DMA/SDTA861e - Dynamic Mechanical Analyzer - Discontinued Product

Discontinued since: Aug, 2017

Swiss Quality

The METTLER TOLEDO DMA/SDTA861e sets new standards in the market. In comparison with conventional DMA instruments it offers new and unique performance benefits:
A frequency range up to 1000 Hz for material behavior simulation and accurate determination of moduli through the presence of a dedicated force sensor. 

  • Wide force range from 1 mN to 40 N – allows very soft and very hard samples to be measured.
  • Wide frequency range from 0.001 Hz to 1000 Hz – means that measurements can be performed under real conditions or more rapidly at higher frequencies.
  • Wide temperature range – from –150 °C to 500 °C in one measurement

Call for Quote

Replaced with: DMA/SDTA 1+ - Dynamic Mechanical Analyzer

Swiss Quality

The METTLER TOLEDO DMA/SDTA1+ sets new standards in the market. In comparison with conventional DMA instruments it offers new and unique performance benefits:
A frequency range up to 1000 Hz for material behavior simulation and accurate determination of moduli through the presence of a dedicated force sensor. 

  • Unique measurement of both displacement and force results in a very accurate determination of moduli
  • Wide force range from 1 mN to 40 N allows you to measure very soft and very stiff samples
  • Broad frequency range from 0.001 to 1000 Hz means you can perform measurements under real conditions or more rapidly at higher frequencies

Specifications

Specifications - DMA/SDTA861e - Dynamic Mechanical Analyzer

Temperature range -150°C ... 500°C
Peak force 12 N, 18 N or 40 N
Minimal force 0.005 N
Frequency range 0.001 ... 1000 Hz
Material Number(s) 51141000

Innovative Technology

 

Features and Benefits of the DMA/SDTA861e - Dynamic Mechanical Analyzer

 

Wide force range from 1 mN to 40 N – allows very soft and very hard samples to be measured.
Wide frequency range from 0.001 Hz to 1000 Hz – means that measurements can be performedunder real conditions ormore rapidly at higher frequencies.
Innovative sample holders – permit samples to be prepared and loaded externally.
Sample temperature measurement – allows accurate temperatureadjustment as well as themeasurement of thermal effectswith SDTA.
Extremely wide stiffness range – a measurement can be performedover the entire temperaturerange of interest with one single sample holder
Wide temperature range – from –150 °C to 700 °C in one measurement

 

Documentation

Product Brochures

DMA/SDTA 1+ Product Brochure
Dynamic mechanical analysis (DMA) is used to measure the mechanical and viscoelastic properties of a material as a function of temperature, time and f...
Dynamic Mechanical Analysis Brochure
Dynamic mechanical analysis (DMA) is an important technique used to measure the mechanical and viscoelastic properties of materials such as thermoplas...
Brochure: STARe Excellence Software
Thermal analysis is a well-established analytical method that is widely used in many different fields. It provides laboratories with valuable results...
The Future of Thermal Analysis Brochure
Thermal Analysis comprises a group of techniques that measure the physical or chemical properties of a sample as a function of temperature or time whi...

Datasheets

Datasheet: DMA Evaluation
In Dynamic Mechanical Analysis (DMA), mechanical and viscoelastic properties of materials are measured as a function a frequency and temperature. An u...
Datasheet: STARe Software Option Mathematics
This software option offers a number of useful calculations that can be applied to curves for advanced evaluation possibilities, adding even more flex...

Accessories

Consumables

Software

More Information

Outstanding Service

METTLER TOLEDO offers you valuable support to help you keep informed about new developments and expand your knowledge by

 

reading a UserCom.

Our popular, technical customer magazine, where users and specialists publish applications from different fields.

 

participating in webinars.

Discuss specific topics with experts.

 

 

having a look at our specialist handbooks.

Written for thermal analysis users with background information, theory and practice, useful tables of material properties and many interesting applications.

 

improving your TA skills.

Web‐based training is an efficient way to learn quickly and conveniently.

 

searching our database.

If you have a specific application question, you may find the answer in the application database.

 

 

learning in class.

Classroom training is still one of the most effective ways to learn.

 

being informed – even when you are on the go.

Have access to all kinds of TA related information and services via your mobile device.

watching a video.

Our new technical videos explain complex issues concerning thermal analysis instrumentation and the STARe software.