Infrared Moisture Meter - Company Ranking(6 companyies in total)
Last Updated: Aggregation Period:Jul 16, 2025〜Aug 12, 2025
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Display Company Information
Company Name | Featured Products | ||
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Product Image, Product Name, Price Range | overview | Application/Performance example | |
□ Measurement method / Infrared reflection type 3-wavelength method □ Optical method / Integrated light source and light receiver bundle fiber method □ Measurement distance / 200–400mm □ Measurement diameter / Φ110–Φ190 (Φ150mm at a measurement distance of 300mm) □ Light source / Tungsten lamp (average lifespan approximately 20,000 hours) □ Power supply / AC100-240V±10% 50/60Hz □ Power consumption / 40W □ Dimensions (main unit) / 240w×276h×314dmm □ Weight / Approximately 11kg | It can be used for moisture measurement, quality control, energy saving, etc., in various industrial fields. Semiconductors, liquid crystals, films, pharmaceuticals, textiles, papermaking, solvents (liquids), powders, ceramics, paints, and others. | ||
<MODEL-2000 Features> - Improved sensitivity (25% up from conventional devices) - Enhanced functionality through the adoption of a high-performance display (scaling, cumulative averaging, etc.) - Power supply compatible with AC100-240V - Standard 4-20mA current output <Common Features of IM-3SCV MODEL-2000 / IM-3SRV MODEL-1000> 〇 Fiber-optic method allows measurement in diverse environments. - The use of fiber in the measurement section minimizes the influence of environmental factors such as temperature changes. - Compact design allows for installation in narrow spaces. - High-resolution measurement achieved through a three-wavelength method. 〇 Real-time measurement with high-speed analog computation. - By performing analog computation, there is almost no time lag, enabling real-time measurement while allowing for high-resolution measurements typical of analog systems. Additionally, temperature compensation in the analog circuit further stabilizes measurement accuracy. 〇 Portable handheld design for easy transport. - Being handheld makes it easy to carry, avoiding moisture absorption during sample transport, and allows for simple measurements on-site. | It can be used for moisture measurement, quality control, energy saving, etc., in various industrial fields. Semiconductors, liquid crystals, films, chemicals, textiles, paper, solvents (liquids), powders, ceramics, paints, and others. | ||
□ Measurement Method / Infrared Reflection Type 3-Wavelength Method □ Optical Method / Integrated Light Emission and Reception Bundle Fiber Method □ Measurement Distance / 5 to 30 mm □ Measurement Diameter / Φ5 to Φ16 (Φ16 mm at a measurement distance of 30 mm) □ Light Source / Tungsten Lamp (Average Lifespan: Approximately 20,000 hours) □ Power Supply / AC100V±10% 50/60Hz □ Power Consumption / 25W □ Dimensions (Main Unit) / 125w × 150h × 322d mm □ Weight / Approximately 5 kg | It can be used for moisture measurement, quality control, energy saving, etc., in various industrial fields. Semiconductors, liquid crystals, films, pharmaceuticals, textiles, papermaking, solvents (liquids), powders, ceramics, paints, and others. | ||
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- Featured Products
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Wide-range irradiation type infrared moisture meter
- overview
- □ Measurement method / Infrared reflection type 3-wavelength method □ Optical method / Integrated light source and light receiver bundle fiber method □ Measurement distance / 200–400mm □ Measurement diameter / Φ110–Φ190 (Φ150mm at a measurement distance of 300mm) □ Light source / Tungsten lamp (average lifespan approximately 20,000 hours) □ Power supply / AC100-240V±10% 50/60Hz □ Power consumption / 40W □ Dimensions (main unit) / 240w×276h×314dmm □ Weight / Approximately 11kg
- Application/Performance example
- It can be used for moisture measurement, quality control, energy saving, etc., in various industrial fields. Semiconductors, liquid crystals, films, pharmaceuticals, textiles, papermaking, solvents (liquids), powders, ceramics, paints, and others.
Fiber optic infrared moisture meter
- overview
- <MODEL-2000 Features> - Improved sensitivity (25% up from conventional devices) - Enhanced functionality through the adoption of a high-performance display (scaling, cumulative averaging, etc.) - Power supply compatible with AC100-240V - Standard 4-20mA current output <Common Features of IM-3SCV MODEL-2000 / IM-3SRV MODEL-1000> 〇 Fiber-optic method allows measurement in diverse environments. - The use of fiber in the measurement section minimizes the influence of environmental factors such as temperature changes. - Compact design allows for installation in narrow spaces. - High-resolution measurement achieved through a three-wavelength method. 〇 Real-time measurement with high-speed analog computation. - By performing analog computation, there is almost no time lag, enabling real-time measurement while allowing for high-resolution measurements typical of analog systems. Additionally, temperature compensation in the analog circuit further stabilizes measurement accuracy. 〇 Portable handheld design for easy transport. - Being handheld makes it easy to carry, avoiding moisture absorption during sample transport, and allows for simple measurements on-site.
- Application/Performance example
- It can be used for moisture measurement, quality control, energy saving, etc., in various industrial fields. Semiconductors, liquid crystals, films, chemicals, textiles, paper, solvents (liquids), powders, ceramics, paints, and others.
Fiber-type infrared moisture meter
- overview
- □ Measurement Method / Infrared Reflection Type 3-Wavelength Method □ Optical Method / Integrated Light Emission and Reception Bundle Fiber Method □ Measurement Distance / 5 to 30 mm □ Measurement Diameter / Φ5 to Φ16 (Φ16 mm at a measurement distance of 30 mm) □ Light Source / Tungsten Lamp (Average Lifespan: Approximately 20,000 hours) □ Power Supply / AC100V±10% 50/60Hz □ Power Consumption / 25W □ Dimensions (Main Unit) / 125w × 150h × 322d mm □ Weight / Approximately 5 kg
- Application/Performance example
- It can be used for moisture measurement, quality control, energy saving, etc., in various industrial fields. Semiconductors, liquid crystals, films, pharmaceuticals, textiles, papermaking, solvents (liquids), powders, ceramics, paints, and others.
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