01
Learn the basics
If you want to start by understanding the basics of temperature, humidity, moisture, infrared measurement, etc., this is the place for you. By learning the terminology and mechanisms, you will be able to more easily understand the differences between measuring instruments and how to select the right one.
Sensing
What is sensing? A clear explanation of the differences between sensing, sensors, and measurement, and how it "measures."
This section clearly explains the differences between sensors, measurement, and data collection, as well as "why we measure" and "how we convert the information into data."
Temperature
What is temperature? Fundamentals of temperature measurement, temperature control, and temperature sensors, and their industrial applications.
You can learn everything from what temperature is to temperature measurement, temperature control, temperature sensors, and industrial applications, all in one continuous flow.
Humidity
What is humidity? A clear explanation of the meaning of 50% humidity, relative humidity, absolute humidity, and dew point.
This section will cover the basics of understanding humidity, including relative humidity, absolute humidity, and dew point temperature.
Moisture
What is moisture? A clear explanation of the basics of moisture content, water content, and moisture measurement.
This article explains everything from the meaning of moisture to the differences between moisture content, water content, and humidity, and the importance of measuring and controlling moisture in the manufacturing process.
Dew Point
What is dew point temperature? A clear explanation of its difference from humidity, its relationship to dew condensation, and how to calculate it.
This article explains everything from the meaning of dew point temperature to its difference from humidity, its relationship to dew condensation, and its practical applications.
Infrated
What is infrared measurement? It's a non-contact method for measuring temperature, moisture, constituent, and thickness.
This explains the basic concept of non-contact measurement of temperature, moisture, constituent, thickness, and other parameters using infrared radiation and absorption.
Data
What are the differences between SD cards, SDHC, and SDXC cards? Compatibility and how to choose the right one for industrial applications.
This document outlines the differences in standards and key points to consider when selecting SD cards for use in data recorders and industrial equipment.
Communication
What is Wi-Fi? A clear explanation of its differences from wireless LAN, how it works, and the differences between 2.4GHz and 5GHz.
You will learn the basics of wireless communication, the differences between 2.4GHz and 5GHz, and their applications in industrial equipment.
02
Choose equipment/method
If you're looking to decide how to measure temperature and which equipment to use, click here. We've organized information on how to choose the right equipment based on your application, including the object to be measured, temperature range, accuracy, measurement distance, and recording method.
Selection
How to Choose Temperature Measurement Equipment | Differences Between Temperature Sensors, radiation thermometer, and Recorders
This guide explains the basics of selecting the necessary equipment, such as temperature sensors, radiation thermometer, and data recorders, based on your specific needs.
Sensor
Temperature Sensor Guide | Differences between Thermocouples and resistance thermometer and Selection Points (FAQ)
This document summarizes the characteristics and selection points of contact-type temperature sensors, such as thermocouples and resistance thermometer.
Non-contact
A Guide to Avoiding radiation thermometer | Principles, emissivity, D:S Ratio, and Selection Methods for Non-Contact Temperature Measurement
This article explains everything from the principles of radiation thermometer to emissivity, D:S ratio, measurement conditions, and equipment selection.
Policy
How to Choose a Pressure-explosion proof radiation thermometer | Explanation of Key Points to Check When Measuring Temperature in explosion proof Environment
This article explains the selection points for explosion proof environments, including explosion proof proof structure, certification, temperature range, measurement distance, and installation/maintenance.
Recorder
How to Choose a Data Logger | Explanation of the Differences Between Data Loggers, Paperless recorder, and Monitoring Systems
This document outlines the differences between recorders, data loggers, paperless recorder, and monitoring systems, as well as key selection points.
03
Investigating the problem and its cause
This article is for those who want to troubleshoot and resolve measurement problems such as "inaccurate readings" or "unstable temperatures" by isolating the cause.
Troubleshooting
Is your radiation thermometer reading inaccurate? What causes errors, and how can you correct them and check your readings?
We will isolate the cause of the discrepancy in the measurements, including emissivity, reflectivity, measurement distance, and spot size.
Troubleshooting
Is your hygrometer reading inaccurate? Reasons for inaccurate or incorrect readings and how to check them.
We systematically isolate the cause of the inaccurate hygrometer readings by considering factors such as the measurement location, environmental acclimatization, dew condensation, comparison conditions, and sensor condition.
Troubleshooting
10 Reasons Why Furnace Temperatures Are Unstable | What Happens If You Leave It Unattended? A Thorough Explanation of Solutions and Selection Methods for Each Cause
We isolate the cause of temperature problems by analyzing sensors, heaters, insulation materials, PID, workpieces, and furnace temperature distribution.
04
Considering product and equipment upgrades
This is for those considering upgrading existing equipment or switching to equipment with new features. It's not just a product introduction; it outlines key points to consider when upgrading.
Update
48mm Square Temperature Controller LT23B | Key Points for Replacing Existing Temperature Controllers, PLC Integration, and Model Selection
This document explains compatibility, PLC integration, PC settings, and input/output specifications to check when replacing an existing temperature controller.
Update
Digital Program Controller KP2500 for Updating Existing Equipment
This document outlines the key points to consider when upgrading existing equipment, based on the differences from the KP2000 and changes to remote contact input.
Measurement
Efficiently measure and record high temperatures with a handheld radiation thermometer | Bluetooth compatible IR-HA
This presentation will cover everything from non-contact temperature measurement in high-temperature environments to data recording and management using Bluetooth.
05
Deepening the understanding of the technology
If you want to learn more about measurement techniques for moisture, constituent, and thickness, as well as moisture management and temperature control in high-temperature environments, this is for you. We provide detailed explanations of measurement principles and concepts in manufacturing process.
Moisture Measurement
moisture measurement in the manufacturing process
This article explains why moisture is measured during the manufacturing process, the differences between offline and online measurements, and how to choose the right measurement method.
Infrared Moisture
What is an infrared moisture meter?
This explains a system that uses absorption of infrared rays by moisture to measure moisture non-contact and continuously on a manufacturing line.
Component Measurement
constituent measurement using infrared rays
This article explains the basic concept and applications of using infrared absorption characteristic to measure constituent other than moisture non-contact.
Thickness & Coating
Non-contact thickness and coating amount measurement
This explains the concept of using infrared light to non-contactly measure the thickness of films and sheets, as well as the amount of coating applied.
Moisture
What is moisture control in high-temperature processes? Differences between relative humidity, dew point, and water vapor pressure, and how to measure them.
This section explains moisture management in high-temperature environments, including indicators such as relative humidity, dew point, and water vapor pressure, as well as their measurement methods.
Control
Why doesn't the temperature always cooperate? A practical explanation of how controllers work and how to choose the right one.
This article explains the role of controllers, PID control, reasons for unstable temperatures, and key points to consider when selecting a controller.
related
Learn more systematically
You can search not only for individual articles, but also for information on the overall temperature control process, as well as information categorized by industry and application.