Thermal analyzers are used to measure mechanical properties as a function of temperature or time. Numerous types of thermal analyzers are available such as simultaneous thermal analyzers, dynamic mechanical analyzers, thermogravimetric analyzers, thermomechanical analyzers, and many more. For a high throughput lab with a need for both thermogravimetric and calorimetric data, consider a simultaneous thermal analyzer as this can provide simultaneous data for both measurements under the same testing conditions. Many materials testing laboratories opt for dynamic mechanical analyzers for their ability to accurately analyze the mechanical and viscoelastic properties of various materials including polymers, thermoplastics, and metals. When comparing thermal analysis equipment some key considerations to keep in mind could be temperature precision, accuracy, and many other application-specific specifications. Thermal analyzers have a wide range of applications in materials testing, pharmaceutical testing, food testing, and many other applications.
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| Company | NETZSCH-Gerätebau GmbH | NETZSCH-Gerätebau GmbH | NETZSCH-Gerätebau GmbH | NETZSCH-Gerätebau GmbH |
| Item | STA 319 Jupiter® Simultaneous Thermal Analyzer | DEA 288 Ionic Dielectric Analyzer | TMA 512 Hyperion® Select Thermomechanical Analyzer | TMA 512 Hyperion® Supreme Thermomechanical Analyzer |
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| Reviews | | | | |
| Catalog Number | STA 319 | DEA 288 Ionic | TMA 512 | TMA 512 |
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| Temperature Range | 10°C to 1100°C | Inquire | -70°C to 1500°C/optional 1600°C | -150°C to 1600°C |
| Description | The STA 319 Jupiter® is part of NETZSCH's Jupiter® range of STAs and offers several advantages:
- Temperature range of 10°C (RT) to 1025°C (or up to 1100°C): ideal for polymer, life science and inorganic measurements.
- Robust water-cooled ceramic furnace for fast heating and cooling.
The STA 319 Jupiter® is part of NETZSCH's Jupiter® range of STAs and offers several advantages:
- Temperature range of 10°C (RT) to 1025°C (or up to 1100°C): ideal for polymer, life science and inorganic measurements.
- Robust water-cooled ceramic furnace for fast heating and cooling.
- Advanced top-loading microbalance: Provides an impressive 20-ng resolution for long-term, high-quality measurements.
- Revolutionary ring sample holder design: eliminates the need for a standard reference crucible. Enables quick setup and minimizes handling errors.
- Defined atmospheric conditions thanks to vacuum-tight design.
- Coupling to gas analysis enables real-time identification of the composition of evolved gases.
... Read More | Opening a New World of Cure Monitoring
Customized Test Conditions
The multi-functional design of the DEA 288 Ionic allows for the application of a great variety of different test conditions such as heat, cold or UV light. This enables the user to easily and conveniently determine the best Opening a New World of Cure Monitoring
Customized Test Conditions
The multi-functional design of the DEA 288 Ionic allows for the application of a great variety of different test conditions such as heat, cold or UV light. This enables the user to easily and conveniently determine the best parameters for processing the material.
A complete dielectric analyzer consists of the DEA electronics and a sensor. Disposable sensors are connected via an adaptor box. Four models of DEA 288 Ionic are available: the regular laboratory version and the slim version with small footprint and two industrial versions.
Both instruments are equipped with the same state-of-the-art electronics and have the ability to control additional accessories such as the lab furnace or lab press. The technical differences between the devices are in the design of the housing, the footprint and the maximum number of channels.
Features:
- Frequency range: 1 mHz to 1 MHz, freely selectable values
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Data acquisition multiple DEA modules: True simultaneous operation of all channels
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Minimum data acquisition time: < 5 ms
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Sensor connection: Shielded 4-wire technique (compensation of resistivity and capacity of the wire as a prerequisite for precise measurements)
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DEA modules:
- Portable Version: All-purpose version, up to 7 channels
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Industrial Rack Version: up to 8 channels (extension possible for up to 16 channels)
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I/O Ports: Input and output of measuring signals or signals from peripheral devices such as pressure or temperature sensors. DEA allows for triggering by manufacturing machines
... Read More | The TMA 512 Hyperion® Select - Detecting Even the Slightest Dimensional Changes for Ultimate Material InsightsFeatures:- Nanometer-Level Precision with Advanced LVDT Technology - The heart of the TMA 512 Hyperion® is a highly sensitive LVDT sensor that can measure length changes down to the nanometer
The TMA 512 Hyperion® Select - Detecting Even the Slightest Dimensional Changes for Ultimate Material InsightsFeatures:- Nanometer-Level Precision with Advanced LVDT Technology - The heart of the TMA 512 Hyperion® is a highly sensitive LVDT sensor that can measure length changes down to the nanometer scale. It boasts an impressive digital resolution of 0.125 nm. This ensures ultra-precise detection of dimensional changes, providing exceptional results for your thermal analysis needs.
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Measurement Status Always in View with Innovative Display and LED Status Bar -
The LED status bar on the device clearly displays information about the current measurement, even from a distance. The user-friendly touchscreen display allows for easy control and real-time monitoring. It is seamlessly integrated into our Proteus® software, which enables quick setup and management of measurements.
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Flexible Temperature and Atmosphere Control in a Vacuum-Tight TMA System -
Interchangeable furnaces support a wide temperature range. In the Select version, this spans from -70°C to 1500°C (optionally 1600°C). In addition, various gas atmospheres can be generated. The model with two furnaces allows quick changeover for different test requirements.
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Force Modulation -
Digitally programmable force or displacement control up to 3 N with linear or stepwise force alteration and continuous force modulation for determining visco-elastic properties like Relaxation, Creep and Stress/Strain.
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Hydrogen Research -
Measurements in up to 100% hydrogen atmosphere with maximum safety.
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Seamless Instrument Compatibility -
Furnaces for the TMA 512 Hyperion® are fully compatible with other NETZSCH thermal analysers, such as the STA 509 Jupiter® and DSC 500 Pegasus®, enabling versatile laboratory integration.
... Read More | The TMA 512 Hyperion® Supreme - Detecting Even the Slightest Dimensional Changes for Ultimate Material Insights Features:- Nanometer-Level Precision with Advanced LVDT Technology -The heart of the TMA 512 Hyperion® is a highly sensitive LVDT sensor that can measure length changes down to the nanometer
The TMA 512 Hyperion® Supreme - Detecting Even the Slightest Dimensional Changes for Ultimate Material Insights Features:- Nanometer-Level Precision with Advanced LVDT Technology -The heart of the TMA 512 Hyperion® is a highly sensitive LVDT sensor that can measure length changes down to the nanometer scale. It boasts an impressive digital resolution of 0.125 nm. This ensures ultra-precise detection of dimensional changes, providing exceptional results for your thermal analysis needs.
-
Measurement Status Always in View with Innovative Display and LED Status Bar -
The LED status bar on the device clearly displays information about the current measurement, even from a distance. The user-friendly touchscreen display allows for easy control and real-time monitoring. It is seamlessly integrated into our Proteus® software, which enables quick setup and management of measurements.
-
Flexible Temperature and Atmosphere Control in a Vacuum-Tight TMA System -
Interchangeable furnaces support a wide temperature range. In the Select version, this spans from -70 °C to 1500 °C (optionally 1600 °C). In addition, various gas atmospheres can be generated. The model with two furnaces allows quick changeover for different test requirements.
- Force Modulation -
Digitally programmable force or displacement control up to 3 N with linear or stepwise force alteration and continuous force modulation for determining visco-elastic properties like Relaxation, Creep and Stress/Strain.
- Hydrogen Research - Measurements in up to 100% hydrogen atmosphere with maximum safety.
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Seamless Instrument Compatibility - Furnaces for the TMA 512 Hyperion® are fully compatible with other NETZSCH thermal analysers, such as the STA 509 Jupiter® and DSC 500 Pegasus®, enabling versatile laboratory integration.
... Read More |
| Measuring Range | Weight change up to 2000 mg | Inquire | Inquire | Inquire |
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