CN210005549U - full-automatic fluorescence immunoassay quantitative analysis equipment - Google Patents

full-automatic fluorescence immunoassay quantitative analysis equipment Download PDF

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Publication number
CN210005549U
CN210005549U CN201920875280.9U CN201920875280U CN210005549U CN 210005549 U CN210005549 U CN 210005549U CN 201920875280 U CN201920875280 U CN 201920875280U CN 210005549 U CN210005549 U CN 210005549U
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box
full
quantitative analysis
test tube
automatic fluorescence
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CN201920875280.9U
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沈爱明
沈鹤柏
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Jiangsu Baihuikang Biological Technology Co Ltd
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Jiangsu Baihuikang Biological Technology Co Ltd
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Abstract

The utility model belongs to the technical field of analytical equipment technique and specifically relates to full-automatic fluorescence immunity quantitative analysis equipment, including full-automatic fluorescence immunity quantitative analysis appearance body, the bottom plate is installed through a plurality of support frames to the side of full-automatic fluorescence immunity quantitative analysis appearance body, the box has been placed in the top installation of bottom plate, connect through positioning mechanism between box and the bottom plate, the opening has been seted up at the top of box, the top of box is connected with the case lid through articulated joint, reagent pipe rack has been placed to the inside bottom surface of box, the side of the inside symmetry of box is equipped with a plurality of hold-down mechanism respectively, the utility model discloses a set up test tube rack on full-automatic fluorescence immunity quantitative analysis appearance's shell for the test tube that will be equipped with reagent is placed in test tube rack, has improved the stability that the test tube was placed, and has still avoided the staff to make a round trip to move the test tube of taking to improve the convenience.

Description

full-automatic fluorescence immunoassay quantitative analysis equipment
Technical Field
The utility model relates to an analytical equipment technical field especially relates to full-automatic fluorescence immunization quantitative analysis equipment.
Background
Full-automatic fluorescence immunoassay quantitative analysis appearance needs the manual work to place the test tube that is equipped with the reagent and analyzes in full-automatic fluorescence immunoassay quantitative analysis appearance in the in-process that uses, because it is too much to need the measuring reagent, and does not set up the device of placing the test tube on the full-automatic fluorescence immunoassay quantitative analysis appearance of current, the test tube of taking of inconvenient staff like this still needs the staff to make a round trip to move about and take, has consequently reduced staff's operating efficiency.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the defects existing in the prior art and providing full-automatic fluorescence immunoassay quantitative analysis devices.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
design full-automatic fluorescence immunity quantitative analysis equipment, including full-automatic fluorescence immunity quantitative analysis appearance body, the bottom plate is installed through a plurality of support frames to the side of full-automatic fluorescence immunity quantitative analysis appearance body, the box has been placed in the top installation of bottom plate, connect through positioning mechanism between box and the bottom plate, the opening has been seted up at the top of box, the top of box has the case lid through articulated joint connection, reagent pipe rack has been placed to the inside bottom surface of box, the side of the inside symmetry of box is equipped with a plurality of hold-down mechanism respectively, reagent pipe rack includes the backup pad, the inside bottom surface at the box is placed to the backup pad, the top of backup pad is equipped with the mounting panel, be equipped with a plurality of bracing pieces between backup pad and the mounting panel, a plurality of round holes have been seted up on.
Preferably, the hinged joint comprises a hinge, and two ends of the hinge are respectively connected with the side faces of the box body and the box cover through screws.
Preferably, hold-down mechanism includes the fixed block, the fixed block welding is at the box medial surface, the welding of fixed block top has the double-screw bolt, the elasticity preforming has been cup jointed on the double-screw bolt, the end of elasticity preforming extends to the top of mounting panel, threaded connection has lock nut on the double-screw bolt, lock nut's bottom and the top contact of elasticity preforming.
Preferably, the bottom surface of the interior of the box body is provided with a plurality of th bumps, the top ends of the th bumps penetrate through the support plate and extend to the upper part of the support plate, and at least two of the th bumps are arranged symmetrically.
Preferably, the positioning mechanism comprises an L-shaped piece and a groove, the L-shaped piece is mounted at the bottom of the bottom plate through a screw, an end of the L-shaped piece extends to the side surface of the box body, the groove is arranged in the side wall of the box body, the groove corresponds to the L-shaped piece in position, and a second bump which is matched with the groove and mounted is mounted at the end of the L-shaped piece.
Preferably, the round holes are at least provided with four groups and are arranged at equal intervals, and the round holes in each group are at least provided with seven round holes which are arranged at equal intervals.
The utility model provides an full-automatic fluorescence immunoassay quantitative analysis equipment, beneficial effect lies in:
the utility model discloses a set up the test tube rack on the shell of full-automatic fluorescence immunity quantitative analyzer for place the test tube that is equipped with reagent in the test tube rack, improved the stability that the test tube was placed, and avoided the staff to go around to move and take the test tube moreover, thereby improve the convenience of staff's operation;
the utility model is provided with the supporting piece and the bottom plate, which is used for improving the stability of the position where the test tube placing rack is positioned and further improving the stability of placing the test tube;
the utility model discloses a set up box and case lid, be convenient for protect around test tube rack to play the effect of protection to the test tube, but also avoided external dust or other showy impurity and test tube contact or wafted to the inside of test tube, prevented that reagent from being polluted, improved the accuracy that the experimental data detected.
Drawings
FIG. 1 is an isometric view of full-automatic fluorescence immunoassay quantitative analysis devices of the present invention;
FIG. 2 is a schematic view of the connection structure of the test tube rack and the box body of kinds of full-automatic fluorescence immunoassay quantitative analysis equipment provided by the present invention;
FIG. 3 is a cross-sectional view showing the connection between the test tube rack and the box of kinds of automatic fluorescence immunoassay quantitative analysis devices according to the present invention;
FIG. 4 is an enlarged view of the position A of full-automatic fluorescence immunoassay quantitative analysis devices of the present invention;
FIG. 5 is a schematic view of the connection structure between the box and the positioning mechanism of kinds of full-automatic fluorescence immunoassay quantitative analysis equipment according to the present invention.
In the figure, a box cover 1, a box body 2, a bottom plate 3, a support frame 4, an L-shaped piece 5, a full-automatic fluorescence immunoassay quantitative analyzer body 6, a round hole 7, an installation plate 8, a support rod 9, an th bump 10, a support plate 11, a fixed block 12, an elastic pressing sheet 13, a stud 14, a locking nut 15, a hinge 16, a second bump 17 and a groove 18.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention , not all embodiments.
Referring to fig. 1-5, kinds of full-automatic fluorescence immunoassay quantitative analysis equipment, including full-automatic fluorescence immunoassay quantitative analysis appearance body 6, bottom plate 3 is installed through a plurality of support frames 4 to the side of full-automatic fluorescence immunoassay quantitative analysis appearance body 6, through setting up support piece 4 and bottom plate 3, support piece 4's both ends all are connected with full-automatic fluorescence immunoassay quantitative analysis appearance body 6 and bottom plate 3 respectively through the screw for improve the stability of test tube rack position department, and then improve the stability that the test tube was placed.
Box 2 has been placed in the top installation of bottom plate 3, through setting up box 2 and case lid 1, is convenient for protect around the test tube rack to play the effect of protection to the test tube, but also avoided external dust or other showy impurity and test tube contact or waft to the inside of test tube, prevented that reagent from being contaminated, improved the accuracy that experimental data detected.
The box 2 is connected with the bottom plate 3 through the positioning mechanism, the positioning mechanism comprises an L-shaped piece 5 and a groove 18, the L-shaped piece 5 is installed at the bottom of the bottom plate 3 through a screw, the end of the L-shaped piece 5 extends to the side face of the box 2, the groove 18 is formed in the side wall of the box 2, the groove 18 corresponds to the position of the L-shaped piece 5, the second lug 17 installed in a matched mode with the groove 18 is installed at the end of the L-shaped piece 5, the L-shaped piece 5 is fixed through the screw, the stability of the second lug 17 installed inside the groove 18 is improved, and the stability of connection between the bottom plate 3 and the box.
The opening has been seted up at the top of box 2, and the top of box 2 is connected with case lid 1 through articulated joint, and articulated joint includes hinge 16, and the both ends of hinge 16 are passed through the screw and are connected with the side of box 2 and case lid 1 respectively, and the case lid 1 of being convenient for rotates on box 2, simultaneously, has still improved the stability of being connected between case lid 1 and the box 2.
Reagent pipe rack has been placed to the inside bottom surface of box 2, the side of the inside symmetry of box 2 is equipped with a plurality of hold-down mechanism respectively, hold-down mechanism includes fixed block 12, fixed block 12 welds at the box 2 medial surface, fixed block 12 top welding has double-screw bolt 14, cup joint elasticity preforming 13 on the double-screw bolt 14, the end of elasticity preforming 13 extends to the top of mounting panel 8, threaded connection has lock nut 15 on the double-screw bolt 14, lock nut 15's bottom and the top contact of elasticity preforming 13, the end of elasticity preforming 13 and the top contact of mounting panel 8, and the other end of elasticity preforming 13 compresses tightly fixedly through double-screw bolt 14 and lock nut 15, and then improve the stability of elasticity preforming 13 position, a fixed position has been played to the test tube rack, when needing to take out the test tube rack from box 2, only need to rotate lock nut 15 through the instrument, when separating lock nut 15 and elasticity preforming 13, only need to rotate elasticity preforming 13, when the offset from mounting panel 8, can conveniently take out from the test tube rack in 2.
Reagent tube rack includes backup pad 11, backup pad 11 places the inside bottom surface at box 2, the top of backup pad 11 is equipped with mounting panel 8, be equipped with a plurality of bracing pieces 9 between backup pad 11 and the mounting panel 8, a plurality of round holes 7 have been seted up on mounting panel 8's surface, round hole 7 is equipped with four groups and equidistance range at least, round hole 7 in every group is equipped with seven at least, seven round hole 7 equidistance ranges, round hole 7 is used for the cartridge test tube, the top at backup pad 11 is placed to the bottom of test tube, the stability of placing in the test tube rack is improved, the inside bottom surface of box 2 is equipped with a plurality of lugs 10, the top of a plurality of lugs 10 all runs through backup pad 11 and extends to the top of backup pad 11, lug 10 is equipped with two and symmetrical arrangement at least, a plurality of lugs 10's setting, the skew of backup pad 11 position has been avoided, the stability of test tube rack placing in the inside of box 2 has been improved, the test tube rack is used for placing the test tube that is equipped with reagent, the stability of placing has been.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (6)

  1. The utility model provides an full-automatic fluorescence immunity quantitative analysis equipment, including full-automatic fluorescence immunity quantitative analysis appearance body (6), its characterized in that, bottom plate (3) are installed through a plurality of support frames (4) to the side of full-automatic fluorescence immunity quantitative analysis appearance body (6), box (2) have been placed in the top installation of bottom plate (3), connect through positioning mechanism between box (2) and bottom plate (3), the opening has been seted up at the top of box (2), the top of box (2) is connected with case lid (1) through articulated joint, reagent pipe rack has been placed to the inside bottom surface of box (2), the side of the inside symmetry of box (2) is equipped with a plurality of hold-down mechanism respectively, reagent pipe rack includes backup pad (11), the inside bottom surface at box (2) is placed in backup pad (11), the top of backup pad (11) is equipped with mounting panel (8), be equipped with a plurality of bracing pieces (9) between backup pad (11) and mounting panel (8), a plurality of round hole (7) have been seted up on the surface of mounting panel (8).
  2. 2. The full-automatic FIQs equipment of claim 1, wherein the hinged joint includes hinge (16), and both ends of hinge (16) are connected with the side of box (2) and box lid (1) respectively through screws.
  3. 3. The full-automatic fluorescence immunoassay quantitative analysis equipment of claim 1, wherein the hold-down mechanism includes a fixed block (12), the fixed block (12) is welded at the inner side of the box body (2), a stud (14) is welded at the top of the fixed block (12), an elastic pressing sheet (13) is sleeved on the stud (14), the end of the elastic pressing sheet (13) extends to the top of the mounting plate (8), a locking nut (15) is connected to the stud (14) in a threaded manner, and the bottom of the locking nut (15) contacts with the top of the elastic pressing sheet (13).
  4. 4. The full-automatic FIQs analysis equipment of claim 1, wherein the bottom of the interior of the box (2) is provided with a plurality of bumps (10), the top ends of the bumps (10) all penetrate the support plate (11) and extend to the upper side of the support plate (11), and the bumps (10) are provided with at least two and are arranged symmetrically.
  5. 5. The full-automatic fluorescence immunoassay quantitative analysis device of claim 1, wherein the positioning mechanism comprises an L-shaped member (5) and a groove (18), the L-shaped member (5) is installed at the bottom of the bottom plate (3) by screws, the end of the L-shaped member (5) extends to the side of the box body (2), the groove (18) is opened in the side wall of the box body (2), the groove (18) corresponds to the position of the L-shaped member (5), and the end of the L-shaped member (5) is installed with a second bump (17) which is installed to match with the groove (18).
  6. 6. The full-automatic FIQDs according to claim 1, wherein the round holes (7) are arranged in at least four groups and are arranged equidistantly, and the round holes (7) in each group are at least seven, and seven round holes (7) are arranged equidistantly.
CN201920875280.9U 2019-06-12 2019-06-12 full-automatic fluorescence immunoassay quantitative analysis equipment Active CN210005549U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920875280.9U CN210005549U (en) 2019-06-12 2019-06-12 full-automatic fluorescence immunoassay quantitative analysis equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920875280.9U CN210005549U (en) 2019-06-12 2019-06-12 full-automatic fluorescence immunoassay quantitative analysis equipment

Publications (1)

Publication Number Publication Date
CN210005549U true CN210005549U (en) 2020-01-31

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920875280.9U Active CN210005549U (en) 2019-06-12 2019-06-12 full-automatic fluorescence immunoassay quantitative analysis equipment

Country Status (1)

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CN (1) CN210005549U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112730802A (en) * 2020-12-18 2021-04-30 中山大学 Experimental equipment and experimental method for artificially freezing water migration model

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112730802A (en) * 2020-12-18 2021-04-30 中山大学 Experimental equipment and experimental method for artificially freezing water migration model

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