We’re exhibiting at ASC 2026 in Pittsburg, September 6-11

Discuss Magnetic Measurement Solutions with GMW and Metrolab at the Applied Superconductivity Conference.

ASC is the premier conference for applied superconductivity, covering advances in superconducting materials, electronics, magnets, and large-scale applications. Registration is available at https://www.appliedsuperconductivity.org/asc2026/

Ludovic Letourneur, PhD (Senior Applications Engineer, GMW), Ben Hartzell (Senior Vice President, Marketing, GMW), and Antoine Daridon, PhD (Business Development & Marketing Manager, Metrolab Technologies) will be available at booth 219 to discuss magnetic field measurement, superconducting magnet characterization, cryogenic instrumentation, NMR/EPR/FMR applications, and precision field generation systems.

Featured solutions from GMW and our partners include:

NEW: Coming in 2027, Metrolab Nitrogen-Vacancy Diamond (NVD) Probe. Discuss Metrolab’s upcoming quantum NV-diamond magnetometer technology for precision magnetic field measurements from 1 mT to 45 mT. The frequency-based measurement architecture offers quantum-level accuracy, excellent long-term stability, and eliminates calibration drift, making it particularly attractive for quantum computing, cold-atom research, and magnetic metrology applications. Preliminary discussions are welcome. Learn more in the Metrolab press release and LinkedIn announcement.

K3A Cryogenic 3-Axis Magnetic Field Transducer from Senis. Low-noise, three-axis magnetic field measurements down to 1 K, with calibrated ranges of 2 T, 5 T, and 9 T, and bandwidth from DC to 1 kHz.

Metrolab PT2026 NMR Magnetometer. The industry standard for precision total-field measurement and magnetic field calibration.

Bartington CryoMag and Mag-01H Cryogenic Magnetometers. Three-axis and one-axis fluxgate sensors for low-noise magnetic field measurements down to 2 K.

Benchtop High-Uniformity Electromagnets. Designed for spectroscopy, imaging, and magnetic materials research, with closed-loop control better than 1 μT and ppm-level field uniformity achievable using optimized pole designs.

Elemental Instruments Precision Tunable Permanent Magnets. Compact systems providing fields to ±0.35 T with ±2.5% homogeneity over 10 mm², suitable for magnetic materials characterization, NMR, wafer testing, and spintronics research.