FMS Ferroelectric Measurement Spectrometer – MatMeas
MatMeas High‑precision ferroelectric measurement system for hysteresis loop, fatigue testing and leakage current analysis under extreme temperatures.
- Ferroelectric hysteresis loop measurement
- Fatigue and leakage current testing
- High‑voltage amplifier ±1000V / ±10kV
- Wide temperature range −160°C to 450°C
- PID temperature control for stable data without signal jumping
Ferroelectric Measurement System Description
The FMS series ferroelectric measurement spectrometer is designed to analyze electrical properties of ferroelectric materials. The system supports hysteresis loop testing, fatigue measurement, leakage current analysis, polarization and depolarization studies. With integrated high‑voltage amplifiers and precise PID temperature control, the instrument enables stable testing in high and low temperature environments. It is widely used in universities, research institutes and industrial laboratories for advanced ferroelectric material characterization.
Ferroelectric Measurement System Technical Data Sheet
| Parameter | Value |
| Measurement Channel | Single channel |
| Temperature Range | −160°C to 450°C |
| Temperature Accuracy | ±0.5°C |
| Heating Rate | 0–10°C/min |
| Heating Method | Resistive heating |
| Test Voltage | ±100V / ±10kV |
| Current Measurement Range | 500 fA – 1 A |
| Maximum Load Capacitance | 1 µF |
| Hysteresis Frequency | 1 mHz – 1 kHz |
| Sample Type | Bulk or thin film |
| Sample Size | φ < 20 mm; thickness < 5 mm |
| Power Supply | 220V, 50–60 Hz |
| Weight | 32 kg |
| Warranty | 1 year |
Request a Quote for FMS System
Contact us to receive detailed specifications and customized configuration for your research needs.
Ferroelectric Measurement Applications
- Ferroelectric material research
- Thin film and bulk ferroelectric characterization
- Leakage current analysis
- Fatigue reliability testing
- Polarization and depolarization studies
FMS Ferroelectric Measurement System Video - MatMeas
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Suggested sections、
1. Accurate Hysteresis Loop Measurement
2. Fatigue Testing of Ferroelectric Materials
3. Leakage Current Analysis
4. PID Temperature Control System
5. High‑Voltage Amplifier Protection Design



