Other analytical equipment
  • others

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We would like to introduce the performance verification results of the anti-corrosion protective cap "Zinc Hat."

  • Rock drills, demolition machines, and excavators
  • Other analytical equipment

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With the analysis app for computers, anyone can easily perform load analysis on cargo.

  • DMP
  • Analysis and prediction system
  • Other analytical equipment

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We build and provide an evaluation environment that accelerates algorithm verification! Let us introduce our development achievements!

  • Other measuring instruments
  • Other analytical equipment
  • Other Software

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Affordable monitoring of earthquakes and long-period vibrations is possible! Let us introduce our development achievements!

  • Vibration and Sound Level Meter
  • Other analytical equipment
  • Other Software

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A portable vibration meter compatible with three types of sensors! Let us introduce our development achievements!

  • Vibration and Sound Level Meter
  • Other measuring instruments
  • Other analytical equipment

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Drive the electrodes at the specified voltage or current to measure the current-voltage characteristics! Let us introduce our development achievements!

  • Other Software
  • Other analytical equipment

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Measurement was conducted using a nutrition analyzer, and a comparison of the results with conventional method values.

  • Other analytical equipment

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<New Product> For wide-area surveys and infrastructure inspections during disasters. A wireless communication device that experiences minimal radio interference and is less likely to disconnect, allow...

  • Other analytical equipment
  • Other Software

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Easy implementation tailored to network scale! Achieving intuitive network management specialized for LAN.

  • Other analytical equipment
  • others

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