An electrode tab collecting device

CN224753058UActive Publication Date: 2026-09-15SHANGHAI QINGYI MEDICAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202521384503.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-02
Publication Date
2026-09-15
Estimated Expiration
2035-07-02

AI Technical Summary

Technical Problem

[0005]针对现有专利中,为了解决装置在使用时,电极片放置在翻盖上的收纳腔内,在除颤器移动时,电极片可以在收纳腔内滑动,容易造成对电极片造成划伤甚至划坏,影响电极片使用寿命的技术问题,本实用新型提供一种电极片收片装置

Benefits of technology

[0012] By setting the storage plate to rotate inside the flip cover, it is easy to release the upper limit of the storage plate through the U-shaped connecting handle. By pulling the upper end of the storage plate through the U-shaped connecting handle, the flip cover can be rotated out, making it easy to put and take out the electrode sheet in the storage slot.

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Abstract

The utility model relates to an electrode piece collecting device, contain flip, storage mechanism, the flip is the box body structure, the storage mechanism includes the storage board in the flip, is located the storage groove of storage board upside, two pressure plates that elastically slide and fit in the storage groove, the U shape fixed handle that is located storage board one side, the U shape handle that slides and fits in the U shape fixed handle, the U shape handle is fixed with two pressure plates and connects, through setting up the storage board rotation cooperation in the flip, is convenient through the U shape connection handle to remove the limit of storage board upper end, through the U shape connection handle to pull the storage board upper end and turn out the flip, is convenient to take and put the electrode piece in the storage groove, through setting up the pressure plate, makes the pressure plate through first spring damper and positions the electrode piece elastically in the storage groove, reduces the probability that electrode piece moves and scratches or scratches when defibrillator moves in the storage groove.
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Description

Technical Field

[0001] This utility model relates to the field of electrode receiving device technology, and in particular to an electrode receiving device. Background Technology

[0002] A defibrillator is usually a single unit without space for electrode pads. The current practice is to store the defibrillator and electrode pads separately and assemble them when needed. However, when the defibrillator is actually needed, the electrode pads can easily be lost, which may delay the best treatment time due to the search for the electrode pads.

[0003] A search revealed a defibrillator with publication number CN219185617U that facilitates the storage of electrode pads. The defibrillator includes electrode pads, a defibrillator body, and a flip cover. One end of the flip cover is hinged to the defibrillator body, and the flip cover can be flipped on the defibrillator body. The flip cover has a pressing mechanism, which is detachably connected to the defibrillator body. A slide rail is provided on the side wall of the flip cover near the defibrillator body. A limiting member is provided on the slide rail, and the limiting member is slidably connected to the slide rail. The upper surface of the limiting member and the inner surface of the flip cover form a storage cavity for accommodating the electrode pads, which can be inserted into the storage cavity. This application, by providing a storage cavity, facilitates the storage of electrode pads, preventing their loss; it also reduces the risk of dust accumulation and scratches on the electrode pads, thereby extending their service life.

[0004] When the device in the disclosed patent is in use, the electrode pads are placed in the storage cavity on the flip cover. When the defibrillator moves, the electrode pads can slide in the storage cavity, which can easily cause scratches or even damage to the electrode pads, affecting their service life. Utility Model Content

[0005] In response to the technical problem in existing patents that the electrode pads are placed in the storage cavity on the flip cover during use, and can slide in the storage cavity when the defibrillator is moved, which can easily cause scratches or even damage to the electrode pads and affect their service life, this utility model provides an electrode pad storage device.

[0006] The technical solution adopted by this utility model is: an electrode sheet receiving device, including: a flip cover and a storage mechanism. The flip cover is a box structure. The storage mechanism includes a storage plate located inside the flip cover, a storage groove disposed on the upper side of the storage plate, two pressure plates that are elastically slidably engaged in the storage groove, a U-shaped fixed handle disposed on one side of the storage plate, and a U-shaped handle that is slidably engaged in the U-shaped fixed handle. The U-shaped handle is fixedly connected to the two pressure plates.

[0007] Furthermore, the inner wall of the storage slot is provided with a groove corresponding to the pressure plate, the pressure plate is slidably fitted in the groove, a first spring damper is fixed on one side of the pressure plate, the first spring damper is fixedly connected to the inner wall of the groove, two first guide grooves are provided on one side of the storage plate, the first guide grooves are connected to the groove, one end of the U-shaped handle is slidably fitted in the two first guide grooves, and one end of the U-shaped handle passes through the first guide groove and is fixedly connected to the pressure plate.

[0008] Furthermore, an observation port is provided on one side of the storage plate, which is connected to the storage slot. An operation port is provided on the side of the storage plate away from the observation port, which is connected to the storage slot. The height of the bottom surface of the inner wall of the operation port is higher than the height of the bottom surface of the inner wall of the observation port. The upper side of the pressure plate is provided with rounded corners.

[0009] Furthermore, a through hole is provided on one side of the storage plate, and a rotating shaft is fixed inside the flip cover. The storage plate is rotatably fitted onto the rotating shaft through the through hole. Bearings are embedded on opposite sides of the storage plate, and the bearings are fixedly sleeved on the rotating shaft. The storage plate is rotatably fitted onto the rotating shaft through the bearings. A spring ball is embedded in the inner wall of the through hole, and multiple limiting grooves are arranged in a circumferential array on the side of the rotating shaft. The spring ball corresponds to multiple limiting grooves.

[0010] Furthermore, one end of the storage plate has two locating pins that are elastically slidably engaged, and the inner wall of the flip cover has two locating grooves. The locating pins correspond to the locating grooves. A U-shaped connecting handle is slidably engaged on one side of the storage plate. The U-shaped connecting handle is fixedly connected to the two locating pins. The upper side of the storage plate has a groove corresponding to the locating pins. The locating pins are slidably engaged in the groove. The inner wall of the groove has a second spring damper. The locating pins are fixed on the upper side of the second spring damper. One side of the storage plate has a slide rail corresponding to the U-shaped connecting handle. The groove communicates with the slide rail. One end of the U-shaped connecting handle is slidably engaged in the slide rail.

[0011] The beneficial effects of this utility model are:

[0012] By setting the storage plate to rotate inside the flip cover, it is easy to release the upper limit of the storage plate through the U-shaped connecting handle. By pulling the upper end of the storage plate through the U-shaped connecting handle, the flip cover can be rotated out, making it easy to put and take out the electrode sheet in the storage slot.

[0013] By setting a pressure plate, the pressure plate elastically positions the electrode pads in the storage slot through the first spring damper, reducing the probability of the electrode pads being scratched or damaged when the defibrillator moves. Attached Figure Description

[0014] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;

[0015] Figure 2 This is a cross-sectional structural diagram of the present invention;

[0016] Figure 3 This is a cross-sectional view of the positioning pin structure in this utility model;

[0017] Figure 4 This is a schematic diagram of the storage board structure in this utility model;

[0018] Figure 5 This is a schematic diagram of the rotating shaft structure in this utility model.

[0019] The diagram is marked as follows:

[0020] 1. Flip-top; 2. Storage mechanism; 201. Storage plate; 202. Storage slot; 203. Pressure plate; 204. U-shaped fixed handle; 205. U-shaped handle; 206. Groove; 207. First spring damper; 208. First guide groove; 209. Observation port; 210. Operation port; 211. Through hole; 212. Rotating shaft; 213. Spring ball; 214. Limiting groove; 215. Positioning pin; 216. Positioning groove; 217. U-shaped connecting handle; 218. Slide groove; 219. Second spring damper; 220. Slide track. Detailed Implementation

[0021] In the description of this utility model, it should be noted that the terms "front", "up", "down", "left", "right", "vertical", "horizontal", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0022] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0023] The following is in conjunction with the appendix Figure 1-5 The present invention will be further described below.

[0024] To address the problems existing in the background art, this application proposes the following technical solution:

[0025] An electrode sheet receiving device includes: a flip cover 1 and a storage mechanism 2. The flip cover 1 has a box structure. The storage mechanism 2 includes a storage plate 201 located inside the flip cover 1, a storage groove 202 disposed on the upper side of the storage plate 201, two pressure plates 203 elastically slidably engaged in the storage groove 202, a U-shaped fixed handle 204 disposed on one side of the storage plate 201, and a U-shaped handle 205 slidably engaged in the U-shaped fixed handle 204. The U-shaped handle 205 is fixedly connected to the two pressure plates 203.

[0026] Furthermore, the inner wall of the storage slot 202 is provided with a groove 206 corresponding to the pressure plate 203. The pressure plate 203 is slidably fitted in the groove 206. A first spring damper 207 is fixed on one side of the pressure plate 203. The first spring damper 207 is fixedly connected to the inner wall of the groove 206. Two first guide grooves 208 are provided on one side of the storage plate 201. The first guide grooves 208 are connected to the groove 206. One end of the U-shaped handle 205 is slidably fitted in the two first guide grooves 208. One end of the U-shaped handle 205 passes through the first guide groove 208 and is fixedly connected to the pressure plate 203, so that the pressure plate 203 can elastically position the electrode sheet in the storage slot 202 through the first spring damper 207.

[0027] Furthermore, an observation port 209 is provided on one side of the storage plate 201, which is connected to the storage slot 202. An operation port 210 is provided on the side of the storage plate 201 away from the observation port 209, which is connected to the storage slot 202. The height of the bottom surface of the inner wall of the operation port 210 is higher than the height of the bottom surface of the inner wall of the observation port 209. The upper side of the pressure plate 203 is provided with rounded corners to facilitate observation of the placement position of the electrode sheet through the observation port 209 and to remove and place the electrode sheet through the upper part of the observation port 209 and the operation port 210.

[0028] Furthermore, a through hole 211 is provided on one side of the storage plate 201, and a rotating shaft 212 is fixed inside the flip cover 1. The storage plate 201 is rotatably fitted onto the rotating shaft 212 through the through hole 211. Bearings are embedded on both opposite sides of the storage plate 201, and the bearings are fixedly sleeved on the rotating shaft 212. The storage plate 201 is rotatably fitted onto the rotating shaft 212 through the bearings. A spring ball 213 is embedded in the inner wall of the through hole 211. Multiple limiting grooves 214 are arranged in a circular array on the side of the rotating shaft 212. The spring ball 213 corresponds to the multiple limiting grooves 214, so that the spring ball 213 can be inserted into the limiting groove 214 to position the storage plate 201 after rotation.

[0029] Furthermore, one end of the storage plate 201 is elastically slidably fitted with two positioning pins 215, and the inner wall of the flip cover 1 is provided with two positioning grooves 216, with the positioning pins 215 corresponding to the positioning grooves 216. A U-shaped connecting handle 217 is slidably fitted on one side of the storage plate 201, and the U-shaped connecting handle 217 is fixedly connected to the two positioning pins 215. The upper side of the storage plate 201 is provided with a slide groove 218 corresponding to the positioning pins 215, and the positioning pins 215 are slidably fitted in the slide groove 218. The inner wall of the slide groove 218 is provided with a second spring damper 219, and the positioning pins 215 are fixed on the upper side of the second spring damper 219. One side of the storage plate 201 is provided with a slide rail 220 corresponding to the U-shaped connecting handle 217, and the slide groove 218 is connected to the slide rail 220. One end of the U-shaped connecting handle 217 is slidably fitted in the slide rail 220, so that the U-shaped connecting handle 217 can simultaneously drive the two positioning pins 215 to slide.

[0030] Working principle: The U-shaped connecting handle 217 drives the two positioning pins 215 to slide, releasing the upper limit of the storage plate 201. The U-shaped connecting handle 217 pulls the storage plate 201 to rotate on the rotating shaft 212, and the spring ball 213 is engaged in the limiting groove 214 to position the storage plate 201 after rotation, so that the upper end of the storage plate 201 rotates out of the flip cover 1, making it easy to take out and put in the electrode pads in the storage slot 202. Hold the U-shaped fixing handle 204 and pull the U-shaped handle 205 to make the pressure plate 203 retract into the groove 206, put the electrode pads into the storage slot 202, and then release the U-shaped handle 205. The pressure plate 203 elastically positions the electrode pads in the storage slot 202 through the first spring damper 207, reducing the probability of the electrode pads being scratched or damaged when the defibrillator moves in the storage slot 202.

[0031] All standard parts used in this utility model can be purchased from the market, and irregular parts can be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts and equipment adopt conventional models in the prior art. In addition, the circuit connection adopts conventional connection methods in the prior art, which will not be described in detail here. The contents not described in detail in this specification belong to the prior art known to those skilled in the art.

[0032] Although embodiments of the present invention have been shown and described, the scope of the present invention will be defined by the appended claims and their equivalents for those skilled in the art.

Claims

1. An electrode sheet receiving device, characterized in that, include: The flip cover (1) and the storage mechanism (2) are a box structure. The storage mechanism (2) includes a storage plate (201) located inside the flip cover (1), a storage groove (202) on the upper side of the storage plate (201), two pressure plates (203) that are elastically slidably engaged in the storage groove (202), a U-shaped fixed handle (204) on one side of the storage plate (201), and a U-shaped handle (205) that is slidably engaged in the U-shaped fixed handle (204). The U-shaped handle (205) is fixedly connected to the two pressure plates (203).

2. An electrode sheet collecting device according to claim 1, characterized by The inner wall of the storage slot (202) is provided with a groove (206) corresponding to the pressure plate (203). The pressure plate (203) is slidably fitted in the groove (206). A first spring damper (207) is fixed on one side of the pressure plate (203). The first spring damper (207) is fixedly connected to the inner wall of the groove (206). Two first guide grooves (208) are provided on one side of the storage plate (201). The first guide grooves (208) are connected to the groove (206). One end of the U-shaped handle (205) is slidably fitted in the two first guide grooves (208). One end of the U-shaped handle (205) passes through the first guide groove (208) and is fixedly connected to the pressure plate (203).

3. The electrode sheet receiving device according to claim 1, characterized in that, The storage plate (201) has an observation port (209) on one side, which is connected to the storage groove (202). The storage plate (201) has an operation port (210) on the side away from the observation port (209), which is connected to the storage groove (202). The height of the bottom surface of the inner wall of the operation port (210) is higher than the height of the bottom surface of the inner wall of the observation port (209). The pressure plate (203) has rounded corners on its upper side.

4. The electrode sheet receiving device according to claim 1, characterized in that, The storage plate (201) has a through hole (211) on one side. A rotating shaft (212) is fixed inside the flip cover (1). The storage plate (201) is rotatably fitted on the rotating shaft (212) through the through hole (211). Bearings are embedded on both sides of the storage plate (201). The bearings are fixedly sleeved on the rotating shaft (212). The storage plate (201) is rotatably fitted on the rotating shaft (212) through the bearings.

5. The electrode sheet receiving device according to claim 4, characterized in that, A spring ball (213) is embedded in the inner wall of the through hole (211), and a plurality of limiting grooves (214) are arranged in a circumferential array on the side of the rotating shaft (212), with the spring ball (213) corresponding to the plurality of limiting grooves (214).

6. The electrode sheet receiving device according to claim 1, characterized in that, The storage plate (201) has two locating pins (215) that are elastically slidably fitted at one end. The inner wall of the flip cover (1) is provided with two locating grooves (216). The locating pins (215) correspond to the locating grooves (216). A U-shaped connecting handle (217) is slidably fitted on one side of the storage plate (201). The U-shaped connecting handle (217) is fixedly connected to the two locating pins (215).

7. The electrode sheet receiving device according to claim 6, characterized in that, The upper side of the storage plate (201) is provided with a groove (218) corresponding to the positioning pin (215). The positioning pin (215) is slidably engaged in the groove (218). The inner wall of the groove (218) is provided with a second spring damper (219). The positioning pin (215) is fixed on the upper side of the second spring damper (219). One side of the storage plate (201) is provided with a slide (220) corresponding to the U-shaped connecting handle (217). The groove (218) is connected to the slide (220). One end of the U-shaped connecting handle (217) is slidably engaged in the slide (220).

Citation Information

Patent Citations

  • Defibrillator facilitating storage of electrode plates

    CN219185617U