CN205910199U - Super micro -nucleic acid protein analyzer self - cleaning device - Google Patents

Super micro -nucleic acid protein analyzer self - cleaning device Download PDF

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Publication number
CN205910199U
CN205910199U CN201620951095.XU CN201620951095U CN205910199U CN 205910199 U CN205910199 U CN 205910199U CN 201620951095 U CN201620951095 U CN 201620951095U CN 205910199 U CN205910199 U CN 205910199U
Authority
CN
China
Prior art keywords
mandrel
detection probe
decelerator
guide
fixed
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201620951095.XU
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Chinese (zh)
Inventor
周世媛
窦永恒
朱爱荣
王海丽
周继平
余宏亮
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.)
Henan Provincial Research Institute For Population And Family Planning
Original Assignee
Henan Provincial Research Institute For Population And Family Planning
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Henan Provincial Research Institute For Population And Family Planning filed Critical Henan Provincial Research Institute For Population And Family Planning
Priority to CN201620951095.XU priority Critical patent/CN205910199U/en
Application granted granted Critical
Publication of CN205910199U publication Critical patent/CN205910199U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a super micro -nucleic acid protein analyzer self - cleaning device on current super micro -nucleic acid protein analyzer basis, increases the self - cleaning device. The scheme is, including the guide rail board, the up end of guide rail board is equipped with the guide rail, install first reduction gear on the guide rail board, the coaxial step motor that has linked firmly of input shaft of first reduction gear, a gearbox output axle drives the swing of test probe depression bar, the test probe depression bar has linked firmly test probe, sliding connection has the support that links firmly the second reduction gear on the guide rail, coaxial the 2nd step motor that has linked firmly of input shaft of second reduction gear, the output shaft of second reduction gear is coaxial to have linked firmly first dabber, the support still rotates and is connected with the second dabber, the intrinsic scroll that has clean washing paper of rolling up of the fixed cover of second dabber, test probe is just above -mentioned under can hugging closely below the washing paper can hug closely test probe. The utility model discloses can make the operation of sample inspection simpler.

Description

A kind of ultramicron nucleic acid-protein analyser automatic clearing apparatuss
Technical field
This utility model is related to medical laboratory instrument, especially relates to a kind of ultramicron nucleic acid-protein analyser and automatically cleans Device.
Background technology
Existing ultramicron nucleic acid-protein analyser, when detection probe is carried out, is essentially all manual cleaning, clearly Wash very inconvenience, waste scientific research personnel's many time in these unnecessary work.
Utility model content
For above-mentioned situation, for overcoming the defect of prior art, the purpose of this utility model is exactly to provide a kind of ultramicron Nucleic acid-protein analyser automatic clearing apparatuss, on the basis of existing ultramicron nucleic acid-protein analyser, increase cleaning dress automatically Put, realize the automatic cleaning of ultramicron nucleic acid-protein analyser detection probe, work efficiency is provided, reduce scientific research personnel unnecessary Work.
Its solution is, including guide-rail plate, guide-rail plate is fixedly connected on ultramicron nucleic acid-protein analyser upper surface, The upper surface of guide-rail plate is provided with guide rail, and the left side of guide-rail plate is installed with the first decelerator, and the input shaft of the first decelerator is same Axle is fixed with the first motor being fixed on guide-rail plate, the vertical output shaft of the first decelerator be fixed be transversely to the machine direction defeated The driving fork of shaft axis, drives one end of fork to be connected on the vertical output shaft of the first decelerator, drives fork oneself Rod ends, the cavity that the oriented end face of rod ends band is opened are connected with by end, are fixed with cavity along side pole joint axis Flexible spring, one end of spring is connected in the bottom of cavity, and the free end of spring is connected in the end face driving fork free end On, drive the free splaying of fork to extend in the cavity of rod ends, the head of rod ends is hinged with detection probe pressure Bar, hinged with rod ends in the middle part of detection probe depression bar, the lower rotational of detection probe depression bar is connected to the first decelerator output On guide-rail plate on the left of axle, detection probe depression bar free end is fixed with detection probe, described guide rail slidably connects and is located at Bearing on the left of first decelerator, bearing is fixed with the second decelerator, and the input shaft of the second decelerator is coaxially fixed with fixation The second motor on bearing, the output shaft of the second decelerator is coaxially fixed with axis and with guide rail parallel and is located on guide rail First mandrel of side, bearing is also rotatably connected to the second mandrel of parallel with the first mandrel and longitudinally spaced setting, the second mandrel The intrinsic volume of fixed cover has the clean paper roll cleaning paper, have between the first mandrel and the second mandrel position fixing and can with detection The lower detection probe of the upper detection probe contact under probe depression bar effect, in lower detection probe between the first mandrel and the second mandrel There are two pressure rollers being rotatably connected on the axis on bearing and the first mandrel diameter parallel side longitudinal direction both sides, and cleaning paper is adjacent to and bypasses The bottom volume of two pressure rollers is enclosed within the first mandrel, and the following of paper can be close to lower detection probe and can be close to inspection above for cleaning Probing head, described bearing is fixedly connected with axis along the nut of guide rail direction, and described guide-rail plate is fixedly connected with positioned at first 3rd decelerator of mandrel left end, the input shaft of the 3rd decelerator is coaxially fixed with the 3rd stepping electricity being fixed on guide-rail plate Machine, the horizontal output shaft of the 3rd decelerator is coaxially fixed with the screw mandrel along guide rail direction, and leading screw is connected with nut screw.
This utility model, on the basis of not changing original ultramicron nucleic acid-protein analyser, is capable of to nucleic acid-protein The automatic cleaning of analyser detection probe, so that the operation of Sample is simpler, decreases related scientific research personnel unnecessary Work.
Brief description
Fig. 1 is this utility model front view schematic diagram.
Fig. 2 is this utility model left view schematic diagram.
Specific embodiment
Below in conjunction with accompanying drawing, the specific embodiment of the present invention is described in further detail.
Be given by Fig. 1 and Fig. 2, this utility model include guide-rail plate 12 it is characterised in that guide-rail plate 12 be fixedly connected on super On trace dna protein analyzer upper surface, the upper surface of guide-rail plate 12 is provided with guide rail 15, the left side fixed installation of guide-rail plate 12 There is the first decelerator 3, the input shaft of the first decelerator 3 is coaxially fixed with the first motor 2 being fixed on guide-rail plate 12, the The vertical output shaft of one speed reducer 3 is fixed with the driving fork 18 being transversely to the machine direction output shaft axis, drives one end of fork 18 It is connected on the vertical output shaft of the first decelerator 3, drive the free end of fork 18 to be connected with rod ends 5, rod ends 5 carry The cavity that oriented end face is opened, is fixed with the spring 4 stretching along side pole joint axis, one end of spring 4 is connected in cavity The bottom of cavity, the free end of spring 4 is connected in the free splaying driving fork 18 on the end face driving fork 18 free end It extend in the cavity of rod ends 5, the head of rod ends 5 is hinged with detection probe depression bar 6, in the middle part of detection probe depression bar 6 Hinged with rod ends 5, the lower rotational of detection probe depression bar 6 is connected on the guide-rail plate on the left of the first reducer output shaft, Detection probe depression bar 6 free end is fixed with detection probe, and described guide rail 15 slidably connects on the left of the first decelerator Bearing 17, bearing 17 is fixed with the second decelerator 8, the input shaft of the second decelerator 8 is coaxially fixed with and is fixed on bearing 17 On the second motor 7, the output shaft of the second decelerator 8 is coaxially fixed with axis and with guide rail parallel and is located above guide rail First mandrel 9, bearing is also rotatably connected to the second mandrel 20 of parallel with the first mandrel and longitudinally spaced setting, the second mandrel 20 The intrinsic volume of fixed cover has the clean paper roll cleaning paper, have between the first mandrel 9 and the second mandrel 20 position fixing and can with The lower detection probe 16 that the lower upper detection probe of detection probe depression bar effect contacts, between the first mandrel 9 and the second mandrel 20 under There are two pressure rollers being rotatably connected on the axis on bearing and the first mandrel 9 diameter parallel the longitudinal both sides in detection probe 16 top 19, cleaning paper be adjacent to bypass two pressure rollers bottom volume be enclosed within the first mandrel 9, cleaning the following of paper can be close to lower detection probe 16 and can be close to detection probe above, described bearing 17 is fixedly connected with axis along the nut 10 of guide rail direction, described leads The 3rd decelerator 14 positioned at the first mandrel 9 left end is fixedly connected with rail plate 12, the input shaft of the 3rd decelerator 14 is coaxially solid It is connected with the 3rd motor 13 being fixed on guide-rail plate, the horizontal output shaft of the 3rd decelerator 14 is coaxially fixed with along guide rail side To screw mandrel 11, leading screw 11 is connected with nut 10 spiral.
This utility model can be used in INSTRUMENT MODEL entitled thermo scientific:nanodrop 1000 On the ultramicron nucleic acid-protein analyser of spectrophotometer.
When this utility model is practical, the first motor, the second motor and the 3rd motor are in the control of single-chip microcomputer Be operated under system, the 3rd motor 13 open drive leading screw 11 to rotate thus drive nut 10 and bearing 17 move right to Cleaning paper is completely covered lower detection probe 16, and then the 3rd motor 13 quits work, and the first motor 2 is opened, and drives Driving fork 18 to rotate makes detection probe depression bar 6 be rocked to left down above contact cleaning paper, and the first motor 2 stops work Make, the second motor 7 is started working and drives the first mandrel 9 to rotate so that the cleaning paper on the second mandrel 20 cleaned inspection After probing head and lower detection probe on the first mandrel 9.After cleaning terminates, the second motor 7 quits work, the first step Stepper motor 2 works so that detection probe depression bar 6 is lifted up to certain altitude, and the first motor quits work, the 3rd step Stepper motor 13 work drives screw mandrel 11 to rotate so that nut 10 is moved to the left original position together with bearing 17, the 3rd stepping Motor 13 quits work.Then, after putting into sample in lower detection probe 16, the first motor 2 starts drive detection probe pressure Bar 6 is pressed downwards supreme detection probe and is contacted with lower detection probe 16 and sample is detected, after detection terminates, detection probe pressure Bar 6 lifts, and the 3rd motor 13 startup makes bearing 17 and cleaning paper move right and lower detection spy be completely covered to cleaning paper 16, then detection probe depression bar 6 pressure makes above upper detection probe contact cleaning paper, and the second motor 7 is started working The first mandrel is driven to rotate so that the cleaning paper on the second mandrel cleaned after detection probe and lower detection probe wound on the On one mandrel.After cleaning terminates, each mechanism returns to original position, waits circulate operation next time.
Embodiment described above is not defined to scope of the present utility model, is designing without departing from this utility model On the premise of design, various modifications and improvement that technical staff described in this area makes to the technical solution of the utility model, all Should include in the protection domain that claims of the present utility model determine.

Claims (1)

1. a kind of ultramicron nucleic acid-protein analyser automatic clearing apparatuss, guide-rail plate (12) is it is characterised in that guide-rail plate (12) is solid Surely it is connected on ultramicron nucleic acid-protein analyser upper surface, the upper surface of guide-rail plate (12) is provided with guide rail (15), guide-rail plate (12) left side is installed with the first decelerator (3), and the input shaft of the first decelerator (3) is coaxially fixed with and is fixed on guide-rail plate (12) the first motor (2) on, the vertical output shaft of the first decelerator (3) is fixed with and is transversely to the machine direction output shaft axis Drive fork (18), drive one end of fork (18) to be connected on the vertical output shaft of the first decelerator (3), drive fork 18 Free end is connected with rod ends (5), the cavity that rod ends (5) are opened with oriented end face, is fixed with along side pole in cavity The spring (4) that joint axis stretches, one end of spring (4) is connected in the bottom of cavity, and the free end of spring (4) is connected in driving On the end face of fork (18) free end, the free splaying of fork (18) is driven to extend in the cavity of rod ends (5), rod end The head of joint (5) is hinged with detection probe depression bar (6), hinged with rod ends (5) in the middle part of detection probe depression bar (6), detection The lower rotational of probe depression bar (6) is connected on the guide-rail plate on the left of the first reducer output shaft, and detection probe depression bar (6) is freely End is fixed with detection probe, and described guide rail (15) slidably connects the bearing (17) on the left of the first decelerator, bearing (17) it is fixed with the second decelerator (8) on, the input shaft of the second decelerator (8) is coaxially fixed with being fixed on bearing (17) Two stepping motor (7), the output shaft of the second decelerator (8) is coaxially fixed with axis and with guide rail parallel and is located above guide rail the One mandrel (9), bearing is also rotatably connected to second mandrel (20) of parallel with the first mandrel and longitudinally spaced setting, the second mandrel (20) the intrinsic volume of fixed cover has the clean paper roll cleaning paper, has position to fix between the first mandrel (9) and the second mandrel (20) And the lower detection probe (16) that can contact with the upper detection probe under the effect of detection probe depression bar, the first mandrel (9) and second Above lower detection probe (16) between mandrel (20), longitudinal both sides have two to be rotatably connected on the axis on bearing and the first mandrel (9) pressure roller (19) of diameter parallel, cleaning paper is adjacent to and bypasses the bottom volume of two pressure rollers and be enclosed within the first mandrel (9), cleaning paper Lower detection probe (16) can be close to below and detection probe can be close to above, described bearing (17) is fixedly connected with axis Along the nut (10) of guide rail direction, described guide-rail plate (12) is fixedly connected with the 3rd deceleration positioned at the first mandrel (9) left end Device (14), the input shaft of the 3rd decelerator (14) is coaxially fixed with the 3rd motor (13) being fixed on guide-rail plate, and the 3rd The horizontal output shaft of decelerator (14) is coaxially fixed with the screw mandrel (11) along guide rail direction, and leading screw (11) is with nut (10) spiral even Connect.
CN201620951095.XU 2016-08-27 2016-08-27 Super micro -nucleic acid protein analyzer self - cleaning device Expired - Fee Related CN205910199U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620951095.XU CN205910199U (en) 2016-08-27 2016-08-27 Super micro -nucleic acid protein analyzer self - cleaning device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620951095.XU CN205910199U (en) 2016-08-27 2016-08-27 Super micro -nucleic acid protein analyzer self - cleaning device

Publications (1)

Publication Number Publication Date
CN205910199U true CN205910199U (en) 2017-01-25

Family

ID=57800693

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620951095.XU Expired - Fee Related CN205910199U (en) 2016-08-27 2016-08-27 Super micro -nucleic acid protein analyzer self - cleaning device

Country Status (1)

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CN (1) CN205910199U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111492254A (en) * 2017-12-26 2020-08-04 日本电产理德股份有限公司 Substrate inspection device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111492254A (en) * 2017-12-26 2020-08-04 日本电产理德股份有限公司 Substrate inspection device

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Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20170125

Termination date: 20210827