CN210742276U - Glycosylated hemoglobin detector - Google Patents

Glycosylated hemoglobin detector Download PDF

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Publication number
CN210742276U
CN210742276U CN201921483195.4U CN201921483195U CN210742276U CN 210742276 U CN210742276 U CN 210742276U CN 201921483195 U CN201921483195 U CN 201921483195U CN 210742276 U CN210742276 U CN 210742276U
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China
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detection module
module
shell
card
detection
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CN201921483195.4U
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Chinese (zh)
Inventor
邵伟
刘新星
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Yantai Yuanqin Technology Development Co Ltd
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Yantai Yuanqin Technology Development Co Ltd
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Abstract

The utility model discloses a glycosylated hemoglobin detector, which comprises a shell, a detection module, a card support module and a jacking device, wherein one side of the inner wall of the shell is fixedly provided with a power switch module, the inside of the shell is provided with the detection module, the bottom of the detection module is fixedly provided with a detection module fixing plate, the shell at one side of the detection module is provided with an opening, the inside of the opening is provided with the card support module, the card support module is provided with a reagent detection card, a bin outlet tension spring is fixedly arranged between the inner wall of the shell above the opening and the detection module, the inside of the shell at the opposite side of the power switch module is fixedly provided with a charging device, the utility model pre-positions the reagent detection card through the card support module, the card support module is provided with a top plate clamping block, the top plate clamping block is clamped with the detection module and is fixed left, the detection module vertically rises and falls, and the jacking device can jack the detection module by one key.

Description

Glycosylated hemoglobin detector
The technical field is as follows:
the utility model belongs to the technical field of the detector, in particular to glycosylated hemoglobin detector.
Background art:
glycated hemoglobin is that certain special molecule position and glucose that hemoglobin A constitutes combine to form through slow and irreversible reaction, how much is closely related with the height of blood sugar that glycated hemoglobin generates, and glycated hemoglobin is many more than the blood sugar is stable, so glycated hemoglobin survey can reflect the blood sugar average level of this time within a period of 4 ~ 8 weeks before drawing blood, be the good index of blood sugar control of longer period of time of reflection, current detector location is inaccurate to have leaded to detecting the error, influences the accuracy of testing result, so the utility model provides a glycated hemoglobin detector solves above-mentioned problem.
The utility model has the following contents:
the utility model aims to provide a glycosylated hemoglobin detector for solving the problems, which solves the existing defects.
In order to solve the above problem, the utility model provides a technical scheme:
the glycosylated hemoglobin detector comprises a shell, a detection module, a clamping module and a jacking device, wherein a power switch module is fixedly arranged on one side of the inner wall of the shell, the detection module is arranged in the shell, a detection module fixing plate is fixedly arranged at the bottom of the detection module, an opening is formed in the shell on one side of the detection module, the clamping module is arranged in the opening, a reagent detection card is arranged on the clamping module, a bin outlet tension spring is fixedly arranged between the inner wall of the shell above the opening and the detection module, a charging device is fixedly arranged in the shell on the opposite side of the power switch module, brackets are arranged in the shells on the opposite sides of the detection module, a plurality of detection module reset springs are arranged between the detection module fixing plate and the brackets, and a power supply is fixedly arranged in the shell between the charging device and the detection module, the electric connection between power and the charging device, be provided with the card on the casing of detection module below and hold in the palm the guide rail, card support module slidable mounting is on card support guide rail, one side fixed mounting that the inside of casing was kept away from the card and is held in the palm the module has jacking device, install out-of-warehouse button on the casing of the relative one side of card support module.
Preferably, the clamping and supporting module comprises a top plate clamping block, a clamping chuck, a sliding block, an extension spring buckle and an identification block, wherein the top of the clamping and supporting module is provided with the top plate clamping block close to the two opposite sides of one end of the detection module, the top of the clamping and supporting module is provided with the clamping chuck, the two top plate clamping blocks are respectively provided with the sliding block far away from the clamping and supporting module on one side, the sliding block is arranged on the clamping and supporting guide rail in a sliding mode, the clamping chuck is fixedly provided with the clamping block close to the inner wall on one side of the top plate clamping block, one of the clamping block and the extension spring buckle is fixedly arranged at the end, far away from the clamping.
Preferably, the jacking device comprises a jacking rod, a jacking device fixing seat, a rotating shaft, a jacking curved rod and a reset spring, wherein the jacking rod is fixedly arranged on one side of the delivery button close to the detection module, one end of the jacking rod far away from the delivery button penetrates through the jacking device fixing seat, the jacking device fixing seat is fixedly arranged with the shell, two opposite sides of the top of the jacking device fixing seat are respectively and integrally provided with a side plate, the jacking curved rod is rotatably arranged between the two side plates through the rotating shaft, the jacking curved rod is arranged in a Z-shaped structure, one end of the jacking curved rod far away from the jacking device fixing seat is arranged at the bottom of the detection module fixing plate, one end of the jacking device fixing seat far away from the delivery button is arranged in a U-shaped structure, one end of the jacking rod far away from the delivery button is abutted against the jacking curved rod, and the reset spring is sleeved on the jacking rod between the U-shaped structures, and an E-shaped clamp spring is sleeved on the ejector rod at one end of the reset spring, which is far away from the jacking curved rod.
Preferably, the shell on one side of the detection module is fixedly provided with an induction device, the shell below the power switch module is fixedly provided with an identification device, and the detection module, the induction device and the identification device are all electrically connected with the power supply.
Preferably, a clamping support jacking spring is fixedly mounted on one side, away from the clamping chuck, of the clamping block.
Preferably, the bottom of the detection module is provided with a circular truncated cone-shaped protrusion, the reagent detection card is provided with a circular groove, and the circular truncated cone-shaped protrusion is buckled with the circular groove of the reagent detection card.
Preferably, a display screen is fixedly mounted at the top of the shell.
The utility model has the advantages that:
1. the clamping block fixes the reagent detection card in the clamping module under the elastic force action of a clamping support jacking spring, and the clamping block is completely buckled with the reagent detection card, so that the reagent detection card is prepositioned, and the clamping force of the clamping block ensures that the reagent detection card does not move, so that the reagent detection card is prepositioned through the clamping support module;
2. the card support module is provided with a top plate clamping block, the detection module is vertically jacked up in the process that the card support module is pushed into the detector, the detection module falls down after the card support module is pushed to a certain position, and the top plate clamping block is clamped with the detection module and is fixed left and right through the elasticity of a spring, so that accurate positioning is realized;
3. the jacking bent rod rotates around the rotating shaft under the action of the ejector rod connected with the delivery button, the detection module is jacked gradually, the detection module is lifted vertically until the detection module is jacked completely, the jacking device can jack the detection module by one key, and the clamping support module is withdrawn under the action of spring tension.
Description of the drawings:
for ease of illustration, the invention is described in detail by the following detailed description and accompanying drawings.
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic structural view of the card holder module of the present invention;
fig. 3 is a schematic structural view of the jacking device of the present invention;
fig. 4 is a structural sectional view of the present invention;
fig. 5 is a schematic structural diagram of the housing of the present invention.
In the figure: 1. a power switch module; 2. a housing; 3. a detection module; 4. a card support module; 4.1, a top plate clamping block; 4.2, clamping blocks; 4.3, a chuck; 4.4, a sliding block; 4.5, buckling by using a tension spring; 4.6, identifying a block; 5. a reagent detection card; 6. discharging and drawing the bullet; 7. a charging device; 8. a detection module return spring; 9. a power source; 10. a card holder guide rail; 11. a jacking device; 11.1, a mandril; 11.2, jacking device fixing seats; 11.3, a rotating shaft; 11.4, jacking up the bent rod; 11.5, a return spring; 11.6, an E-shaped clamp spring; 12. a delivery button; 13. a detection module fixing plate; 14. an induction device; 15. an identification device; 16. the card support tightly pushes the spring.
The specific implementation mode is as follows:
as shown in fig. 1 to 5, the following technical solutions are adopted in the present embodiment: the glycosylated hemoglobin detector comprises a shell 2, a detection module 3, a clamping support module 4 and a jacking device 11, wherein a power switch module 1 is fixedly installed on one side of the inner wall of the shell 2, the detection module 3 is arranged in the shell 2, a detection module fixing plate 13 is fixedly installed at the bottom of the detection module 3, a through hole is formed in the shell 2 on one side of the detection module 3, the clamping support module 4 is installed in the through hole, a reagent detection card 5 is installed on the clamping support module 4, a bin outlet tension spring 6 is fixedly installed between the inner wall of the shell 2 above the through hole and the detection module 3, a charging device 7 is fixedly installed in the shell 2 on the opposite side of the power switch module 1, supports are installed in the shell 2 on the opposite sides of the detection module 3, and a plurality of detection module reset springs 8 are installed between the detection module fixing plate 13 and the supports, fixed mounting has power 9 in 2 between charging device 7 and the detection module 3 casing, electric connection between power 9 and the charging device 7, be provided with the card on 2 of detection module 3 below the casing and hold in the palm guide rail 10, 4 slidable mounting of card support module is on card support guide rail 10, one side fixed mounting that the inside of casing 2 was kept away from card support module 4 has jacking device 11, install out-of-warehouse button 12 on the casing 2 of the relative one side of card support module 4.
Wherein, the card support module 4 comprises a top plate fixture block 4.1, a clamping block 4.2, a chuck 4.3, a slide block 4.4, a tension spring buckle 4.5 and an identification block 4.6, the top of the card support module 4 is fixedly provided with the top plate fixture block 4.1 at the two opposite sides near one end of the detection module 3, the top of the card support module 4 is provided with the chuck 4.3, the two top plate fixture blocks 4.1 are fixedly provided with the slide block 4.4 on the card support module 4 far away from one side, the slide block 4.4 is slidably arranged on the card support guide rail 10, the clamping block 4.2 is fixedly provided on the inner wall near one side of the top plate fixture block 4.1 of the chuck 4.3, one end of the top of the slide block 4.4 far away from the chuck 4.3 is fixedly provided with the tension spring buckle 4.5, the tension spring buckle 4.6 is arranged on the slide block 4 at the opposite side of the tension spring buckle 4.5, the clamping block 4.2 fixes the reagent detection card 5 in the card support module 4 under the elastic, because the chuck 4.3 is completely buckled with the reagent detection card 5, the reagent detection card 5 realizes prepositioning and ensures that the reagent detection card 5 does not move by the clamping force of the clamping block 4.2.
Wherein, the jacking device 11 comprises a mandril 11.1, a jacking device fixing seat 11.2, a rotating shaft 11.3, a jacking curved rod 11.4 and a reset spring 11.5, one side of the delivery button 12 close to the detection module 3 is fixedly provided with the mandril 11.1, one end of the mandril 11.1 far away from the delivery button 12 passes through the jacking device fixing seat 11.2, the jacking device fixing seat 11.2 is fixedly installed with the shell 2, two opposite sides of the top of the jacking device fixing seat 11.2 are respectively and integrally provided with a side plate, the jacking curved rod 11.4 is rotatably installed between the two side plates through the rotating shaft 11.3, the jacking curved rod 11.4 is arranged in a Z-shaped structure, one end of the jacking curved rod 11.4 far away from the jacking device fixing seat 11.2 is installed at the bottom of the detection module fixing plate 13, one end of the jacking device fixing seat 11.2 far away from the delivery button 12 is arranged in a U-shaped structure, one end of the mandril 11.1 far away from the delivery button 12 and the jacking curved rod 11.4, and the cover is equipped with reset spring 11.5 on the ejector pin 11.1 between the jack-up device fixing base 11.2U type structure, the cover is equipped with E type jump ring 11.6 on the ejector pin 11.1 that reset spring 11.5 kept away from jack-up bent lever 11.4 one end, manually presses out the storehouse button 12, and jack-up bent lever 11.4 revolutes axle 11.3 and rotates under the ejector pin 11.1 effect through being connected with the button 12 of drawing a storehouse to jack-up detection module 3 gradually, until detection module 3 by the complete jack-up after, the card that is equipped with reagent and detects card 5 holds in the palm module 4 and pops out the detector inside under the effect of the extension spring 6 that draws a storehouse.
Wherein, fixed mounting has induction system 14 on the casing 2 of detection module 3 one side, fixed mounting has recognition device 15 on the casing 2 of switch module 1 below, detection module 3, induction system 14 and recognition device 15 all with power 9 electric connection, induction system 14 senses and sends out the signal behind the identification block 4.6 on the card support module 4, through line transmission to detection module 3, detection module 3 begins detection achievement, and sensitivity is high.
One side of the clamping block 4.2, which is far away from the chuck 4.3, is fixedly provided with a clamping support jacking spring 16, and the clamping block 4.2 fixes the reagent detection card 5 in the clamping support module 4 under the elastic force action of the clamping support jacking spring 16.
The bottom of the detection module 3 is provided with a circular truncated cone-shaped protrusion, a circular groove is formed in the reagent detection card 5, the circular truncated cone-shaped protrusion is buckled with the circular groove of the reagent detection card 5, the center of the reagent detection card 5 is completely centered with the detection center of the detection module 3, the chuck 4.3 is clamped with the edge of the detection module fixing plate 13, and the phenomenon that the card support module 4 is pulled out by mistake due to the fact that the outlet tension spring 6 is too large in elasticity is avoided.
Wherein, the top fixed mounting of casing 2 has the display screen, is convenient for show the result that the detector detected through the display screen.
Specifically, the method comprises the following steps: when the glycosylated hemoglobin detector is used, one end of a reagent detection card 5 dripped with a blood sample to be detected is placed into one side of a chuck 4.3, which is far away from a shell 2, and is pushed to the side, which is far away from the shell 2, until a clamping block 4.2 is flush with the edge of the chuck 4.3, the reagent detection card 5 is completely placed, the clamping block 4.2 fixes the reagent detection card 5 in a card holder module 4 under the elastic force action of a card holder jacking spring 16, because the chuck 4.3 is completely buckled with the reagent detection card 5, the reagent detection card 5 realizes prepositioning, the reagent detection card 5 is ensured not to move by the clamping force of the clamping block 4.2, the card holder module 4 provided with the reagent detection card 5 is pushed towards the inside of the shell 2 by hand, the bevel edge of a top plate clamping block 4.1 jacks up the detection module 3 under the pressure, the card holder module 4 continues to advance under the external force action until the straight edge of the top plate clamping block 4.1 crosses over the detection module 3, and the detection module 3, the lower circular truncated cone-shaped bulge of the detection module 3 is buckled with the circular groove of the reagent detection card 5, the center of the reagent detection card 5 is ensured to be completely aligned with the detection center of the detection module 3, at the moment, the chuck 4.3 is clamped with the edge of the detection module fixing plate 13, the card support module 4 is prevented from being pulled out by mistake due to overlarge elasticity of the delivery tension spring 6, the sensing device 14 senses the identification block 4.6 on the card support module 4 and sends a signal to the detection module 3 through a circuit, the detection module 3 starts detection work, the hemoglobin ratio is measured through a colorimetric method, after the detection work is finished, the delivery button 12 is manually pressed, the jacking curved rod 11.4 rotates around the shaft 11.3 under the action of the ejector rod 11.1 connected with the delivery button 12 and jacks up the detection module 3 gradually, until the detection module 3 is jacked up completely, the card support module 4 provided with the reagent detection card 5 is popped out of the detector under the action of the delivery tension spring 6, the sensing device 14 sends out a signal after sensing the identification block 4.6, and the detection module 3 is powered off to finish detection.
The basic principles and main features of the present invention and the advantages of the present invention have been shown and described above, and it should be understood by those skilled in the art that the present invention is not limited by the above embodiments, which are only illustrative, but also various changes and modifications may be made without departing from the spirit and scope of the present invention, which fall within the scope of the present invention as claimed, which is defined by the appended claims and their equivalents.

Claims (7)

1. The glycosylated hemoglobin detector is characterized in that: comprises a shell (2), a detection module (3), a card support module (4) and a jacking device (11), wherein a power switch module (1) is fixedly arranged on one side of the inner wall of the shell (2), the detection module (3) is arranged in the shell (2), a detection module fixing plate (13) is fixedly arranged at the bottom of the detection module (3), an opening is formed in the shell (2) on one side of the detection module (3), the card support module (4) is arranged in the opening, a reagent detection card (5) is arranged on the card support module (4), a bin outlet tension spring (6) is fixedly arranged between the inner wall of the shell (2) above the opening and the detection module (3), a charging device (7) is fixedly arranged in the shell (2) on one side opposite to the power switch module (1), and a support is arranged in the shell (2) on two sides opposite to the detection module (3), install a plurality of detection module reset spring (8) between detection module fixed plate (13) and the support, casing (2) internal fixation between charging device (7) and detection module (3) has power (9), electric connection between power (9) and charging device (7), be provided with the card on casing (2) of detection module (3) below and hold in the palm guide rail (10), card support module (4) slidable mounting is on card support guide rail (10), one side fixed mounting that the inside of casing (2) was kept away from card support module (4) has jacking device (11), install out storehouse button (12) on casing (2) of the relative one side of card support module (4).
2. The glycated hemoglobin meter according to claim 1, wherein: the clamping support module (4) comprises a top plate clamping block (4.1), a clamping block (4.2), a clamping disc (4.3), a sliding block (4.4), a tension spring buckle (4.5) and an identification block (4.6), the opposite two sides of the top of the card support module (4) close to one end of the detection module (3) are fixedly provided with top plate clamping blocks (4.1), the top of the clamping support module (4) is provided with a chuck (4.3), the clamping support module (4) at one side, far away from the two top plate clamping blocks (4.1), is fixedly provided with a sliding block (4.4), the sliding block (4.4) is slidably arranged on the clamping support guide rail (10), the clamping block (4.2) is fixedly arranged on the inner wall of one side of the chuck (4.3) close to the top plate clamping block (4.1), one end of the top of one of the sliding blocks (4.4) far away from the chuck (4.3) is fixedly provided with a tension spring buckle (4.5), and an identification block (4.6) is arranged on the sliding block (4.4) at one side opposite to the tension spring buckle (4.5).
3. The glycated hemoglobin meter according to claim 1, wherein: the jacking device (11) comprises a push rod (11.1), a jacking device fixing seat (11.2), a rotating shaft (11.3), a jacking curved rod (11.4) and a reset spring (11.5), wherein the push rod (11.1) is fixedly installed on one side, close to the detection module (3), of the delivery button (12), one end, far away from the delivery button (12), of the push rod (11.1) penetrates through the jacking device fixing seat (11.2), the jacking device fixing seat (11.2) is fixedly installed with the shell (2), both sides, opposite to the top of the jacking device fixing seat (11.2), are integrally provided with side plates, the jacking curved rod (11.4) is rotatably installed between the two side plates through the rotating shaft (11.3), the jacking curved rod (11.4) is arranged in a Z-shaped structure, one end, far away from the jacking device fixing seat (11.2), of the jacking curved rod (11.4) is installed at the bottom of the detection module fixing plate (13), and one end, far away from the delivery button (12) of the jacking device fixing seat (11.2) is arranged in a U-shaped structure, one end that push rod (11.1) kept away from out-of-warehouse button (12) is contradicted with jack-up bent lever (11.4), just the cover is equipped with reset spring (11.5) on push rod (11.1) between jack-up device fixing base (11.2) U type structure, the cover is equipped with E type jump ring (11.6) on push rod (11.1) of jack-up bent lever (11.4) one end is kept away from in reset spring (11.5).
4. The glycated hemoglobin meter according to claim 1, wherein: the detection device is characterized in that an induction device (14) is fixedly mounted on the shell (2) on one side of the detection module (3), an identification device (15) is fixedly mounted on the shell (2) below the power switch module (1), and the detection module (3), the induction device (14) and the identification device (15) are all electrically connected with the power supply (9).
5. The glycated hemoglobin meter according to claim 2, wherein: one side of the clamping block (4.2) far away from the chuck (4.3) is fixedly provided with a clamping support jacking spring (16).
6. The glycated hemoglobin meter according to claim 1, wherein: the bottom of the detection module (3) is provided with a circular truncated cone-shaped bulge, a circular groove is formed in the reagent detection card (5), and the circular truncated cone-shaped bulge is buckled with the circular groove of the reagent detection card (5).
7. The glycated hemoglobin meter according to claim 1, wherein: the top of the shell (2) is fixedly provided with a display screen.
CN201921483195.4U 2019-09-07 2019-09-07 Glycosylated hemoglobin detector Active CN210742276U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921483195.4U CN210742276U (en) 2019-09-07 2019-09-07 Glycosylated hemoglobin detector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921483195.4U CN210742276U (en) 2019-09-07 2019-09-07 Glycosylated hemoglobin detector

Publications (1)

Publication Number Publication Date
CN210742276U true CN210742276U (en) 2020-06-12

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CN201921483195.4U Active CN210742276U (en) 2019-09-07 2019-09-07 Glycosylated hemoglobin detector

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110441534A (en) * 2019-09-07 2019-11-12 烟台德瑞生物科技有限公司 Glycosylated hemoglobin detector
WO2022226869A1 (en) * 2021-04-29 2022-11-03 京东方科技集团股份有限公司 Chamber entering and leaving structure of analysis apparatus, analysis apparatus, and analysis system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110441534A (en) * 2019-09-07 2019-11-12 烟台德瑞生物科技有限公司 Glycosylated hemoglobin detector
WO2022226869A1 (en) * 2021-04-29 2022-11-03 京东方科技集团股份有限公司 Chamber entering and leaving structure of analysis apparatus, analysis apparatus, and analysis system

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