A control unit prioritizes requested specimen containers on the rack, streamlining transport to the automatic analyzer and dispensing.
A pipetting mechanism handles aspiration while a flow-path dispenser adjusts reagent temperature during delivery.
A hook-and-eye connection lets upper and lower support parts float, maintaining driving-surface alignment despite thermal expansion.
Image-guided robotic handling moves reaction vessels and reagent containers, reducing manual interruptions in analyzer operation.
A movable connecting seat and tilt actuator correct pipette-tip alignment, enabling faster automated replacement with less manual work.
A controlled dual-holder supply section replaces consumables during analysis while preserving throughput without added dedicated hardware.
A controlled water-drain metering assembly replaces temperature-sensitive gas expansion to measure shale desorbed gas with lower error.
A controlled conveying channel uses spiral rods and speed adjustment to automate accurate, low-waste reagent weighing and sampling.
Meshing spiral rods deliver reagent precisely, while a rotation limiter supports single-use dosing and prevents cross-contamination.
A compact conveyor platform coordinates samples across shared analysis stations, replacing dedicated analyzers and reducing maintenance.
An existing barcode sensor reads disk codes and uses contrast thresholds to detect specimen vessels without dedicated detection hardware.
Compare quality-control shifts with calibration lot changes to identify causes faster.
This automatic analyzer switches cleaning modes during standby to reduce water and detergent use without delaying measurement readiness.
Overlapping image acquisition lowers statistical error and speeds particle group updates.
This case blocks dominant unscattered light while combining scattered signals to improve small-particle detection and signal-to-noise ratio.
Cartesian analyte arrays and positional markers support clear multi-analyte results without imaging scanners or software.
A rotating device moves reaction vessels into darkened compartments, reducing external light interference and transfer complexity.
Anti-Rep antibodies detect BMMF1 Rep proteins to support earlier prostate cancer detection and prognosis beyond PSA.
The control unit confirms analyzer mechanisms, calculates remaining pre-operation time, and displays it before analysis begins.