High Temperature Hall Measurement Setup

High Temperature Hall Measurement Setup

DX-1000H High Temperature Hall Measurement Setup
1. Provides operation in three temperature zones, offering an optional temperature range of 4K-773K.
2. The standard version integrates high-temperature equipment while still generating magnetic fields of up to 1 Tesla, with optional electromagnets available for higher magnetic fields.
3. Precise temperature control with fast heating and cooling rates.
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Description
Product introduction

 

DX-1000H High Temperature Hall Measurement Setup consists of an electromagnet, a vacuum pump, a high-temperature vacuum chamber, a Gauss meter, a constant current source, an electromagnet current source, a temperature controller, a computer and software.
The hall effect measurement system measures Bulk Carrier Concentration, Sheet Carrier Concentration, Mobility, Resistivity, Hall Coefficient, and Magnetoresistance.

 

Working principle of DX-1000H High Temperature Hall Measurement Setup

 

  • The electromagnet current source provides current to the electromagnet to generate a magnetic field;
  • The gauss meter measures the value of the uniform magnetic field generated by the electromagnet;
  • On the one hand, the constant current source provides sample test current to the sample for Hall effect testing, and on the other hand, it is used to measure the Hall voltage fed back by the sample;
  • The sample to be tested is placed in a high-temperature vacuum chamber, fixed by high-temperature glue, and used as four test points;
  • There are 4 leads from the high-temperature vacuum chamber, two of which are connected to the temperature controller for temperature measurement and control, the other is the lead wire of the high-temperature probe connected to the Gauss meter, and the other is connected to the Hall sample connection wire to the constant current source ;
  • The computer is connected to a gauss meter, a temperature controller, a constant current source and an electromagnet current source, and the software controls the current and magnetic field values passing through the sample being measured, and obtains the measured voltage value.

 

Testable materials of Hall Measurement Setup

 

Semiconductor materials: SiGe, SiC, InAs, InGaAs, InP, AlGaAs, HgCdTe and ferrite materials, etc.;

Low impedance materials: graphene, metals, transparent oxides, weakly magnetic semiconductor materials, TMR materials, etc.;

High resistance materials: semi-insulating GaAs, GaN, CdTe, etc.

 

Technical indicators of Hall Measurement Setup

 

  • Magnetic field: 10mm spacing is 2T; 30mm spacing is 1T;
  • Sample current: 0.05uA~50mA (adjustable 0.1nA);
  • Measuring voltage: 0.1uV~30V;
  • Provide various test standard materials, all levels of silicon and gallium arsenide (sensitivity and accuracy are different;
  • Minimum resolution: 0.1GS;
  • Magnetic field range: 0-1T;
  • Can be used with gauss meter or data acquisition board for computer communication;
  • I-V curve and I-R curve measurement, etc.;
  • Change curves of parameters such as Hall coefficient and carrier concentration with temperature;
  • Resistivity range: 5*10-4~108Ω.cm;
  • Resistance range: 10mΩ-100GΩ;
  • Carrier concentration: 6*108~1023cm-3;
  • Migration rate: 1~106cm2/vs;
  • Temperature control accuracy: 0.1K;
  • Temperature zone: 4K-773K (optional);
  • Hall coefficient: ±1*10-5~±1*1010cm3/C;
  • The test is fully automated and processed with one click;
  • Continuous measurement of the same temperature difference can be achieved.

 

Parameters of each component

 

High precision electromagnet

  • Pole diameter 100mm;
  • The maximum magnetic field is 20000Gs when the distance between N and S is 10mm;
  • Maximum 13000 Gauss when N, S spacing is 20mm;
  • The maximum magnetic field is 10000 Gauss when the distance between N and S is 30mm;
  • Uniform area: When the spacing is 60mm, the uniformity range is 1% for a diameter of 10mm;
  • Weight: 110kg including bracket and wheels.

 

High-precision bipolar constant current power supply

  • Output: ±10A±80V;
  • Power; 800W;
  • The power supply output current can continuously change between positive and negative rated maximum current;
  • The current can smoothly cross the zero point and reverse without switching;
  • Output current and voltage four-quadrant operation (suitable for inductive loads);
  • The current change rate can be set in the range of 0.0007~0.3 F.S./s (F.S. is the rated maximum output current);
  • Current stability: better than ±25ppm/h (standard type); better than ±5ppm/h (high stability type);
  • Current accuracy: ± (0.01% set value + 1mA);
  • Current resolution: 20 bits, for example, 15A power supply, the current resolution is 0.03mA;
  • Source effect: ≤ 2.0×10-5 F.S. (when the power supply voltage changes by 10%, the output current changes);
  • Load effect: ≤ 2.0×10-5 F.S. (output current change when load changes by 10%);
  • Current Ripple (RMS): Less than 1mA.

 

High precision gauss meter:

  • Accuracy: ±0.30% of reading;
  • Resolution: 0.01mT Range: 0-3T;
  • Probe thickness: 1.0mm;
  • Length 100mm digital;
  • Rs-232 interface data reading software equipped with GP3 probe;
  • Gauss meter probe bracket and sample holder All-aluminum non-magnetic bracket 5-70mm adjustable;
  • Sample holder fixture (customized upon request).


High temperature thermostat

  • 293K-470K) high and low temperature vacuum vessels;
  • TESK301 thermostat: temperature control (65k-600k);
  • Vacuum Pump K25 Vacuum Pump.

 

Constant current source and test meter

  • Constant current source range: ±50nA-±50mA;
  • Resolution 0.1nA, continuously adjustable within the range;
  • High-precision voltage data acquisition instrument range 0. 1uV-30V;
  • Accuracy: 0.01%;
  • Built-in test matrix conversion card;
  • Ohmic contact kits make kits based on ohmic contacts of different materials.

 

Deliver, shipping and serving

 

We offer transportation via maritime, aerial, and express courier services. Our offerings address various shipping demands, allowing our clients to select the optimal solution tailored to their individual needs. Our objective is to fulfill their expectations through economical and punctual deliveries.

 

Moreover, besides our shipping prowess, we emphasize top-notch customer service. Our dedicated team stands prepared to furnish pertinent updates regarding your shipment, ensuring you remain informed throughout the entire process.

 

Air transportaion
sea transportation
express transportation

 

FAQ

 

Q: What is the maximum temperature supported by the high-temperature Hall Effect testing system?

A: The high-temperature Hall Effect testing system typically can reach temperatures exceeding773K(optional).

Q: How does the high-temperature Hall Effect testing system ensure accuracy and stability at extremely high temperatures?

A: The system employs advanced temperature control technology and high-quality materials to ensure accuracy and stability even at extremely high temperatures.

Q: Is the high-temperature Hall Effect testing system suitable for various materials?

A: Yes, the system can be used for Hall Effect testing of different types of materials, including metals, alloys, ceramics, and more.

Q: How are sample preparation and operation carried out in high-temperature environments?

A: Special measures such as using high-temperature resistant materials and special techniques are employed for sample preparation in high-temperature environments to ensure safety and effectiveness.

Q: What factors should be considered in data analysis and result interpretation of the high-temperature Hall Effect testing system?

A: Data analysis and result interpretation require consideration of the effects of high temperatures on material electronic properties, as well as comparison and validation against standard testing conditions.

 

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