A wiping-contact slide switch detects pipetting tip presence while resisting ESD, magnetic fields, wear, and contact bounce.
A wiping slide switch detects pipetting tips with low actuation force while resisting ESD, magnetic fields, contact bounce, and wear.
A lockable self-centering rail lets liquid handling modules be attached quickly, then fixed securely for precise independent adjustment.
A groove-and-notched-rail lock enables quick, precise module mounting and height adjustment on liquid handling manipulators.
A two-point pipette holder with clamping jaws and sensors prevents swing, fits varying neck diameters, and supports compact pipetting aids.
An upward barrier around the expendable item case opening contains spills and protects dispensing tips and reaction cells from accuracy loss.
A comb-frame transfer device locks pipette holders for repeated insertion, cutting disposable magazine waste while maintaining secure tip handling.
Integrated robotic sample transfer and consumable handling reduce manual errors while increasing throughput in automated diagnostic analysis.
A comb-frame transfer interface locks disposable pipette carriers securely, cutting magazine waste while preserving sealing and automated handling.
A resilient arm and remote actuator open pipette tip boxes on demand and close them after use to cut contact and airborne contamination.
A vertically actuated lock lets pipette tip holders release from the top of a stack for stable robotic handling without side squeezing.
Manual pipetting-head insertion can cause errors and damage; three-axis movement and hook engagement automate reliable pickup and dispensing.
A movable receiver travels along X, Y, and Z axes to pick up and secure pipetting heads, reducing insertion errors, damage, and contamination.
Automated reagent dispensing across aligned sample areas reduces manual pipetting, contamination risk, and delays during high-throughput microscope examinations.
Automated stage positioning and liquid handling reduce manual pipetting and contamination while aligning multiple sample areas for imaging.
Multiple cartridges enable varied immunoassays, while optical shielding and magnetic containment speed measurement to 10 seconds.
A grooved rotating body and widening rails help maintain continuous pipette tip transport and uniform grid alignment.
A releasable pipettor-shaft adapter enables programmable transport of lab members, reducing reliance on separate gripper instruments.
Pressure-driven chambers and impedance detection let a pipetting arm transport the modular separator, reducing manual particle handling.
A plug-based cartridge stores reagents separately for precise, on-demand transfer into microfluidic devices.
This modular analyzer rack fits varied tube sizes, improves centering for pipetting, and supports capacitive liquid level detection.
A moving unit and guiding edge support accurate transfers between vessel plates, reducing mix-ups and operator stress.
A handheld electronic pipette uses a two-axis controller and color display to resolve complexity and weight trade-offs while retaining advanced features.
Under-plane electrodes detect sample holder occupancy states, providing visual feedback that prevents manual pipetting errors without obstructing the workspace.
A gripper with vertically aligned suction cups transmits negative pressure to hold laboratory items securely.
A pivoting pipetting guide aligns pipette tips with sample receptacles, preventing user errors during liquid injection.
A spacer block with predetermined side heights physically constrains pipette head downward movement through apertures.
A deformable bucket insert orients sample vessels to align with centrifugal force vectors.
Automated rack manages filtration pressure using separate pumps and valves, reducing manual labor and extending valve life.
Segmenting magnet arrangements eliminates mutual interference between adjacent pipette channels, enabling higher channel density and precise movement.
A pipette stand uses removable inserts to modify aperture dimensions for secure vertical storage of various pipette sizes.
Deflectable clips on a nest engage inward guide ribs to align and secure the nest, preventing unwanted movement during robotic handling.
A spring-loaded pusher mechanism aligns labware in the seat, reducing manual intervention and improving positioning accuracy.
A gel electrophoresis carrier plate with hydrophilic surfaces and precise positioning mechanisms maintains homogeneous electric fields.
Spacing projections prevent over-nesting in stacked pipette tip racks, conserving plastic while maintaining handling simplicity.
Stacked transport paths transfer racks vertically, reducing horizontal dimensions while improving processing performance.
Tilting the pipette tip scrapes adsorbed cells from container surfaces, resolving low efficiency in small cell picking.
A pipetting module uses a lateral interlock to secure lab members to the shaft.
A stator magnet assembly generates bidirectional drive force for pipetting units using a shared magnetic field.
A handheld electronic pipettor exchanges data via RFID to drive a positioning device for automated sample distribution.
A tiered laboratory pipette stand uses elongated openings to receive multi-channel manifolds while pronged sections secure single-channel tips.
Segmented microwell covers with alternating open and impermeable portions enable precise fluid access during automated dispensing operations.
A laboratory positioning device couples transport and holder movements to automate sample well filling.
A spring-loaded clamping device holds serological pipettes on automated pipetting systems using radial force.
Stacking pins engage nest openings to secure vertical alignment, preventing dislodgement during robotic handling in automated filling machines.
Lid with downward fingers secures tray to resolve conflicts between sterile protection and automated palletizing efficiency.
An integrated one-piece slot extender with conical reservoirs minimizes stranded fluid and reduces material waste in precise liquid dispensing.
Integrated base plate eliminates surface gaps to prevent cross-contamination and enable precise pipetting device calibration.