Abstract:
FIG. 1 is a top, front, and right-side perspective view of a sample analyzer according to one embodiment of the present invention; FIG. 2 is a top, rear, and left-side perspective view of the sample analyzer shown in FIG. 1; FIG. 3 is a front elevational view of the sample analyzer shown in FIG. 1; FIG. 4 is a rear elevational view of the sample analyzer shown in FIG. 1; FIG. 5 is a left-side elevational view of the sample analyzer shown in FIG. 1; FIG. 6 is a right-side elevational view of the sample analyzer shown in FIG. 1; FIG. 7 is a top plan view of the sample analyzer shown in FIG. 1; and, FIG. 8 is a bottom plan view of the sample analyzer shown in FIG. 1. The surface shading and surface ornamentation, if any, illustrated in the drawings is provided merely to highlight the contour of the design; it is not intended to be illustrative of texture or gloss.
Abstract:
Provided are a reaction cuvette loading device and a fully automatic chemiluminescence immunoassay apparatus. The reaction cuvette loading device comprises a transmission mechanism and a push mechanism, wherein the transmission mechanism comprises a baseplate and a first horizontal transmission mechanism provided on the baseplate; the push mechanism comprises a support assembly, a second horizontal transmission mechanism provided on the support assembly, and a push rod connected to the second horizontal transmission mechanism; and the push mechanism further comprises a direction guiding control block comprising a starting end provided at a terminal point of a cuvette pushing stroke of the push rod, a termination end provided at a starting point of the cuvette pushing stroke of the push rod, and a return track provided between the starting end and the termination end and bypassing the cuvette pushing stroke, and the separation distance between the starting end and termination end is not less than one vessel position and not more than two vessel positions.
Abstract:
A cleaning module, a sample analyzer with the cleaning module and a cleaning method. Wherein, the cleaning module may include a disk body assembly and a cleaning assembly. The disk body assembly may include a disk body, the cleaning assembly and the disk body may move relatively, and the disk body and the cleaning assembly complete extraction of waste fluid and cleaning on a path of moving relatively.
Abstract:
A reaction cuvette moving device and a fully automatic chemiluminescence immunoassay apparatus. The reaction cuvette moving device includes a transmission mechanism and a push mechanism, wherein the transmission mechanism comprises a baseplate and a first horizontal transmission mechanism provided on the baseplate. The push mechanism includes a support assembly, a second horizontal transmission mechanism provided on the support assembly, and a push rod connected to the second horizontal transmission mechanism.
Abstract:
The present disclosure relates to a cleaning device and a chemiluminescence detector. A cleaning device is provided with a cup inlet station and a cup outlet station, wherein the cleaning device comprises a pedestal, a plurality of magnetic adsorption components, a turntable arranged on the pedestal, and a primary cleaning mechanism arranged on the pedestal, wherein each of the plurality of magnetic adsorption components comprises a plurality of magnets; magnetic adsorption heights of a plurality of magnets of the first magnetic adsorption component are equal and are recorded as A; magnetic adsorption heights of a plurality of magnets of the middle magnetic adsorption component are equal and are recorded as B, and B>A.
Abstract:
The present disclosure relates to, a magnetic microbeads adsorption mechanism, which is configured to adsorb a magnetic microbeads in a reaction cup and is provided with a cup inlet station and a cup outlet station; the magnetic microbeads adsorption mechanism includes a pedestal, a turntable and multiple magnetic adsorption components; the turntable is rotatably mounted on the pedestal; the turntable can drive the reaction cup to rotate around a central axis of the turntable; the multiple magnetic adsorption components are arranged on a mounting circumference of the pedestal at intervals; the mounting circumference and rotation track of the reaction cup are concentrically arranged; and during a process when the reaction cup rotates from the cup inlet station to the cup outlet station, the adsorption height of the magnetic microbeads relative to cup bottom of the reaction cup can be changed.