CN218412563U - Fluorescence detection ELIASA equipment - Google Patents

Fluorescence detection ELIASA equipment Download PDF

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Publication number
CN218412563U
CN218412563U CN202222630316.1U CN202222630316U CN218412563U CN 218412563 U CN218412563 U CN 218412563U CN 202222630316 U CN202222630316 U CN 202222630316U CN 218412563 U CN218412563 U CN 218412563U
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microplate reader
main body
plate
fluorescence detection
eliasa
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CN202222630316.1U
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Chinese (zh)
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周立斌
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Yunhe Biotechnology Nanjing Co ltd
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Yunhe Biotechnology Nanjing Co ltd
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Abstract

The utility model discloses a fluorescence detection ELIASA equipment relates to ELIASA technical field, for solving the ELIASA when using, all need detect the material and instil into porous detection dish in, and current equipment does not have redundant structure to fixing of installing of detecting the dish, leads to the not good problem of stability. Interior cavity, it is installed the inside of ELIASA equipment principal, one side of interior cavity inside is provided with the treater, the inside of interior cavity is provided with removes the dish, the both sides of removing the dish all are connected through slide rail and ELIASA equipment principal removal, and the slide rail is provided with two, two the intermediate position department of slide rail all is provided with the pulley, and the pulley is provided with two, two the pulley all rotates with the slide rail through the motor and is connected, and the motor is provided with two, treater and motor electric connection, the protruding piece of friction is installed the both sides of removing the dish inner wall, and the protruding piece of friction is provided with four.

Description

Fluorescence detection ELIASA equipment
Technical Field
The utility model relates to an ELIASA technical field specifically is a fluorescence detection ELIASA equipment.
Background
Enzyme-linked immunosorbent assay (ELISA) instrument. Is a special instrument for enzyme-linked immunosorbent assay, also called as a micropore plate detector. The method can be simply divided into semi-automatic and full-automatic types, but the working principles are basically consistent, and the core is one, namely, the analysis is carried out by a colorimetric method. The final volume of the test solution is required to be below 250 mu L in general determination, and the test cannot be completed by a general photoelectric colorimeter, so that the photoelectric colorimeter in the microplate reader has special requirements, the microplate reader is widely applied to clinical examination, biological research, agricultural science, food and environmental science, and due to the application of a large number of enzyme-linked immunosorbent assay kits, the application of the microplate reader in the field of reproductive health care becomes wider and wider, and the technical level of reproductive health is promoted to be improved.
For example, the publication No. 202020340316.6 (a multifunctional microplate reader) includes: including the device main part, print the mouth, screen and loading board, the positive fixedly connected with screen of device main part, the both ends fixedly connected with adjustment knob of screen, the mouth is printed to the top fixedly connected with of device main part, the positive swing joint of device main part has the loading board, one side fixedly connected with pull ring of loading board, the top swing joint of loading board has the orifice plate, the positive fixedly connected with quad slit of orifice plate, the quad slit sets up in the orifice plate, make the twelve quad slit of orifice plate opposite side and the twelve light velocity detection head one-to-one of top, detect twelve liquid that awaits measuring, after having detected, the rotation one hundred eighty degrees of adjustment knob, make the twelve quad slit and the twelve light beam detection head one-to-ones of orifice plate one side, with this liquid that awaits measuring with twenty four quad slits carries out whole detections, consequently, half light beam detection head's number has been reduced, the equipment cost has been reduced, be fit for promoting in a large number.
However, when the microplate reader is used, detection materials are required to be dripped into the porous detection disc, and the conventional equipment has no redundant structure on the fixation of the detection disc, so that the problem of poor stability is caused; thus, the existing requirements are not met, and a fluorescence detection microplate reader device is provided for the requirements.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a fluorescence detection ELIASA equipment to the ELIASA that proposes in solving above-mentioned background art all needs to detect the material and instils into in the porous detection dish, and current equipment does not have redundant structure to fixing of installing of detecting the dish, leads to the not good problem of stability when using.
In order to achieve the above object, the utility model provides a following technical scheme: a fluorescence-detecting microplate reader device, comprising: the device comprises an ELIASA equipment main body, wherein a maintenance shielding plate is arranged on the rear side of one end of the ELIASA equipment main body, the maintenance shielding plate is in threaded connection with the ELIASA equipment main body through hexagon bolts, the number of the hexagon bolts is four, and a sealing rubber ring is arranged between the maintenance shielding plate and the ELIASA equipment main body;
further comprising:
the inner cavity is arranged in the microplate reader equipment main body, one side in the inner cavity is provided with the processor, the inner cavity is internally provided with the movable disc, the two sides of the movable disc are movably connected with the microplate reader equipment main body through the slide rails, the two sliding rails are arranged, pulleys are arranged at the middle positions of the two sliding rails, the two pulleys are rotatably connected with the sliding rails through motors, the number of the motors is two, and the processor is electrically connected with the motors;
the protruding piece of friction, it is installed the both sides of removal dish inner wall, and the protruding piece of friction is provided with four, four the protruding piece of friction all is connected with the both sides hot melt of removal dish inner wall, the both ends of removal dish inner wall all are provided with electric telescopic handle, and electric telescopic handle is provided with four, four inside electric telescopic handle's one end all runs through and extends to the removal dish, four electric telescopic handle's the other end all is provided with the grip block, and its grip block is provided with two, two the grip block all with electric telescopic handle's other end fixed connection.
Preferably, a fluorescence detection mechanism is arranged above the inner cavity, and the fluorescence detection mechanism is electrically connected with the microplate reader equipment main body.
Preferably, a first turnover plate is arranged on the front side of one end of the microplate reader equipment main body and is rotatably connected with the microplate reader equipment main body through an electric control rotating shaft body.
Preferably, the middle position department of the terminal surface top before the ELIASA equipment main part is provided with the display screen, and display screen and ELIASA equipment main part electric connection, one side of display screen is provided with the operation button, and the operation button is provided with a plurality of.
Preferably, the up end of ELIASA equipment main part is provided with the second returning face plate, and the second returning face plate is provided with two, two the second returning face plate all rotates with ELIASA equipment main part through the rotatory axis body of damping to be connected, and the rotatory axis body of damping is provided with two, two one side of second returning face plate all is provided with the recess, and the recess is provided with two, two the recess all forms with the second returning face plate integral type.
Preferably, two the inside of second returning face plate all is provided with accomodates interior cavity, and accomodates interior cavity and be provided with two, two the inside of accomodating interior cavity all is provided with porous storage plate, and porous storage plate is provided with two, two the inside of porous storage plate up end all is provided with accomodates the cavity, and accomodates the cavity and be provided with a plurality of, a plurality of accomodate the cavity and all form with porous storage plate integral type.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses an electric telescopic handle grip block and the protruding piece of friction that sets up on removing the dish, place porous storage plate in the intermediate position department that removes the dish, four electric telescopic handle that set up drive that the grip block is firm carry out the centre gripping with porous storage plate, the protruding piece of friction that sets up simultaneously also improves certain frictional force, avoid the ELIASA when using, all need will detect during the material instils into porous detection dish, and current equipment does not have redundant structure to the installation of detecting the dish on fixed, lead to the problem of not good stability.
2. Through second returning face plate, the rotatory axis body of damping, recess that set up in the top of ELIASA equipment principal and accomodate interior cavity, can let the device when not using the monitoring at ordinary times, effectually accomodate porous storage disc, avoid the dust to pile up inside accomodating the cavity, when causing the experiment, produce the deviation influence to data.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the structure of the inner cavity of the present invention;
FIG. 3 is a schematic top view of the movable plate of the present invention;
in the figure: 1. a microplate reader device main body; 101. overhauling the baffle plate; 102. a hexagon bolt; 103. sealing the rubber ring; 104. a first roll-over plate; 105. an electrically controlled rotating shaft body; 106. a display screen; 107. operating a key; 108. a second roll-over plate; 109. a damped rotational shaft body; 110. a groove; 111. accommodating the inner cavity; 2. a porous receiving tray; 201. a receiving cavity; 3. an inner cavity; 4. a movable tray; 401. an electric telescopic rod; 402. a clamping plate; 403. friction bump blocks; 5. a fluorescence detection mechanism; 6. a slide rail; 7. a motor; 8. a pulley; 9. a processor.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the 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.
Example 1
Referring to fig. 1-3, the present invention provides an embodiment: a fluorometric microplate reader device comprising: the device comprises an ELIASA equipment main body 1, wherein a maintenance shielding plate 101 is arranged on the rear side of one end of the ELIASA equipment main body 1, the maintenance shielding plate 101 is in threaded connection with the ELIASA equipment main body 1 through hexagon bolts 102, the number of the hexagon bolts 102 is four, and a sealing rubber ring 103 is arranged between the maintenance shielding plate 101 and the ELIASA equipment main body 1;
further comprising:
the device comprises an inner cavity 3, a processor 9, a moving disc 4, a sliding rail 6, two sliding rails 6, two pulleys 8 and two motors 7, wherein the inner cavity 3 is arranged in a microplate reader device main body 1, one side in the inner cavity 3 is provided with the processor 9, the moving disc 4 is arranged in the inner cavity 3, two sides of the moving disc 4 are movably connected with the microplate reader device main body 1 through the sliding rails 6, the two sliding rails 6 are arranged, the middle positions of the two sliding rails 6 are provided with the pulleys 8, the two pulleys 8 are rotatably connected with the sliding rails 6 through the motors 7, the motors 7 are arranged in two numbers, and the processor 9 is electrically connected with the motors 7;
protruding piece 403 of friction, it is installed in the both sides of removing 4 inner walls of dish, and protruding piece 403 of friction is provided with four, four protruding pieces 403 of friction all are connected with the both sides hot melt of removing 4 inner walls of dish, the both ends of removing 4 inner walls of dish all are provided with electric telescopic handle 401, and electric telescopic handle 401 is provided with four, four electric telescopic handle 401's one end all runs through and extends to inside removing 4 dishes, four electric telescopic handle 401's the other end all is provided with grip block 402, its grip block 402 is provided with two, two grip blocks 402 all with electric telescopic handle 401's other end fixed connection.
When needs use, take out porous storage disc 2 from accomodating interior cavity 111, the material drips into inside the accomodating cavity 201 in porous storage disc 2, stretch out moving plate 4 simultaneously, place porous storage disc 2 in moving plate 4's intermediate position department again, four electric telescopic handle 401 that set up drive grip block 402 firm carry out the centre gripping with porous storage disc 2, the protruding piece 403 of friction that sets up simultaneously also improves certain frictional force, reduces the probability that drops.
A fluorescence detection mechanism 5 is arranged above the inner cavity 3, and the fluorescence detection mechanism 5 is electrically connected with the microplate reader device main body 1.
The fluorescence detection mechanism 5 can directly act on the porous storage disc 2 entering the inner cavity 3 to perform experiment monitoring on materials in the porous storage disc 2.
A first turnover plate 104 is arranged on the front side of one end of the microplate reader device main body 1, and the first turnover plate 104 is rotatably connected with the microplate reader device main body 1 through an electric control rotating shaft body 105.
The arrangement of the electric control rotating shaft body 105 can ensure that the first turnover plate 104 is turned over and opened in one step when the movable disk 4 is to be extended, so that the movable disk 4 is conveniently extended.
The intermediate position department of ELIASA equipment main part 1 front end face top is provided with display screen 106, and display screen 106 and ELIASA equipment main part 1 electric connection, and one side of display screen 106 is provided with operation button 107, and operation button 107 is provided with a plurality of.
Example 2
Referring to fig. 1, the upper end surface of the microplate reader device body 1 is provided with two second turnover plates 108, the two second turnover plates 108 are rotatably connected with the microplate reader device body 1 through two damping rotary shafts 109, the two damping rotary shafts 109 are provided, one side of each of the two second turnover plates 108 is provided with two grooves 110, the two grooves 110 are formed integrally with the second turnover plates 108.
The setting of the rotatory axis body of damping 109 can let the device when not using at ordinary times, and the effectual porous storage plate 2 of accomodating is accomodate, avoids the dust to pile up and is accomodating inside cavity 201, when causing the experiment, produces the deviation influence to data.
The inside of two second returning plates 108 all is provided with accomodates interior cavity 111, and accomodate interior cavity 111 and be provided with two, and two inside of accomodating interior cavity 111 all are provided with porous storage plate 2, and porous storage plate 2 is provided with two, and the inside of two porous storage plate 2 up end all is provided with accomodates cavity 201, and accomodates cavity 201 and be provided with a plurality of, and a plurality of accomodates cavity 201 all with the 2 integral type formation of porous storage plate.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. A fluorescence detection microplate reader device comprises a microplate reader device main body (1), wherein a maintenance shielding plate (101) is arranged on the rear side of one end of the microplate reader device main body (1), the maintenance shielding plate (101) is in threaded connection with the microplate reader device main body (1) through hexagonal bolts (102), four hexagonal bolts (102) are arranged, and a sealing rubber ring (103) is arranged between the maintenance shielding plate (101) and the microplate reader device main body (1);
the method is characterized in that: further comprising:
the device comprises an inner cavity (3) which is arranged inside a microplate reader equipment main body (1), wherein a processor (9) is arranged on one side inside the inner cavity (3), a moving disc (4) is arranged inside the inner cavity (3), two sides of the moving disc (4) are movably connected with the microplate reader equipment main body (1) through sliding rails (6), two sliding rails (6) are arranged, pulleys (8) are arranged at the middle positions of the two sliding rails (6), two pulleys (8) are arranged, the two pulleys (8) are rotatably connected with the sliding rails (6) through motors (7), the number of the motors (7) is two, and the processor (9) is electrically connected with the motors (7);
friction bulge (403), it is installed the both sides of removing dish (4) inner wall, and friction bulge (403) are provided with four, four friction bulge (403) all with the both sides hot melt connection of removing dish (4) inner wall, the both ends of removing dish (4) inner wall all are provided with electric telescopic handle (401), and electric telescopic handle (401) are provided with four, four the one end of electric telescopic handle (401) all runs through and extends to inside removing dish (4), four the other end of electric telescopic handle (401) all is provided with grip block (402), and its grip block (402) are provided with two, two grip block (402) all with the other end fixed connection of electric telescopic handle (401).
2. The microplate reader apparatus for fluorescence detection according to claim 1, wherein: and a fluorescence detection mechanism (5) is arranged above the inner part of the inner cavity (3), and the fluorescence detection mechanism (5) is electrically connected with the microplate reader equipment main body (1).
3. The microplate reader apparatus for fluorescence detection according to claim 1, wherein: the front side of one end of the microplate reader equipment main body (1) is provided with a first turnover plate (104), and the first turnover plate (104) is rotatably connected with the microplate reader equipment main body (1) through an electric control rotating shaft body (105).
4. The microplate reader apparatus for fluorescence detection according to claim 1, wherein: the ELISA plate reader is characterized in that a display screen (106) is arranged in the middle of the upper portion of the front end face of the ELISA plate reader main body (1), the display screen (106) is electrically connected with the ELISA plate reader main body (1), an operation key (107) is arranged on one side of the display screen (106), and the operation key (107) is provided with a plurality of.
5. The microplate reader apparatus for fluorescence detection according to claim 1, wherein: the up end of ELIASA equipment main part (1) is provided with second returning face plate (108), and second returning face plate (108) are provided with two, two second returning face plate (108) all rotate with ELIASA equipment main part (1) through the rotatory axis body of damping (109) and are connected, and the rotatory axis body of damping (109) are provided with two, two one side of second returning face plate (108) all is provided with recess (110), and recess (110) are provided with two, two recess (110) all form with second returning face plate (108) integral type.
6. The microplate reader apparatus for fluorescence detection according to claim 5, wherein: two the inside of second returning face plate (108) all is provided with accomodates interior cavity (111), and accomodate interior cavity (111) and be provided with two, two the inside of accomodating interior cavity (111) all is provided with porous storage plate (2), and porous storage plate (2) are provided with two, two the inside of porous storage plate (2) up end all is provided with accomodates cavity (201), and accomodates cavity (201) and be provided with a plurality of, a plurality of accomodate cavity (201) all form with porous storage plate (2) integral type.
CN202222630316.1U 2022-10-08 2022-10-08 Fluorescence detection ELIASA equipment Active CN218412563U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222630316.1U CN218412563U (en) 2022-10-08 2022-10-08 Fluorescence detection ELIASA equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222630316.1U CN218412563U (en) 2022-10-08 2022-10-08 Fluorescence detection ELIASA equipment

Publications (1)

Publication Number Publication Date
CN218412563U true CN218412563U (en) 2023-01-31

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ID=84999763

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222630316.1U Active CN218412563U (en) 2022-10-08 2022-10-08 Fluorescence detection ELIASA equipment

Country Status (1)

Country Link
CN (1) CN218412563U (en)

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