Used OMNIPROBE Autoprobe #9381014 for sale

Manufacturer
OMNIPROBE
Model
Autoprobe
ID: 9381014
Motion controller Part number: ASSY-0001.45.40.
OMNIPROBE Autoprobe is an advanced prober designed for probing solution-processed materials as well as other materials. It is used in research and development (R&D) activities in Academic and industrial settings. Autoprobe has the ability to accurately detect resistance, voltage and temperature. It is specifically designed to measure and study material properties at the micron and nanometer scales. OMNIPROBE Autoprobe uses a powerful microscope coupled with a high resolution imaging system to provide detailed images of the samples electrical properties. It is designed to work with a wide range of materials, including GaAs, Si, and low-k dielectrics. It also supports a wide range of probing techniques, such as scanning electron microscopy for localized imaging, near-field optical measurements for imaging through thick materials, capacitive imaging for resistivity mapping, and diffusion current imaging for mapping minority carrier distributions. Autoprobe is user-friendly and has an automated software control system which allows for easy set-up and data acquisition. OMNIPROBE Autoprobe is designed to produce precise and detailed images of the sample over a wide range of temperatures and under different environmental conditions. Its automated functions allow users to accurately examine and analyze the electrical circuit behavior of a specific material and to quickly identify potential areas of improvement. Autoprobe is equipped with a graphical user interface (GUI) that provides a user-friendly and intuitive experience. OMNIPROBE Autoprobe also comes with a wide range of analysis tools, such as Six Sigma Statistical Analysis, Curve Fitting, Parameter Detection and Waveform Analysis. The machine is highly accurate and competitively priced. It also comes with a long warranty and excellent customer service. It is an ideal tool for researchers and engineers who want to study material properties at the micro and nanometer scale with precise accuracy.
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