CN207532385U - Scalable electrocardiograph lead storage device - Google Patents

Scalable electrocardiograph lead storage device Download PDF

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Publication number
CN207532385U
CN207532385U CN201720235251.7U CN201720235251U CN207532385U CN 207532385 U CN207532385 U CN 207532385U CN 201720235251 U CN201720235251 U CN 201720235251U CN 207532385 U CN207532385 U CN 207532385U
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CN
China
Prior art keywords
bottom plate
scalable
storage device
cavity
lead storage
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
CN201720235251.7U
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Chinese (zh)
Inventor
李学技
杜静
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Tianjin First Central Hospital
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Tianjin First Central Hospital
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Priority to CN201720235251.7U priority Critical patent/CN207532385U/en
Application granted granted Critical
Publication of CN207532385U publication Critical patent/CN207532385U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses scalable electrocardiograph lead storage devices, including bottom plate, multiple grooves, multiple baffles, multiple openings and cavity, the front surface of the bottom plate is equipped with multiple grooves, the cavity is equipped in the bottom plate, the cavity is connected with multiple grooves, the upper surface of the bottom plate is equipped with multiple openings, inside of multiple openings respectively with the cavity is connected, the baffle is equipped at the notch of multiple grooves, further include multiple wraps and rotating mechanism, it is corresponded in multiple grooves and inserts multiple wraps, the rotating mechanism drives multiple wraps along its axial-rotation simultaneously.The beneficial effects of the utility model are to prevent from mutually winding between conducting wire.

Description

Scalable electrocardiograph lead storage device
Technical field
The utility model is related to the improvement of conducting wire storage device, particularly scalable electrocardiograph lead storage devices.
Background technology
Electrocardiograph is widely used in clinic, becomes one of clinical department requisite instrumentation.At present, electrocardiography room fixes electrocardio Figure seat in the plane is put, and is mutually wound between conducting wire to avoid, and conducting wire is also relatively fixed to the position near electrocardiograph, is used It puts back to original position in time afterwards, will not cause to wind mutually between line and line;And other section office using when be required for patient position Put and move, conducting wire has certain length, can not straight line be fixed on by electrocardiograph, electrocardiogram lead wire branch is more, totally 10 Root, it is easy to cause to wind, it is especially desirable to which the patient having an electro-cardiogram, situation is more urgent, and user can not take into account line winding Problem is required for the used time regular after every time.And in emergency treatment, row ECG examination patient is more, often has little time to arrange, next Position patient needs ECG examination again, and line winding is then unable to reach length needed for limbs, it is necessary to can just make after first line is put in order With not only the extended time consumption ECG examination time but also having easily caused patient in this way and be discontented with.
Utility model content
The purpose of this utility model is to solve the above-mentioned problems, to devise scalable electrocardiogram machine lead wire storage dress It puts.
Realize that above-mentioned purpose the technical solution of the utility model is scalable electrocardiograph lead storage device, including Bottom plate, multiple grooves, multiple baffles, multiple openings and cavity, the front surface of the bottom plate are equipped with multiple grooves, the bottom The cavity is equipped in plate, the cavity is connected with multiple grooves, and the upper surface of the bottom plate is equipped with multiple openings, more Inside of a opening respectively with the cavity is connected, and is equipped with the baffle at the notch of multiple grooves, also wraps Multiple wraps and rotating mechanism are included, is corresponded in multiple grooves and inserts multiple wraps, the rotating mechanism Multiple wraps are driven along its axial-rotation simultaneously.
Preferably, the wrap include coiling cylinder, gasket, spring, crystal head interface embedding slot, wire channel, The coiling cylinder upper end is equipped with the crystal head interface embedding slot, and the coiling column body is equipped with one end and the crystal head Interface embedding slot is connected, and the wire channel that the other end is connected with the side surface of coiling cylinder, the spring setting On the first side wall of the groove, the spring is fixedly connected with the gasket, described in the lower compression of the coiling cylinder Gasket, the upper end of the coiling cylinder sequentially pass through the second sidewall corresponding with the first side wall of the groove, cavity and The upper surface of the bottom plate is stretched out after rotating mechanism.
Preferably, the rotating mechanism includes multiple driven gears, multiple tumbler gears, multiple shafts, internal gear, outer Gear, rotation handle, the upper surface in the cavity are equipped with multiple shafts, and the tumbler gear is inserted into the shaft, Meshed driven gear is equipped between two adjacent tumbler gears, is inserted in one of them described driven gear The internal gear, the meshed external gear of the interior inserting of the internal gear, the circle centre position of the external gear insert the rotation .
Preferably, the rotating mechanism drives multiple wraps along its axial-rotation simultaneously, i.e., it is multiple it is described around The top of terminal body corresponds the circle centre position for being inserted into multiple driven gears, and the driven gear drives the rotation of coiling cylinder Turn.
Preferably, the junction of the driven gear and coiling cylinder is equipped with anti-skidding lantern ring.
Preferably, it is respectively equipped with limiting lantern ring on multiple coiling cylinders.
The quantity of multiple openings is 11, the quantity of multiple openings and the quantity phase of multiple driven gears Together.
Preferably, multiple grooves are equidistantly positioned in the front surface of the bottom plate.
Preferably, the bottom plate is equipped with the accommodating groove for storing the rotation handle.
The scalable electrocardiograph lead storage device made using the technical solution of the utility model, can be with electrograph Machine is mobile and avoids the conducting wire of winding, avoids mutually winding between conducting wire.
Description of the drawings
Fig. 1 is the structure diagram of the utility model;
Fig. 2 is the sectional view of the A-A of the utility model;
Fig. 3 is the partial enlarged view of the utility model;
Fig. 4 is the side view of the utility model;
Fig. 5 is the structure diagram of wrap described in the utility model;
Fig. 6 is the vertical view of the utility model;
Fig. 7 is the structure diagram of external gear described in the utility model;
Fig. 8 is the structure diagram of internal gear described in the utility model;
1- bottom plates in figure;2- grooves;
3- baffles;4- wraps;
401- coiling cylinders;402- gaskets;
403- springs;404- crystal head interface embedding slots;
405- wire channels 5- is open;
6- cavitys;7- rotating mechanisms;
701- driven gears;702- tumbler gears;
703- shafts;704- internal gears;
705- external gears;706- rotates handle;
The anti-skidding lantern rings of 8-;9- limits lantern ring;
10- accommodating grooves.
Specific embodiment
The utility model is specifically described below in conjunction with the accompanying drawings, as shown in Figures 1 to 8, scalable electrocardiograph is led On line storage device is set including bottom plate 1, multiple grooves 2, multiple baffles 3, multiple openings 5 and cavity 6, the front surface of bottom plate 1 There are multiple grooves 2, cavity 6 is equipped in bottom plate 1, cavity 6 is connected with multiple grooves 2, and the upper surface of bottom plate 1 is equipped with multiple openings 5,5 inside respectively with cavity 6 of multiple openings is connected, and is equipped with baffle 3 at the notch of multiple grooves 2, further includes multiple twine It is corresponded around part 4 and rotating mechanism 7, in multiple grooves 2 and inserts multiple wraps 4, rotating mechanism 7 drives multiple windings simultaneously Part 4 is along its axial-rotation;Wrap 4 includes coiling cylinder 401, gasket 402, spring 403, and crystal head interface embedding slot 404 is led Line passage 405,401 upper end of coiling cylinder are equipped with crystal head interface embedding slot 404, and coiling cylinder 401 is internally provided with one end and water Crystal-tipped interface embedding slot 404 is connected, and the wire channel 405 that the other end is connected with the side surface of coiling cylinder 401, spring 403 are arranged on the first side wall of groove 2, and spring 403 is fixedly connected with gasket 402, the lower compression gasket of coiling cylinder 401 402, the upper end of coiling cylinder 401 sequentially passes through the second sidewall corresponding with the first side wall of groove 2, cavity 6 and rotation The upper surface of bottom plate 1 is stretched out after mechanism 7;Rotating mechanism 7 includes multiple driven gears 701, multiple tumbler gears 702, Duo Gezhuan Axis 703, internal gear 704, external gear 705, rotation are 706, and the upper surface in cavity 6 is equipped with multiple shafts 703, tumbler gear 702 are inserted into shaft 703, and meshed driven gear 701 is equipped between adjacent two tumbler gears 702, wherein Internal gear 704 is inserted in one driven gear 701, meshed external gear 705, external gear 705 are inserted in internal gear 704 Circle centre position inserting rotation 706;Rotating mechanism 7 drives multiple wraps 4 along its axial-rotation, i.e., multiple coiling cylinders simultaneously 401 top corresponds the circle centre position for being inserted into multiple driven gears 701, and driven gear 701 drives coiling cylinder 401 to revolve Turn;Driven gear 701 and the junction of coiling cylinder 401 are equipped with anti-skidding lantern ring 8;Limit is respectively equipped on multiple coiling cylinders 401 Position lantern ring 9;The quantity of multiple openings 5 is 11, and the quantity of multiple openings 5 is identical with the quantity of multiple driven gears 701;It is more A groove 2 is equidistantly positioned in the front surface of bottom plate 1;Bottom plate 1 is equipped with to store the receipts for rotating and being rotated 706 706 Receive slot 10.
The characteristics of the technical program is that the front surface of bottom plate 1 is equipped with multiple grooves 2, and cavity 6, cavity 6 are equipped in bottom plate 1 It is connected with multiple grooves 2, the upper surface of bottom plate 1 is equipped with multiple openings 5, and 5 inside respectively with cavity 6 of multiple openings is connected It is logical, baffle 3 is equipped at the notch of multiple grooves 2, further includes multiple wraps 4 and rotating mechanism 7, in multiple grooves 2 one by one Corresponding to insert multiple wraps 4, rotating mechanism 7 drives multiple wraps 4 along its axial-rotation simultaneously.
In the technical program, medical staff is before when storing electrocardiogram lead wire, first by conducting wire one end and water Crystal-tipped socket is connected, and electrocardiograph is equipped with the conducting wire with crystal plug, convenient when using electrocardiograph, electrocardio Conducting wire and the conducting wire with crystal head socket of the installation in the storage device on figure machine are connected to each other, and are used.
In the technical program, coiling cylinder 401 is disassembled from the storage device, by electrocardiogram lead wire branch 10 are inserted into wire channel 405 respectively, conducting wire are made to be connected with coiling cylinder 401, the crystal head interface of conducting wire one end is embedding In crystal head interface embedding slot 404, it is fixed.Then the lower end of coiling cylinder 401 is inserted into groove 2, due to Spring 403 is arranged on the first side wall of groove 2, and spring 403 is fixedly connected with gasket 402, and at 2 notch of groove Lower part is equipped with baffle 3, during coiling cylinder 401 is inserted into groove 2, extruding pad 402, and, spring 403 generates shape at this time Become, the upper end of coiling cylinder 401 also extends through second side corresponding with the first side of groove 2, cavity 6, is inserted into position at this time In in cavity 6 driven gear 701, the final opening 5 run through positioned at 1 upper surface of bottom plate stretch out outside bottom plate 1, in the process, Due to being equipped with anti-skidding lantern ring 8 between driven gear 701 and coiling cylinder 401, driven gear 701 rotates, can drive and mutually be squeezed with it The coiling cylinder 401 of pressure rotates, so as to achieve the purpose that conducting wire winding or unwrapping in coiling cylinder 401.And drive coiling The mechanism that cylinder 401 rotates is rotating mechanism 7, and the use principle of the rotating mechanism 7 is, due to rotating 706 and external gear 705 are fixedly connected, as driving source, wherein being embedded in internal gear 704, external gear on a driven gear 701 at most edge 705 are meshed with internal gear 704, and while rotation rotation is 706, external gear 705 drives internal gear 704 to rotate, due to interior Gear 704 is fixedly connected with driven gear 701, so as to which driven gear 701 starts to rotate, due to tumbler gear 702 and driven tooth Wheel 701 staggeredly engages, finally all driven gears 701 axial-rotation in one direction, so as to store with its mutually squeeze around Terminal body 401 rotates, and achievees the purpose that store conducting wire, and reversely rotates rotation handle, can be by 10 conducting wire unwrappings.
In the technical program, when storing conducting wire, crystal head is detached from crystal head socket, when conducting wire connects winding Afterwards, the insertion of the conducting wire with crystal plug being connected with electrocardiograph can be arranged on to the crystal head of the conducting wire on bottom plate 1 In interface, connection is completed, carries out ECG examination.
In the technical program, rotating mechanism 7 drives multiple wraps 4 along its axial-rotation simultaneously;Wrap 4 include around Terminal body 401, gasket 402, spring 403, crystal head interface embedding slot 404, wire channel 405,401 upper end of coiling cylinder are equipped with Crystal head interface embedding slot 404, coiling cylinder 401 are internally provided with one end and are connected, and another with crystal head interface embedding slot 404 The wire channel 405 being connected with the side surface of coiling cylinder 401 is held, spring 403 is arranged on the first side wall of groove 2, bullet Spring 403 is fixedly connected with gasket 402, and the lower compression gasket 402 of coiling cylinder 401, the upper end of coiling cylinder 401 sequentially passes through The upper surface of bottom plate 1 is stretched out after the second sidewall corresponding with the first side wall of groove 2, cavity 6 and rotating mechanism 7.
In the technical program, wrap 4 includes coiling cylinder 401, gasket 402, spring 403, and crystal head interface is embedded in Slot 404, wire channel 405,401 upper end of coiling cylinder are equipped with crystal head interface embedding slot 404, and coiling cylinder 401 is internally provided with One end is connected with crystal head interface embedding slot 404, and the other end leads to the conducting wire that the side surface of coiling cylinder 401 is connected Road 405, spring 403 are arranged on the first side wall of groove 2, and spring 403 is fixedly connected with gasket 402, under coiling cylinder 401 Portion's extruding pad 402, the upper end of coiling cylinder 401 sequentially pass through the second sidewall corresponding with the first side wall of groove 2, sky The upper surface of bottom plate 1 is stretched out after chamber 6 and rotating mechanism 7.
In the technical program, bottom plate 1 is equipped with to store the accommodating groove 10 for rotating and being rotated 706 706.
In the technical program, 5 interior diameter of being open is slightly less than the overall diameter of internal gear 704.
Above-mentioned technical proposal only embodies the optimal technical scheme of technical solutions of the utility model, the technology of the art Personnel embody some variations that some of which part may be made the principle of the utility model, belong to the utility model Protection domain within.

Claims (8)

1. scalable electrocardiograph lead storage device, including bottom plate (1), multiple grooves (2), multiple baffles (3), Duo Gekai Mouth (5) and cavity (6), the front surface of the bottom plate (1) are equipped with multiple grooves (2), the sky are equipped in the bottom plate (1) Chamber (6), the cavity (6) are connected with multiple grooves (2), and the upper surface of the bottom plate (1) is equipped with multiple openings (5), Inside of multiple openings (5) respectively with the cavity (6) is connected, and is all provided at the notch of multiple grooves (2) State baffle (3), which is characterized in that further include multiple wraps (4) and rotating mechanism (7), one is a pair of in multiple grooves (2) It should insert multiple wraps (4), the rotating mechanism (7) while drive multiple wraps (4) along its axial-rotation.
2. scalable electrocardiograph lead storage device according to claim 1, which is characterized in that the wrap (4) including coiling cylinder (401), gasket (402), spring (403), crystal head interface embedding slot (404), wire channel (405), Coiling cylinder (401) upper end is equipped with the crystal head interface embedding slot (404), and the coiling cylinder (401) is internally provided with One end is connected with the crystal head interface embedding slot (404), and the other end is connected with the side surface of coiling cylinder (401) The wire channel (405), the spring (403) are arranged on the first side wall of the groove (2), the spring (403) with The gasket (402) is fixedly connected, gasket (402) described in the lower compression of the coiling cylinder (401), the coiling cylinder (401) upper end sequentially passes through second sidewall corresponding with the first side wall, cavity (6) and the whirler of the groove (2) Structure (7) stretches out the upper surface of the bottom plate (1) afterwards.
3. scalable electrocardiograph lead storage device according to claim 1, which is characterized in that the rotating mechanism (7) including multiple driven gears (701), multiple tumbler gears (702), multiple shafts (703), internal gear (704), external gear (705), it rotates (706), the upper surface in the cavity (6) is equipped with multiple shafts (703), the tumbler gear (702) be inserted into the shaft (703), between adjacent two tumbler gears (702) be equipped with it is meshed from Moving gear (701), the middle inserting internal gear (704) of one of them described driven gear (701), the internal gear (704) are interior Meshed external gear (705) is inserted, the circle centre position inserting rotation of the external gear (705) is (706).
4. scalable electrocardiograph lead storage device according to claim 3, which is characterized in that the driven gear (701) it is equipped with anti-skidding lantern ring (8) with the junction of coiling cylinder (401).
5. scalable electrocardiograph lead storage device according to claim 2, which is characterized in that multiple coilings Limiting lantern ring (9) is respectively equipped on cylinder (401).
6. scalable electrocardiograph lead storage device according to claim 1, which is characterized in that multiple openings (5) quantity is 11, and the quantity of multiple openings (5) is identical with the quantity of multiple driven gears (701).
7. scalable electrocardiograph lead storage device according to claim 1, which is characterized in that multiple grooves (2) it is equidistantly positioned in the front surface of the bottom plate (1).
8. scalable electrocardiograph lead storage device according to claim 1, which is characterized in that the bottom plate (1) It is equipped with to store accommodating groove (10) of the rotation (706).
CN201720235251.7U 2017-03-10 2017-03-10 Scalable electrocardiograph lead storage device Expired - Fee Related CN207532385U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720235251.7U CN207532385U (en) 2017-03-10 2017-03-10 Scalable electrocardiograph lead storage device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720235251.7U CN207532385U (en) 2017-03-10 2017-03-10 Scalable electrocardiograph lead storage device

Publications (1)

Publication Number Publication Date
CN207532385U true CN207532385U (en) 2018-06-26

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201720235251.7U Expired - Fee Related CN207532385U (en) 2017-03-10 2017-03-10 Scalable electrocardiograph lead storage device

Country Status (1)

Country Link
CN (1) CN207532385U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109621236A (en) * 2019-01-08 2019-04-16 徐波 A kind of headache dizziness target for the treatment of disappears molten device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109621236A (en) * 2019-01-08 2019-04-16 徐波 A kind of headache dizziness target for the treatment of disappears molten device

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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: 20180626

Termination date: 20210310