A floating holding structure with alignment elements secures material positioning during automated loading operations.
Floating coupling and chassis alignment elements keep consumables in the taught position during repeated analyzer loading cycles.
An elastic fixing member and movable holder simplify channel chip mounting while keeping piezoelectric actuation accurate and reliable.
Wedge-shaped pipette tip boxes form a compact cylindrical dispenser that saves bench space, cuts waste, and limits contamination to smaller tip groups.
A force-applied guiding surface makes sample container carriers roll off at a defined position for reproducible alignment and optical reading.
Receiver slots and offset tip arrays keep pipette tips aligned without contact, cutting static buildup and shipping volume.
Wedge-shaped pipette tip magazines form a compact cylinder that saves bench space, lowers shipping volume, and isolates contamination to one module.
Predetermined identifier wells verify 96-well plate orientation and sample identity during high-throughput LC-MS/MS analysis.
Interleaved support cards secure pipette tips during shipping to reduce static buildup, preserve alignment, and cut packaging waste.
A spacer plate under the tip plate limits vertical tip movement in nested racks, preventing pipette tip sticking and wobble in automation.
Optical light interception detects pipette tip presence and arrangement before assays, reducing robot trips and assay delays.
Selectable loading from either table end helps testing-system operators remove stored racks despite varying facility layouts and operations.
Selected tray openings route used pipette tips into a covered container, separating residual-liquid waste and reducing cross-contamination.
Independent optical channels stimulate and detect living cells across wavelengths, avoiding electrode damage during high-throughput multi-well screening.
Protrusions engage complementary carrier passages to hold two pipette tip carriers in place during transport while using less packaging material.
A germ-impermeable tray and sealing cover protect pipette tips from contamination while reducing packaging material for multi-channel removal.
Conductive tray options, sleeves, and cushioning layers limit tip movement and static-charge misalignment during handling.
A revolving device, guiding surface, and Halbach array rotate and align laboratory sample carriers without complex mechanical contact.
A tray with enclosed openings and a container organizes used pipette tips and liquid waste to reduce cross-contamination.
Controller uses sensor feedback to set washing cannula altitude, eliminating manual visual monitoring for opaque microplates.
An embedded groove guides a gripper to remove test strips without finger contact, preventing contamination and reducing manufacturing costs.
A control device positions a rotating microfluidic chip under separate detection and heating modules for simultaneous analysis.
A frame-shaped distance piece bridges upper and lower plates, guiding non-nestable pipette tips laterally to prevent clamping during automated transfer.
An elastic support panel prevents bag deformation from mass shifts, ensuring complete sample separation and easy container removal.
Vertical rack recovery and separation mechanisms reduce device complexity by consolidating multiple drives into a single lift unit.
A magnetic specimen transport system uses trench and protrusion engagement to move holders along a two-dimensional plane.
A specimen storage device segments racks into distinct zones to separate error plates from normal ones.
Aspirates residual buffer from patch plates and plenums to prevent electrical discontinuity, while pivotable platforms correct microplate orientation errors.
A fixing clamp uses upper and lower plate bodies with docking ports to create a compact channel design for microfluidic chips.
Fluid handling systems automatically reorganize pipette tips within trays to optimize access and reduce manual intervention.
A microarray carrier assembly uses detachable blocks and guiding pins to enable concurrent assay processing.
Synchronizing the disposal container with the pipetting device reduces processing time and aligns tips for efficient storage.
Guide claws in a universal receiving frame accommodate varying support plate geometries, eliminating the need for specialized frames.
Segmented magazine compartments with inclined counter surfaces prevent cap damage during transport while ensuring accurate assembly orientation.
A consumable supply unit transports reagents from a storage container to an analysis unit via a transport mechanism.
A pipette tip tray uses a mechanical locking element to secure onto standardized racks without adhesives.
Interlocking guide elements provide lateral play for easy plate detachment while preventing accidental separation during automated handling.
A sample measuring system uses dedicated disposal ports for each measurement unit to discharge waste directly into a common storage vessel.
A microplate stacker uses a lift mechanism and support features to separate lids from plates.
A detection unit monitors tip container covers to control analyzer dispensing operations.