Portable life safety monitoring box

By designing a portable life safety monitoring box, the problem of carrying and transporting outdoor emergency medical testing equipment has been solved, enabling stable transportation and continuous monitoring of the equipment, ensuring the effectiveness of emergency treatment and patient preparation before arrival at medical institutions.

CN224112777UActive Publication Date: 2026-04-14SHENZHEN NOVOCARE MEDICAL DEVICES CO INC
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

In existing technologies, outdoor emergency medical testing equipment is scattered and difficult to carry, leading to confusion during transit, potential equipment malfunctions, and prolonged treatment time.

Method used

A portable life safety monitoring box was designed, which adopts a box-type portable shell and has multiple safety monitoring terminals, a charging system and wireless detection devices built in. It is fixed with silicone rubber bands to ensure stable transportation of the equipment, and provides waterproof sealing and charging interface to ensure that the equipment is not damaged by mess or power depletion.

Benefits of technology

It enables stable transportation and continuous monitoring of equipment in emergency situations, reduces the risk of equipment chaos and power depletion, and ensures the advance planning of treatment plans en route and preparation for patients before they arrive at medical facilities.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a portable life safety monitoring box. The portable life safety monitoring box is characterized in that the portable life safety monitoring box comprises a box-type portable housing which comprises an upper housing and a lower housing; the plurality of safety monitoring terminals are uniformly clamped in the corresponding number of terminal mounting grooves in the upper shell; the power supply board card is detachably and fixedly arranged on a first part of the front side edge, opposite to the back side edge, of the bottom layer of the concave part of the lower shell; the charging board card is detachably and fixedly arranged on a second part which is arranged on the bottom layer of the concave part of the lower shell, is parallel to the first part and is closer to the edge of the back surface, and is connected with the power supply board card; the plurality of finger clip Bluetooth blood oxygen recorders are clamped in the corresponding number of blood oxygen recorder charging card seats; the wireless single-conductor dynamic electrocardiogram recording clothes collection boxes are clamped in the corresponding number of wireless single-conductor dynamic electrocardiogram recording clothes collection box charging clamping seats; and the wireless cuff sphygmomanometers are clamped in the corresponding number of wireless cuff sphygmomanometer clamping seats and are charged through charging heads arranged on the side faces of the wireless cuff sphygmomanometers.
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Description

Technical Field

[0001] This disclosure relates to a portable life safety monitoring box, and more particularly to a portable life safety monitoring box that can simultaneously monitor multiple physiological parameters outdoors, away from hospitals. Background Technology

[0002] With the increasingly fast pace of modern life, people frequently engage in outdoor activities. These activities often come with the risk of injury. Medical institutions, upon receiving critically injured patients, need to conduct various physiological tests before providing a targeted treatment plan. This can prolong the time required to begin treatment, representing a significant waste of crucial time for critically ill patients and potentially delaying optimal intervention.

[0003] Therefore, wilderness rescuers typically carry a lot of testing equipment for on-the-spot testing and to obtain various parameter data. This shortens the rescue time to some extent, but it also presents many inconveniences. For example, the testing equipment is scattered, difficult to carry and organize, and in the already chaotic situation of an outdoor emergency, physiological testing becomes even more disorganized. In addition, the large movements during the journey may cause the equipment to collide with each other, leading to equipment malfunction.

[0004] Therefore, how to enable medical personnel in medical treatment institutions to make full use of the time spent transporting patients and to shorten the time to start treatment in a simple and effective way is a desired outcome for medical institutions. Summary of the Invention

[0005] Therefore, there is a desire for a device that can monitor the physiological indicators of injured or critically ill individuals in real time during transport to the hospital. This device would allow for the reliable and convenient transmission of these physiological parameters to the receiving medical staff at the receiving facility, enabling healthcare professionals to develop treatment plans and prepare equipment before the patient's arrival, thus shortening the patient's waiting time at the medical institution. To address the aforementioned problems in the prior art, this disclosure proposes a portable life safety monitoring box, characterized by comprising: a box-type portable shell, including an upper shell and a lower shell, connected to each other by hinges on their corresponding rear edges, wherein when the hinges are rotated to a predetermined position, the recesses of the upper shell and the lower shell engage to form a closed receiving space; multiple safety monitoring terminals, evenly mounted in corresponding number of terminal mounting slots in the upper shell, and charged by charging heads arranged on the sides of each safety monitoring terminal; a power board, detachably fixed to a first portion of the bottom layer of the recess of the lower shell opposite to the rear edge; a charging board, detachably fixed to a second portion of the bottom layer of the recess of the lower shell, parallel to the first portion and closer to the rear edge, connected to the power board, receiving power from the power board to charge the device; and multiple finger clips. A Bluetooth pulse oximeter is fitted into a corresponding number of pulse oximeter charging slots, which are arranged and fixedly installed on the first part of the upper layer of the recessed part of the lower housing, near the back edge; multiple wireless single-lead dynamic ECG recording garment collection boxes are fitted into a corresponding number of wireless single-lead dynamic ECG recording garment collection box charging slots, which are arranged and fixedly installed on the second part of the lower housing, closer to the front edge opposite the back edge, on the bottom layer of the recessed part of the lower housing, with the upper second part adjacent to the upper first part; and multiple wireless cuff blood pressure monitors are fitted into a corresponding number of wireless cuff blood pressure monitor slots and charged via charging heads arranged on their respective sides, with the wireless cuff blood pressure monitor slots fixedly installed on the third part of the upper layer of the recessed part of the lower housing, with the upper third part adjacent to the upper second part.

[0006] According to the portable life safety monitoring box disclosed herein, each of the safety monitoring terminals is characterized by having a pair of screws on both sides, and the safety monitoring terminal is pressed into its terminal mounting slot by the tension elasticity of silicone rubber bands detachably fitted on the pair of screws.

[0007] According to the portable life safety monitoring box disclosed herein, the wireless single-lead dynamic electrocardiogram recording garment collection box, the finger clip Bluetooth pulse oximeter, or the wireless cuff blood pressure monitor each have a pair of screws on both sides, and the tension elasticity of the silicone rubber bands detachably fitted on the pair of screws allows the wireless single-lead dynamic electrocardiogram recording garment collection box, the finger clip Bluetooth pulse oximeter, or the wireless cuff blood pressure monitor to be pressed tightly in their respective corresponding slots.

[0008] According to the portable life safety monitoring box disclosed herein, the upper shell and the lower shell are provided with a pair of through holes at the corresponding edges of the mounting hinges, so that the charging cable connected to the charging head of the safety monitoring terminal enters the corresponding through hole in the lower shell through the through hole on the upper shell and extends to the bottom layer to be electrically connected to the charging board.

[0009] According to the portable life safety monitoring box disclosed herein, it is characterized by further including a plurality of body temperature recorders, which are installed in a corresponding number of body temperature recorder holders. The body temperature recorder holders are arranged and fixedly installed in the fourth part of the upper layer of the recess of the lower shell. The fourth part of the upper layer is located between the second part and the third part of the upper layer.

[0010] According to the portable life safety monitoring box disclosed herein, it is characterized by further comprising at least one cooling fan, which is fixedly installed in the fourth part of the bottom layer of the recessed portion of the lower housing, and is activated synchronously when the power board and the charging board are charging, for dissipating heat from the power board and the charging board, which are both located at the bottom layer, during charging.

[0011] According to the portable life safety monitoring box disclosed herein, the air inlet of the cooling fan is arranged to face the opening edge of the recessed portion of the lower housing, and the air inlet is fixed with a dustproof net by a screw provided on its edge.

[0012] The portable life safety monitoring box according to this disclosure is characterized by further including a power socket, arranged between two wireless cuff blood pressure monitors in the third part of the upper layer of the recess of the lower housing, for connecting to an external power source so that when the power plug is inserted, power is supplied to the power board through a wire connected to the power socket.

[0013] The portable life safety monitoring box according to this disclosure is characterized by further including a hydraulic support rod, one end of which is connected to the first side edge of the upper shell, and the other end of which is connected to the first side edge of the lower shell corresponding to the first side edge of the upper shell.

[0014] According to the portable life safety monitoring box disclosed herein, the upper shell and the lower shell each have an annular sealing groove on their corresponding opening edge end faces to accommodate an annular waterproof strip, so that when a pair of movable latches fixedly installed at corresponding positions on the outer sides of the corresponding front edges of the upper shell and the lower shell are engaged, the enclosed accommodating space forms a waterproof sealed chamber.

[0015] By employing the portable life safety monitoring box disclosed herein, emergency medical personnel can reliably transport the equipment required for life monitoring without causing the devices to become disorganized. This prevents emergency medical personnel from being distracted by equipment scattering, allowing them to remain focused and organized even in urgent situations. More importantly, each monitoring device is conveniently provided with a charging port or charger in a fixed location within the portable life safety monitoring box, ensuring that the devices never run out of power and guaranteeing continuous life safety monitoring. Furthermore, the entire portable life safety monitoring box remains hygienic and sealed, allowing patients to receive hygienic monitoring services even in harsh environments.

[0016] Other advantages, objectives and features of this disclosure will become apparent in part from the description which follows, and in part from those skilled in the art through study and practice of the invention. Attached Figure Description

[0017] The accompanying drawings, which are incorporated in and form a part of this specification, illustrate embodiments consistent with this disclosure and, together with the description, serve to explain the principles of this disclosure.

[0018] Figure 1 The diagram shown is a side view of the portable life safety monitoring box according to this disclosure in the open state.

[0019] Figure 2 The diagram shown is a schematic of the portable life safety monitoring box according to this disclosure in the closed state.

[0020] Figure 3 The diagram shown is a front view of the portable life safety monitoring box according to this disclosure in the open state.

[0021] Figure 4 The image shown is a bottom-view perspective view of the portable life safety monitoring box according to this disclosure in the open state.

[0022] Figure 5 The image shown is a top perspective view of the portable life safety monitoring box according to this disclosure in the open state.

[0023] Figure 6Another top perspective view of the portable life safety monitoring box according to this disclosure in the open state.

[0024] Figure 7 The image shown is a partial top-view perspective view of the lower left corner of the lower casing of the portable life safety monitoring box in the open state, according to this disclosure.

[0025] Figure 8 The diagram shown is a schematic representation of the arrangement of silicone rubber bands in a portable life safety monitoring box according to this disclosure.

[0026] Figure 9 The diagram shown is a schematic of the portable life safety monitoring box according to this disclosure being filled with testing equipment, with silicone rubber bands pressing against the testing equipment. Detailed Implementation

[0027] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numerals in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this disclosure. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this disclosure as detailed in the appended claims.

[0028] The terminology used in this disclosure is for the purpose of describing particular embodiments only and is not intended to be limiting of the disclosure. The singular forms “a,” “the,” and “the” as used in this disclosure and the appended claims are also intended to include the plural forms unless the context clearly indicates otherwise. It should also be understood that the term “and / or” as used herein refers to and includes any and all possible combinations of one or more of the associated listed items.

[0029] It should be understood that although the terms first, second, third, etc., may be used in this disclosure to describe various information, such as Part One and Part Two, the information should not be limited to these terms, and Part One may be referred to as Part Two, and vice versa. These terms are used only to distinguish information of the same type from one another. Depending on the context, the word “if” as used herein may be interpreted as “when”, “when”, or “in response to determination”.

[0030] To enable those skilled in the art to better understand this disclosure, the disclosure will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0031] Figure 1 The diagram shown is a side view of the portable life safety monitoring box according to this disclosure in the open state. Figure 1As shown, the portable life safety monitoring box 100 according to this disclosure forms a box-shaped portable shell, including an upper shell 110 and a lower shell 120. The upper shell 110 and the lower shell 120 are connected to each other by hinges on their corresponding rear edges, and when the hinge 130 is rotated to a predetermined position, the recesses 111 of the upper shell and the recesses 121 of the lower shell engage with each other to form a closed receiving space when a pair of movable latches 140 fixedly installed at corresponding positions on the outer sides of the corresponding front edges of the upper shell and the lower shell are engaged. Figure 2 The diagram shown is a schematic of the portable life safety monitoring box 100 in the closed state according to this disclosure.

[0032] Figure 3 The diagram shown is a front view of the portable life safety monitoring box according to this disclosure in the open state. Figure 3 As shown, a recess 111 is formed inside the upper housing 110 or upper cover, with six monitoring terminal mounting slots 112 evenly distributed (the number may be less than six or more depending on the size of the housing). A safety monitoring terminal 113 is fitted into each monitoring terminal mounting slot. A corresponding charging head 114 is arranged on one side of each safety monitoring terminal 113 for charging. One or two pairs of screws 115 are fixed to the upper cover on both the top and bottom (as shown in the diagram, in the vertical direction of the paper). A silicone rubber band 116 is detachably fitted onto each pair of screws 115, and the tension and elasticity of the silicone rubber band 116 further secures each safety monitoring terminal 113 within its monitoring terminal mounting slot 112.

[0033] like Figure 3 As shown, wire holes 117 and 127 are arranged in pairs at the corresponding edges of the mounting hinges of the upper housing 110 and the lower housing 120, so that the charging cable connected to the charging head 114 of the safety monitoring terminal 113 enters the corresponding wire hole 127 of the lower housing through the wire hole 117 on the upper housing, and extends to the bottom layer to be electrically connected to the charging board (explained below).

[0034] Figure 4 The image shown is a bottom-view perspective view of the portable life safety monitoring box according to this disclosure in the open position. Figure 4As shown, a power board 122 and a charging board 123 are arranged in sections on the bottom layer of the recess 121 of the lower housing 120. The power board 122 is detachably fixed to a first portion of the front edge of the bottom layer of the recess of the lower housing, opposite to the back edge. The charging board 123 is detachably fixed to a second portion of the bottom layer of the recess of the lower housing, parallel to the first portion and closer to the back edge, connected to the power board, and receives power from the power board to charge the device. In a third portion, closer to the back edge than the second portion of the bottom layer, a plurality of pulse oximeter charging slots 124 are also evenly arranged. Figure 4 The display shows six units arranged in a line, with three units grouped together on each side. Optionally, depending on the size of the enclosure, four or eight units can be arranged. A cooling fan 125 is located in the fourth section, closer to the front edge of the bottom layer. One cooling fan 125 can be placed on each side, or only one can be placed, leaving some space for additional testing equipment. The cooling fan 125 is activated simultaneously when the power board 122 and charging board 123 are charging. Its exhaust vent 1252 faces the power board 122 and charging board 123, providing cooling for these two bottom-layer units during charging. Its air inlet 1251 is located on the upper layer or above the recess 121 of the lower housing 120, near the front edge of the lower housing 120.

[0035] Figure 5 The image shown is a top perspective view of the portable life safety monitoring box according to this disclosure in the open position. Figure 5 As shown, no related testing equipment is installed in the recess 121 of the lower housing 120. Figure 5As shown, the pulse oximeter charging card holder 124 is fixedly installed in the first part of the recess 121 of the lower housing 120, located at the bottom layer near the back edge, and extends from the bottom layer to the upper surface. The upper and lower layers are separated by a partition. Similarly, the wireless single-lead dynamic ECG recording garment charging card holder 128 is fixedly installed in the second part of the recess 121 of the lower housing 120, closer to the front edge opposite the back edge, located above the charging board 123, and extends from the bottom layer to the upper surface. The air inlet 1251 of the cooling fan 125 is formed during the partition molding process, arranged to face the vertical inner surface of the front edge and at a predetermined distance, so that the cooling fan 125 draws in external cooling air to cool the charging board 123 and power board 122 in the bottom space. For air circulation, a certain number of vents are provided in some empty positions on the partition where no detection equipment is mounted, so that the cooling fan 125 draws in air and exhausts it, forming a circulation. The shape of the wireless cuff blood pressure monitor holder 131 is formed during the partition molding process. Its bottom surface is perpendicular to and above the surface of the air inlet 1251 of the cooling fan 125. When the wireless cuff blood pressure monitor 132 is inserted into the holder 131, the plane of the wireless cuff blood pressure monitor 132 is exactly perpendicular to the surface of the air inlet 1251, forming an air intake channel together with the vertical side of the partition at the cooling fan and the inner wall of the vertical side of the front edge of the housing. The charging cable of the charging head 133 for the wireless cuff blood pressure monitor 132 passes through the cable hole in the partition between the upper and lower layers and is left on one side of the wireless cuff blood pressure monitor 132 for convenient charging. An external power socket 134 is arranged between the two wireless cuff blood pressure monitors 132, and the external power structure is connected to the power board 122 at the bottom. Power is supplied to the power board 122 when the external power plug is inserted into the power socket 134. Specifically, when a 1.5 square millimeter / 250V / 10A / 90° right-angle AC power cord is connected to AC power socket 134, it can provide charging for 6 mobile phones, a finger clip Bluetooth pulse oximeter, a wireless single-lead dynamic ECG recording garment collection box, a body temperature recorder, and 2 wireless cuff blood pressure monitors.

[0036] Figure 6 Another top perspective view of the portable life safety monitoring box according to this disclosure in the open state. Figure 6 As shown, relevant testing equipment has been installed in the recess 121 of the lower housing 120. Figure 6As shown, multiple finger clip Bluetooth pulse oximeters 126 are mounted in corresponding numbers of pulse oximeter charging slots 124 extending from the bottom layer to the top surface. In the second part of the upper layer, multiple wireless single-lead dynamic ECG recording garment collection boxes 129 are mounted in wireless single-lead dynamic ECG recording garment collection box charging slots 128. The second part of the upper layer is adjacent to the first part of the upper layer. Two wireless cuff blood pressure monitors 132 are mounted in corresponding numbers of wireless cuff blood pressure monitor slots 131 and are charged via charging heads 133 arranged on their respective sides. The wireless cuff blood pressure monitor slots are fixedly installed in the third part of the upper layer of the recessed portion of the lower housing, and the third part of the upper layer is adjacent to the second part of the upper layer. The wireless single-lead dynamic ECG recording garment cassette 129, the finger clip Bluetooth pulse oximeter 126, and the wireless cuff blood pressure monitor 132 each have paired screws 135 on both sides. The elasticity of the silicone rubber bands 136 detachably fitted onto the paired screws 135 allows the wireless single-lead dynamic ECG recording garment cassette 129, the finger clip Bluetooth pulse oximeter 126, and the wireless cuff blood pressure monitor 132 to be pressed firmly into their respective corresponding slots. Figure 6 As shown, in the fourth section between the second and third sections of the upper layer, multiple temperature recorders 137 are also mounted in corresponding number of temperature recorder holders (not shown). Similarly, the temperature recorder holders are arranged and fixedly installed on the upper layer of the recess 121 of the lower housing 120. Figure 8 The diagram shown illustrates the arrangement of silicone rubber bands in a portable life safety monitoring kit according to this disclosure. Figure 8 different, Figure 9 The diagram shown is a schematic of the portable life safety monitoring box according to this disclosure, with the silicone rubber band pressing against the testing equipment when it is fully loaded. Figure 8 As shown, the aluminum alloy plate 118 can be removed and the silicone rubber band 116 or 136 replaced by turning the screw 115 or 135 counterclockwise. Although only the screw 115 or 135, the aluminum alloy plate 118, and the silicone rubber band 116 or 136 are shown, the silicone rubber bands 6 in other locations can be removed and replaced in the same way. Figure 2 , 8 As shown in Figure 9, the portable life safety monitoring box 100 can be made of PP material. The corresponding opening edge faces of the upper shell 110 and lower shell 120 each have annular sealing grooves to accommodate annular waterproof strips 119 and 139. When a pair of movable latches 140, fixedly installed at corresponding positions on the outer sides of the corresponding front edges of the upper and lower shells, are engaged, the enclosed accommodating space forms a waterproof sealed chamber. Thus, the movable latches 140 facilitate opening and closing the box, and the box achieves waterproof, dustproof, and drop-proof effects when closed.

[0037] Figure 7The image shown is a partial, enlarged top-view perspective view of the lower left corner of the lower casing of the portable life safety monitoring box in the open state, according to this disclosure. Figure 7 As shown, a dust filter 1253 is fixed to the air inlet 1251 of the cooling fan 125 by a screw 135 located on its edge. This allows the dust filter 1253 to be removed for cleaning. Similarly, the dust on the upper and lower casings can be quickly cleaned after all equipment has been removed.

[0038] In general, the Portable Life Safety Monitoring Box 100 consists of two main parts. The upper shell stores and charges six mobile phones, secured with silicone rubber bands on both sides to ensure the phone screens are not obstructed and real-time dynamic information can be observed. The lower shell stores and charges six finger-clip Bluetooth pulse oximeters, a wireless single-lead dynamic ECG recording garment, a body temperature recorder, and two wireless cuff blood pressure monitors, all secured with silicone rubber bands. The lower shell contains a fan for cooling, and the fan's dust filter is removable for cleaning. Dust can be quickly cleaned from both shells after all devices are removed. All rubber bands on both shells are removable and replaceable. The upper and lower shells are connected by a hydraulic support rod to prevent the upper shell from tipping forward, which would prevent the real-time monitoring of parameters from being obstructed during monitoring.

[0039] In general, the portable life safety monitoring box 100, as described above, consists of the following components: upper shell, Type-C connector charging cable, mobile phone or monitoring terminal, aluminum alloy plate, stainless steel hand-tightening screws, silicone rubber bands, hydraulic support rod, pulse oximeter charging socket, wireless single-lead dynamic ECG recording garment collection box charging socket, wireless cuff blood pressure monitor charging cable, AC power socket, cable threading hole between the upper and lower shells, lower shell, heat dissipation and dustproof mesh, waterproof adhesive strip, movable lock, finger clip Bluetooth pulse oximeter, wireless single-lead dynamic ECG recording garment collection box, body temperature recorder, wireless cuff blood pressure monitor, charging board, power board, cooling fan, fan dustproof mesh, and the box body. Some components can be added or removed depending on the size of the box. As shown in the figures, six finger clip Bluetooth pulse oximeter charging sockets, a wireless single-lead dynamic ECG recording garment collection box charging socket, two wireless cuff blood pressure monitor charging cables, and a 115-250V / 6A-50 / 60Hz AC power socket are installed on the lower shell. When all equipment is removed, dust can be cleaned from both the upper and lower shells. The charging board, power board, and cooling fan 24 are fixed inside the lower shell to prevent water and dust from affecting the electronic components and to provide heat dissipation for the power board. The upper and lower shells are connected by a 245mm / 80N hydraulic support rod 7, with an opening angle of 100°. The lower shell houses six finger-clip Bluetooth pulse oximeters, a wireless single-lead dynamic ECG recording garment collection box, a body temperature recorder, and a wireless cuff blood pressure monitor, all secured with silicone rubber bands.

[0040] As described above, the portable life safety monitoring kit is a device that comprehensively measures various vital signs of the human body outdoors or even in the wild, such as blood oxygen measurement, heart rate monitoring, blood pressure trend monitoring, electrocardiogram monitoring, body temperature monitoring, BMI monitoring, and body fat monitoring. The user's vital sign data can be automatically uploaded to a cloud server via WiFi through a dedicated mobile communication client and stored long-term, allowing attending physicians at appropriate medical institutions to obtain it in advance and formulate specialized treatment plans.

[0041] By employing the portable life safety monitoring box disclosed herein, emergency medical personnel can reliably transport the equipment required for life monitoring without causing the devices to become disorganized. This prevents emergency medical personnel from being distracted by equipment scattering, allowing them to remain focused and organized even in urgent situations. More importantly, each monitoring device is conveniently provided with a charging port or charger in a fixed location within the portable life safety monitoring box, ensuring that the devices never run out of power and guaranteeing continuous life safety monitoring. Furthermore, the entire portable life safety monitoring box remains hygienic and sealed, allowing patients to receive hygienic monitoring services even in harsh environments.

[0042] The basic principles of this disclosure have been described above with reference to specific embodiments. However, it should be noted that those skilled in the art will understand that all or any step or component of the methods and apparatus of this disclosure can be implemented in any computing device (including processors, storage media, etc.) or network of computing devices, in hardware, firmware, software or a combination thereof. This is something that those skilled in the art can achieve by using their basic programming skills after reading the description of this disclosure.

[0043] The specific embodiments described above do not constitute a limitation on the scope of protection of this disclosure. Those skilled in the art should understand that various modifications, combinations, sub-combinations, and substitutions can occur depending on design requirements and other factors. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this disclosure should be included within the scope of protection of this disclosure.

Claims

1. A portable life safety monitoring box, characterized in that... include: The box-type portable shell includes an upper shell and a lower shell, which are connected to each other by hinges on their corresponding rear edges. When the hinges are rotated to a predetermined position, the recesses of the upper shell and the lower shell engage with each other to form a closed storage space. Multiple safety monitoring terminals are evenly installed in the corresponding number of terminal mounting slots in the upper housing, and are charged by charging heads arranged on the side of each safety monitoring terminal. The power board is detachably fixed to the first part of the front edge opposite the back edge of the bottom layer of the recess in the lower housing; The charging board, a second part which is detachably fixedly arranged in the bottom layer of the recess of the lower housing and is parallel to the first part and closer to the back edge, is connected to the power board and receives power from the power board to charge the device. Multiple finger clip Bluetooth pulse oximeters are clipped into a corresponding number of pulse oximeter charging slots. The pulse oximeter charging slots are arranged and fixedly installed on the first part of the upper layer above the bottom layer of the recessed part of the lower housing, near the back edge. Multiple wireless single-lead dynamic ECG recording garment collection boxes are installed in a corresponding number of wireless single-lead dynamic ECG recording garment collection box charging card holders. The wireless single-lead dynamic ECG recording garment collection box charging card holders are arranged and fixedly installed in the second part of the bottom layer of the recessed part of the lower shell, which is closer to the front edge opposite to the back edge. The upper second part is adjacent to the upper first part. as well as Multiple wireless cuff blood pressure monitors are mounted in corresponding wireless cuff blood pressure monitor holders and charged via charging heads located on their respective sides. The wireless cuff blood pressure monitor holders are fixedly installed in the third part of the upper layer of the recessed portion of the lower housing, and the third part of the upper layer is adjacent to the second part of the upper layer.

2. The portable life safety monitoring box according to claim 1, characterized in that... Each of the safety monitoring terminals has a pair of screws on both sides. The safety monitoring terminal is pressed into its terminal mounting slot by the tension of the silicone rubber bands that are detachably fitted on the pair of screws.

3. The portable life safety monitoring box according to claim 1 or 2, characterized in that... The wireless single-lead dynamic ECG recording garment acquisition box, the finger clip Bluetooth pulse oximeter, or the wireless cuff blood pressure monitor each have a pair of screws on both sides. The tension elasticity of the silicone rubber bands detachably fitted on the pair of screws allows the wireless single-lead dynamic ECG recording garment acquisition box, the finger clip Bluetooth pulse oximeter, or the wireless cuff blood pressure monitor to be pressed into their respective corresponding slots.

4. The portable life safety monitoring box according to claim 3, characterized in that... The upper and lower housings have paired through holes at the corresponding edges of their mounting hinges, so that the charging cable connected to the charging head of the safety monitoring terminal can enter the corresponding through hole in the lower housing through the through hole in the upper housing and extend to the bottom layer to make electrical connection with the charging board.

5. The portable life safety monitoring box according to claim 4, characterized in that... It also includes multiple body temperature recorders, which are mounted in a corresponding number of body temperature recorder holders. The body temperature recorder holders are arranged and fixedly installed in the fourth part of the upper layer of the recessed part of the lower housing. The fourth part of the upper layer is located between the second part and the third part of the upper layer.

6. The portable life safety monitoring box according to claim 1, characterized in that... It also includes at least one cooling fan, which is fixedly installed in the fourth part of the bottom recess of the lower housing, and is activated synchronously when the power board and the charging board are charging, for dissipating heat from the power board and the charging board, which are located on the bottom layer, during charging.

7. The portable life safety monitoring box according to claim 6, characterized in that... The air inlet of the cooling fan is arranged with the opening edge facing the recessed part of the lower housing, and the air inlet is fixed with a dust filter by a screw provided on its edge.

8. The portable life safety monitoring box according to claim 1, characterized in that... It also includes a power socket, located between two wireless cuff blood pressure monitors in the third part of the upper layer of the recess in the lower housing, for connecting to an external power source so that power can be supplied to the power board via a wire connected to the power socket when the power plug is inserted.

9. The portable life safety monitoring box according to claim 1, characterized in that... It also includes a hydraulic support rod, one end of which is connected to the first side edge of the upper housing, and the other end of which is connected to the first side edge of the lower housing corresponding to the first side edge of the upper housing.

10. The portable life safety monitoring box according to claim 1, characterized in that... The upper and lower housings each have an annular sealing groove on their corresponding opening edge end faces to accommodate an annular waterproof strip. When a pair of movable latches fixedly installed at corresponding positions on the outer sides of the corresponding front edges of the upper and lower housings are engaged, the enclosed accommodating space forms a waterproof sealed chamber.