-
Supplier: LECO Corporation
Description: Thermogravimetric analysis is the basic analysis in many industries to determine material weight loss as a function of temperature in a controlled environment. To meet the needs of these industries, the TGA701 Thermogravimetric Analyzer was designed for increased reliability and
- Remote Interface: Application Software Included, Computer Interface
- Display: None
- Thermal Analyzer Type: Thermal Gravimetric Analyzer (TGA)
-
Supplier: Hitachi High-Tech America
Description: The Hitachi NEXTA STA (simultaneous thermogravimetric analyzer) measures DSC and TGA simultaneously in a single unit. STA is used for evaluating thermal resistance, decomposition temperature, and quantitative analysis of components by TGA analysis data, and is also used for DSC
- Temperature Range: 25 to 1,100 C
- Remote Interface: Application Software Included, Computer Interface
- Thermal Analyzer Type: Thermal Gravimetric Analyzer (TGA)
-
Supplier: Shimadzu Scientific Instruments, Inc.
Description: These analyzers feature an advanced thermo-balance design for outstanding vibration resistance and stable, high-sensitivity measurements. With a weight readability of 0.1 µg, the TGA-50 series can quantify the smallest of weight changes, while a wide variety of sample cells is available to
- Temperature Range: 25 to 1,000 C
- Accuracy: 0.001 (%)
- Output Options: Analog Voltage, Pulse Signal
- Features: Cooling Available, Programmable Heating Rate, Temperature Control
-
-
Supplier: Linseis Inc.
Description: The Linseis STA PT1000 is a top loading Thermobalance, which offers a highly user-friendly design. Even at a sample weight of up to 10g the Tara is done electronically. The specially designed furnaces allow fast heating and cooling rates as well as a highly precise temperature control. The system
- Temperature Range: 20 to 1,000 C
- Output Options: Analog Voltage
- Remote Interface: Application Software Included, Computer Interface, Other Computer Interface
- Features: Cooling Available, Programmable Heating Rate, Temperature Control
-
Supplier: Rigaku Corporation
Description: function of temperature and time. Analysis techniques include thermogravimetric analysis (TG), differential thermal analysis (DTA), differential scanning calorimetry (DSC) and thermomechanical analysis (TMA). Rigaku's line of thermal analysis products meets diverse needs, ranging from quality
- Temperature Range: 1,500 C
- Features: Cooling Available, Temperature Control
- Thermal Analyzer Type: Differential Thermal Analyzer (DTA), Thermal Gravimetric Analyzer (TGA)
- User Interface: Digital Front Panel
-
Supplier: Linseis Inc.
Description: The STA PT1600 is the high end Simultaneous Thermobalance from LINSEIS. The system offers unparalleled TG and DSC resolution in combination with the highest vacuum capabilities and TG drift stability. The system is modular with many exchangeable furnaces (-150°C up to 2400°C), different measuring
- Temperature Range: -150 to 1,600 C
- Output Options: Analog Voltage
- Remote Interface: Application Software Included, Computer Interface, Other Computer Interface
- Features: Cooling Available, Programmable Heating Rate, Temperature Control
-
Supplier: Accuris
Description: Standard Test Method for Mass Scale Calibration of Thermogravimetric Analyzers
-
Supplier: Accuris
Description: Standard Test Method for Mass Loss and Residue Measurement Validation of Thermogravimetric Analyzers
-
Supplier: Accuris
Description: Standard Test Method for Temperature Calibration of Thermogravimetric Analyzers - INCLUDES STANDARD + REDLINE (PDF)
-
Supplier: ASTM International
Description: 1.1 This test method describe the temperature calibration of thermogravimetric analyzers over the temperature range from 25 °C to 1500 °C and is applicable to commercial and custom-built apparatus. This calibration may be accomplished by the use of either melting point standards or
-
Supplier: ASTM International
Description: 1.1 This test method covers the calibration or performance confirmation of the mass (or weight) scale of thermogravimetric analyzers and is applicable to commercial and custom-built apparatus. 1.2 Electronic instrumentation or automated data analysis and reduction systems or treatments
-
Supplier: Accuris
Description: Standard Test Method for Mass Scale Calibration of Thermogravimetric Analyzers - INCLUDES STANDARD + REDLINE (PDF)
-
Supplier: NETZSCH-Gerätebau GmbH
Description: TG 209 F1 Libra® - Thermo-Microbalance (Thermogravimetric Analyzer) Faster and more comprehensive characterization of materials Based on over 50 years of experience in thermogravimetry, NETZSCH has developed the thermobalance TG 209 F1 Libra®. This instrument allows for analyses to be
- Temperature Range: 10 to 1,100 C
- Remote Interface: Computer Interface
- Features: Cooling Available, Temperature Control
- User Interface: Digital Front Panel
-
Supplier: NETZSCH-Gerätebau GmbH
Description: TG 449 F3 Jupiter® - Thermo-Microbalance (TGA - Thermogravimetric Analyzer) The TG 449 F3 Jupiter® is the workhorse for thermogravimetric analyses of a moderate to high sample weights from -150°C into the high temperature range of 2400°C. The vertical design with top-loaded
- Temperature Range: -150 to 2,400 C
- Remote Interface: Computer Interface
- Features: Cooling Available, Temperature Control
- User Interface: Digital Front Panel
-
Supplier: NETZSCH-Gerätebau GmbH
Description: TG 209 F3 Tarsus - Thermo-Microbalance (TGA - Thermogravimetric Analyzer) Together with the DSC 200 F3 Maia®, the new thermo-microbalance, TG 209 F3 Tarsus®, represents a cost-effective overall concept, tailored not only to the quality assurance of polymers, but also to routine
- Temperature Range: 20 to 1,000 C
- Remote Interface: Computer Interface
- Features: Cooling Available, Temperature Control
- User Interface: Digital Front Panel
-
Supplier: ASTM International
Description: 1.1 This method provides procedures for validating mass loss and residue measurements by thermogravimetric analyzers (TGA) and analytical methods based upon the measurement of mass loss or residue content. Performance parameters determined include mass loss and residue repeatability
-
Supplier: ASTM International
Description: 1.1 This test method provides procedures for validating mass loss, residue, and temperature measurements by thermogravimetric analyzers (TGAs) and analytical methods based upon the measurement of mass loss or residue content or temperature. Performance parameters determined include
-
Supplier: NETZSCH-Gerätebau GmbH
Description: TG 449 F1 Jupiter® - Thermo-Nanobalance (TGA - Thermogravimetric Analyzer) The TG 449 F1 Jupiter® is number one among thermo-nanobalances because of the concept of a vacuum-tight instrument design and the successful combination of the highest resolution and unsurpassed long-term
- Temperature Range: -150 to 2,400 C
- Remote Interface: Computer Interface
- Features: Cooling Available, Temperature Control
- User Interface: Digital Front Panel
-
Supplier: Rigaku Corporation
Description: properties of materials involved in a reaction or transition are studied as a function of temperature and time. Analysis techniques include thermogravimetric analysis (TG), differential thermal analysis (DTA), differential scanning calorimetry (DSC) and thermomechanical analysis (TMA).
- Temperature Range: 1,500 C
- User Interface: Digital Front Panel
- Display: Digital Readout
- Features: Temperature Control
-
Supplier: Linseis Inc.
Description: The Linseis TGA PT1600 for thermogravimetric applications is a toploading Thermobalance, which offers a highly userfriendly design. Even at a sample weight of up to 5/25g the tara is done electronically. The specially designed furnaces allow fast heating and cooling rates as well as a highly
- Temperature Range: -150 to 2,400 C
- Remote Interface: Application Software Included, Computer Interface, Other Computer Interface
- Features: Atmosphere Control, Can be Coupled with Fourier-Transform Infrared Spectrometer, Can be Coupled with Mass Spectrometer, Programmable Heating Rate, Temperature Control
- Thermal Analyzer Type: Thermal Gravimetric Analyzer (TGA)
-
Supplier: Rigaku Corporation
Description: science where the physical and chemical properties of materials involved in a reaction or transition are studied as a function of temperature and time. Analysis techniques include thermogravimetric analysis (TG), differential thermal analysis (DTA), differential scanning calorimetry (DSC) and
- Temperature Range: -150 to 1,500 C
- Features: Cooling Available, Temperature Control
- Calorimeter Type: Differential Scanning Calorimeter (DSC)
- User Interface: Digital Front Panel
-
Supplier: Cheap Tubes, Inc.
Description: Australia, Japan, Romania, South Korea, Singapore, Taiwan, China, South Africa, Brazil and many other countries as well. Quality Control Equipment used by Cheap Tubes? Cheap Tubes uses a Raman Spectrometer and a Q50 Thermogravimetric Analyzer to assess our CNTs quality. We proudly use
-
Supplier: Cheap Tubes, Inc.
Description: Australia, Japan, Romania, South Korea, Singapore, Taiwan, China, South Africa, Brazil and many other countries as well. Quality Control Equipment used by Cheap Tubes? Cheap Tubes uses a Raman Spectrometer and a Q50 Thermogravimetric Analyzer to assess our CNTs quality. We proudly use
-
Supplier: Cheap Tubes, Inc.
Description: Australia, Japan, Romania, South Korea, Singapore, Taiwan, China, South Africa, Brazil and many other countries as well. Quality Control Equipment used by Cheap Tubes? Cheap Tubes uses a Raman Spectrometer and a Q50 Thermogravimetric Analyzer to assess our CNTs quality. We proudly use
-
Supplier: Cheap Tubes, Inc.
Description: Australia, Japan, Romania, South Korea, Singapore, Taiwan, China, South Africa, Brazil and many other countries as well. Quality Control Equipment used by Cheap Tubes? Cheap Tubes uses a Raman Spectrometer and a Q50 Thermogravimetric Analyzer to assess our CNTs quality. We proudly use
Find Suppliers by Category Top
Conduct Research Top
-
Why Choose a STA Instrument Over Standalone TGA?
Simultaneous thermogravimetric analyzers (STA) have DSC (differential scanning calorimetry) and TGA (thermogravimetric analysis) capabilities within a single instrument. In this post we look at why most people decide to opt for a STA instrument over standalone TGA - and why having both techniques
More Information Top
-
Thermal Analysis of Polymers Fundamentals and Applications Complete Document
The heart of the thermogravimetric analyzer is the thermobalance, which is capable of measuring the sample mass as a function of temperature and time.
-
Cleaner Combustion and Sustainable World
Seven datasets were obtained with thermogravimetric analyzers (TGAs); three with conventional WMRs; and two each with EFRs, free-fall reactors, and fluidized beds (FBs).
-
http://wiredspace.wits.ac.za/bitstream/handle/10539/1601/Removal%20of%20hydrogen%20fluoride%20from%20gas%20streams.pdf?sequence=1
Modifications to the thermogravimetric analyser ..................
-
Proceedings of the 20th International Conference on Fluidized Bed Combustion
Abad et al., 2007b; Ryu et al. 2001) Most of these studies were obtained from the mass conversion recorded in Thermogravimetric Analyzers (TGA).
-
Challenges of Power Engineering and Environment
Drop-Tube furnace more closely simulates combustion conditions in industrial pulverized coal combustion than thermogravimetric analyzers [10].
-
Advances in Chemical Engineering III
Pyrolysis Characteristics of Pine Powder and Polyvinyl Chloride of Municipal Solid Waste in Thermogravimetric Analyzer .
-
Advanced Engineering Materials III
Thermogravimetric analysis was carried out by a TG 209 F1 thermogravimetric analyser (NETZSCH, Germany).
-
Multi-Functional Materials and Structures IV
Thermal properties of TPS/PLA blend and TPS/PLA/PBAT blends with various PLA-g-MA contents were analyzed using a thermogravimetric analyzer (Perkin Elmer, SDT 2960).
-
Handbook of Climate Change Mitigation
FT IR Fourier transform infrared spectrometer, SEM scanning electron microscope, HR(TEM) high resolution (transmission electron microscope), TGA-DSC thermogravimetric analyzer –differential scanning calorimeter, XRD X-ray diffraction, AFM atomic force microscope, Voc open circuit potential, I/t current-time, V/t voltage- time …
-
Advanced Materials and Processes II
The thermal stabilities were studied on a NETZSCH TG 209 F1 thermogravimetric analyzer at a heating rate of 10 oC min-1 under nitrogen stream with a flow rate of 15 mL min-1.
Indicates content that may require registration and/or purchase.