Programmable gain and baseline curve alignment correct polyethylene FSR resistance drift from fatigue, preserving force accuracy over repeated use.
Interpolated force and taxel data are aligned by interaction, then regressed pad-wide to convert tactile readings into Newtons.
A rotation table, pulley network, and actuators calibrate multidirectional forces and moments while compensating for axis misalignment.
A magnet applies predetermined force to estimate sensor deterioration and generate correction data without complex pressing equipment.
A torque calibration device uses a self-aligning bearing to compensate for shaft misalignments during automated force application.
Dynamic pressure-time curve simulation replicates real-world environments for accurate service life determination, reducing test time and costs.
Automated calibration eliminates manual errors by comparing measuring and reference devices to correct local deviations in rotary tablet presses.
Inverse transfer function compensates for elastic deformation drift in force sensing devices, ensuring accurate and timely response to user inputs.
Pivoting receiving device with defined stops calibrates assembly wrenches on-site.
Correction device uses fPEAK and fHYS functions to adjust electrostatic capacitance readings, resolving nonlinear hysteresis errors during load decrease.
A torque calibrating system uses a load cell assembly and hydraulic pressure gauge to measure applied force.
Digital communication automates torque wrench calibration, eliminating manual input errors and reducing setup time.
Stores calibration data in module memory, eliminating factory return delays and enabling immediate client replacement.
A vacuum chamber balances light pressure against a pure aluminum film's gravitational force for precise calibration.
A sliding handle mechanism eliminates frictional forces between the wrench grip and support surface, ensuring precise calibration of small test torques.
Polygonal seats and clamps eliminate coupling clearances to ensure measurement precision without overloading transducers during assembly.