An RFID array data acquisition device used in the medical industry
By designing adjustable RFID array data acquisition equipment, the problem of the inability to adjust the height of existing equipment is solved, and convenient data acquisition is achieved for medical staff of different heights, improving the convenience of use and installation of the equipment.
Patent Information
- Application Number
- CN202510248210.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2045-03-04
AI Technical Summary
The existing RFID array data acquisition equipment cannot be adjusted in height after installation, resulting in inconvenience in medical staff of different heights when using it.
An RFID array data acquisition device including a device body, a mounting part and a adjusting part is designed. Through the combination of the hexagonal pull rod and the pedal, medical staff can drive the hexagonal pull rod to move down by stepping on the pedal, driving the height adjustment of the equipment body.
It realizes the adjustability of the height of the equipment body, adapts to medical staff of different heights to collect data, and improves the convenience of use and installation.
Smart Images

Figure CN119737534B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of data collection, and in particular to an RFID array data collection device applied to the medical industry. Background Art
[0002] The working principle of RFID array data collection equipment is based on the basic principle of RFID technology, using radio waves for communication. The transmitter in the equipment sends out a radio frequency signal of a specific frequency. When the RFID tag enters the radio frequency field, the tag obtains energy through the induction current and sends out the product information stored in the chip. After the collection equipment receives and decodes this information, it transmits it to other systems through the interface for further processing.
[0003] In the medical industry, RFID array data acquisition devices are usually installed next to the doors of some isolation wards to control the opening and closing of the ward doors. When the door needs to be opened, the medical staff will bring the badge close to the device so that the RFID tag in the badge can be recognized by the device and transmitted to open the ward door. However, the height of the existing RFID array data acquisition equipment cannot be adjusted after installation. When medical staff are on duty, they usually hold medical supplies in their hands due to treatment needs. At this time, for the convenience of sensing, they often directly bring the badge worn on their chest close to the device for sensing. In actual use, due to the different heights of medical staff, when the height of the badge is inconsistent with the installation height of the device, it is easy for the badge to be inconvenient to approach the device for sensing, resulting in inconvenience in use. Summary of the invention
[0004] The purpose of the present invention is to solve the shortcomings of the background technology and to propose an RFID array data acquisition device applied to the medical industry.
[0005] To achieve the above objectives, the technical solution adopted by the present invention is: an RFID array data acquisition device applied to the medical industry, comprising an equipment body, a mounting piece is arranged on the side of the equipment body, a rod sleeve is connected to the middle part of the mounting piece, a hexagonal pull rod is elastically installed through the inside of the rod sleeve, a pedal is fixedly installed at the lower end of the hexagonal pull rod, a connecting block is fixedly installed at the upper end of the hexagonal pull rod, a carrier is fixedly installed at the front end of the connecting block, and the equipment body is fixedly installed at the end of the carrier.
[0006] Preferably, a return spring is wound around the outside of the hexagonal pull rod, the lower end of the return spring is fixed to the upper end of the rod sleeve, the upper end of the return spring is fixed to the lower end of the connecting block, and the outer surface of the hexagonal pull rod is inlaid with a rod cap, which fits the lower end of the rod sleeve.
[0007] Preferably, the mounting member includes a main frame arranged on the side of the equipment body, the side of the rod sleeve is fixed to the main frame, sub-frames are slidably installed on both ends of the main frame, an adjusting member is provided at the end of the upper sub-frame, and the lower end of the lower sub-frame and the end of the adjusting member are connected with an angle seat, the two angle seats are symmetrically arranged, and soft rubber pads are fixedly installed on the opposite sides of the two angle seats.
[0008] Preferably, a notch is provided in the middle of the main frame, and the opposite ends of the two sub-frames extend out from the notch. A guide column is fixedly installed in the middle of the side of the main frame, and a push sleeve is slidably installed on the outer surface of the guide column. Push frames are connected to the upper and lower ends of the push sleeve, and the two push frames are respectively connected to the two sub-frames.
[0009] Preferably, a No. 1 connector is extended from the opposite ends of the two sub-frames, one end of the push frame is rotatably connected to the No. 1 connector, a No. 2 connector is extended from the upper and lower ends of the push sleeve, the other end of the push frame is rotatably connected to the No. 2 connector, a push cap is connected to the side of the push sleeve, a wheel frame is fixedly installed at the front end of the push sleeve, a top wheel is connected to the end of the wheel frame, a push rail is fixedly installed on the side of the carrier, the lower end edge of the push rail is inclined, and the top wheel fits into the inclined surface of the push rail.
[0010] Preferably, a plurality of connecting columns are fixedly installed in a circular array at the side edge of the push cap, the ends of the connecting columns are fixed to the push sleeve, the rear end of the push sleeve is connected to the carrier shell, a locking pin is coaxially installed inside the carrier shell, both ends of the locking pin pass through the two ends of the carrier shell, the locking pin and the carrier shell are slidably matched, one end of the locking pin slides through the outer surface of the push sleeve, the outer surface of the guide column is provided with a pin slide groove, and one end of the locking pin is inserted into the pin slide groove.
[0011] Preferably, a shell frame is fixedly installed on the upper and lower ends of the carrier shell, the end of the shell frame is fixed to the push sleeve, the outer surface of the locking pin is coaxially inlaid with a push cap, the push cap fits the inner wall of the carrier shell, a fixing pin spring is wound around the outer side of the locking pin, one end of the fixing pin spring is fixed to the push cap, the other end of the fixing pin spring is fixed to the inner side of the carrier shell, and the other end of the locking pin is fixedly installed with a pull ring.
[0012] Preferably, the adjusting member comprises a concave frame which is fitted on the end of the upper sub-frame, the upper end of the concave frame is fixed to the upper angle seat, the front and rear end surfaces inside the concave frame are extended with sliding edges, the upper parts of the front and rear end surfaces of the upper sub-frame are provided with grooves, the sliding edges are slidably installed inside the grooves, the upper end of the upper sub-frame is penetrated by a threaded column which is screwed on, and the upper end of the threaded column is rotatably connected to the inner top surface of the concave frame.
[0013] Compared with the prior art, the present invention has the following beneficial effects:
[0014] 1. By stepping on the pedal, medical staff can drive the hexagonal pull rod to slide downward in the rod sleeve, thereby driving the device body at the end of the carrier to move downward, so that the height of the device body can be adjusted to accommodate medical staff of different heights for data collection, thereby improving ease of use.
[0015] 2. Place the main frame in the door frame and press the button cap. At this time, the push sleeve moves to drive the push frame to move, and the sub-frame in the main frame is pushed out, so that the corner seats on the two sub-frames can be pressed against the top surface of the door frame and the ground respectively. At this time, the lock pin is pushed out by the action of the fixed pin spring and inserted into the pin slide groove on the guide column to fix the push sleeve, and then fix the corner seat pressed against the top surface of the door frame and the ground. In this way, the main body of the equipment is installed next to the ward door. The process does not require operations such as drilling holes on the wall, which effectively facilitates the installation. By rotating the threaded column, the concave frame can be driven to move, and then the upper corner seat can be driven to move, so as to adjust the distance between the two corner seats to adapt to door frames of different heights for installation.
[0016] 3. When the main body of the equipment is driven downward by pedaling, the push rail will move downward synchronously, allowing the top wheel to roll on the inclined surface at the lower end of the push rail to drive the push sleeve to move sideways. At this time, the locking pin slides in the pin slide groove, allowing the push sleeve to move normally, so that the push sleeve can push the corner seat again. At this time, the soft rubber pad is deformed to adapt to the movement of the corner seat again, thereby increasing the tightening force of the corner seat, thereby improving the firmness and ensuring that there will be no displacement during the pedaling process. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a structural schematic diagram of an RFID array data acquisition device applied to the medical industry according to the present invention;
[0018] Figure 2 The present invention is an RFID array data acquisition device applied to the medical industry Figure 1 A magnified view of middle;
[0019] Figure 3 This is a schematic diagram of a push rail of an RFID array data acquisition device applied to the medical industry according to the present invention;
[0020] Figure 4 The present invention is an RFID array data acquisition device applied to the medical industry Figure 3 Enlarged view of middle B;
[0021] Figure 5 This is a schematic diagram of a concave frame of an RFID array data acquisition device applied to the medical industry according to the present invention;
[0022] Figure 6This is a cross-sectional view of a carrier shell of an RFID array data acquisition device applied to the medical industry according to the present invention;
[0023] Figure 7 A schematic diagram of a guide column of an RFID array data acquisition device applied to the medical industry according to the present invention;
[0024] Figure 8 This is a usage diagram of an RFID array data acquisition device applied to the medical industry according to the present invention.
[0025] In the figure: 1. main frame; 2. auxiliary frame; 3. angle seat; 4. soft rubber pad; 5. connection block; 6. carrier frame; 7. equipment body; 8. reset spring; 9. hexagonal pull rod; 10. pedal; 11. guide column; 12. locking pin; 13. push cap; 14. pin fixing spring; 15. carrier shell; 16. push sleeve; 17. pull ring; 18. threaded column; 19. sliding edge; 20. groove; 21. concave frame; 22. pin slide groove; 23. rod sleeve; 24. rod cap; 25. push frame; 26. No. 1 connector; 27. wheel frame; 28. top wheel; 29. push rail; 30. No. 2 connector; 31. shell frame; 32. press cap; 33. connecting column; 34. notch. DETAILED DESCRIPTION
[0026] The following description is used to disclose the present invention so that those skilled in the art can implement the present invention. The preferred embodiments described below are only examples, and those skilled in the art may think of other obvious variations.
[0027] like Figure 1-Figure 8 An RFID array data acquisition device for use in the medical industry is shown, comprising an equipment body 7, a mounting piece is arranged on the side of the equipment body 7, a rod sleeve 23 is connected to the middle of the mounting piece, a hexagonal pull rod 9 is elastically installed through the inside of the rod sleeve 23, the rod sleeve 23 serves to guide the hexagonal pull rod 9, a pedal 10 is fixedly installed at the lower end of the hexagonal pull rod 9, the pedal 10 can be easily stepped on to drive the hexagonal pull rod 9 to move downward, the hexagonal pull rod 9 serves to pull the equipment body 7 downward, a connecting block 5 is fixedly installed at the upper end of the hexagonal pull rod 9, the connecting block 5 serves to connect, a carrier 6 is fixedly installed at the front end of the connecting block 5, the equipment body 7 is fixedly installed at the end of the carrier 6, the carrier 6 serves to support the equipment body 7.
[0028] A return spring 8 is wound around the outside of the hexagonal pull rod 9, and the lower end of the return spring 8 is fixed to the upper end of the rod sleeve 23. The return spring 8 drives the downward-moving hexagonal pull rod 9 to return to its original position. The upper end of the return spring 8 is fixed to the lower end of the connecting block 5. A rod cap 24 is inlaid on the outer surface of the hexagonal pull rod 9. The rod cap 24 is fitted to the lower end of the rod sleeve 23. The rod cap 24 plays a role in positioning the upward height of the hexagonal pull rod 9.
[0029] The mounting parts include a main frame 1 arranged on the side of the equipment body 7, and the side of the rod sleeve 23 is fixed to the main frame 1. The main frame 1 plays a role in bearing and guiding the sub-frame 2. Sub-frames 2 are slidably installed at both ends of the main frame 1, and an adjusting part is provided at the end of the upper sub-frame 2. The lower end of the lower sub-frame 2 and the end of the adjusting part are connected with an angle seat 3. The sub-frame 2 can push the angle seat 3 so that the angle seat 3 can be respectively pressed against the top surface of the door frame and the ground. The two angle seats 3 are symmetrically arranged, and soft rubber pads 4 are fixedly installed on the opposite surfaces of the two angle seats 3. On the one hand, the soft rubber pads 4 can increase the friction between the angle seat 3 and the door frame and the ground, and on the other hand, they can be deformed to adapt to the re-moving operation of the angle seat 3.
[0030] A notch 34 is provided in the middle of the main frame 1, and the opposite ends of the two sub-frames 2 extend out from the notch 34. The notch 34 can ensure that the sub-frame 2 leaks out for easy connection. A guide column 11 is fixedly installed in the middle of the side of the main frame 1, and a push sleeve 16 is slidably installed on the outer surface of the guide column 11. The guide column 11 serves to guide the push sleeve 16. The upper and lower ends of the push sleeve 16 are connected to push frames 25. The two push frames 25 are respectively connected to the two sub-frames 2. The push sleeve 16 can drive the push frame 25 to move to push the sub-frame 2.
[0031] A No. 1 connector 26 is extended from the opposite ends of the two sub-frames 2, and one end of the push frame 25 is rotatably connected to the No. 1 connector 26. A No. 2 connector 30 is extended from the upper and lower ends of the push sleeve 16. The No. 1 connector 26 and the No. 2 connector 30 both serve to facilitate the connection of the push frame 25. The other end of the push frame 25 is rotatably connected to the No. 2 connector 30. A pressing cap 32 is connected to the side of the push sleeve 16, and the pressing cap 32 serves to facilitate pressing the push sleeve 16. A wheel frame 27 is fixedly installed at the front end of the push sleeve 16, and a top wheel 28 is connected to the end of the wheel frame 27. The wheel frame 27 serves to carry the top wheel 28. A push rail 29 is fixedly installed on the side of the carrier 6. The lower end edge of the push rail 29 is arranged in an inclined surface, which can push the top wheel 28, thereby driving the push sleeve 16 to move again, and the top wheel 28 fits the inclined surface of the push rail 29.
[0032] A plurality of connecting columns 33 are fixedly installed in a circular array at the side edge of the pressing cap 32. The ends of the connecting columns 33 are fixed to the push sleeve 16. The connecting columns 33 play a role in fixing the pressing cap 32. The rear end of the push sleeve 16 is connected to the carrier shell 15. The interior of the carrier shell 15 is coaxially installed with a locking pin 12. The carrier shell 15 plays a role in supporting the locking pin 12. The two ends of the locking pin 12 pass through the two ends of the carrier shell 15. The locking pin 12 and the carrier shell 15 are slidably matched. One end of the locking pin 12 slides through the push sleeve 16. The outer surface of the guide column 11 is provided with a pin slot 22. The lock pin 12 can be inserted into the pin slot 22 when the corner seat 3 is pressed against the door frame and the ground to limit the push sleeve 16 so that the corner seat 3 will not fall off the door frame and the ground. The outer surface of the guide column 11 is provided with a pin slot 22. On the one hand, the pin slot 22 can cooperate with the lock pin 12 to limit the push sleeve 16. On the other hand, the lock pin 12 can slide in the pin slot 22 to adapt to the continued movement of the push sleeve 16. One end of the lock pin 12 is inserted into the inside of the pin slot 22.
[0033] The upper and lower ends of the carrier shell 15 are fixedly installed with a shell frame 31, and the ends of the shell frame 31 are fixed to the push sleeve 16. The shell frame 31 plays a role in fixing the carrier shell 15. The outer surface of the lock pin 12 is coaxially inlaid with a push cap 13, and the push cap 13 is fitted to the inner wall of the carrier shell 15. The push cap 13 plays a role in being pushed by the fixed pin spring 14. The outer side of the lock pin 12 is wrapped with a fixed pin spring 14, and one end of the fixed pin spring 14 is fixed to the push cap 13. The fixed pin spring 14 plays a role in pushing the lock pin 12 out. The other end of the fixed pin spring 14 is fixed to the inner side of the carrier shell 15. The other end of the lock pin 12 is fixedly installed with a pull ring 17, and the pull ring 17 plays a role in facilitating the pulling of the lock pin 12.
[0034] The adjusting member includes a concave frame 21 which is fitted on the end of the upper sub-frame 2, the upper end of the concave frame 21 is fixed to the upper corner seat 3, and the concave frame 21 plays a role in supporting the upper corner seat 3, and the internal front and rear end surfaces of the concave frame 21 are extended with sliding edges 19, and the upper front and rear end surfaces of the upper sub-frame 2 are provided with grooves 20, and the sliding edges 19 and the grooves 20 play a role in guiding the concave frame 21, and the sliding edges 19 are slidably installed in the interior of the groove 20, and the upper end of the upper sub-frame 2 is penetrated and tightened with a threaded column 18, and the upper end of the threaded column 18 is rotatably connected to the internal top surface of the concave frame 21, and the threaded column 18 can drive the concave frame 21 to move, and then drive the upper corner seat 3 to move, so as to adjust the distance between the two corner seats 3, so as to adapt to the installation of door frames of different heights.
[0035] When in use, the main frame 1 is placed in the door frame, and the push cap 32 is pressed. At this time, the push sleeve 16 moves to drive the push frame 25 to move, and the sub-frame 2 in the main frame 1 is pushed out, so that the corner seats 3 on the two sub-frames 2 can be respectively pressed against the top surface of the door frame and the ground. At this time, the lock pin 12 is pushed out by the action of the fixed pin spring 14 and inserted into the pin slide groove 22 on the guide column 11 to fix the push sleeve 16, and then fix the corner seat 3 pressed against the top surface of the door frame and the ground. In this way, the device body 7 is installed next to the ward door and can be used afterwards. At the same time, the pedal 10 can be stepped on to drive the hexagonal pull rod 9 to slide down in the rod sleeve 23. This in turn drives the equipment body 7 at the end of the carrier 6 to move downward, so that the height of the equipment body 7 can be adjusted to accommodate medical staff of different heights for data collection, and when the equipment body 7 is driven downward by stepping on it, the push rail 29 will move downward synchronously, allowing the top wheel 28 to roll on the inclined surface at the lower end of the push rail 29 to drive the push sleeve 16 to move sideways. At this time, the locking pin 12 slides in the pin slide groove 22, allowing the push sleeve 16 to move normally, so that the corner seat 3 can be pushed again through the push sleeve 16. At this time, the soft rubber pad 4 is deformed to adapt to the further movement of the corner seat 3, thereby increasing the tightening force of the corner seat 3, thereby improving the firmness and ensuring that no displacement occurs during stepping.
[0036] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions only describe the principles of the present invention. The present invention may be subject to various changes and improvements without departing from the spirit and scope of the present invention. These changes and improvements fall within the scope of the present invention. The scope of protection claimed by the present invention is defined by the attached claims and their equivalents.
Claims
1. An RFID array data acquisition device for use in the medical industry, comprising a device body (7), characterized in that: A mounting piece is provided on the side of the equipment body (7), a rod sleeve (23) is connected to the middle of the mounting piece, a hexagonal pull rod (9) is elastically installed inside the rod sleeve (23), a pedal (10) is fixedly installed at the lower end of the hexagonal pull rod (9), a connecting block (5) is fixedly installed at the upper end of the hexagonal pull rod (9), a carrier (6) is fixedly installed at the front end of the connecting block (5), and the equipment body (7) is fixedly installed at the end of the carrier (6); The mounting member comprises a main frame (1) arranged on the side of the equipment body (7), the side of the rod sleeve (23) is fixed to the main frame (1), sub-frames (2) are slidably mounted on both ends of the main frame (1), an adjustment member is arranged at the end of the upper sub-frame (2), and the lower end of the lower sub-frame (2) and the end of the adjustment member are connected to an angle seat (3), the two angle seats (3) are symmetrically arranged, and soft rubber pads (4) are fixedly mounted on the opposite sides of the two angle seats (3); A notch (34) is provided in the middle of the main frame (1), and opposite ends of the two sub-frames (2) extend out from the notch (34). A guide column (11) is fixedly mounted in the middle of the side of the main frame (1), and a push sleeve (16) is slidably mounted on the outer surface of the guide column (11). The upper and lower ends of the push sleeve (16) are connected to push frames (25), and the two push frames (25) are respectively connected to the two sub-frames (2); A No. 1 connector (26) is extended from the opposite ends of the two sub-frames (2), one end of the push frame (25) is rotatably connected to the No. 1 connector (26), a No. 2 connector (30) is extended from the upper and lower ends of the push sleeve (16), the other end of the push frame (25) is rotatably connected to the No. 2 connector (30), a press cap (32) is connected to the side of the push sleeve (16), a wheel frame (27) is fixedly installed at the front end of the push sleeve (16), a top wheel (28) is connected to the end of the wheel frame (27), a push rail (29) is fixedly installed on the side of the carrier (6), the lower end edge of the push rail (29) is arranged in an inclined surface, and the top wheel (28) fits on the inclined surface of the push rail (29).
2. The RFID array data acquisition device used in the medical industry according to claim 1, characterized in that: A return spring (8) is wound around the outer side of the hexagonal pull rod (9), the lower end of the return spring (8) is fixed to the upper end of the rod sleeve (23), the upper end of the return spring (8) is fixed to the lower end of the connecting block (5), and the outer surface of the hexagonal pull rod (9) is inlaid with a rod cap (24), and the rod cap (24) is fitted to the lower end of the rod sleeve (23).
3. The RFID array data acquisition device used in the medical industry according to claim 1, characterized in that: A plurality of connecting columns (33) are fixedly installed in a circular array at the side edge of the push cap (32), the end of the connecting column (33) is fixed to the push sleeve (16), the rear end of the push sleeve (16) is connected to the carrier shell (15), a locking pin (12) is coaxially installed inside the carrier shell (15), the two ends of the locking pin (12) pass through the two ends of the carrier shell (15), the locking pin (12) and the carrier shell (15) are slidably matched, one end of the locking pin (12) slides through the outer surface of the push sleeve (16), the outer surface of the guide column (11) is provided with a pin slide groove (22), and one end of the locking pin (12) is inserted into the pin slide groove (22).
4. The RFID array data acquisition device used in the medical industry according to claim 3, characterized in that: The upper and lower ends of the carrier shell (15) are fixedly mounted with a shell frame (31), the end of the shell frame (31) is fixed to the push sleeve (16), the outer surface of the lock pin (12) is coaxially inlaid with a push cap (13), the push cap (13) is fitted to the inner wall of the carrier shell (15), the outer side of the lock pin (12) is wound with a pin fixing spring (14), one end of the pin fixing spring (14) is fixed to the push cap (13), the other end of the pin fixing spring (14) is fixed to the inner side surface of the carrier shell (15), and the other end of the lock pin (12) is fixedly mounted with a pull ring (17).
5. The RFID array data acquisition device used in the medical industry according to claim 1, characterized in that: The adjusting member comprises a concave frame (21) which is fitted on the end of the upper sub-frame (2); the upper end of the concave frame (21) is fixed to the upper corner seat (3); the front and rear end surfaces of the inner part of the concave frame (21) are both extended with sliding edges (19); the upper parts of the front and rear end surfaces of the upper sub-frame (2) are both provided with grooves (20); the sliding edges (19) are slidably mounted inside the grooves (20); a threaded column (18) is screwed through the upper end of the upper sub-frame (2); and the upper end of the threaded column (18) is rotatably connected to the inner top surface of the concave frame (21).
Citation Information
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