Microscope Kerr

Instrument de mesure de boucle d'hystérésis MOKE
Miniature Hysteresis Loop Measurement Instrument Product Introduction The MINIMOKE miniature MOKE magnetic measurement instrument uses the magneto-optical Kerr effect to measure hysteresis loops, offering advantages such as speed, precision, non-contact, and non-destructive (no additional sample processing required). It provides information on coercive force, saturation magnetic field, and remanence of magnetic materials. Lightweight, compact, easy to operate, and fast
Instrument de mesure de boucle d'hystérésis MOKE

Instrument de boucle d'hystérésis au niveau de la tranche, système de mesure de tranche non destructif
Wafer-Level Hysteresis Loop Measurement Instrument Product Introduction Using polar/longitudinal magneto-optical Kerr effects (MOKE), this instrument rapidly and globally detects the magnetism of wafer films. Non-contact measurement avoids wafer damage and is suitable for post-patterning sample testing in spin chip production. It provides a vertical magnetic field of up to 2.5 T and an in-plane magnetic field of up to 1.4 T, with strong magnetic fields inducing free and
Instrument de boucle d'hystérésis au niveau de la tranche, système de mesure de tranche non destructif

Système d'imagerie laser à champ magnétique élevé
Cryogenic High-Magnetic-Field Laser Kerr Microimaging System Product Introduction Developed for the weak magnetism, small size, non-conductive nature, low coercive field, and low Curie temperature of two-dimensional ferromagnetic materials, this powerful characterization system features high magnetic detectionprecision, high-precision, micro-region spot measurement and positioning strong magnetic fields and wide temperature variation, meeting most of the magnetic characteriza
Système d'imagerie laser à champ magnétique élevé
Cryostat optique magnéto

Cryostat magnéto-optique intégré pour les mesures cryogénétiques flexibles
Integrated Magneto Optical Cryostat For Flexible Cryo Measurements Product Description: The Magneto Optical Cryostat is a cutting-edge device designed for advanced research in the field of magneto optical measurements. With its exceptional features and superior performance, this cryostat offers researchers a powerful tool to conduct experiments in high magnetic fields with precision and accuracy. One of the standout attributes of this cryostat is its optical windows
Cryostat magnéto-optique intégré pour les mesures cryogénétiques flexibles

1.7 K - 350 K Magnétique Optique Cryostat Supraconducteur MO Cryostat
Superconducting Magnet Optical Cryostat-MO-Cryo Product Introduction The MO-Cryo superconducting Magnet optical cryostat integrates ultra-low temperatures, strong magnetic fields, and optical testing into a highly integrated and flexible cryogenic system. With 7 side optical windows, 1 top optical window, and 1 bottom window, it enables multi-directional and free optical measurements in a cryogenic strong magnetic-field environment. The internal large sample space accommodate
1.7 K - 350 K Magnétique Optique Cryostat Supraconducteur MO Cryostat
Testeur de MRAM

Testeur de puces MRAM et spintronic Tri Temp ATE Équipement d'essai automatisé pour les essais automatiques par lots
MRAM And Spintronic Chip Tester For Automated Batch Testing Product Description: The Magnetic Chip Final Test Machine is a state-of-the-art testing equipment designed to provide accurate and reliable testing for magnetic chips. With advanced features and precise specifications, this machine is an essential tool for ensuring the quality and performance of magnetic chips in various applications. Excitation System3: The True Zero Value Of The Magnetic Field Under Zero Magnetic
Testeur de puces MRAM et spintronic Tri Temp ATE Équipement d'essai automatisé pour les essais automatiques par lots

Testeur MRAM automatique pour puces magnétiques - Machine de test final à haute vitesse
Automatic Magnetic Chip Final Test Machine Product Introduction Magnetic chips, capable of providing high-speed, low-power non-volatile information storage, are considered key to solving future storage technology bottlenecks. Their excellent perfor-mance and reliability are crucial for the stable operation of electronic devices and data security. This product uses a three-temperature-zone anti-magnetic testing device to simulate magnetic field environments under different