A unipolar electrostatic carrier holds chips during wet processing, avoiding dicing tape damage and loss of attraction from conductive liquids.
Taller metal portion overlaps hollow insulator to increase capacitance, reducing electrostatic discharge damage during OLED manufacturing.
Separating electrodes on opposite substrate surfaces prevents leakage current, stabilizing ion generation efficiency while reducing device size.
A charging device paired with a specific electrically conductive tube stabilizes the output number concentration of charged nanoparticles.
A protective ionizing laminate device encases conductive microfibers to generate stable ionization points for static removal.
An orifice placed in a weak electrostatic zone of an AC ionizer recovers trapped gas ions, reducing discharge time and neutralization losses.
A gas flow driven static neutralizer uses periodic polarity reversal to minimize emitter contamination and maintain ion production efficiency.
Grooves shield suspended microfibers from abrasion while ionizing air to eliminate static without interfering with sheet movement.
A DC-to-DC converter drives a high-frequency Royer oscillator to generate balanced ionisation fields from low-voltage inputs.
An ionizer bar senses current flow to detect residual charge and adjusts output properties for neutralization.
Asymmetric wire electrode diameters balance ion generation while suppressing ozone production caused by intense electric fields at needle tips.
An air ionizer uses an air amplifier to supply amplified airflow for neutralization.