Automatic operating room shoe distributing machine
By combining automated equipment with biometric identification and RFID technology, the problems of low efficiency and cross-infection in the distribution of surgical shoes have been solved, achieving efficient, safe, and accurate automated distribution and management of surgical shoes.
Patent Information
- Application Number
- CN202422846362.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-21
AI Technical Summary
The current technology for distributing surgical shoes is inefficient, prone to confusion and cross-infection risks, and the self-service shoe collection method makes it difficult to achieve accurate recording and management.
The system employs automated equipment combined with biometric identification and RFID technology to achieve multi-factor authentication. It also controls the automatic dispensing and retrieval of surgical shoes through electric push rods and magnetic locks, supports data exchange in multiple communication modes, and ensures real-time connection between the equipment and the management system.
This improved the efficiency and accuracy of surgical shoe distribution, reduced the risk of cross-infection, enhanced the transparency and convenience of management, and reduced human error.
Smart Images

Figure CN223526877U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to medical equipment technical field, especially a kind of automatic operating room shoe dispenser. BACKGROUND
[0002] Operating room shoes have the risk of direct or indirect cross infection during operation, and their borrowing process needs to be effectively traced, including who borrowed which pair of shoes at what time, all of which need to be accurately recorded. It is very inconvenient to use traditional manual distribution records, and it is difficult to count. At the same time, the distribution of operating shoes needs special personnel, which wastes manpower and is inefficient. Using the self-service shoe taking method, there are often mistakes in taking shoes. Even if RFID radio frequency identification is added, it is difficult for everyone to strictly comply with it, and the problem cannot be effectively solved.
[0003] Therefore, the applicant proposes an automatic operating room shoe dispenser.
[0004] The above content is only used to assist in understanding the technical scheme of the utility model, and does not mean that the above content is prior art. INVENTION CONTENTS
[0005] The utility model proposes an automatic operating room shoe dispenser, aiming to solve the problem of frequent mistakes in taking shoes using the self-service shoe taking method in the prior art.
[0006] To achieve the above purpose, the utility model proposes an automatic operating room shoe dispenser, which comprises a controller connected with a display screen for displaying operation information. The controller is connected with three kinds of personnel identity recognition devices, namely face recognition, palm vein recognition and induction card recognition, for realizing multiple verification of user identity. The controller is also connected with a long-distance radio frequency identification device, wherein the long-distance radio frequency identification device is connected with a long-distance radio frequency identification antenna, which can remotely identify the RFID electronic tag embedded in the operating shoes.
[0007] In one embodiment, the controller is connected with a full-featured communication module, wherein the full-featured communication module has TCP / IP, WIFI and G three communication modes, realizing data communication between the controller and the management terminal.
[0008] In one embodiment, the controller is also connected with an IO port expansion board, realizing signal detection and action output, wherein the IO port expansion board is connected with a detection device for detecting whether there is a shoe in the shoe dispensing port.
[0009] In one of the embodiments, further comprising: a shoe outlet electric push rod for and a shoe pushing out electric push rod, the shoe outlet electric push rod is connected with the shoe outlet, for controlling the opening and closing of the shoe outlet; the shoe pushing out electric push rod pushes the shoe in the position corresponding to the shoe outlet of the shoe storage compartment, for realizing automatic shoe dispensing.
[0010] In one of the embodiments, further comprising: a large cabinet door magnetic force lock for and a large cabinet door magnet, the large cabinet door magnetic force lock and the large cabinet door magnet are used in cooperation, for controlling the opening and closing state of the large cabinet door, to ensure that only authorized personnel can access the inside of the shoe cabinet.
[0011] In one of the embodiments, at least one of the face recognition, palm vein recognition and induction card recognition is used as the main authentication method, and the other two are used as auxiliary authentication methods, for improving the accuracy and security of identity verification.
[0012] In one of the embodiments, the long-distance radio frequency identification device uses UHF frequency band for communication, with high transmission distance and stability; the RFID electronic tag is embedded in the surgical shoe, which is not easy to lose and damage.
[0013] In one of the embodiments, the full-featured communication module supports multiple network access methods, at least including wired network, wireless network and cellular network, for meeting the communication needs in different scenarios.
[0014] In one of the embodiments, the management terminal can be a computer or a mobile phone.
[0015] The beneficial effects of the technical scheme of the utility model lie in:
[0016] The automatic equipment quickly and accurately dispenses surgical shoes, reducing the time consumption of medical staff in the preparation stage, thereby improving the efficiency of the overall surgical process. At the same time, the disinfection module is used to completely disinfect each pair of surgical shoes to be dispensed, effectively reducing the possibility of cross infection in the hospital, and protecting the health and safety of patients and medical staff.
[0017] The identification module (such as biometric identification, RFID, etc.) is used to automatically match the personal surgical shoes, avoiding human errors or chaotic situations in traditional methods, and facilitating the tracking of use records, enhancing the transparency and convenience of management. At the same time, through the integrated communication module, data exchange with other information systems is realized, supporting the real-time viewing of device status, inventory level and other information by the background management personnel, and the maintenance plan can be adjusted according to the actual situation, to ensure the long-term stable operation of the machine. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a structural block diagram of the automatic operating room shoe dispenser.
[0019] The implementation, functional features and advantages of the utility model will be further described in combination with embodiments with reference to the drawings. DETAILED DESCRIPTION
[0020] The schemes in the embodiments of the utility model will be clearly and completely described in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only some of the embodiments in the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0021] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the utility model are only used to explain the relative positional relationship, movement condition, etc. between components in a certain specific posture (as shown in the drawings), and if the specific posture changes, the directional indications also change accordingly.
[0022] It should also be noted that when an element is referred to as being "fixed to" or "set on" another element, it can be directly on the other element or a centering element can be present at the same time. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or a centering element can be present at the same time.
[0023] In addition, if the description of "first", "second", etc. in the utility model is only used for description purpose (such as for distinguishing the same or similar elements), and cannot be understood as indicating or implying the relative importance or implicitly including at least one feature. In addition, the technical schemes of each embodiment can be used in combination with each other, but it must be used as a basis for the implementation by those skilled in the art, and when the combination of technical schemes appears to be contradictory or unachievable, it should be considered that the combination of technical schemes does not exist, and is not within the protection scope required by the utility model.
[0024] Referring to Figure 1 The utility model proposes a kind of automatic operating room shoe sending machine, including controller 1, the controller is connected with display screen 2, for showing operating information;The controller 1 is connected with three kinds of personnel identity recognition equipment, it is face recognition 3, palm vein identification 4 and induction card identification 5 respectively, for realizing multiple authentication to user identity;The controller 1 is also connected with remote distance radio frequency identification equipment 6, wherein, the remote distance radio frequency identification equipment 6 is connected with remote distance radio frequency identification antenna 7, can remotely identify embedding in surgical shoe RFID electronic tag 8.
[0025] In the scheme, the controller 1 is the core control unit of the whole automatic operating room shoe dispenser, responsible for coordinating the work of each module. The display screen 2 is connected with the controller 1, used for real-time display of operation information, facilitating users to understand the current system state and operation prompt. The combination of three identity recognition modes of face recognition 3, palm vein recognition 4 and induction card recognition 5 provides a high-security identity verification mechanism, ensuring that only authorized users can use the device. The long-distance radio frequency identification device 6 can read the RFID electronic tag 8 embedded in the operating shoe through the long-distance radio frequency identification antenna 7 connected thereto, without direct contact, thereby realizing fast identification and tracking of the operating shoe.
[0026] In one embodiment, the controller 1 is connected with a full-featured communication module 19, wherein the full-featured communication module has three communication modes of TCP / IP, WIFI and 4G, realizing data communication of the controller with the management terminal 20.
[0027] Further, the controller 1 is also connected with an IO port expansion board 9, realizing signal detection and action output, wherein the IO port expansion board is connected with a detection device 14 for detecting whether there is a shoe in the shoe dispensing port.
[0028] In the scheme, by connecting the full-featured communication module 19 and supporting three communication modes of TCP / IP, WIFI and 4G, efficient data communication with the management terminal 20 is realized, and the controller 1 is also connected with the IO port expansion board 9 for realizing signal detection and action output. The IO port expansion board 9 is connected with the detection device 14, which is specially used for detecting whether there is a shoe in the shoe dispensing port.
[0029] Specifically, the detection device 14 can monitor the state of each shoe dispensing port in real time, ensuring that the system can accurately judge and respond when the user requests to dispense the operating shoe. When it is detected that there is no shoe to dispense in a certain shoe dispensing port, the controller 1 can trigger the corresponding action output through the IO port expansion board 9, such as lighting the indicator light or sounding, reminding the user or the management personnel to timely supplement the operating shoe.
[0030] In one embodiment, it further includes a shoe dispensing port electric push rod 10 for a shoe pushing-out electric push rod 12, wherein the shoe dispensing port electric push rod is connected with the shoe dispensing port 11, used for controlling the opening and closing of the shoe dispensing port; the shoe pushing-out electric push rod 12 pushes the shoe 13 in the position of the shoe dispensing port corresponding to the shoe storage compartment, used for realizing automatic dispensing of the operating shoe.
[0031] Further, it further includes a large cabinet door magnetic lock 15 for a large cabinet door magnet 16, wherein the large cabinet door magnetic lock 15 and the large cabinet door magnet 16 are used in cooperation, used for controlling the opening and closing state of the large cabinet door, ensuring that only authorized personnel can access the inside of the shoe cabinet.
[0032] In this scheme, other actuators such as shoe outlet electric push rod 10 and shoe push-out electric push rod 12 are connected through IO port expansion board 9, which act according to the instructions of controller 1 to realize the automatic distribution and recovery of surgical shoes. At the same time, the large cabinet door magnetic force lock 15 and the large cabinet door magnet 16 can also be connected to the IO port expansion board 9, and the controller 1 controls its on-off state to manage the access permission of the entire device.
[0033] In one embodiment, at least one of the face recognition 3, palm vein recognition 4 and induction card recognition 5 is used as the main authentication method, and the other two are used as auxiliary authentication methods to improve the accuracy and security of identity verification.
[0034] In one embodiment, the long-distance radio frequency identification device 6 uses UHF frequency band for communication, which has high transmission distance and stability; the RFID electronic tag 8 is embedded in the surgical shoe, which is not easy to lose and damage.
[0035] In one embodiment, the full-featured communication module supports multiple network access methods, including wired network, wireless network and cellular network, to meet the communication needs in different scenarios.
[0036] In one embodiment, the management terminal 20 can be a computer, a mobile phone or other smart devices.
[0037] Working principle:
[0038] The cleaning personnel identify the individual identity through face, palm vein or induction card, open the door of the shoe machine, and then put the complete clean shoes into each compartment of the shoe storage group, one pair of shoes in each compartment, and fill all positions of the shoe machine. The shoe storage group is driven by the electric lifting device to the lowest end, ensuring that the uppermost shoe distribution port is aligned with the shoe outlet, and preparing to start shoe distribution. After the cabinet door magnet detects that the door is closed, the long-distance radio frequency identification controller drives the antenna to count the shoes in the shoe machine and record the number and code of the current shoes in the shoe machine.
[0039] In the management terminal, the size of the shoes corresponding to the medical staff is registered in advance, when the medical staff takes the shoes, the personal identity is recognized through face, palm vein or induction card, the corresponding position is automatically matched, the shoe outlet electric push rod is driven, the shoe outlet door is opened, the shoe outlet electric push rod behind the shoe outlet is worked, the shoes are pushed out by one third, the medical staff is convenient to take the shoes, after the medical staff takes away the shoes, after the detection device detects that there is no shoe in the shoe outlet, the controller is sent a command through the IO port expansion board, the shoe outlet electric push rod is driven, the shoe outlet is closed, the shoe outlet electric push rod is retracted, and the shoe storage compartment group is driven to ascend one compartment by the electric lifting device, and the next person takes the shoes, if the detection device detects that there is no shoe in the compartment, the electric lifting device continues to drive the shoe storage compartment group to ascend one compartment, until it is ensured that there is a shoe behind the shoe outlet. At the same time, the remote radio frequency identification controller drives the antenna to count the shoes in the shoe issuing machine, and compares with the last time after the shoes are issued, the less shoes are automatically bound to the corresponding medical staff taking the shoes.
[0040] For the above, only part or preferred embodiments of the utility model, whether it is a word or a drawing, cannot limit the scope of protection of the utility model, any equivalent structural transformation made by the utility model specification and drawing contents, or direct / indirect application in other related technical fields under the concept of the whole utility model is included in the scope of protection of the utility model.
Claims
1. An automatic operating room shoe dispenser, characterized by, Including the controller (1), the controller is connected with display screen (2), is used to show operation information, the controller (1) is connected with three kinds of personnel identity recognition equipment, is face recognition (3), palm static vein recognition (4) and induction card recognition (5) respectively, is used to realize the multiple authentication to user identity, the controller (1) is still connected long distance radio frequency identification equipment (6), wherein, long distance radio frequency identification equipment (6) is connected long distance radio frequency identification antenna (7), can remote identification embedding in the RFID electronic tag (8) of surgical shoe.
2. The automatic operating room shoe machine according to claim 1, characterized in that, The controller (1) is connected with full-featured communication module (19), wherein the full-featured communication module (19) has TCP / IP, WIFI, 4G three communication modes, realizes the data communication of controller and management terminal (20).
3. The automated surgical room shoe machine of claim 1, wherein, The controller (1) is still connected IO port expansion board (9), realizes signal detection and action output, wherein, the IO port expansion board is connected with the detection device (14) of whether the shoe is in the shoe outlet.
4. The automatic operating room shoe machine according to claim 3, characterized in that, Also include: Shoe outlet electric push rod (10) is used for and shoe push out electric push rod (12), the shoe outlet electric push rod is connected with shoe outlet (11), is used to control the opening and closing of shoe outlet, the shoe push out electric push rod (12) pushes the shoe (13) of shoe storage grid corresponding shoe outlet position, is used to realize automatic delivery surgical shoe.
5. The automatic operating room shoe machine according to claim 4, characterized in that, Also include: Big cabinet door magnetic force lock (15) is used for and big cabinet door magnet (16), the big cabinet door magnetic force lock (15) and big cabinet door magnet (16) are used in cooperation, are used to control the switch state of big cabinet door, ensure that only authorized personnel can access shoe cabinet interior.
6. The automated surgical room shoe machine of claim 1, wherein, At least one of the face recognition (3), palm static vein recognition (4) and induction card recognition (5) is used as the main authentication mode, and the remaining two are used as auxiliary authentication mode, to improve the accuracy and security of identity verification.
7. The automated surgical room shoe machine of claim 1, wherein, The long distance radio frequency identification equipment (6) uses UHF frequency band to communicate, has higher transmission distance and stability, the RFID electronic tag (8) is embedded in surgical shoe, is not easy to lose and damage.
8. The automatic operating room shoe machine according to claim 2, wherein, The full-featured communication module (19) supports multiple network access modes, at least including wired network, wireless network and cellular network, to meet the communication needs in different scenarios.
9. The automated surgical room shoe machine of claim 1, wherein, Management terminal (20) is computer, mobile phone.