A packaged sensor modulates data readout signals onto a shared output terminal using an internal adjustment block.
Elastic deformation of the scanning element accommodates assembly tolerances, ensuring precise angular measurement signals.
A rod-shaped magnetic sensor uses an elastically deformable axial sealing element integrated into the threaded sleeve to form a secure connection.
Corner gate positioning eliminates weld lines in the sensing surface, ensuring reliable operation against de-icing agents.
A magnetic field sensor chip positions contact pads at the edge to enable direct printed circuit board mounting.
An insulated glass tube seals the Hall sensor, preventing temperature drift and high voltage leakage during vacuum measurements.
A compact magnetic imaging sensor uses a green laser to excite nitrogen vacancy centers in a diamond crystal, enabling portable vector magnetometry.
Embedding a permanent magnet within a stress-absorbing encapsulation protects semiconductor chips from mechanical and thermal stresses.
Routing bus-bar conductors parallel to magnetic field lines minimizes Lorentz force, reducing acoustic noise and white pixel artifacts.
A chip package integrates a thin film solenoid coil wound around four outer surfaces of the housing with a magnetic field sensor.
Asymmetric MR element placement on an inclined support member prevents short circuits from ion milling re-deposition films while increasing occupation area.
Pre-trained denoising reconstruction network processes randomly sampled K-space data from mobile magnetic resonance apparatuses to produce high-quality images.
A mechanically resonant magnetometer amplifies magnetic signals using a proof mass.
A magnetic damping structure absorbs excess flux to widen the operational window, resolving conflicts between sensor proximity and measurement precision.
Integrated calibration holes allow flexible object positioning to resolve trade-offs between adaptability and measurement precision in multimodal imaging.
Metal sheet shields magnetic coil from operator interference, improving measurement accuracy.
Interlocking toothed sections and a securing seal prevent unauthorized separation of the magnetic field sensor housing, making manipulation detectable.
Segmented vacuum chambers and magnetic mediators enable shimming operations without breaking the seal, reducing noise transmission.
Real-time flux bias adjustment compensates for Earth's magnetic field variations during motion, maintaining measurement accuracy.
A mounting support socket positions a nitrogen-vacancy diamond at a fixed angle for optical fiber coupling.
A molding tool with a displaceable cavity wall positions sensor elements before injection, preventing moisture ingress by enabling complete encapsulation.
A sensor location verification system uses a pairing verification circuit to confirm correct placement of water sensors on a locator.
An indexing ring and wave spring retain the Hall effect sensor in discrete orientations, eliminating fastener holes that increase system complexity.
Segmentation separates bulky cooling from the head unit, allowing SQUIDs to stay cold while coils approach the scalp for higher resolution.
A ring magnet holder positions discrete magnets to apply a bias magnetic field to magneto-optical defect center material.
A magnetic sensor assembly positions the main sensor surface perpendicular to the lead frame using conductive glue for pad bonding.
A sensing device uses a heating arrangement to calibrate temperature coefficients for accurate measurements.
A magnetoresistive sensor array detects magnetic field gradients generated by steel wire rope magnetic memory.
Sensor modules with cores and coils detect induced magnetic fields from moving iron objects, eliminating detection delays during non-polarity ranges.
A magnetic-field-sensitive assembly uses optically excitable materials to detect charge carrier movement in flowing media.
A gate detection robot uses giant magnetoresistance sensors to map magnetic field distortions caused by structural defects.
A portable battery-powered NMR sensor acquires nuclear magnetic resonance data from biological and inorganic samples.
A field-free region generation unit creates a magnetic field gap using permanent magnets and coils to image nano magnetic particles.
A magnetic sensor system measures induction direction in orthogonal planes to determine target position and orientation.