Product Introduction
The HSMC-10 Multi-Channel Hall Test System is capable of providing a demagnetized environment for multi-electrode cylindrical ingots, D-type ingots and large wafers. The system has a 77K liquid nitrogen single-point option that provides samples to complete Hall effect measurements at a low temperature of 77K. With the Hall tester, it can accurately measure the electrical properties of low mobility materials can be used in electromagnetic field, liquid nitrogen cryogenic environment (77K), a variety of types of samples for rapid automated testing, in order to obtain the Hall parameters of the samples, including the resistivity of the samples to be tested, the Hall voltage, the Hall coefficient, the carrier concentration, the Hall mobility and the type of carrier, etc., to fill the traditional Hall test instrument can only measure the preparation of the After the molding of the sample blank.
System features:
- Industry-advanced rapid Hall effect test function and data analysis function, greatly reducing the measurement time;
- Matrix switch to realize free switching and selection between test electrodes, suitable for multi-electrode samples;
- Customizable solenoid can realize large magnetic field uniform area, suitable for large samples;
- With 24 electrodes automatic selection, switching test and data analysis function;
- With 0.1T ~ 1T wide range of magnetic field adjustment interval and accurate and fast zero magnetic field control function;
- With automatic injection function, can support up to 1kg to be tested sample automatic injection;
- With a wealth of sample test support options, can measure cylindrical ingots, D-shaped ingots, wafers (2 inch, 4 inch and 6 inch) and other shapes and sizes of samples;
- With data acquisition, organization, analysis and output functions, as well as report customization and export functions;
- With system scalability, upgraded to support up to 32 electrode automatic switching test.
- Testing temperature: room temperature or 77K liquid nitrogen low temperature;