CN209102607U - A kind of multi-joint reagent card fluorescence detector - Google Patents
A kind of multi-joint reagent card fluorescence detector Download PDFInfo
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- CN209102607U CN209102607U CN201821494802.2U CN201821494802U CN209102607U CN 209102607 U CN209102607 U CN 209102607U CN 201821494802 U CN201821494802 U CN 201821494802U CN 209102607 U CN209102607 U CN 209102607U
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Abstract
The utility model discloses a kind of multi-joint reagent card fluorescence detectors, it is related to the field of medical instrument technology, including installing chassis, the installation chassis, which is disposed with, carries block tongue and the optical path box for fluorescence detection, the block tongue that carries is with the first card slot for placing multi-joint reagent card, the installation chassis is disposed with the y-axis driving mechanism for driving the load block tongue to move along y-axis, the installation chassis is disposed with gantry stand, the gantry stand has the movable passageway passed through for the load block tongue, the gantry stand is disposed with the x-axis driving mechanism for driving the optical path box to move along the x-axis.The utility model carries block tongue movement by the driving of y-axis driving mechanism, while driving optical path box mobile by x-axis driving mechanism, optical path box quickly can be navigated to multi-joint reagent card to be detected and detect position accordingly.On the one hand, it can avoid the interference between two driving mechanisms, position more accurate;On the other hand, since two driving mechanisms are run simultaneously, efficiency can be improved.
Description
Technical field
The utility model relates to the field of medical instrument technology, in particular to a kind of multi-joint reagent card fluorescence detector.
Background technique
Dry type detection technique of fluorescence is a kind of quick medical detection technique of rising in recent years, which is with dry type fluorescence
Test card is carrier, and by optical path, screen bar code recognizer and test platform are applied in combination, to carry out quickly medical treatment detection
A kind of detection technique.The technology has many advantages, such as that highly sensitive, selectivity is strong, needs that sample size is few and method is simple, examines in medical treatment
In survey using wide.
Wherein, multi-joint reagent card, simply connected reagent card has use in fluorescence detector, but two equipment is needed
Operation, increases the acquisition cost of equipment.In addition, the fluorescence detector detected in the market for multi-joint reagent card, is all driving examination
Agent card makees x-axis respectively and y-axis is mobile, and reagent card can not be moved along x-axis and y-axis simultaneously, inefficiency, and sometimes can also be sent out
Raw interference causes reagent card positioning not accurate.
Summary of the invention
The purpose of this utility model is to provide a kind of multi-joint reagent card fluorescence detector, can be on multi-joint reagent card
Detection sample be used for quickly detecting.
Used technical solution to solve above-mentioned technical problem:
A kind of multi-joint reagent card fluorescence detector, including installation chassis, the installation chassis, which is disposed with, carries block tongue and use
In the optical path box of fluorescence detection, the block tongue that carries is with the first card slot for placing multi-joint reagent card, the installation chassis cloth
It is equipped with the y-axis driving mechanism for driving the load block tongue to move along y-axis, the installation chassis is disposed with gantry stand, the dragon
Door machine frame has the movable passageway passed through for the load block tongue, and the gantry stand is disposed with for driving the optical path box along x
The mobile x-axis driving mechanism of axis.
As a further improvement of the above technical scheme, the load block tongue also has second for placing simply connected reagent card
Card slot, first card slot and the second card slot top are equipped with detent portion, and first card slot and the second card slot bottom are arranged
There is the first elastic component.
As a further improvement of the above technical scheme, the y-axis driving mechanism include y-axis guide rail, can be along the y-axis guide rail
The y-axis sliding block of sliding and the y-axis power source for driving the y-axis sliding block mobile by belt component, the belt component include master
Driving wheel, driven wheel and driving belt, the driven wheel are oppositely arranged with driving wheel, and it is dynamic that the driving wheel is mounted on the y-axis
In the drive shaft of power source, on the fixed driving wheel of the driving belt and driven wheel, the y-axis sliding block by slider connecting plate with
The driving belt is affixed, and the load block tongue and the slider connecting plate are affixed.
As a further improvement of the above technical scheme, the x-axis driving mechanism include x-axis guide rail, can be along the x-axis guide rail
The x-axis sliding block of sliding, the optical path box connecting plate affixed with the x-axis sliding block and the screw rod group being connect with the optical path box connecting plate
Part, the screw component include the x-axis power source for being arranged in the gantry stand and the screw rod by the x-axis power source drive,
The optical path box connecting plate is disposed with the nut with screw rod cooperation, and the optical path box is mounted on the optical path box connecting plate.
As a further improvement of the above technical scheme, the optical path box includes light source and point that can be irradiated by the light source
Look mirror, multi-joint reagent card can be moved on the reflected light path of the dichronic mirror by the load block tongue, the transmitted light of the dichronic mirror
Road is disposed with optical multiplication pipe.
As a further improvement of the above technical scheme, the first optical filtering is disposed between the light source and the dichronic mirror
Piece is disposed with the first convex lens on the reflected light path of the dichronic mirror, arranges between the optical multiplication pipe and the dichronic mirror
There are the second optical filter and the second convex lens.
The beneficial effects of the utility model are: the utility model carries block tongue movement by the driving of y-axis driving mechanism, and simultaneously
It drives optical path box mobile by x-axis driving mechanism, optical path box quickly can be navigated into multi-joint reagent card to be detected and examined accordingly
Location is set.On the one hand, it can avoid the interference between two driving mechanisms, position more accurate;On the other hand, since two drive
Mechanism is run simultaneously, and efficiency can be improved.In addition, if being also devised with the second card slot for placing simply connected reagent card in load block tongue,
The utility model can also detect simply connected reagent card, reduce the expense of user's procuring equipment.
Detailed description of the invention
It, below will be to required in embodiment description in order to illustrate more clearly of the technical scheme in the embodiment of the utility model
Attached drawing to be used is briefly described.Obviously, described attached drawing is a part of the embodiment of the utility model, rather than complete
Portion's embodiment, those skilled in the art without creative efforts, can also be obtained according to these attached drawings it
His design scheme and attached drawing.
Fig. 1 is the top view of the utility model embodiment;
Fig. 2 is the main view of the utility model embodiment;
Fig. 3 is the perspective view at first visual angle of the utility model embodiment;
Fig. 4 is the perspective view at second visual angle of the utility model embodiment;
Fig. 5 is the structural schematic diagram of optical path box in the utility model;
Fig. 6 is the structural schematic diagram that block tongue is carried in the utility model.
Specific embodiment
It is carried out below with reference to technical effect of the embodiment and attached drawing to the design of the utility model, specific structure and generation
It clearly and completely describes, to be completely understood by the purpose of this utility model, feature and effect.Obviously, described embodiment
It is a part of the embodiment of the utility model, rather than whole embodiments, it is based on the embodiments of the present invention, the skill of this field
Art personnel other embodiments obtained without creative efforts belong to the model of the utility model protection
It encloses.In addition, all connection/connection relationships being previously mentioned in text, not singly refer to that component directly connects, and referring to can be according to specific reality
Situation is applied, by adding or reducing couple auxiliary, Lai Zucheng more preferably coupling structure.
Referring to figs. 1 to Fig. 4, a kind of multi-joint reagent card fluorescence detector, including installation chassis 10, installation chassis 10 are disposed with
Block tongue 20 and the optical path box 30 for fluorescence detection are carried, installation chassis 10 is disposed with for driving load block tongue 20 to move along y-axis
Y-axis driving mechanism, installation chassis 10 is disposed with gantry stand 50, which has for carrying the movement that passes through of block tongue 20
Channel, gantry stand 50 are disposed with the x-axis driving mechanism for driving optical path box 30 to move along the x-axis.Wherein, x-axis and y-axis, such as
Shown in reference axis in Fig. 1 to Fig. 4.
Specifically, carrying block tongue 20 with the first card slot 21 for placing multi-joint reagent card, while also having for putting
Set the second card slot 22 of simply connected reagent card.In conjunction with Fig. 6, the first card slot 21 and 22 top of the second card slot are equipped with detent portion 23, the
One card slot 21 and 22 bottom of the second card slot are disposed with the first elastic component 24, it is, of course, also possible in the first card slot 21 and the second card slot
22 side arranges that the second elastic component, the first elastic component 24 and the second elastic component are to be fixed on the elastic slice for carrying block tongue 20, is used for
Pressure touching simply connected reagent card and/or multi-joint reagent card, prevent simply connected reagent card and/or multi-joint reagent card from shaking in moving process.
The utility model, user can detect multi-joint reagent card and/or simply connected reagent card, without purchasing more fluorescence detections
Instrument can save procuring equipment cost.
Preferably, y-axis driving mechanism include y-axis guide rail 41, can along the y-axis guide rail 41 slide y-axis sliding block 42 and
The y-axis power source 44 for driving the y-axis sliding block 42 mobile by belt component, belt component includes driving wheel, driven wheel and biography
Dynamic belt 45, driven wheel is oppositely arranged with driving wheel, and driving wheel is mounted in 44 drive shaft of y-axis power source, and driving belt 45 is tight
It covers on driving wheel and driven wheel, y-axis sliding block 42 is affixed by slider connecting plate 43 and driving belt 45, carries block tongue 20 and the sliding block
Connecting plate 43 is affixed.Y-axis power source 44 is motor, and driving belt 45 is driven to operate, and then slider connecting plate 43 is driven to lead along y-axis
Rail 41 moves linearly, and the load block tongue 20 affixed with slider connecting plate 43 can move linearly, and 44 positive and negative rotation of y-axis power source can be realized
Block tongue 20 is carried to be moved forward and backward.The "front", "rear" of the utility model, " left side " and " right side " are to carry out retouching for structure in conjunction with attached drawing
It states, limitations on claims can not be interpreted as.
Preferably, x-axis driving mechanism include x-axis guide rail 61, can along the x-axis guide rail 61 slide x-axis sliding block 62, with should
Screw component x-axis sliding block 62 affixed optical path box connecting plate 63 and connect with the optical path box connecting plate 63, screw component packet
Include the x-axis power source 64 for being arranged in gantry stand 50 and the screw rod 65 by the x-axis power source drive, 63 cloth of optical path box connecting plate
It is equipped with the nut 66 with screw rod cooperation, optical path box 30 is mounted on optical path box connecting plate 63.X-axis power source is motor, is driven
Screw rod rotation, and then optical path box connecting plate 63 is driven to move linearly along x-axis guide rail 61, the affixed light with optical path box connecting plate 63
Road box 30 moves linearly, and the positive and negative rotation of x-axis power source can realize that optical path box 30 moves left and right.
Pass through design x-axis driving mechanism and y-axis driving mechanism, on the one hand, it can avoid the interference between two driving mechanisms,
It positions more accurate;On the other hand, since two driving mechanisms are run simultaneously, efficiency can be improved.
Preferably, optical path box 30 includes light source and can be by the dichronic mirror 32 that the light source irradiates, multi-joint examination in conjunction with Fig. 5
Agent card can be moved on the reflected light path of dichronic mirror 32 by carrying block tongue 20, be disposed with optical multiplication on the transmitted light path of dichronic mirror 32
Pipe 36.Further, it is disposed with the first optical filter 31 between light source and dichronic mirror 32, is disposed on the reflected light path of dichronic mirror 32
First convex lens 33 is disposed with the second optical filter 34 and the second convex lens 35 between optical multiplication pipe 36 and dichronic mirror 32.Light source
It shines, light passing line is irradiated to multi-joint reagent card or simply connected examination by the first optical filter 31, dichronic mirror 32 and the first convex lens 33
The detection position of agent card, can generate fluorescence signal at this time, and fluorescence signal can be filtered by the first convex lens 33, dichronic mirror 32, second
Mating plate 34 and the second convex lens 35 are irradiated to optical multiplication pipe 36, and optical multiplication pipe 36 collects fluorescence signal.
The embodiments of the present invention is explained in detail above in conjunction with attached drawing, but the utility model is not limited to
State embodiment, within the scope of knowledge possessed by those of ordinary skill in the art, can also do not depart from it is practical
Various changes can be made under the premise of novel objective.
Claims (6)
1. a kind of multi-joint reagent card fluorescence detector, including installation chassis (10), it is characterised in that: installation chassis (10) cloth
It is equipped with and carries block tongue (20) and the optical path box (30) for fluorescence detection, the load block tongue (20) has for placing multi-joint reagent
The first card slot (21) of card, installation chassis (10) are disposed with for driving load block tongue (20) to drive along the y-axis that y-axis moves
Motivation structure, the installation chassis (10) are disposed with gantry stand (50), which, which has, supplies the load block tongue (20)
By movable passageway, the gantry stand (50) be disposed with the x-axis for driving the optical path box (30) to move along the x-axis driving
Mechanism.
2. multi-joint reagent card fluorescence detector according to claim 1, it is characterised in that: the load block tongue (20) also has
For placing the second card slot (22) of simply connected reagent card, first card slot (21) and the second card slot (22) top are equipped with detent
Portion (23), first card slot (21) and the second card slot (22) bottom are arranged with the first elastic component (24).
3. multi-joint reagent card fluorescence detector according to claim 1, it is characterised in that: the y-axis driving mechanism includes y
Axis rail (41) can drive the y-axis sliding block along the y-axis sliding block (42) of the y-axis guide rail (41) sliding and by belt component
(42) mobile y-axis power source (44), the belt component include driving wheel, driven wheel and driving belt (45), it is described from
Driving wheel is oppositely arranged with driving wheel, and the driving wheel is mounted in y-axis power source (44) drive shaft, the driving belt
(45) on the fixed driving wheel and driven wheel, the y-axis sliding block (42) passes through slider connecting plate (43) and the driving belt
(45) affixed, the load block tongue (20) and the slider connecting plate (43) are affixed.
4. multi-joint reagent card fluorescence detector according to claim 1, it is characterised in that: the x-axis driving mechanism includes x
Axis rail (61), x-axis sliding block (62), the optical path box affixed with the x-axis sliding block (62) that can be slided along the x-axis guide rail (61) are connect
Plate (63) and the screw component connecting with the optical path box connecting plate (63), the screw component include being arranged in the gantry plane
The x-axis power source (64) of frame (50) and screw rod (65) by the x-axis power source drive, optical path box connecting plate (63) arrangement
There is the nut (66) with screw rod cooperation, the optical path box (30) is mounted on the optical path box connecting plate (63).
5. multi-joint reagent card fluorescence detector according to any one of claims 1 to 4, it is characterised in that: the optical path box
(30) include light source and can be moved to by the load block tongue (20) by the dichronic mirror (32) that the light source irradiates, multi-joint reagent card
On the reflected light path of the dichronic mirror (32), optical multiplication pipe (36) are disposed on the transmitted light path of the dichronic mirror (32).
6. multi-joint reagent card fluorescence detector according to claim 5, it is characterised in that: the light source and the dichronic mirror
(32) it is disposed between the first optical filter (31), is disposed with the first convex lens (33) on the reflected light path of the dichronic mirror (32),
The second optical filter (34) and the second convex lens (35) are disposed between the optical multiplication pipe (36) and the dichronic mirror (32).
Priority Applications (1)
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CN201821494802.2U CN209102607U (en) | 2018-09-12 | 2018-09-12 | A kind of multi-joint reagent card fluorescence detector |
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CN201821494802.2U CN209102607U (en) | 2018-09-12 | 2018-09-12 | A kind of multi-joint reagent card fluorescence detector |
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CN209102607U true CN209102607U (en) | 2019-07-12 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111060706A (en) * | 2020-01-17 | 2020-04-24 | 深圳市活水床旁诊断仪器有限公司 | Immunochromatography detection module |
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2018
- 2018-09-12 CN CN201821494802.2U patent/CN209102607U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111060706A (en) * | 2020-01-17 | 2020-04-24 | 深圳市活水床旁诊断仪器有限公司 | Immunochromatography detection module |
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