
Products

Industry

Products

Industry
- AMI is pleased to introduce its next-generation Simultaneous Thermal Analyzer (STA), a state-of-the-art instrument designed for advanced thermal analysis. Incorporating a 0.1-microgram balance resolution, sophisticated control algorithms, and an innovative hang-down design, this analyzer delivers exceptional precision and reliability in an affordable, high-performance system.
- The STA Series enables simultaneous Thermogravimetric Analysis (TGA) and Differential Scanning Calorimetry (DSC)/Differential Thermal Analysis (DTA) on a single sample within a single run. Built for reliability and precision, the STA delivers comprehensive thermal profiles without the need to run multiple experiments—saving you both time and sample material.
- Engineered for quality control, routine testing, academic research, and industrial R&D, the STA Series combines robust construction with user-friendly intuitive software, offering a cost-effective solution for high-precision thermal analysis.
- The STA is controlled by the Infinity Pro Thermal Analysis software. This unique Windows based software offers a very simple interface with all the features you need to analyze your thermal data.

- STA Simultaneous Thermal Analyzer
- ● Polymers
- ● Chemicals
- ● Petrochemicals
- ● Polymorphs
- ● Superconductors
- ● Ceramics
- ● Glasses
- ● Composites
- ● Metals
- ● Engineered alloys
- ● Pharmaceuticals
- ● Catalyst Research
- ● Building Materials
- ● Propellants
- ● Explosives
- ● Electronic Components
- ● Coals & other fuels
- ● Catalysts
- ● Nuclear Science Materials
- ● Food and Biomaterials
- True Hang-Down Balance Design
- Industry-leading stability, sensitivity, and long-term drift resistance for reliable and repeatable measurements without the need for buoyancy corrective experiments.
- High Sensitivity Microbalance
- Sub-microgram-level accuracy across a broad temperature range, providing confidence in your thermal and mass loss data.
- 24-Bit Resolution
- High-precision measurement of temperature, delta T, and weight with minimal noise and high digital fidelity.
- Small Swept Volume Furnace Cup (7.5mL)
- Enhances temperature uniformity and gas exchange efficiency.
- Simultaneous TGA/DSC or DTA
- Perform thermogravimetric and calorimetric analyses in a single run— ideal for decomposition, oxidation, and phase transitions.
- Dual Purge Gas System
- Separate channels for purge and protective gases allow for fine control of the experimental atmosphere.
- Broad Temperature Range
- Furnace operation up to 1500°C under inert, oxidizing, or reducing gas environments.
- Motor-Driven Furnace Lift
- Ensures automated, smooth movement of the furnace for consistent sample positioning.
- Evolved Gas Analysis (EGA) Compatibility
- Interface with mass spectrometry (MS) or FTIR systems for evolved gas studies during thermal decomposition.
- 4-Gas Selector System
- Automates delivery of up to four different gases for programmable switching during analysis.
- Sub-Ambient System (650°C Model)
- Low-temperature furnace models support experiments starting below room temperature
- High-Temperature Flexibility
- Optional DSC-only high-temperature mode to allow DSC-only to 1,500°C
Optional TGA-only high-capacity mode for larger or reactive samples
SPECIFICATIONS
- Barium Chloride
- This is an example of a reference material that shows temperature and enthalpy accuracy. In addition, this represents a good example of a fused peak analysis.

- Calcium Oxalate
- Calcium Oxalate is an excellent demonstration material for both DSC and TGA. This sample was run in the presence of Oxygen. The first DSC peak has an associated weight loss and represents bound water.

SPECIFICATIONS
-
Temperature |
-40°C-650°C |
Ambient to 1200°C |
Ambient to 1500°C |
Programmed Rate |
0.1-100 °C/min |
0.1-40 °C/min |
DSC Sensitivity |
<1 μW |
<4 μW |
TGA Range |
400 mg |
TGA Readability |
0.1 μg |
Thermocouple |
Type K |
Type R |
DSC/DTA mode |
Yes |