Dynamic temperature models adapt to machine-specific gradients and conditions to improve coordinate measuring accuracy.
Configurable sensing coil connections in a CMM probe improve stylus deflection accuracy by reducing nonlinearity, drift, and signal noise.
A 3D magnetic field sensor on the patient couch uses B0 stray field reference data to speed MRI table alignment without reflectors.
Magnetometer arrays locate unpowered user-borne devices and map their pointing positions to the correct output device for accurate interaction.
Normalization sensing coils adjust temperature-dependent currents to stabilize inductive probe position signals in CMM measurements.
A field generating coil coupling reduces crosstalk between drive and sensing coils, resolving cross-coupling errors in coordinate measuring machine probes.
Interchangeable counterweight balances articulated head weight to reduce motor torque and heat generation during coordinate positioning.
Magnet relieves mechanical load on friction bearing to reduce stiction and improve measurement precision.
A measurement probe uses a bendable arm member with opposing strain sensing elements to detect contact forces.
A detection device applies distinct threshold values to electrode signals to generate precise spatial coordinates on or above a sensor surface.
A coordinate measuring probe uses normalization coils to detect magnetic field variations and adjust sensing signals for precise position tracking.
A compact inductive encoder uses a pseudorandom code track and multiple sensor sets to determine absolute position with high resolution.
Pre-calculated magnetic field values stored in a lookup table enable accurate near-field position determination while conserving computing power.
Dual processor signal processing circuit manages sphere information to detect offset changes in magnetic position detection devices.
Merging extraction lines reduces substrate area and pin count while maintaining position detection accuracy.
A measuring device moves a carriage linearly while keeping the probe tip stationary to detect surface deflections for accurate profiling.
Continuous scanning replaces discrete touch-trigger measurements, reducing feature detection time while maintaining precision.
A coordinate measurement arrangement uses sensor feedback to monitor relative part positions and probe deflection for accurate workpiece data.
Reducing grain size to nanometer scale eliminates delamination in polycrystalline diamond layers, ensuring dimensional stability under mechanical stress.
A measuring machine calculates correction values based on workpiece weight and resting modes to compensate for bed deformations.
A controller corrects sensing coordinates using pre-stored modeling data from adjacent sensing units to improve input accuracy.