CN216855543U - Respirator assembly back plate with built-in communication assembly - Google Patents

Respirator assembly back plate with built-in communication assembly Download PDF

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Publication number
CN216855543U
CN216855543U CN202220555189.0U CN202220555189U CN216855543U CN 216855543 U CN216855543 U CN 216855543U CN 202220555189 U CN202220555189 U CN 202220555189U CN 216855543 U CN216855543 U CN 216855543U
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respirator
antenna
communication
control module
assembly
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CN202220555189.0U
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曲成龙
杨玉磊
袁贤松
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Hunan Longte Technology Co ltd
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Hunan Longte Technology Co ltd
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Abstract

The utility model discloses a respirator assembly back plate with a built-in communication assembly, which comprises a back plate body, wherein a bearing system and a respirator assembly are arranged on the back plate body; a communication assembly is also arranged on the backboard body and comprises a signal unit, a main control module, a power supply unit and an antenna; the antenna is assembled and fixed through the antenna support and is in communication connection with the main control module, the antenna support is arranged on one side or two sides of the backboard body, the antenna support is a retractable support, and the retractable mode is that the antenna support retracts from the outer side of the backboard body to the side of the backboard body. The utility model has good integration level, and improves the communication performance of the main control module by utilizing an external wire mode so as to improve the integration and integration of the backboard body, thereby being more convenient to carry and beneficial to realizing field operation.

Description

Respirator assembly back plate with built-in communication assembly
Technical Field
The utility model relates to the technical field of emergency rescue equipment, in particular to a respirator assembly back plate with a built-in communication assembly.
Background
A self-contained circulating breathing apparatus (self-contained breathing apparatus) is used as one of intelligent breathing apparatuses, belongs to safety protection equipment, is widely applied to scenes with emergency rescue possibility in fire fighting, chemical engineering, ships, petroleum, smelting, factories and mines, laboratories and the like, and generally comprises structural components such as a gas tank, a pressure reducer, a pipeline and the like.
Generally, when the self-contained positive pressure air respirator is used, the self-contained positive pressure air respirator is generally required to be assembled through a backpack assembly back plate, structural components such as a gas tank, a pressure reducer and a pipeline of the self-contained positive pressure air respirator are all installed on the assembly back plate, in addition, in some large-scale disaster sites, various operation modes are often inserted into the self-contained positive pressure air respirator, the same fireman often undertakes various operation modes such as reconnaissance, breaking down, saving people and extinguishing fire, besides the real-time acquisition of parameters of the respirator is required, the collection of the site environment state is often required, and if the self-contained positive pressure air respirator can effectively transmit multi-phase related data information such as pressure, temperature, audio and video collected by the front end of a single soldier to a background command center. Visual unified command can be realized in the background command center, and rescue and operation efficiency can be improved.
In order to achieve the above effects, the prior art has a precedent that a pressure sensing unit, a state sensing module, a bluetooth module, an alarm buzzer and the like are integrated on a back plate, but the integration mode only solves the problem that an individual soldier receives multi-sensing information in a wired or wireless mode, and the communication is easy to generate a lag or block condition under the condition without the assistance of a signal amplification device in a disaster site area due to complex environment and multiple interference factors, so that the process of how to transmit the multi-sensing information to a back-office command center in time cannot be well solved, the visual operation is not facilitated, the rescue effect and the rescue efficiency are influenced, and the life safety of rescuers can be greatly threatened.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the present invention is to provide a respirator assembly back plate with a built-in communication component to solve the above-mentioned drawbacks in the prior art.
The technical problem solved by the utility model is realized by adopting the following technical scheme:
a respirator assembly back plate with a built-in communication assembly comprises a back plate body, wherein a back bearing system and a respirator assembly fixedly assembled with a self-contained positive pressure air respirator are arranged on the back plate body; still be provided with the communication subassembly on the backplate plate body, the communication subassembly includes:
a signal unit for receiving external information;
the main control module is used for connecting the signal units to realize signal communication;
power supply unit for supplying power to main control module and
the antenna is in communication connection with the main control module and used for enhancing communication signals;
the antenna is assembled and fixed through the antenna support and is in communication connection with the main control module, the antenna support is arranged on one side or two sides of the backboard body, the antenna support is a retractable support, and the retractable mode is that the antenna support retracts from the outer side of the backboard body to the side of the backboard body.
As a further limitation, the backboard body is a hollow bracket so as to reduce the weight of the backboard body under the condition of ensuring the structural strength of the backboard body.
As a further definition, the respirator assembly includes a mount for securing a tank of the self-contained positive pressure air respirator and a tank adapter.
As a further limitation, the master control module is a mesh ad hoc network module with a fused wide band and a narrow band, and supports the simultaneous loading of two waveforms, namely a wide band and a narrow band.
As a further limitation, the signal unit is any combination of a pressure sensing unit, an equipment state module, a temperature sensor, a humidity sensor, a smoke sensor, an infrared thermal forming sensor, a toxic gas sensor, a camera and a sound pickup.
As a further limitation, the signal unit is disposed on the wearable device.
As a further limitation, the main control module is further provided with an expansion interface.
As a further limitation, the power supply unit is a detachable battery and is assembled and connected with the main control module through a clamping structure or a plug-in structure or a buckling structure.
By way of further limitation, the antenna stand is a folding stand.
By way of further limitation, the antenna stand is a telescoping stand.
Has the advantages that: the respirator assembly back plate with the built-in communication component has good integration level, integrates the main control module with the communication function with the assembly back plate, is matched with different sensors for use, can effectively know and master the environment of a disaster site,
the main control module supports loading broadband and narrowband waveforms simultaneously, and does not sacrifice the transmission distance of narrowband service while transmitting broadband service; when the broadband network power supply works normally, the narrowband module can receive the instruction to control the on-off of the broadband network power supply in the whole network, and the system power consumption is saved.
The main control module can integrate a broadband ad hoc network module, a narrowband voice networking talkback module, Beidou/GPS positioning, wireless hotspot access and video scheduling into a whole by arranging the extension interface, has the characteristics of large bandwidth, long communication distance, flexible networking, ready use when starting, long endurance time and the like, and can meet the requirements of various broadband and narrowband wireless ad hoc network communication.
Meanwhile, the antenna is arranged, so that the communication performance is improved, the problems that communication is easily interfered by field environment and the reliability is low under the condition of a conventional communication mode are solved, the antenna support can be protected by being contracted under the non-use state, the interference of the antenna to operation in the operation process is reduced, the service time of equipment can be fully ensured by matching with different power supply units, a complete set of information guarantee can be provided for the fields of emergency communication, individual soldier communication systems, emergency rescue and relief work, fire rescue, emergency guarantee, anti-terrorism maintenance, special operation and the like, and the application field is very wide.
Drawings
Fig. 1 is a schematic front view of a preferred embodiment of the present invention.
Fig. 2 is a schematic diagram of a backside structure according to a preferred embodiment of the utility model.
Wherein: 1. an antenna; 2. a gas tank; 3. fixing a clamp; 4. a fixed mount; 5. a hinge; 6. a wing plate; 7. an antenna mount; 8. a strap fixing hole; 9. a back plate body; 10. a gas tank connection; 11. a power supply unit; 12. buckling; 13. a main control module; 14. a control button; 15. an expansion interface; 16. a signal transmission bus; 17. a first antenna connection line; 18. a second antenna connection line.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the utility model easy to understand, the utility model is further explained below by combining the specific drawings.
Referring to fig. 1 and 2, in the present embodiment, the main structure of the respirator assembly backboard with a built-in communication component is a backboard plate 9, the backboard plate 9 is provided with shoulder straps as a backpack system, and in fig. 1 and 2, in order to better show the structure of the backboard plate 9, the corresponding shoulder straps are hidden.
Backplate plate body 9 is the fire control usage in this embodiment, and its dorsal part is used for assembling self-supporting formula malleation air respirator, and backplate plate body 9 is whole to be engineering plastics material integrated into one piece, and the shaping has the fretwork hole on backplate plate body 9's the plate body to be provided with the enhancement fin at the outline line position in fretwork hole, backplate plate body 9 passes through the fretwork hole and reduces backplate plate body 9 weight under the condition of guaranteeing backplate plate body 9 structural strength, and then reduces fire fighter's burden of bearing on the back. The upper and lower portions of the back plate body 9 are also provided with a bottom fixing portion and strap fixing holes for fixing shoulder straps, respectively.
The fixed clamp that is used for carrying out rigidity to the last gas pitcher 2 of self-contained malleation air respirator is provided with on backplate plate body 9 back upper portion, and the air cock of this gas pitcher 2 is down to be provided with in the air cock position with air cock assorted gas pitcher connect 10, gas pitcher connect 10 with gas pitcher 2 be assembled between/be connected in order to get gas from gas pitcher 2.
In the present invention, a widened wing plate 6 is disposed on one side or both sides of the back plate 9 to fix the position of the antenna 1 as a communication enhancing structure by the wing plate, that is, one or two antennas 1 may be provided, when one antenna 1 is provided, the widened wing plate 6 is disposed on one side of the back plate 9, and when two antennas 1 are provided, the widened wing plate 6 is disposed on both sides of the back plate 9. In this embodiment, the two antennas 1 are respectively disposed on two sides of the back plate 9 through the wing plates 6, and the arrangement manner is as follows:
antenna 1 sets up on antenna boom 7, and this antenna boom 7 sets up along antenna 1's length direction, includes three fixed clamp 3 on single antenna boom 7 and fixes it on antenna 1's length through fixed clamp 3, still is provided with a plurality of hinges 5 simultaneously on antenna boom 7's length direction, can open the antenna boom 7 of unilateral or both sides through hinge 5 to guarantee antenna 1's result of use.
The main control module 13 cooperating with the antenna 1 is pre-installed in the middle of the back plate body 9 and is a mesh ad-hoc network module with a wide band and a narrow band fused together, the main control module 13 is fixed in position and detached in a clamping mode, a detachable battery is further arranged on the upper portion of the main control module 13 and serves as a power supply unit 11, the power supply unit 11 is clamped in a pre-opened hole of the back plate body 9 through a clamping groove, then the clamping is achieved through resetting of a buckle 12, and after the clamping is achieved, the power supply unit is electrically connected with the main control module 13 through a contact pin and the main control module 13.
The main control module 13 comprises a main controller, a converter and a communication module, wherein the main controller is externally connected with a control button 14, an expansion interface 15, a signal transmission bus 16, a first antenna connecting wire 17 and a second antenna connecting wire 18, wherein the signal transmission bus 16 is in communication connection with a sensor, a camera and a pickup on the wearable equipment of the fire fighter, and the sensors arranged on the wearable equipment of the fire fighter are a combination of a pressure sensing unit, an equipment state module, a temperature sensor, a humidity sensor, a smoke sensor, an infrared thermal forming sensor and a toxic gas sensor, wherein the pressure sensing unit is used for receiving pressure value information in the gas tank 2 to ensure normal breathing and gas supply; the equipment state module is used for monitoring the working state of the portable equipment; the temperature sensor, the humidity sensor, the smoke sensor and the toxic gas sensor are used for monitoring environmental data; the infrared thermal forming sensor is used for detecting a living body under the condition of poor visual environment state; the camera is used for collecting visual angle information of the firefighter end; the sound pickup is used for collecting sound information of the fire fighter.
The related sensors, cameras and sound pick-up are converted by the converter in the main control module 13, and then the converted information content is broadcast and sent to the outside through the communication module. The first antenna connecting line 17 and the second antenna connecting line 18 are respectively connected to the two antennas 1 on two sides of the backboard body 9 to amplify the signal. The antenna 1 is opened by the hinge 5 in a use state, and is retracted toward the back plate body 9 side by the hinge 5 in a non-use state or a non-signal-enhanced state to reduce a space occupation.
In other embodiments, the antenna holder 7 may be replaced with a telescopic structure to be contracted from the outside of the back plate body toward the side of the back plate body or opened from the side of the back plate body toward the outside of the back plate body during the telescopic process.
The foregoing shows and describes the general principles, essential features, and advantages of the utility model. It will be understood by those skilled in the art that these examples are for illustrative purposes only and are not intended to limit the scope of the present invention. Further, it should also be understood that various alterations, modifications and/or variations can be made to the present invention by those skilled in the art after reading the technical content of the present invention, and all such equivalents fall within the protective scope defined by the claims of the present application.

Claims (10)

1. A respirator assembly back plate with a built-in communication component is characterized by comprising a back plate body, wherein a back bearing system and a respirator assembly component fixedly assembled with a self-contained positive pressure air respirator are arranged on the back plate body; still be provided with the communication subassembly on the backplate plate body, the communication subassembly includes:
a signal unit for receiving external information;
the main control module is used for connecting the signal units to realize signal communication;
power supply unit for supplying power to main control module and
the antenna is in communication connection with the main control module and used for enhancing communication signals;
the antenna is assembled and fixed through the antenna support and is in communication connection with the main control module, the antenna support is arranged on one side or two sides of the backboard body, the antenna support is a retractable support, and the retractable mode is that the antenna support retracts from the outer side of the backboard body to the side of the backboard body.
2. The respirator assembly backplate of claim 1, wherein the backplate body is a hollow frame structure.
3. The respirator assembly backplate of claim 1, wherein the respirator assembly comprises a mount for securing a tank of the self-contained positive pressure air respirator and a tank connector.
4. The respirator assembly backboard of claim 1, wherein the master control module is a mesh ad hoc network module with a fused wide band and a narrow band, and supports simultaneous loading of two waveforms, namely a wide band and a narrow band.
5. The respirator assembly backplate of claim 1, wherein the signal unit is any combination of a pressure sensor unit, an equipment status module, a temperature sensor, a humidity sensor, a smoke sensor, an infrared thermal forming sensor, a toxic gas sensor, a camera, and a sound pickup.
6. The respirator mounting plate of claim 1, wherein the signal unit is disposed on a wearable device.
7. The respirator assembly back plate of a built-in communication assembly of claim 1, wherein the main control module is further provided with an expansion interface.
8. The respirator assembly back plate with a built-in communication assembly according to claim 1, wherein the power supply unit is a detachable battery and is assembled and connected with the main control module through a clamping structure, a plug-in structure or a buckling structure.
9. The respirator mounting plate of claim 1 wherein the antenna bracket is a folding bracket.
10. The respirator mounting plate of claim 1 wherein the antenna mount is a telescoping mount.
CN202220555189.0U 2022-03-15 2022-03-15 Respirator assembly back plate with built-in communication assembly Active CN216855543U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220555189.0U CN216855543U (en) 2022-03-15 2022-03-15 Respirator assembly back plate with built-in communication assembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220555189.0U CN216855543U (en) 2022-03-15 2022-03-15 Respirator assembly back plate with built-in communication assembly

Publications (1)

Publication Number Publication Date
CN216855543U true CN216855543U (en) 2022-07-01

Family

ID=82123060

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220555189.0U Active CN216855543U (en) 2022-03-15 2022-03-15 Respirator assembly back plate with built-in communication assembly

Country Status (1)

Country Link
CN (1) CN216855543U (en)

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