A three-valve reservoir circuit lets one pump deliver positive or negative pressure with closed-loop control for precise, repeatable microlitre dispensing.
Sealed inlet and outlet chambers move tiny biological samples through a flowpath without spillage, enabling continuous analysis and less carry-over.
An inlet–outlet chamber container uses a connected flowpath to transfer small liquid samples without spillage or leakage during analysis.
Ceiling-mounted media supply can consume space and infrastructure; a wheeled unit coordinates media access with mobility locking for flexible workstation service.
Dual adjustable seals let pipette tips couple to mandrels with minimal force, reducing actuator requirements while maintaining secure retention.
Disposable polymer filtering funnel paired with a reusable glass adapter eliminates cleaning time and breakage risks in small-scale lab filtration.
A black polyethylene terephthalate interposer uses double-sided methyl acrylic adhesive to bond substrates while maintaining low auto-fluorescence.
Resilient mandrels align fluid dispensers to maintain sample integrity and precision across high-throughput microfluidic arrays.
A microfluidic chip device integrates independent fluid tanks with sealed outlets to deliver fluids directly into chip openings.
A compact nozzle assembly uses plastic tubing as an injection needle to prevent bubble formation and contamination in fluid delivery systems.
Segmented cover assemblies with dynamic supports stabilize stacked microplates, reducing contamination risks from manual handling.
Segmenting the display from the pipette reduces weight and cost while improving ease of operation.
Ball valves enable bidirectional solvent flow through samples, resolving hydraulic pressure issues for density-sensitive materials.
Undulating walls in a vertical tube reject heavier particles by inducing condensation, preventing re-condensation and improving separation efficiency.