CN220803076U - Urine detection reagent's configurator - Google Patents

Urine detection reagent's configurator Download PDF

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Publication number
CN220803076U
CN220803076U CN202322643800.2U CN202322643800U CN220803076U CN 220803076 U CN220803076 U CN 220803076U CN 202322643800 U CN202322643800 U CN 202322643800U CN 220803076 U CN220803076 U CN 220803076U
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China
Prior art keywords
urine detection
detection reagent
configuration shell
seat
reagent
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CN202322643800.2U
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Chinese (zh)
Inventor
常玉丹
李欢洲
孟洋
段知辰
高云奇
李欣妍
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Chengjin Shenyang Technology Co ltd
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Chengjin Shenyang Technology Co ltd
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Abstract

The utility model discloses a urine detection reagent configurator, which comprises a configuration shell; and (3) configuring a shell: the opening of the top wall of the rotary cylinder is rotationally connected with the rotary cylinder through a large-diameter bearing, a uniformly distributed connecting rod is arranged in the rotary cylinder, a rotary ball is arranged at one end of the connecting rod, which is close to the center of the configuration shell, a uniformly distributed liquid pipe penetrates through the left wall of the configuration shell, a control valve is connected in series with the middle part of the liquid pipe at the lower end of the configuration shell, and a uniformly distributed supporting seat is arranged on the lower surface of the configuration shell; wherein: the urine detection reagent preparing device is characterized by further comprising a reagent seat, wherein the semicircular grooves formed in the outer side of the reagent seat are connected with adjacent rotating balls in a rotating mode, the urine detection reagent preparing device can enable urine detection reagents to be always at a proper temperature in the preparing process through water heating, so that the urine detection reagent preparing speed is improved, meanwhile, the urine detection reagent raw materials can be automatically rotated, oscillated and mixed, the urine detection reagent preparing speed is accelerated, and meanwhile, the labor intensity is reduced.

Description

Urine detection reagent's configurator
Technical Field
The utility model relates to the technical field of urine detection, in particular to a configurator of a urine detection reagent.
Background
The urine detection is a detection mode of medicine, and comprises urine routine analysis, urine component detection (such as urine red blood cells, white blood cells and the like), protein component quantitative determination, urine enzyme determination and the like, and has important value for clinical diagnosis, curative effect judgment and prognosis, and the urine detection reagent is a reagent for detecting urine, which has the main functions of reacting with certain components in urine, judging the condition of a patient according to the color, wherein the urine detection reagent needs to be matched with a preparation device for use when detecting the urine, part of urine detection reagent needs to be prepared for use, firstly, urine reagent raw materials are put into a reagent tube, then a medical staff manually stir the urine reagent raw materials by using a stirring rod to uniformly mix the urine reagent raw materials, then urine in the urine containing device is sucked by a certain amount through a disposable dropper and dripped into the urine reagent tube, then the urine reagent tube is stirred again, finally the urine reagent is taken out and the urine metabolism detection is carried out through a color comparison card, however, the external temperature of the urine reagent is lower in the use process, the urine reagent is slowly mixed under the influence of the temperature in the preparation process, and the device needs to be manually stirred by staff, and the use is inconvenient.
Disclosure of utility model
The utility model aims to overcome the existing defects, and provides the urine detection reagent configurator, which can ensure that the urine detection reagent is always at a proper temperature in the configuration process by heating a water body, so that the configuration speed of the urine detection reagent is improved, meanwhile, the device can automatically perform rotary vibration mixing on the raw materials of the urine detection reagent, the preparation speed of the urine detection reagent is accelerated, the labor intensity of workers is reduced, and the problems in the background art can be effectively solved.
In order to achieve the above purpose, the present utility model provides the following technical solutions: a urine detection reagent dispenser comprising a dispenser housing;
And (3) configuring a shell: the opening of the top wall of the rotary cylinder is rotationally connected with the rotary cylinder through a large-diameter bearing, a uniformly distributed connecting rod is arranged in the rotary cylinder, a rotary ball is arranged at one end of the connecting rod, which is close to the center of the configuration shell, a uniformly distributed liquid pipe penetrates through the left wall of the configuration shell, a control valve is connected in series with the middle part of the liquid pipe at the lower end of the configuration shell, and a uniformly distributed supporting seat is arranged on the lower surface of the configuration shell;
Wherein: the urine detection reagent preparing device is characterized by further comprising a reagent seat, wherein the semicircular groove formed in the outer side of the reagent seat is connected with the adjacent rotating ball in a rotating mode, the urine detection reagent preparing process can be always at a proper temperature through water heating, so that the urine detection reagent preparing speed is improved, meanwhile, the urine detection reagent raw materials can be automatically rotated, oscillated and mixed, and the manual labor intensity is reduced while the urine detection reagent preparing speed is accelerated.
Furthermore, the front surface of configuration shell is equipped with well accuse seat, and the upper end inclined plane of well accuse seat is equipped with the singlechip, and the input of singlechip is connected with external power source electricity, and control electrical components is convenient.
Further, the outside of rotary drum is equipped with outer ring gear, and the roof of configuration shell is connected with the drive shaft through the bearing rotation, and the lower extreme of drive shaft is equipped with the gear, and the gear is connected with the ring gear meshing, and the upper surface of configuration shell is equipped with the motor, and the input of motor is connected with the output electricity of singlechip, and the output shaft of motor and the upper end fixed connection of drive shaft provide hybrid to urine examination reagent configuration.
Further, a metal heating pipe is arranged at the bottom of the configuration shell, a temperature sensor is arranged on the rear wall of the configuration shell, the input end of the metal heating pipe is electrically connected with the output end of the single chip microcomputer, the temperature sensor is electrically connected with the single chip microcomputer in a bidirectional mode, water is heated, and a proper temperature environment is provided for urine detection reagent configuration.
Further, the upper end inclined plane of well accuse seat is equipped with the display screen, and the input of display screen is connected with the output electricity of singlechip, shows the inside water temperature of device.
Further, the arc-shaped groove is formed in the outer side of the reagent seat, and the material returning jack post is connected in the arc-shaped groove in a sliding mode, so that material returning of the reagent tube can be conveniently carried out subsequently.
Further, a cup groove is formed in the upper surface of the configuration shell, and the urine containing device is placed.
Compared with the prior art, the utility model has the beneficial effects that: the urine detection reagent preparation device has the following advantages:
1. The single chip microcomputer is started to heat the water body inside the device, meanwhile, the single chip microcomputer is started to enable the temperature sensor to detect the temperature of the water body inside the device and transmit detection results to the single chip microcomputer in an electric signal mode, so that the single chip microcomputer can regulate and control the opening and closing of the metal heating pipe according to the temperature change of the water body inside the device, the water body inside the device is always kept at the proper temperature for configuration of the urine detection reagent, and the urine detection reagent configurator can enable the urine detection reagent to be always at the proper temperature in the configuration process through water body heating, so that the urine detection reagent configuration speed is improved.
2. The urine reagent raw material is put into the reagent tube, then the singlechip starts the motor to drive the driving shaft to rotate, the driving shaft drives the gear to drive the external gear belt to rotate through meshing connection, the rotating cylinder drives the reagent seat to rotate through the connecting rod and the rotating ball, the reagent seat drives the reagent tube to rotate, the in-process rotating ball and the semicircular groove self-adaptively rotate, in the rotating process of the reagent tube, the lower end of the reagent tube rotates and inertly lifts, thereby the preparation speed of the urine detection reagent is accelerated, the singlechip controls the motor to alternately rotate forward and backward to enable the reagent tube to alternately rotate and oscillate, the preparation speed of the urine detection reagent is further improved, the configurator of the urine detection reagent can automatically rotate and oscillate and mix the urine detection reagent raw material, and the preparation speed of the urine detection reagent is accelerated, and meanwhile the labor intensity is reduced.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a left side schematic view of the present utility model;
fig. 3 is an enlarged schematic view of the structure of the present utility model at a.
In the figure: 1, a configuration shell, 2 central control seats, 3 singlechips, 4 display screens, 5 rotary drums, 6 connecting rods, 7 rotary balls, 8 reagent seats, 9 arc grooves, 10 material returning ejector pillars, 11 outer toothed rings, 12 driving shafts, 13 gears, 14 motors, 15 metal heating pipes, 16 temperature sensors, 17 cup grooves, 18 liquid pipes, 19 control valves and 20 supporting seats.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-3, the present embodiment provides a technical solution: a urine detection reagent dispenser comprising a dispenser housing 1;
Configuration shell 1: the opening of the top wall is rotatably connected with a rotary cylinder 5 through a large-diameter bearing, a uniformly distributed connecting rod 6 is arranged in the rotary cylinder 5, one end of the connecting rod 6 close to the center of a configuration shell 1 is provided with a rotary ball 7, the left wall of the configuration shell 1 is penetrated and provided with a uniformly distributed liquid pipe 18, the middle part of the liquid pipe 18 at the lower end is connected with a control valve 19 in series, the lower surface of the configuration shell 1 is provided with a uniformly distributed supporting seat 20, the front surface of the configuration shell 1 is provided with a central control seat 2, the upper inclined surface of the central control seat 2 is provided with a singlechip 3, the input end of the singlechip 3 is electrically connected with an external power supply, the bottom of the configuration shell 1 is provided with a metal heating pipe 15, the rear wall of the configuration shell 1 is provided with a temperature sensor 16, the input end of the metal heating pipe 15 is electrically connected with the output end of the singlechip 3, the temperature sensor 16 is electrically connected with the singlechip 3 in a bidirectional manner, the upper inclined surface of the central control seat 2 is provided with a display screen 4, the input end of the display screen 4 is electrically connected with the output end of the single chip microcomputer 3, the cup groove 17 is arranged on the upper surface of the configuration shell 1, when the device is used, firstly, the device is placed to a designated position through the supporting seat 20, then four fifths of water is injected into the device through the liquid pipe 18 on the upper side, then the urine cup is placed in the cup groove 17, then the single chip microcomputer 3 is started to heat the water body in the device by the metal heating pipe 15, meanwhile, the single chip microcomputer 3 is started to detect the temperature of the water body in the device by the temperature sensor 16 and transmit the detection result to the single chip microcomputer 3 in an electric signal mode, so that the single chip microcomputer 3 regulates and controls the opening and closing of the metal heating pipe 15 according to the temperature change of the water body in the device, and the water body in the device is always kept at a proper temperature configured by the urine detection reagent, the singlechip 3 transmits the water temperature to the display screen 4 in an electric signal mode for data display so as to be convenient for workers to observe, and the urine detection reagent configurator can always be at a proper temperature in the urine detection reagent configuration process through water heating, so that the urine detection reagent configuration speed is improved;
wherein: the urine reagent test device further comprises a reagent seat 8, the outer half-round grooves formed in the outer side of the reagent seat 8 are rotationally connected with the adjacent rotating balls 7, an outer toothed ring 11 is arranged on the outer side of the rotating cylinder 5, a driving shaft 12 is rotationally connected to the top wall of the configuration shell 1 through a bearing, a gear 13 is arranged at the lower end of the driving shaft 12, the gear 13 is in meshed connection with the outer toothed ring 11, a motor 14 is arranged on the upper surface of the configuration shell 1, the input end of the motor 14 is electrically connected with the output end of the single chip microcomputer 3, the output shaft of the motor 14 is fixedly connected with the upper end of the driving shaft 12, an arc-shaped groove 9 is formed in the outer side of the reagent seat 8, a material returning jack post 10 is slidably connected in the arc-shaped groove 9, a urine test reagent tube is vertically inserted into the rotating cylinder 5, the inner edge of the upper end of the rotating cylinder 5 is clamped and limited to the outer edge of the reagent tube, at the moment, the lower end of the reagent tube is contacted with a water body, and then a urine reagent raw material is put into the reagent tube, then the single chip microcomputer 3 starts the motor 14 to drive the driving shaft 12 to rotate, the driving shaft 12 drives the gear 13 to drive the outer toothed ring 11 to drive the rotating container 5 to rotate through the meshing connection, the rotating cylinder 5 drives the reagent seat 8 to rotate through the connecting rod 6 and the rotating ball 7, the reagent seat 8 drives the reagent tube to rotate, the rotating ball 7 and the semicircular groove self-adaptively rotate in the process, the lower end of the reagent tube rotates and inertly lifts up in the process of rotating, so as to accelerate the preparation speed of urine detection reagent, the single chip microcomputer 3 controls the motor 14 to alternately rotate forward and backward to enable the reagent tube to alternately rotate and oscillate, so that the preparation speed of urine detection reagent is further improved, after the preparation of urine detection reagent is finished, quantitative urine is sucked through an external disposable dropper and dripped into the reagent tube, then the single chip microcomputer 3 starts the motor 14 again to accelerate the mixing speed of urine and urine detection reagent in the device through the same principle, finally, the material returning jack post 10 is shifted upwards along the arc-shaped groove 9, so that the upper end of the material returning jack post 10 is propped against the upper end edge of the reagent tube to push out the material returning jack post, a worker can conveniently take out the reagent tube and compare the reagent tube with the reagent tube by a color chart, so that the urine metabolism condition is judged, and the urine detection reagent configurator can automatically rotate, vibrate and mix urine detection reagent raw materials, so that the preparation speed of the urine detection reagent is accelerated, and meanwhile, the labor intensity is reduced.
The working principle of the configurator for the urine detection reagent provided by the utility model is as follows: when the device is used, firstly, the device is placed to a designated position through the supporting seat 20, then four fifths of water is injected into the device through the liquid pipe 18 at the upper side, then a urine cup is placed in the cup groove 17, then the single chip microcomputer 3 is started to heat the water body in the device, meanwhile, the single chip microcomputer 3 is started to detect the temperature of the water body in the device through the metal heating pipe 15 and transmit the detection result to the single chip microcomputer 3 in an electric signal mode, so that the single chip microcomputer 3 regulates and controls the opening and closing of the metal heating pipe 15 according to the change of the temperature of the water body in the device, the water body in the device is always kept at a proper temperature of urine detection reagent configuration, the single chip microcomputer 3 transmits the water body temperature to the display screen 4 in an electric signal mode for data display so as to be convenient for workers to observe, then the urine detection reagent pipe is vertically inserted into the rotary cylinder 5, the inner edge of the upper end of the rotary drum 5 is clamped and limited to the outer edge of the reagent tube, at the moment, the lower end of the reagent tube is contacted with a water body, then urine reagent raw materials are put into the reagent tube, then the single chip microcomputer 3 starts a motor 14 to drive a driving shaft 12 to rotate, the driving shaft 12 drives a gear 13 to drive an outer toothed ring 11 to drive a rotary container 5 to rotate through meshed connection, the rotary drum 5 drives a reagent seat 8 to rotate through a connecting rod 6 and a rotary ball 7, the reagent seat 8 drives the reagent tube to rotate, the rotary ball 7 and the semicircular groove self-adaptively rotate in the process, the lower end of the reagent tube rotates and inertially lifts up in the rotating process of the reagent tube, so that the preparation speed of urine reagent is accelerated, the motor 14 is controlled by the single chip microcomputer 3 to alternately rotate and oscillate in a forward and reverse direction, the preparation speed of the urine reagent is further improved, the quantitative urine is absorbed through the external disposable dropper and is dripped into the reagent tube, then the motor 14 is started again by the singlechip 3, the mixing speed of the urine and the urine detection reagent in the device is accelerated through the same principle, and finally the material returning jack post 10 is stirred to move upwards along the arc-shaped groove 9, so that the upper end of the material returning jack post 10 is propped against the upper end edge of the reagent tube to push out the reagent tube, a worker is convenient to take out the reagent tube, and the reagent tube is subjected to color comparison through the color comparison card, so that the urine metabolism condition is judged.
It should be noted that, in the above embodiment, the single-chip microcomputer 3 may employ COP8CBE9, the display screen 4 may employ JBH686N002, the metal heating tube 15 may employ a double-ended electrothermal tube, the temperature sensor 16 may employ AM2303, and the single-chip microcomputer 3 controls the operation of the display screen 4, the metal heating tube 15 and the temperature sensor 16 by methods commonly used in the prior art.
The foregoing description is only illustrative of the present utility model and is not intended to limit the scope of the utility model, and all equivalent structures or equivalent processes or direct or indirect application in other related technical fields are included in the scope of the present utility model.

Claims (7)

1. A urine detection reagent dispenser, characterized by: comprises a configuration shell (1);
Configuration shell (1): the opening of the top wall of the device is rotationally connected with a rotary cylinder (5) through a large-diameter bearing, a uniformly distributed connecting rod (6) is arranged in the rotary cylinder (5), one end of the connecting rod (6) close to the center of the configuration shell (1) is provided with a rotary ball (7), the left wall of the configuration shell (1) is penetrated and provided with a uniformly distributed liquid pipe (18), the middle part of the liquid pipe (18) at the lower end is connected with a control valve (19) in series, and the lower surface of the configuration shell (1) is provided with a uniformly distributed supporting seat (20);
wherein: the device also comprises a reagent seat (8), wherein the semicircular grooves formed in the outer side of the reagent seat (8) are rotationally connected with the adjacent rotating balls (7).
2. A urine detection reagent dispenser as claimed in claim 1, wherein: the front surface of configuration shell (1) is equipped with well accuse seat (2), and the upper end inclined plane of well accuse seat (2) is equipped with singlechip (3), and the input of singlechip (3) is connected with external power source electricity.
3. A urine detection reagent dispenser as claimed in claim 2, wherein: the outside of rotary cylinder (5) is equipped with outer ring gear (11), and the roof of configuration shell (1) is connected with drive shaft (12) through the bearing rotation, and the lower extreme of drive shaft (12) is equipped with gear (13), and gear (13) are connected with outer ring gear (11) meshing, and the upper surface of configuration shell (1) is equipped with motor (14), and the input of motor (14) is connected with the output electricity of singlechip (3), and the output shaft of motor (14) is fixed connection with the upper end of drive shaft (12).
4. A urine detection reagent dispenser as claimed in claim 2, wherein: the bottom of configuration shell (1) is equipped with metal heating pipe (15), and the back wall of configuration shell (1) is equipped with temperature sensor (16), and the input of metal heating pipe (15) is connected with the output electricity of singlechip (3), and temperature sensor (16) are connected with the two-way electricity of singlechip (3).
5. A urine detection reagent dispenser as claimed in claim 2, wherein: the upper end inclined plane of well accuse seat (2) is equipped with display screen (4), and the input of display screen (4) is connected with the output electricity of singlechip (3).
6. A urine detection reagent dispenser as claimed in claim 1, wherein: an arc-shaped groove (9) is formed in the outer side of the reagent seat (8), and a material returning jack post (10) is connected inside the arc-shaped groove (9) in a sliding mode.
7. A urine detection reagent dispenser as claimed in claim 1, wherein: the upper surface of the configuration shell (1) is provided with a cup groove (17).
CN202322643800.2U 2023-09-28 2023-09-28 Urine detection reagent's configurator Active CN220803076U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322643800.2U CN220803076U (en) 2023-09-28 2023-09-28 Urine detection reagent's configurator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322643800.2U CN220803076U (en) 2023-09-28 2023-09-28 Urine detection reagent's configurator

Publications (1)

Publication Number Publication Date
CN220803076U true CN220803076U (en) 2024-04-19

Family

ID=90712213

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322643800.2U Active CN220803076U (en) 2023-09-28 2023-09-28 Urine detection reagent's configurator

Country Status (1)

Country Link
CN (1) CN220803076U (en)

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