CN204302297U - Test strips connecting gear - Google Patents

Test strips connecting gear Download PDF

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Publication number
CN204302297U
CN204302297U CN201420779101.9U CN201420779101U CN204302297U CN 204302297 U CN204302297 U CN 204302297U CN 201420779101 U CN201420779101 U CN 201420779101U CN 204302297 U CN204302297 U CN 204302297U
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CN
China
Prior art keywords
face
test strips
horizontal plane
down dip
limited block
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Withdrawn - After Issue
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CN201420779101.9U
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Chinese (zh)
Inventor
韦树铁
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Hycreate Biotech Co Ltd
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Shenzhen Hycreate Biotech Co Ltd
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Publication date
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Priority to CN201420779101.9U priority Critical patent/CN204302297U/en
Application granted granted Critical
Publication of CN204302297U publication Critical patent/CN204302297U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to the technical field of medicine equipment, test strips connecting gear is provided, comprise elevating bracket and crane, the inner side of elevating bracket is rotated and is provided with a voussoir, voussoir has the updip face that rounding off connects, have a down dip face and horizontal plane, obtuse angle is become between horizontal plane with the face of having a down dip, elevating bracket is also provided with the first limited block, first limited block has the inclination face facing with updip face, two ends, inclination face are connected to upper side and downside, crane is provided with and for ordering about power transmission shaft sequentially along downside, inclination face, upper side, have a down dip face and horizontal plane does the drives structure of shuttling movement.Owing to first test strips being positioned on crane, and under the effect of drives structure, by power transmission shaft along updip face, have a down dip face and horizontal plane do shuttling movement, constantly drip sample system and a detection system by past for test strips conveying, like this, above-mentioned test strips connecting gear test speed is fast, reliable test result, and there is not the problem of test strips pollution detection head.

Description

Test strips connecting gear
Technical field
The utility model belongs to the technical field of medicine equipment, particularly relates to test strips connecting gear.
Background technology
At present, Urine Analyzer is one of the widest, representational equipment of most of the highest, the detection range of frequency of utilization in medical test, and it has very consequence with the advantage such as quick, accurate, portable in situation of all-level hospitals.Because Urine Analyzer is when detection, mainly use urinalysis test strips and sample to react, and whether carry out judgement sample by the color change judging reaction block in test strips abnormal, therefore, when carrying out urine detection, all need test strips connecting gear.
Traditional test strips connecting gear is divided into two kinds of forms: the first adopts support holder structure, the pallet being about to be equipped with test strips is placed on the roller bearing of stepper motor, utilize the rotation of stepper motor to drive pallet to advance or to retreat, thus test strips and urine specimen are reacted.When transmitting, putting in place if test strips is not put into, will directly affect the normal reception of signal, make testing result produce mistake; Simultaneously because pallet can only seesaw, front once test into after, the pallet that test strips is housed must exit before test by next time, and artificial take out test after test strips change new test strips after just can test next time.Therefore, the mode of this artificial placement test strips accurately cannot control the time of reagent infiltration, flash-off time and reaction time, the extended testing system time, increases operating procedure, test result even also can be made very unreliable, can not meet the client that specimen amount is large.
The second is the mode adopting mechanical transmission, its motor passes through gear drive, belt is driven to transmit test strips, and then adopting detection head to detect test strips, this kind of mode, often with noise during detection, after motor, tooth belt etc. damage, test cannot be carried out, and the test strips of soaking urine also can pollution detection head, causes testing result inaccurate.
Utility model content
The purpose of this utility model is to provide test strips connecting gear, is intended to solve that the testing time that existing test strips connecting gear exists is long, test speed is slow, pollution detection head and the insecure problem of test result.For solving the problems of the technologies described above, the technical scheme of the test strips connecting gear that the utility model provides is, it crane comprising elevating bracket and coordinate with described elevating bracket, the inner side of described elevating bracket is rotated and is provided with a voussoir, described voussoir has the updip face that rounding off connects, have a down dip face and horizontal plane, described horizontal plane becomes obtuse angle with described having a down dip between face, described elevating bracket is also provided with the first limited block, described first limited block has the inclination face facing with described updip face, two ends, described inclination face be connected to all with upper side and the downside of horizontal direction parallel, described crane is provided with and described downside, described inclination face, described upper side, the power transmission shaft that described have a down dip face and described horizontal plane coordinate and for ordering about described power transmission shaft sequentially along described downside, described inclination face, described upper side, described have a down dip face and described horizontal plane do the drives structure of shuttling movement.
Further, described drives structure comprise for order about described crane do advance, the motor of the back and forth movement that retreats, slide rail and the gliding mass that can rise in described slide rail or decline, described gliding mass is connected with described crane, described crane is also provided with for order about described crane rise with make described power transmission shaft sequentially against described downside, described inclination face, described upper side, described in have a down dip the first spring of face and described horizontal plane.
Further, described voussoir is articulated on described elevating bracket by a circular shaft.
Further, described elevating bracket is provided with the second limited block, described second limited block and the facing setting in the described face that has a down dip for rotating around described circular shaft against the described face that has a down dip with the face that has a down dip described in limiting.
Further, described horizontal plane is convexly equipped with against flange, is describedly provided with for against described the 3rd limited block rotated around described circular shaft to limit described horizontal plane against flange below flange.
Further, the described side being positioned at close described elevating bracket on described horizontal plane against flange, away from the opposite side of described elevating bracket being formed the horizontal mating surface coordinated with described power transmission shaft on described horizontal plane.
Further, the inner side in the face that has a down dip described in described second limited block is resisted against, the movement outside in the face that has a down dip described in described power transmission shaft is resisted against.
Further, described second limited block, described against flange and described 3rd limited block thickness equal, and the size of described thickness is less than the distance on described power transmission shaft free end and described elevating bracket surface.
Further, the upper surface of described horizontal mating surface, the described lower surface against flange and described 3rd limited block is parallel to each other.
Further, described horizontal mating surface is provided with away from one end of described circular shaft the second spring rotated around described circular shaft to make described horizontal plane for imposing pulling force to described horizontal plane.
The utility model is compared the beneficial effect of prior art:
Because test strips connecting gear adopts elevating bracket and crane, first test strips is positioned on crane, and coordinating by crane and elevating bracket, and in drives structure under crane driving effect, test strips is sent to and drips sample system and detection system and carry out urine detection, particularly, elevating bracket is provided with voussoir and the first limited block, voussoir has the horizontal plane that rounding off connects, have a down dip face and updip face, first limited block has downside, inclination face and upper side, and crane is provided with power transmission shaft, like this, in the effect of drives structure, crane is by coordinating by power transmission shaft and voussoir, namely power transmission shaft is passed through sequentially along downside, inclination face, upper side, updip face, have a down dip face and horizontal plane does shuttling movement, thus constantly drip sample system and a detection system by past for test strips conveying, like this, to compare the mode of existing employing support holder structure, above-mentioned test strips connecting gear avoids the testing time prolongation caused owing to manually placing test strips, operating procedure is many, test speed is slow, the insecure problem of test result, and existing mechanical drive mode of comparing, then avoid due to test strips pollution detection head and the inaccurate problem of testing result.
Accompanying drawing explanation
Fig. 1 is the perspective view of the test strips connecting gear that the utility model embodiment provides;
Fig. 2 is the perspective view of the elevating bracket of the test strips connecting gear that the utility model embodiment provides;
Fig. 3 is the perspective view of the crane of the test strips connecting gear that the utility model embodiment provides;
Fig. 4 is the perspective view of the drives structure of the test strips connecting gear that the utility model embodiment provides, elevating bracket and crane;
Fig. 5 is the perspective view of the supporting plate of the test strips connecting gear that the utility model embodiment provides;
Fig. 6 is the perspective view of the elevating bracket of the test strips connecting gear that the utility model embodiment provides, crane, slide rail, slide track seat and supporting plate;
Fig. 7 is the perspective view of the crane of the test strips connecting gear that the utility model embodiment provides, slide rail, gliding mass and slide track seat;
Fig. 8 is the elevating bracket of test strips connecting gear that provides of the utility model embodiment and the perspective view of crane.
Detailed description of the invention
In order to make the purpose of this utility model, technical scheme and advantage clearly understand, below in conjunction with drawings and Examples, the utility model is further elaborated.Should be appreciated that specific embodiment described herein only in order to explain the utility model, and be not used in restriction the utility model.
As shown in Fig. 1 ~ 8, it is the preferred embodiment that the utility model provides.
It should be noted that, when parts are called as " being fixed on " or " being arranged at " another parts, it can directly on another parts or may there are parts placed in the middle simultaneously.When parts are known as " being connected to " another parts, it can be directly connected to another parts or may there are parts placed in the middle simultaneously.
Also it should be noted that, the orientation term such as left and right, upper and lower in the present embodiment, is only relative concept or be reference with the normal operating condition of product each other, and should not be regarded as have restrictive.
As shown in Figure 1 to Figure 3, the test strips connecting gear 10 that the present embodiment provides, it crane 12 comprising elevating bracket 11 and coordinate with elevating bracket 11, the inner side of elevating bracket 11 is rotated and is provided with a voussoir 13, voussoir 13 has the updip face 131 that rounding off connects, have a down dip face 132 and horizontal plane 133, obtuse angle is become between horizontal plane 133 with the face of having a down dip 132, elevating bracket 11 is also provided with the first limited block 151, first limited block 151 has the inclination face 171 facing with updip face 131, two ends, inclination face 171 be connected to all with upper side 172 and the downside 173 of horizontal direction parallel, crane 12 is provided with and downside 173, inclination face 171, upper side 172, have a down dip power transmission shaft 121 that face 132 and horizontal plane 133 coordinate and for ordering about power transmission shaft 121 sequentially along downside 173, inclination face 171, upper side 172, have a down dip face 132 and horizontal plane 133 does the drives structure 14 of shuttling movement.
The test strips connecting gear 10 that the present embodiment provides is compared the beneficial effect of prior art:
As shown in Figure 1 to Figure 3, because test strips connecting gear 10 adopts elevating bracket 11 and crane 12, first test strips is positioned on crane 12, and coordinating by crane 12 and elevating bracket 11, and under drives structure 14 pairs of crane 12 driving effects, test strips is sent to and drips sample system and detection system and carry out urine detection, particularly, elevating bracket 11 is provided with voussoir 13 and the first limited block 151, voussoir 13 has the horizontal plane 133 that rounding off connects, have a down dip face 132 and updip face 131, first limited block 151 has downside 173, inclination face 171 and upper side 172, and crane 12 is provided with power transmission shaft 121, like this, under the effect of drives structure 14, crane 12 is by coordinating by power transmission shaft 121 and voussoir 13, namely power transmission shaft 121 is passed through sequentially along described downside 173, described inclination face 171, described upper side 172, have a down dip face 132 and horizontal plane 133 does shuttling movement, thus constantly drip sample system and a detection system by past for test strips conveying, like this, to compare the mode of existing employing support holder structure, above-mentioned test strips connecting gear 10 avoids the testing time prolongation caused owing to manually placing test strips, operating procedure is many, test speed is slow, the insecure problem of test result, and existing mechanical drive mode of comparing, then avoid due to test strips pollution detection head and the inaccurate problem of testing result.
As shown in Figures 1 to 4, in order to specific implementation drives structure 14 orders about power transmission shaft 121 sequentially along downside 173, inclination face 171, upper side 172, have a down dip face 132 and horizontal plane 133 does shuttling movement, drives structure 14 comprises to be done advance for ordering about crane 12, the motor 141 of the back and forth movement retreated, slide rail 142 and the gliding mass 143 that can rise in slide rail 142 or decline, gliding mass 143 is connected with crane 12, crane 12 is also provided with and rises to make power transmission shaft 121 sequentially against downside 173 for ordering about crane 12, inclination face 171, upper side 172, have a down dip the first spring (not shown) of face 132 and horizontal plane 133.
It should be noted that, as shown in Figure 4, the quantity of slide rail 142 is two, and two slide rails 142 are arranged in parallel along vertical direction, two slide rails 142 are all arranged on slide track seat 144, and motor 141 orders about by belt the back and forth movement that slide track seat 144, slide rail 142 and crane 12 do level advance, retrogressing.
As shown in Figures 2 and 3, can rotate the movement environment adapting to the continuous change of power transmission shaft 121 to make voussoir 13, horizontal plane 133 is provided with a circular shaft 134 with the connection transition position in the face 132 that has a down dip, and voussoir 13 is articulated on elevating bracket 11 by circular shaft 134.Like this, when power transmission shaft 121 moves along described have a down dip face 132 and horizontal plane 133 and is subject to hindering, voussoir 13 is by rotating around circular shaft 134, and the angle that adjustment horizontal plane 133, the face 132 that has a down dip coordinate with power transmission shaft 121, ensures normally carrying out of crane 12 shuttling movement.
Refinement ground, as shown in Figure 2, updip face 131 is parallel with inclination face 171, like this, is beneficial to and arranges more compact by voussoir 13 and the first limited block 151.
As shown in Figure 2, elevating bracket 11 is provided with for having a down dip the second limited block 152, second limited block 152 and the facing setting in face 132 that has a down dip that face 132 rotates around circular shaft 134 against the face of having a down dip 132 with restriction.Refinement ground, the face 132 that has a down dip is parallel with the upper surface of the second limited block 152, like this, is beneficial to and arranges more compact by voussoir 13 and the second limited block 152.
As shown in Figure 2, in order to limit levels face 133 is rotated around circular shaft 134, horizontal plane 133 is convexly equipped with against flange 135, is provided with for against the 3rd limited block 153 against flange 135 below flange 135.
As shown in Figure 2, realize spacing voussoir 13 and realize power transmission shaft 121 moving along voussoir 13 smoothly to take into account, the side near elevating bracket 11 on horizontal plane 133 is positioned at, away from the opposite side of elevating bracket 11 being formed the horizontal mating surface 1311 coordinated with power transmission shaft 121 on horizontal plane 133 against flange 135.
As shown in Figures 2 and 3, be smoothly resisted against the face of having a down dip 132 to make power transmission shaft 121 and move, the second limited block 152 is resisted against the inner side in the face of having a down dip 132, and power transmission shaft 121 is resisted against the movement outside in the face of having a down dip 132.
At power transmission shaft 121 along downside 173, inclination face 171, upper side 172, have a down dip face 132 and horizontal plane 133 be when moving, the distance on power transmission shaft 121 free end and elevating bracket 11 surface remains unchanged.If and the second limited block 152, thickness against flange 135 and the 3rd limited block 153 is excessive, the motion of power transmission shaft 121 will be hindered, or, when power transmission shaft 121 is from when entering horizontal mating surface 1311 against the face of having a down dip 132, if the Thickness Ratio of the second limited block 152 just may cause power transmission shaft 121 to fail against the thickness of flange 135 and enter horizontal mating surface 1311, also the retard motion of power transmission shaft 121 can be made, therefore, in order to avoid the generation of above-mentioned two situations, second limited block 152, against flange 135 and the 3rd limited block 153 thickness equal, and thickness size is less than the distance on power transmission shaft 121 free end and elevating bracket 11 surface, smooth and easy to ensure that power transmission shaft 121 moves.Refinement ground, as shown in Figures 2 and 3, horizontal mating surface 1311, to be parallel to each other against the lower surface of flange 135 and the upper surface of the 3rd limited block 153, horizontal mating surface 1311 and the 3rd limited block 153 are all parallel to horizontal direction, crane 12 is made to be convenient to by horizontal mating surface 1311, and parallel with the 3rd limited block 153 against flange 135 lower surface, then make firmly entirely to be resisted against on the 3rd limited block 153 against flange 135, be beneficial to the carrying out ensureing crane 12 horizontal movement.
As shown in Figure 2, restPose to make voussoir 13, namely state when power transmission shaft 121 just tilts upward to move along updip face 131, horizontal mating surface 1311 is provided with the second spring (not shown) away from one end of circular shaft 134, like this, second spring imposes pulling force to horizontal plane 133 and rotates around circular shaft 134 to make horizontal plane 133, until be resisted against on the 3rd limited block 153 against flange 135.
As shown in Figure 1 to Figure 3, the motion process of above-mentioned test strips connecting gear 10 is: when the upwards active force of the first spring to crane 12 is greater than crane 12 gravity own, and motor 141 order about crane 12 do forward travel time, first, power transmission shaft 121 first abuts against downside 173, what level of doing along downside was advanced moves, then, move on, against inclination face 171 and 171 do moving of tilting upward along inclination face, then, move on, against upper side 172 and along upper side do level advance moving, until power transmission shaft 121 strides across voussoir 13, test strips is sent to till dripping sample system and detection system,
And now, motor 141 reverses, order about crane 12 when doing setback, power transmission shaft 121 will against the face of having a down dip 132, and moving under being tilted to along the face of having a down dip 132, and voussoir 13 will owing to being subject to active force when power transmission shaft 121 supports the face 132 of having a down dip and rotating around circular shaft, it makes the face of having a down dip 132 upwards rotate around circular shaft 134, and horizontal plane 133 rotates around circular shaft 134, that moves against the face of having a down dip 132 along with power transmission shaft 121 proceeds, horizontal plane 133 rotates continuing, until be resisted against on the 3rd limited block 153 against flange 135 and stop operating, now, voussoir 13 will be subject to the state against the counter-active effect power of flange 135 and power transmission shaft 121, the counter-active effect power in the face of having a down dip 132 being in stress balance simultaneously, the interaction force in power transmission shaft 121 and the face 132 that has a down dip by order about power transmission shaft 121 be firmly tilted to against the face of having a down dip 132 under motion, until power transmission shaft 121 is moved into against horizontal mating surface 1311,
In like manner, when power transmission shaft 121 is against horizontal mating surface 1311, voussoir 13 will owing to being subject to active force when power transmission shaft 121 supports horizontal mating surface 1311 and rotating around circular shaft, it makes horizontal mating surface 1311 upwards rotate around circular shaft 134, and the face 132 that has a down dip rotates around circular shaft 134, that moves against horizontal mating surface 1311 along with power transmission shaft 121 proceeds, continuation is upwards rotated by horizontal mating surface 1311, until have a down dip, face 132 is resisted against on the second limited block 152 and stops operating, now, voussoir 13 to be in the state of stress balance to the counter-active effect power of horizontal mating surface 1311 to the counter-active effect power in the face of having a down dip 132 and power transmission shaft 121 by being subject to the second limited block 152 simultaneously, power transmission shaft 121 firmly does against horizontal mating surface 1311 motion retreated with the interaction force of horizontal mating surface 1311 by ordering about power transmission shaft 121, until power transmission shaft 121 motion is got back to against downside 173, and when power transmission shaft 121 departs from against horizontal mating surface 1311, horizontal mating surface 1311 will be subject to the pulling force effect of the second spring, and make voussoir 13 rotate the original state of getting back to motion, thus form a motion cycle.
As shown in Figure 2, Figure 5 and Figure 6, crane 12 is also provided with the supporting plate 18 for placing test strips, supporting plate 18 is provided with the division post 181 for separating test strips, division post 181 one-tenth two row and interval is equally arranged in the relative both sides on supporting plate 18, forms the space that places test strips between every two division post 181.
These are only preferred embodiment of the present utility model, not in order to limit the utility model, all do within spirit of the present utility model and principle any amendment, equivalent to replace and improvement etc., all should be included within protection domain of the present utility model.

Claims (10)

1. test strips connecting gear, it is characterized in that: the crane comprising elevating bracket and coordinate with described elevating bracket, the inner side of described elevating bracket is rotated and is provided with a voussoir, described voussoir has the updip face that rounding off connects, have a down dip face and horizontal plane, described horizontal plane becomes obtuse angle with described having a down dip between face, described elevating bracket is also provided with the first limited block, described first limited block has the inclination face facing with described updip face, two ends, described inclination face be connected to all with upper side and the downside of horizontal direction parallel, described crane is provided with and described downside, described inclination face, described upper side, the power transmission shaft that described have a down dip face and described horizontal plane coordinate and for ordering about described power transmission shaft sequentially along described downside, described inclination face, described upper side, described have a down dip face and described horizontal plane do the drives structure of shuttling movement.
2. test strips connecting gear as claimed in claim 1, it is characterized in that: described drives structure comprise for order about described crane do advance, the motor of the back and forth movement that retreats, slide rail and the gliding mass that can rise in described slide rail or decline, described gliding mass is connected with described crane, described crane is also provided with for order about described crane rise with make described power transmission shaft sequentially against described downside, described inclination face, described upper side, described in have a down dip the first spring of face and described horizontal plane.
3. test strips connecting gear as claimed in claim 2, is characterized in that: described voussoir is articulated on described elevating bracket by a circular shaft.
4. test strips connecting gear as claimed in claim 3, it is characterized in that: described elevating bracket is provided with the second limited block, described second limited block and the facing setting in the described face that has a down dip for rotating around described circular shaft against the described face that has a down dip with the face that has a down dip described in limiting.
5. test strips connecting gear as claimed in claim 4, is characterized in that: described horizontal plane is convexly equipped with against flange, is describedly provided with for against described the 3rd limited block rotated around described circular shaft to limit described horizontal plane against flange below flange.
6. test strips connecting gear as claimed in claim 5, it is characterized in that: the described side being positioned at close described elevating bracket on described horizontal plane against flange, away from the opposite side of described elevating bracket being formed the horizontal mating surface coordinated with described power transmission shaft on described horizontal plane.
7. test strips connecting gear as claimed in claim 6, is characterized in that: the inner side in the face that has a down dip described in described second limited block is resisted against, the movement outside in the face that has a down dip described in described power transmission shaft is resisted against.
8. test strips connecting gear as claimed in claim 7, is characterized in that: described second limited block, described against flange and described 3rd limited block thickness equal, and the size of described thickness is less than the distance on described power transmission shaft free end and described elevating bracket surface.
9. test strips connecting gear as claimed in claim 8, is characterized in that: the upper surface of described horizontal mating surface, the described lower surface against flange and described 3rd limited block is parallel to each other.
10. test strips connecting gear as claimed in claim 8, is characterized in that: described horizontal mating surface is provided with the second spring rotated around described circular shaft to make described horizontal plane for imposing pulling force to described horizontal plane away from one end of described circular shaft.
CN201420779101.9U 2014-12-10 2014-12-10 Test strips connecting gear Withdrawn - After Issue CN204302297U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420779101.9U CN204302297U (en) 2014-12-10 2014-12-10 Test strips connecting gear

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420779101.9U CN204302297U (en) 2014-12-10 2014-12-10 Test strips connecting gear

Publications (1)

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CN204302297U true CN204302297U (en) 2015-04-29

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CN201420779101.9U Withdrawn - After Issue CN204302297U (en) 2014-12-10 2014-12-10 Test strips connecting gear

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105738639A (en) * 2014-12-10 2016-07-06 深圳市汇研科创生物科技有限公司 Test-paper-strip conveying mechanism
CN112986549A (en) * 2021-03-03 2021-06-18 上海理工大学 Automatic care equipment of stool and urine with urine test function
CN113960304A (en) * 2021-11-02 2022-01-21 南京长健生物科技有限公司 Full-automatic immunofluorescence detection device convenient to test paper strip pops out

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105738639A (en) * 2014-12-10 2016-07-06 深圳市汇研科创生物科技有限公司 Test-paper-strip conveying mechanism
CN112986549A (en) * 2021-03-03 2021-06-18 上海理工大学 Automatic care equipment of stool and urine with urine test function
CN112986549B (en) * 2021-03-03 2022-01-14 上海理工大学 Automatic care equipment of stool and urine with urine test function
CN113960304A (en) * 2021-11-02 2022-01-21 南京长健生物科技有限公司 Full-automatic immunofluorescence detection device convenient to test paper strip pops out
CN113960304B (en) * 2021-11-02 2023-10-24 南京长健生物科技有限公司 Full-automatic immunofluorescence detection device convenient to test paper strip pops out

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Granted publication date: 20150429

Effective date of abandoning: 20170825