Mechanical magnetization eliminates electromagnet heat, protecting thermally sensitive suspensions during separation.
Material-selective electroadhesion separates objects by voltage control, resolving suction limitations on rough surfaces and reducing power consumption.
A magnetic tube holder stabilizes PCR tubes upright to create a clear pipette path.
A magnetic particle and disc system binds algae organisms to form conjugates for efficient removal from water.
Automated sample extraction system minimizes manual handling through integrated robotic processing.
Wound tubing around a mandrel magnet captures particles efficiently, eliminating disposable containers and reducing operational costs.
A magnetic particle manipulating apparatus uses a cover-mounted pressing mechanism to correct tubular device warpage before processing.
Segmented extraction columns with air flotation capture weak magnetic particles, resolving insufficient field intensity in large-scale dilute solutions.
A magnetic extraction module with a fixed magnet enables automated sample circulation past the field to capture particles without manual intervention.
External magnetic fields aggregate superparamagnetic beads for rapid, sensitive analyte detection, overcoming slow bio-separation bottlenecks.
A pivoting magnet holder switches between adhered and separated states to release collected magnetic materials.
A handheld device uses a retractable magnet to gather and release particles through three distinct positions.