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High-precision digital pressure gauge Compatible with low to high pressure, it responds to the customer's desired unit display. It enables use in hazardous environments with explosion-proof areas.
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It is a product ideal for use in harsh environments, such as petrochemical plants, natural gas, and hydrogen applications.
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It is a product best suited for use in harsh environments, such as petrochemical plants, natural gas, and hydrogen applications.
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Introducing TE Connectivity's general industrial pressure sensor. 【Key Features】 Output via Bluetooth communication Can be used for up to 1 year on a button battery (depending on communication frequency) Measurable with smartphones and tablets *For detailed specifications, please download the PDF. Feel free to contact us.
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High-precision digital pressure gauge CPG1500 It has the same level of accuracy as a digital calibrator, making maintenance inspections and simple calibrations in plants easy. It is compact and space-saving. The display effectively analyzes and supports various measurement points.
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The accuracy is optimized according to the measured pressure value.
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The accuracy is optimized according to the measured pressure value.
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Supports up to 100 MPa and can be manufactured in any range.
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Supports up to 100 MPa, can be manufactured for any range. Pressure range: up to 100.1 MPa Accuracy: 0.02 % FS Output: RS-232 or RS-485
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COMUS's reed switches (GC series) offer a wide range of options, including high-capacity, high-voltage, compact general-purpose, switching types, surface mount types, and molded types, as well as contact types A and C. The COTO brand (RI series) reed switches have been used in semiconductor testing machines for many years, and their reliability and lifespan characteristics are unparalleled worldwide. The contact material is made of ruthenium, so there is no risk of price increases like those seen with rhodium contacts.
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- Accuracy 0.1% FS (Resolution 0.001% FS) - Immediate calibration possible with button operation on the amplifier side. - Capable of connecting 8 types of sensors. - Can measure both magnetic and non-magnetic materials.
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We offer industrial-grade panel PCs (for embedded use and touch panel PCs), commercial tablets (rugged, lightweight, and capable of long operation), gateways, and IoT systems (real-time location management systems, service industry efficiency devices, and facial recognition management systems).
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We monitor the blade vibrations of aircraft engines and turbocharger power generation turbines in real-time, as well as chip clearance. Using non-contact sensors such as fiber optic displacement sensors and eddy current displacement sensors, we also perform diagnostics for circumferential blade vibrations, stall detection, crack detection, and more with our proprietary software.
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EPSILON+ is a fluid impedance measurement system based on DIN 51 111. It can measure electrical conductivity, relative permittivity/permittivity εr, and dielectric loss tangent (DDFtanδ). The system allows for easy measurements on its own, as well as data collection using a PC and automatic measurements at specified temperatures.
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This is the LAMBDA thermal conductivity measurement system compliant with ASTM D7896-19. It is capable of measuring thermal conductivity, thermal diffusivity, and specific heat capacity, making it suitable for the development of LLCs, HTFs, silicone oils, and insulating oils. The system allows for easy measurements on its own, as well as data collection using a PC and automated measurements at specified temperatures. *For detailed specifications, please download the PDF. For more information, please contact us.
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The CGS (Gas Content Measurement System) is an inline measurement system designed to continuously measure the gas content in fluids. This system operates regardless of the size and shape of the gas contained in the fluid. The CGS compares the impedance when there is no gas present with the impedance during measurement to determine the gas content.
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The process of optical bonding, which involves sealing silicone between the cover glass and the LCD, offers the following advantages: - Higher visibility Reduces reflections by 65%. Increases the brightness of the LCD by 10%. - High environmental resistance Prevents moisture from accumulating between the cover glass and the LCD. Sealed to avoid contamination. Mitigates impact on the glass with silicone. IP65 compliant.
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The "DS Series" is a rubber-structured capacitive displacement sensor. It is robust and can measure without breaking even if the displacement axis is misaligned in a vibrating environment. With an IP68 rating for vibration resistance, it is used in harsh outdoor environments such as civil engineering, construction machinery, and bridges. 【Features】 ■ Easy installation (two M6 mounting holes) ■ Measurement ranges: 20mm, 50mm, 100mm, 250mm ■ Dust and water resistance equivalent to IP68 ■ Usable in harsh environments such as outdoors and high humidity ■ Capable of measuring even if the displacement axis is misaligned *For more details, please refer to the PDF document or feel free to contact us.
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The original TSG lead relay from Sankyo International is available in a series with high voltage resistance and high insulation, ready for short delivery times. The packages include a tubular type with excellent cost performance, a flange type with superior mountability, and options for inch grid PC boards. The high voltage resistance series supports up to 30,000 VDC in standard specifications and up to 50,000 VDC in custom specifications. The high insulation series offers products with a maximum of over 3×10^15 Ω. The low thermal electromotive force type achieves a thermal electromotive force of less than 2 μV. (Please inquire about delivery times.)
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It controls a single pressure system. Up to two removable sensors can be built in. It has many digital communication ports and allows for remote operation. It features leak testing and burst testing capabilities. Range: -100 kPa to 21 MPa Accuracy: 0.02% FS or IS-50
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In the vacuum forming industry, precise pressure control is essential for shape control, which significantly affects product quality. Molding defects can reduce product yield and potentially lead to increased costs. The pressure controller CPC6050 accurately controls two pressure systems and accommodates a wide range with removable sensors, contributing to solving the challenges of shape control in vacuum forming. 【Usage Scenarios】 - Pressure control for vacuum forming machines - Optimization of the molding process - Quality management of products 【Benefits of Implementation】 - Reduction of molding defects through high-precision pressure control - Improvement of product yield - Cost reduction
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In the environmental testing industry, precise pressure control is required in temperature cycling tests. Particularly in tests that evaluate the expansion and contraction of materials due to temperature changes and the effects of pressure, high-precision pressure control significantly affects the reliability of test results. Inadequate pressure control can lead to errors in test results or damage to the test subjects. The pressure controller CPC6050 supports accurate data acquisition in temperature cycling tests through high-precision pressure control. 【Application Scenarios】 - Temperature cycling tests - Material testing - Product evaluation 【Benefits of Implementation】 - Improved reliability of test results through high-precision pressure control - Compatibility with a wide pressure range - Enhanced adaptability to tests through flexible system configuration
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In experimental research and development, precise pressure control is required. Particularly in the development of new materials and processes, even slight fluctuations in pressure can significantly impact experimental results. If high-precision pressure control is not achievable, the reproducibility of experiments may be compromised, leading to inaccurate data. The pressure controller CPC6050 precisely controls two pressure systems and accommodates a wide range through removable sensors, thereby enhancing the reliability of experiments in research and development. 【Application Scenarios】 - Material testing - Fluid control experiments - Calibration of pressure sensors 【Benefits of Implementation】 - Improved reliability of experimental data - Enhanced reproducibility of experiments - Increased efficiency in research and development
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In the automotive industry, accurate pressure control is essential for ensuring safety and evaluating performance during brake tests. The performance of the brake system is greatly influenced by precise pressure adjustments and stability, and even slight errors can affect test results. The pressure controller CPC6050 enhances the reliability of brake tests through high-precision pressure control. 【Application Scenarios】 - Performance evaluation of brake calipers - Durability testing of brake master cylinders - Operation verification of ABS (Anti-lock Braking System) 【Benefits of Implementation】 - Improved reliability of test data - Reduced testing time - Increased efficiency in product development
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In the aerospace industry, leak tests require high precision and reliability. Detecting leaks that affect the safety of the aircraft is a very important process in the manufacturing process. Accurate pressure control is essential to avoid missing small leaks. The pressure controller CPC6050 enhances the reliability of leak tests through high-precision pressure control. 【Application Scenarios】 - Leak testing of aircraft components - Leak testing of space-related equipment - Leak testing in research and development 【Benefits of Implementation】 - Improved accuracy of leak tests - Reduced testing time - Enhanced product quality
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In the semiconductor manufacturing industry, particularly in the film deposition process, precise control of pressure is essential for the formation of high-quality thin films. Pressure controllers play a crucial role in ensuring the stability and reproducibility of the deposition process. Even slight fluctuations in pressure can affect film thickness and composition, potentially impacting the performance of the final product. The CPC6050 supports the optimization of the deposition process through high-precision pressure control. 【Application Scenarios】 - CVD (Chemical Vapor Deposition) - PVD (Physical Vapor Deposition) - ALD (Atomic Layer Deposition) - Sputtering 【Benefits of Implementation】 - Stabilization of the deposition process - Improvement of film quality - Enhancement of yield
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It precisely controls two pressure systems. Removable sensors can be built in, with a maximum of two for each, accommodating a wide range. Range: -100 kPa to 21 MPa Accuracy: 0.01% FS or IS-50.
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In the field of environmental studies, particularly in research on microbial degradation, accurate measurement of CO2 concentration is crucial for understanding microbial activity and optimizing the degradation process. By accurately monitoring the CO2 concentration within an incubator, it is possible to properly manage the growth environment of microorganisms and contribute to the improvement of experimental reproducibility. The CO2 incubator [G100] addresses the challenges of measuring CO2 concentration in microbial degradation research. [Application Scenarios] - Microbial culture experiments - Measurement of CO2 concentration in bioreactors - Research on environmental purification technologies [Effects of Implementation] - Optimization of the microbial growth environment - Increased reliability of experimental data - Improved research efficiency
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In the biotechnology industry, particularly in genetic modification research, strict management of the cell culture environment is essential. The CO2 concentration in a CO2 incubator directly affects cell growth and gene expression, necessitating accurate monitoring. Even slight fluctuations in CO2 concentration can significantly impact experimental results, making stable environment maintenance crucial. The CO2 incubator 【G100】 from QED (Geotech) accurately measures the CO2 concentration within the incubator, enhancing the reliability of research. 【Usage Scenarios】 - Cultivation of genetically modified cells - Maintenance of cell lines - Monitoring of cell culture environments 【Benefits of Implementation】 - Accurate understanding of CO2 concentration to optimize the culture environment - Improved reproducibility of experiments - Enhanced reliability of research data
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In hospitals that perform stem cell therapy, strict management of the cell culture environment is required. In particular, the CO2 concentration within the incubator has a significant impact on cell survival and proliferation, making accurate monitoring essential. Even slight fluctuations in CO2 concentration can influence the success of the treatment. The CO2 incubator [G100] accurately measures the CO2 concentration within the incubator, supporting the optimization of the cell culture environment in stem cell therapy. [Usage Scenarios] - Research laboratories in hospitals conducting stem cell culture - Medical institutions performing cell therapy - Situations requiring management of CO2 concentration within the incubator [Benefits of Implementation] - Accurate understanding of CO2 concentration and optimization of the cell culture environment - Improved cell survival and proliferation - Contribution to increased success rates of stem cell therapy
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In the field of university research, accurately managing the CO2 concentration within incubators for cell culture and microbial culture is crucial for enhancing the reproducibility and reliability of experiments. Even slight fluctuations in CO2 concentration can significantly impact experimental results. The CO2 incubator 【G100】 from QED (Geotech) measures the CO2 concentration within the incubator in a handy format, supporting the validation of temperature-controlled devices in research. With the latest technology, it enables fast and accurate measurements, contributing to improved research efficiency. 【Usage Scenarios】 - Cell culture experiments - Microbial culture experiments - Incubator management in laboratories 【Benefits of Implementation】 - Improved accuracy of CO2 concentration measurements - Enhanced reliability of experimental data - Increased research efficiency
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In the livestock industry, managing the CO2 concentration in the culture environment during embryo culture significantly affects the development of eggs and hatching rates. Maintaining an appropriate CO2 concentration is essential for high-quality livestock production. Inadequate management of CO2 concentration can lead to poor development of fertilized eggs and decreased hatching rates. The CO2 incubator [G100] accurately measures the CO2 concentration within the incubator, providing an optimal environment for embryo culture. [Usage Scenarios] - Measurement of CO2 concentration in embryo culture - Monitoring CO2 concentration within the incubator - Quality control of the culture environment [Effects of Implementation] - Accurate understanding of CO2 concentration and optimization of the culture environment - Contribution to improved hatching rates - Support for high-quality livestock production
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In the field of plant cell culture, accurately managing the CO2 concentration in the culture environment is essential for the healthy growth and proliferation of cells. Even slight fluctuations in CO2 concentration can significantly impact culture results. The CO2 incubator [G100] supports the optimization of the culture environment by quickly and accurately measuring the CO2 concentration within the incubator. This allows researchers to achieve more stable culture results and is expected to enhance the reproducibility of experiments. [Usage Scenarios] - Monitoring CO2 concentration in plant cell culture - Verification of CO2 concentration within the incubator - Optimization of the culture environment [Effects of Implementation] - Stabilization of the culture environment - Improvement of experimental reproducibility - Increased efficiency of cell culture
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In the food industry, managing CO2 concentration in microbial culture environments is crucial. The appropriate CO2 concentration is essential for optimizing microbial growth and ensuring product quality and safety. Inadequate CO2 levels can adversely affect microbial proliferation, potentially leading to product quality degradation and the occurrence of off-odors. The CO2 incubator [G100] is a tool that accurately measures CO2 concentration within the incubator to maintain an optimal environment for microbial culture. [Usage Scenarios] - Microbial culture in food manufacturing - Monitoring culture environments in quality control departments - Microbial culture experiments in research and development [Benefits of Implementation] - Efficient microbial growth through optimization of culture environments - Improvement in product quality and safety - Enhanced reliability of research data
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In the drug discovery industry, strict management of the cell culture environment is required for drug screening. In particular, the CO2 concentration within the incubator has a significant impact on cell growth and drug efficacy, making accurate monitoring essential. Even slight fluctuations in CO2 concentration can compromise the reliability of experimental results. This product accurately measures the CO2 concentration in the incubator and supports the maintenance of a stable cell culture environment. [Use Cases] - Cell culture in drug screening - Evaluation of cell growth and drug effects - Management of CO2 concentration within the incubator [Benefits of Implementation] - Optimization of the cell culture environment - Improved reliability of experimental data - Enhanced research efficiency
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This is the Incubator Analyzer from QED (Geotech). It is a handheld analyzer that measures CO2 concentration in incubators (constant temperature chambers). The usage is simple, and it is widely used in research fields such as medical and pharmaceutical companies. It is specially designed to monitor CO2 for verifying constant temperature chambers in the research and pharmaceutical markets. This device has been developed by incorporating the latest technology and specifications, providing users with a fast and easy-to-use precision laboratory set. Optionally, it can also measure O2 (0 - 2%), temperature, and humidity. 【Features】 - CO2 0 - 20% - Options: → O2 0-100% → Dual temperature probe 0 - 50°C → Data storage and download → Humidity sensor 0-100% For more details, please contact us or download the catalog.
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The eddy current displacement gauge Kaman High Temp can be used in harsh environments. This is an introduction to the eddy current displacement sensor handled by Sankyo International.
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○Optimal size and shape for integration into user-designed probes ○Static and dynamic capacity ○High natural frequency ○Excellent static and dynamic performance ○Kulite manufactured small pressure sensor
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High-precision, high-performance digital pressure gauge. - Can accommodate up to three sensors, including built-in and externally connected sensors. - The built-in sensor is removable. → There is no need to return the device for calibration. - Differential pressure display for each channel is also possible.
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In intravenous fluid management in medical settings, it is important to detect abnormalities in bubbles or liquid levels within the infusion line early to ensure patient safety. The presence of bubbles can potentially have adverse effects on patients. The AD-101 series continuously monitors for the presence of liquid levels or bubbles, enhancing safety in fluid management. 【Usage Scenarios】 - Infusion pumps - Drip lines - Hemodialysis - Blood transfusions 【Benefits of Implementation】 - Reduces risks associated with bubble contamination - Improves patient safety - Early detection through alerts - Efficient management through continuous monitoring
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In the ink manufacturing industry, the uniformity of particle size is crucial for stabilizing ink quality. Air bubbles in the ink can reduce the accuracy of particle size measurements and negatively impact the final product. The AD-101 series continuously monitors the occurrence of air bubbles during the ink manufacturing process, supporting quality control. By simply placing a tube, it can detect bubbles without coming into contact with the ink, thereby reducing the risk of contamination. 【Usage Scenarios】 - Quality control in ink manufacturing lines - Pre-treatment for measuring ink particle size - Ink filling processes 【Benefits of Implementation】 - Improved quality through early detection of air bubbles - Reduction of ink waste - Stable product supply
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In the paint industry, the inclusion of air bubbles during film thickness measurement significantly affects the quality of the finished product. The presence of air bubbles can lead to a decrease in the strength of the coating and defects in appearance, potentially diminishing the value of the product. Continuous monitoring of air bubbles is crucial for quality control. The AD-101 series detects interruptions in the flow of paint and identifies the occurrence of air bubbles early, thereby supporting quality management. 【Application Scenarios】 - Paint manufacturing processes - Quality control in film thickness measurement - Paint supply lines 【Benefits of Implementation】 - Reduction of defective products caused by air bubble inclusion - Stabilization of coating quality - Improvement in production efficiency
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In the petroleum refining industry, there is a constant demand for the optimization of separation processes. In particular, the occurrence of bubbles during the separation of crude oil and intermediate products can reduce separation efficiency and negatively impact product quality. It is important to detect bubble formation early and optimize the process. The AD-101 series continuously monitors liquid levels and bubbles in the separation process, supporting efficient separation. 【Application Scenarios】 - Dehydration process of crude oil - Bubble detection in distillation columns - Liquid level monitoring in separation tanks 【Benefits of Implementation】 - Improved separation efficiency - Stabilization of product quality - Cost reduction through process optimization
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In the cosmetics industry, accurate measurement and mixing of ingredients are required to maintain consistent product quality. In particular, the inclusion of air bubbles during the manufacturing process can negatively impact the appearance and quality of the product. The AD-101 series reliably detects interruptions in the flow of the mixed liquid and the occurrence of air bubbles, supporting quality control. By simply clamping the tube, it continuously monitors the presence of liquid levels or bubbles, contributing to the efficiency of the manufacturing process. 【Application Scenarios】 - Supply line for mixed liquids in cosmetics manufacturing - Detection of air bubbles during the filling process - Early detection of foreign matter contamination in quality control 【Benefits of Implementation】 - Stabilization of mixed liquid quality - Reduction of defective products - Increased efficiency of the manufacturing process
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In the semiconductor industry, cleaning evaluation indicates that interruptions in the flow of cleaning solutions and the presence of bubbles can significantly impact product quality. Particularly in semiconductor devices with fine structures, a uniform flow of cleaning solution is essential. The presence of bubbles can lead to inadequate cleaning, resulting in decreased yield and reduced product reliability. The AD-101 series supports quality control in semiconductor manufacturing by continuously monitoring the flow of cleaning solutions and early detection of bubble formation. 【Usage Scenarios】 - Cleaning processes in semiconductor manufacturing lines - Monitoring of cleaning solution supply systems - Bubble detection in chemical supply lines 【Benefits of Implementation】 - Mitigation of yield loss due to inadequate cleaning - Improvement in product quality - Stabilization of manufacturing processes
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