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The JMS-Q1500GC can be coupled with various TGs such as STA449 and STA2500. In addition to Electron Ionization (EI), it is possible to choose ionization methods such as Chemical Ionization (CI) and Photo Ionization (PI), and since EI/PI share the same ion source, there is no need to replace the ion source. The mass range is also wide, from 1 to 1022 u. *For more details, please refer to the catalog or feel free to contact us.*
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Free membership registrationThe "TMA 402 F1/F3 Hyperion" is a thermomechanical analysis device that measures the shape deformation of solids, liquids, and metal pastes under specified loads, using temperature and time as variables. It is used across a wide range of applications from quality control to research and development, with materials including plastics, elastomers, paints and dyes, composites, adhesives, films and fibers, ceramics, glass, and metals. This device provides valuable insights into the composition, structure, manufacturing conditions, and potential applications of these materials. 【Features】 ■ Digital resolution: 0.125nm ■ Capable of operating from -150℃ to 1550℃ by exchanging heating furnaces ■ Various types of sample holders available ■ Achieves a wide load range (programmable from -3N to 3N) *For more details, please refer to the catalog or feel free to contact us.
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Free membership registrationThe "STA Series" is a device that simultaneously performs thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC) on a single sample using the same apparatus. It allows for evaluations with completely consistent measurement conditions such as sample atmosphere, flow rate, sample vapor pressure, heating rate, and radiation effects. It can be connected to gas analysis systems such as FT-IR (Fourier-transform infrared spectrometer), MS (mass spectrometer), and GC-MS (gas chromatography-mass spectrometry), enabling the analysis of gases generated during the heating/cooling process. 【Features (STA 449 Jupiter)】 ■ Simultaneous measurement of thermogravimetry and differential thermal analysis from -150 to 2400°C ■ High-temperature specific heat measurement up to 1400 degrees ■ Supports DTA and large sample measurements ■ An upper pan type absolute balance that provides excellent performance *For more details, please refer to the catalog or feel free to contact us.
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Free membership registrationThe "SBA 458 Nemesis" is a measurement device that can measure the Seebeck coefficient and electrical conductivity (1/Ωm) under identical conditions up to 1100°C. It accommodates various sample shapes, including square, rectangular, circular, and strip shapes. Sample exchange can be performed quickly and easily without the need for fixtures. Additionally, the double heater allows for the setting of any temperature gradient at each measurement temperature step. The appropriateness of the measurement can be verified by examining the deviation from the linear response when the temperature gradient is changed before and during the measurement, as well as checking for hysteresis. 【Features】 ■ Capable of measuring samples of various shapes ■ Immediate measurement start – easy sample exchange ■ Data verification function – double heater mechanism ■ Highly reliable short needle structure – solves solid diffusion problems ■ No need to measure the distance between short needles *For more details, please refer to the catalog or feel free to contact us.
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Free membership registrationThe "Dynamic Mechanical Analysis Measurement Device Catalog" introduces the "NETZSCH GABO Measurement System," which is utilized in various fields of material development worldwide, including fundamental research, product engineering, and quality control. It features the dynamic mechanical analysis measurement device "EPLEXOR," which measures the viscoelasticity and thermal properties of materials based on frequency, temperature, stress, strain, and thermal history, as well as the tackiness measurement device "GABOTACK," which measures the adhesive force at the contact surface, and the quality control measurement device "QUALIMETER," among many others. [Main Contents] ■ High-load DMTA ■ Flexometer ■ Tackiness measurement device ■ Quality measurement device ■ Humidity control options *For more details, please refer to the catalog or feel free to contact us.
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Free membership registrationThe NanoTR and PicoTR thin film thermal property measurement devices are the world's first instruments capable of accurately measuring the thermal properties of metal films, oxide films, and organic films. 【Features】 ■ Capable of measuring thermal diffusivity, thermal conductivity, and interfacial thermal resistance of thin films with thicknesses ranging from several tens of nanometers to several micrometers. ■ Equipped with both RF and FF measurement methods, allowing measurements regardless of the type of substrate. ■ SI traceable device, compliant with JIS R 1689 and JIS R 1690. *For more details, please refer to the catalog or feel free to contact us.
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Free membership registrationThe "MMC 274 Nexus" is a multi-mode calorimeter that combines two proven measurement technologies: differential scanning calorimetry (DSC) and adiabatic calorimetry (ARC). It can measure chemical reactions, phase transitions, and specific heat using gram-sized samples, similar to DSC. Therefore, it is capable of measuring mixtures of organic and inorganic substances as well as slurries. Additionally, it can perform adiabatic measurements, which are essential for safety testing in manufacturing processes, similar to ARC. 【Specifications】 ■ A wide range of measurement modes covering various applications with a single device ■ Temperature range up to 500°C ■ Pressure range up to 200 bar (20 MPa) ■ Diverse sample containers compatible with various substances and masses ■ Calorimeter modules can be used in combination with a compact device *For more details, please refer to the catalog or feel free to contact us.
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Free membership registrationThe "LFA 457 MicroFlash" is a device that can measure the thermal properties of materials, such as thermal diffusivity and thermal conductivity. This device is designed based on the laser flash method, which is a non-contact measurement technique optimal for measuring ceramics, alloys, composite materials, and multilayer materials. It supports measurements in a temperature range of -125°C to 1100°C. The thermal diffusivity of standard sample materials can be measured with an accuracy of ±3%, and for specific heat capacity, most materials can be measured within ±5%, allowing for high-precision measurements. 【Features】 ■ Short measurement time ■ Non-destructive testing, non-contact measurement ■ Wide measurement range ■ High precision, high reproducibility ■ Compatible with multilayer materials *For more details, please refer to the catalog or feel free to contact us.
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Free membership registrationThe HFM 446 Lambda is a thermal conductivity measurement device suitable for measuring the thermal conductivity of materials with low conductivity, such as insulation materials. The sample is placed between a hot plate and a cold plate, and the temperature difference is adjusted while the heat flux is measured with sensors. Stability is achieved in about 15 minutes, allowing for more measurements and increased productivity. With two heat flux sensors positioned, the error remains below 0.5% within 15 minutes, and during tests lasting several days, a very stable conductivity of 0.10 to 0.25% can be obtained. This allows for reliable data collection for simple inspections of product variability during the manufacturing process. 【Features】 ■ High precision, stability, and accuracy ■ Fast and easy operation ■ Automatic operation ■ Short setup time and quick start *For more details, please refer to the catalog or feel free to contact us.
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Free membership registrationRegardless of the type of work involved, such as research and development, quality control, contract testing, or material specifications for specific applications, information about the behavior of materials under temperature changes and different atmospheres is important. ■ Material identification ■ Process optimization ■ Quality control ■ Phase diagrams ■ Kinetic analysis ■ Miscibility *For more details, please refer to the catalog or feel free to contact us.*
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Free membership registrationThe multifunctional design of the DEA 288 Ionic allows for the application of a wide range of different testing conditions, such as heating, cooling, and UV irradiation. This enables users to easily and conveniently determine the optimal parameters for material manufacturing processes. The standard dielectric analysis device includes DEA electronics and sensors. Disposable sensors are connected via an adapter box. Four models of the DEA 288 are available: a standard lab version, a slim version with a small footprint, and two industrial versions. All devices are equipped with the same state-of-the-art electronics and can control additional accessories such as lab heating furnaces and lab presses. The technical differences between the devices are in the housing design, footprint, and maximum number of channels. *For more details, please refer to the catalog or feel free to contact us.*
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Free membership registrationThe thermal analysis and thermal property measurement equipment provided by NETCH Corporation is highly regarded by customers worldwide as a key player in the development of new materials and substances. In Japan, it contributes to key technological developments in modern society, supporting energy-saving initiatives, energy-related technology development, material evaluation for miniaturization and high performance of device and electronics products, as well as addressing environmental issues and improving safety. We invite you to experience the cutting-edge thermal analysis, calorimetry, and thermal property measurement products that NETCH Corporation takes pride in at our "Application Lab," supporting technological innovation across various fields. 【Thermal Analysis Solutions】 ○ Battery Solutions ○ Polymer Solutions ○ Electronics Solutions ○ Metal Solutions For more details, please contact us or download the catalog.
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Free membership registrationAs the development of new materials and substances diversifies and becomes more advanced, there is a challenge that traditional analysis methods alone cannot overcome the current situation. Here, "thermal analysis" brings new insights. NETZSCH is a world-class manufacturer of thermal analysis and thermal property measurement instruments, and by providing cutting-edge solutions, we strongly support our customers' research and development. 【What can be understood with thermal analysis instruments】 ■ Melting glass transition ■ Thermal conductivity ■ Expansion rate ■ Elastic modulus ■ Analysis of gases generated during thermal decomposition *For more details, please request materials or view the PDF data available for download.
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Free membership registrationThe STA allows for simultaneous measurements of thermogravimetric analysis (TG) and differential scanning calorimetry (DSC). It is the only device capable of high-temperature specific heat measurements up to 1400°C. You can choose from six types of heating furnaces, covering a wide measurement temperature range (-150°C to 2400°C). Additionally, the double furnace mechanism allows for the installation of two furnace bodies. It achieves a TG resolution of 0.025μg, with stability at 1400°C holding at 1μg/h. The TG measurement range is up to 35g (volume: 5cm³), accommodating both small and large sample measurements. With the newly developed OTS system, measurements can be conducted at oxygen concentrations below 1ppm, which was not possible with conventional vacuum replacement. It is also compatible with QMS, FT-IR, and GCMS coupling.
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Free membership registrationWe support a wide range of measurements from resin samples to ceramics, with a measurement range of -150°C to 1700°C. A variety of sample holders are available, and measurements can be conducted under a high-purity inert atmosphere due to the vacuum-sealed structure.
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Free membership registrationAchieves low drift, high sensitivity, and stable measurements even at high temperatures. The balance features a symmetrical structure with "main fulcrum" and "secondary fulcrum," which prevents measurement errors caused by sample positioning, thermal expansion of the balance beam, and changes in sample volume. The weighing moment of the balance is independent of the heating temperature, ensuring consistent sensitivity even during high-temperature measurements.
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Free membership registrationBy combining a high-speed response corona sensor with a low-heat-capacity arena furnace, we have achieved a maximum heating and cooling rate of 500°C/min, which was impossible with conventional heat flow DSC. The excellent cooling function also allows for the measurement of polymer crystallization. The device features a compact design that can be used in various locations, and with the inclusion of an auto-sample changer capable of automatic measurement and analysis of 20 samples, it is ideal for routine measurements.
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Free membership registrationARC, also known as an Accelerating Rate Calorimeter or adiabatic reaction calorimeter, is a device that measures the heat flow changes of a sample under adiabatic conditions. It allows for the safe evaluation of safety in various fields, from manufacturing, storage, and transportation in chemical plants to the development of lithium-ion batteries, all measured on a small scale under adiabatic conditions. With Variphi software, various analyses are possible, including pressure data measurement and specific heat measurement of samples.
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Free membership registrationThe latest tabletop Xe flash analyzer enables rapid, easy, and highly accurate measurement of thermal diffusivity and thermal conductivity. It covers a wide measurement temperature range from -100°C to 1250°C, and with improved pulse width, it can also handle high thermal conductivity samples of thin films that were difficult to measure conventionally. It comes standard with a maximum of 16 auto-sample changers, allowing for highly accurate measurements of samples ranging from large diameters to very small diameters.
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Free membership registrationDifferential Scanning Calorimetry (DSC) is a mainstream device for analyzing the thermal properties of solids and liquids, capable of very robust and stable measurements. It employs an indirect cooling method, allowing for low-noise measurements even in low-temperature regions. The optimization of the furnace structure provides excellent baseline reproducibility (±10μW). The exchange between liquid nitrogen and the electronic cooling system is easy. The sealed structure reduces the influence of moisture in the atmosphere during low-temperature measurements.
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