CN212303790U - Storage battery cabinet based on explosion-proof and inflammable - Google Patents

Storage battery cabinet based on explosion-proof and inflammable Download PDF

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Publication number
CN212303790U
CN212303790U CN202020921875.6U CN202020921875U CN212303790U CN 212303790 U CN212303790 U CN 212303790U CN 202020921875 U CN202020921875 U CN 202020921875U CN 212303790 U CN212303790 U CN 212303790U
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China
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unit
storage battery
control unit
fire extinguisher
valve
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CN202020921875.6U
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Chinese (zh)
Inventor
胡长悦
李庆
胡红艳
马冲
肖晗
艾科热木·艾则孜
魏耀华
徐昊天
左航
董晓梅
马尧
李阳
任丹
宁浩
罗永玲
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State Grid Corp of China SGCC
Information and Telecommunication Branch of State Grid Xinjiang Electric Power Co Ltd
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State Grid Corp of China SGCC
Information and Telecommunication Branch of State Grid Xinjiang Electric Power Co Ltd
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Priority to CN202020921875.6U priority Critical patent/CN212303790U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

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Abstract

The utility model relates to a battery cabinet technical field, a battery cabinet based on it is explosion-proof easily to fire, the intelligent cabinet temperature adjusting device comprises a cabinet body, the control unit, charge-discharge test conversion unit, the alarm unit, the fire extinguisher, electric current voltage acquisition unit, the environment monitoring unit, there is the fire extinguisher at cabinet body top fixed mounting, the shower nozzle of putting out a fire of fire extinguisher is located cabinet body top inboard, be equipped with the control unit and the alarm unit on the cabinet body, install storage battery at the internal of cabinet, the environment monitoring unit, electric current voltage acquisition unit, the alarm unit, electric current voltage acquisition unit and environment monitoring unit all are connected with the control unit, charge-discharge test conversion unit is connected with the control unit and storage battery respectively. The utility model discloses simple structure, convenient to use have realized the automatic real-time supervision of the internal environment of cabinet, can in time according to monitoring data analysis possibility of catching a fire, in time report an emergency and ask for help or increased vigilance and automatic explosion-proof flame suppression, have guaranteed the safe operation of battery cabinet.

Description

Storage battery cabinet based on explosion-proof and inflammable
Technical Field
The utility model relates to a battery cabinet technical field is a battery cabinet based on it is explosion-proof easily to fire.
Background
At present, the battery only can be placed to the battery cabinet that each communication computer lab used, and the battery is in the use, often can appear bulging, weeping scheduling problem, if not in time discover, the computer lab conflagration will arouse, current battery cabinet can not carry out real-time supervision to the environment in the battery cabinet, thereby can not analyze in advance and predict whether there is the possibility on fire, and can not initiatively in time put out a fire when on fire, also can not in time inform computer lab managers and handle, thereby will cause the computer lab conflagration, produce great loss. Simultaneously most insert other equipment to the battery cabinet through external now and realize relevant equipment, can increase a large amount of cables in the computer lab from this, be unfavorable for the computer lab clean and tidy, and easily because the mouse suffers from or other human factors cause the cable to break off thereby leading to corresponding operation to break off. Because the storage battery needs to be periodically subjected to a checking charge and discharge test according to the service life of the storage battery, a load carried by the storage battery needs to be disconnected when the storage battery is discharged, and the storage battery is externally connected with a charge and discharge tester to discharge, the wiring is complex in the process of realizing, and the problems of wiring errors, short circuits and the like often occur in frequent wiring, so that safety accidents are caused, and the normal operation of the test cannot be effectively ensured.
Disclosure of Invention
The utility model provides a battery cabinet based on it is explosion-proof easily to fire has overcome above-mentioned prior art not enough, and it can effectively solve current battery cabinet and can not the internal environment of real-time supervision cabinet, can not in time discover the problem that the accident just handled on fire.
The technical scheme of the utility model is realized through following measure: an explosion-proof and inflammable storage battery cabinet comprises a cabinet body, a control unit, a charging and discharging test conversion unit, an alarm unit, a fire extinguisher, a current/voltage acquisition unit and an environment monitoring unit for detecting relevant data of the environment inside the cabinet body, a fire extinguisher is fixedly arranged at the top of the cabinet body, a fire extinguishing nozzle of the fire extinguisher is positioned at the inner side of the top of the cabinet body, the cabinet body is provided with a control unit and an alarm unit, the lower part of the cabinet body is provided with an exhaust grille, a storage battery pack, an environment monitoring unit and a current/voltage acquisition unit are arranged in the cabinet body, the storage battery pack comprises a plurality of storage batteries arranged in the cabinet body from top to bottom, the storage batteries are connected in series, the alarm unit, the current/voltage acquisition unit and the environment monitoring unit are all connected with the control unit, and the charging and discharging test conversion unit is respectively connected with the control unit and the storage battery pack.
The following are further optimization or/and improvement of the technical scheme of the utility model:
the charge-discharge test conversion unit can comprise a double-pole double-throw switch and an air switch, wherein a first fixed end of the double-pole double-throw switch is connected with the working interface, a movable end of the double-pole double-throw switch is connected with the storage battery pack, and a second fixed end of the double-pole double-throw switch is connected with the air switch.
The charge-discharge test conversion unit can comprise a second current detection unit for detecting the current at the output end of the air switch and a first current detection unit for detecting the input current at the movable end of the double-pole double-throw switch and the output current at the fixed end of the second switch, and the first current detection unit and the second current detection unit are both connected with the control unit.
The first current detection unit can comprise a first current detection module and a second current detection module which are used for detecting the input current of the movable end of the double-pole double-throw switch, and a third current detection module and a fourth current detection module which are used for detecting the output current of the second immovable end of the double-pole double-throw switch, and the first current detection module, the second current detection module, the third current detection module and the fourth current detection module are all connected with the control unit.
The environment monitoring unit can comprise a smoke sensing data acquisition module, a plurality of temperature data acquisition modules and a plurality of harmful gas data acquisition modules, the temperature data acquisition modules and the harmful gas data acquisition modules are respectively arranged on two sides of the cabinet body, and the temperature data acquisition modules, the smoke sensing data acquisition modules and the harmful gas data acquisition modules are all connected with the control unit.
The power supply can also comprise a current/voltage acquisition unit, wherein the current/voltage acquisition unit comprises a current acquisition module and a plurality of voltage acquisition modules, and the current acquisition module and the plurality of voltage acquisition modules are connected with the control unit.
The display screen can be fixedly mounted on the outer side of the cabinet body and is connected with the control unit.
The fire extinguisher comprises a tank body and a fire extinguisher starting device, wherein the fire extinguisher starting device comprises a valve action relay and a valve, a fire extinguishing nozzle is arranged at an air outlet of the tank body, the valve is arranged between the fire extinguishing nozzle and the tank body, and the valve action relay is respectively connected with a control unit and the valve.
The utility model discloses convenient to use, through environmental monitoring unit, the control unit, alarm unit and fire extinguisher, realized the automatic environmental monitoring and the automatic explosion-proof of the internal portion of cabinet and suppress burning, guaranteed the safe operation of battery cabinet, avoided inserting relevant environment detection equipment to the internal of computer lab cabinet through the cable, reduced the complexity that the computer lab cable was laid and the area occupied of cable to the computer lab for the computer lab is clean and tidy, thereby realizes the make full use of to computer lab space resource. And can directly be connected the charge-discharge tester with charge-discharge test conversion unit and control unit respectively and can test, need not to carry out test circuit connection through cable and the internal storage battery of cabinet again at the scene, simplified the test procedure, avoided safe risks such as wiring maloperation, short circuit, personnel's electric shock and load power failure.
Drawings
Fig. 1 is a schematic circuit diagram of the preferred embodiment of the present invention.
Fig. 2 is a schematic structural diagram of the preferred embodiment of the present invention.
The codes in the figures are respectively: 1 is the cabinet body, 2 is the fire extinguisher, 3 is temperature data acquisition module, 4 is smoke sensing data acquisition module, 5 is harmful gas data acquisition module, 6 is double-pole double-throw switch, 7 is air switch, 8 is the charge-discharge tester, 9 is first current detection module, 10 is second current detection module, 11 is third current detection module, 12 is fourth current detection module, 13 is second current detection unit, 14 is the display screen, 15 is the exhaust grid, 16 is the battery, 17 is the control unit, 18 is the work interface.
Detailed Description
The utility model discloses do not receive the restriction of following embodiment, can be according to the utility model discloses a technical scheme and actual conditions determine concrete implementation.
In the present invention, for convenience of description, the description of the relative position relationship of the components is described according to the layout mode of the attached drawing 1 in the specification, such as: the positional relationship of up, down, left, right, etc. is determined in accordance with the layout direction of fig. 1 in the specification.
The invention will be further described with reference to the following examples and drawings:
as shown in attached figures 1 and 2, the storage battery cabinet based on explosion-proof and flammability comprises a cabinet body 1, a control unit 17, a charging and discharging test conversion unit, an alarm unit, a fire extinguisher 2, a current/voltage acquisition unit and an environment monitoring unit for detecting relevant environment data in the cabinet body, wherein the top of the cabinet body 1 is fixedly provided with the fire extinguisher 2, a fire extinguishing nozzle of the fire extinguisher 2 is positioned at the inner side of the top of the cabinet body 1, the cabinet body 1 is provided with the control unit 17 and the alarm unit, the lower part of the cabinet body 1 is provided with an exhaust grille 15, a storage battery pack, the environment monitoring unit and the current/voltage acquisition unit are arranged in the cabinet body 1, the storage battery pack comprises a plurality of storage batteries 16 which are arranged in the cabinet body from top to bottom, the storage batteries 16 are connected in series, and the alarm unit, the charging and discharging test conversion unit is respectively connected with the control unit 17 and the storage battery pack.
The control unit 17 may be composed of a single chip microcomputer and a communication module, wherein the communication module may be a plurality of standard protocol ports such as RS232, USB, RS485, etc., and is used for the communication between the alarm unit, the current/voltage acquisition unit, the environment monitoring unit and the charge-discharge test conversion unit and the single chip microcomputer, so as to realize the data reception and command transmission of the single chip microcomputer, and the single chip microcomputer may be a YTC-WKQ-1 controller for controlling the fire extinguisher 2 and the alarm unit. The environment monitoring unit is used for detecting environment-related data such as the internal temperature, smoke sensation and harmful gas of the cabinet body 1. The fire extinguisher 2 can be a heptafluoropropane fire extinguisher 2 for extinguishing fire inside the cabinet 1. The alarm unit can be composed of an alarm and an indicator light, wherein the alarm can be an alarm buzzer, an audible and visual alarm, a vibration alarm and the like. The current/voltage acquisition unit is used for acquiring the total current flowing through the storage battery pack and the single voltage of each storage battery. The charging and discharging test conversion unit is used for realizing the conversion of power supply, charging and discharging tests of the storage battery pack. The storage battery pack can be formed by connecting 24 storage batteries 16 in series.
The exhaust grill 15 is used to operate the fire extinguisher 2 when a fire occurs, and if the fire extinguisher 2 is a heptafluoropropane fire extinguisher 2, since heptafluoropropane is heavier than air, air can be discharged from the exhaust grill 15 to the cabinet 1 from the top down.
The utility model discloses a use as follows:
1. the environment monitoring unit detects the relevant data of environment such as the temperature, the smoke sensation, the harmful gas and the like in the cabinet body 1, and transmits the detected information to the control unit 17, the control unit 17 compares the received information with the corresponding set threshold value, if the received information exceeds the corresponding set threshold value, the control unit 17 controls the alarm unit to give an alarm and controls the fire extinguisher 2 to extinguish fire, and the explosion-proof and flame-retardant functions are realized.
When the storage battery pack is normally used, the charging and discharging test conversion unit is connected with a load or a rectifying screen direct current bus, so that the storage battery pack supplies power to the load or the rectifying screen direct current bus charges the storage battery pack.
When the storage battery pack performs the checking charge and discharge test, the charge and discharge tester 8 is respectively connected with the charge and discharge test conversion unit and the control unit 17 (the charge and discharge tester 8 is a known technology), the charge and discharge tester 8 is connected with the control unit 17 to obtain the total current flowing through the storage battery pack and the monomer voltage of each storage battery, and the storage battery pack is connected through the charge and discharge test conversion unit to realize the checking charge and discharge test of the storage battery pack.
To sum up the utility model discloses simple structure, high durability and convenient use, detect the relevant data of environment to the internal portion of cabinet through the environmental monitoring unit, and information transmission to the control unit 17 that will detect, the control unit 17 judges received information, and report to the police and put out a fire with fire extinguisher 2 according to the judged result control alarm unit, automatic environmental monitoring and the automatic explosion-proof flame suppression of the internal portion of cabinet have been realized, and set up the inside at the cabinet body with the environmental monitoring unit, avoided passing through the cable to the internal relevant environmental detection equipment of access of the machine room cabinet 1, the complexity that the computer room cable was laid and the area occupied of cable to the computer room have been reduced, make the computer room clean and tidy, thereby realize the make full use of computer room space resource. And when the checking charge and discharge test of the polarity storage battery pack is carried out, the charge and discharge tester 8 can be directly connected with the charge and discharge test conversion unit and the control unit respectively to carry out the test, the test circuit connection with the storage battery pack in the cabinet body through a cable on site is not needed, the test process is simplified, and the safety risks of wiring misoperation, short circuit of the storage battery 16, electric shock of personnel, load power failure and the like are avoided.
The explosion-proof and combustible-based storage battery cabinet can be further optimized or/and improved according to actual needs:
as shown in fig. 1 and 2, the charge-discharge test conversion unit includes a double-pole double-throw switch 6 and an air switch 7, a first fixed end of the double-pole double-throw switch 6 is connected to the working interface 18, a movable end of the double-pole double-throw switch 6 is connected to the battery pack, and a second fixed end of the double-pole double-throw switch 6 is connected to the air switch 7.
The working interface 18 may be used to connect a load or a rectifier panel dc bus.
When the storage battery pack normally works, the working interface 18 is connected with a load or a rectifier panel direct current bus, and the movable end and the first fixed end of the double-pole double-throw disconnecting link 6 are closed, so that the storage battery pack supplies power to the load or the rectifier panel direct current bus charges the storage battery 16.
When the storage battery pack is subjected to the checking charge and discharge test, the movable end and the second immovable end of the double-pole double-throw switch 6 are closed, and the charge and discharge tester 8 is respectively connected with the output end of the air switch 7 and the control unit 17, so that the checking charge and discharge test of the storage battery pack is carried out through the charge and discharge tester 8, and a worker can directly observe the checking charge and discharge test through the charge and discharge tester 8.
As shown in fig. 1 and 2, the charge-discharge test switching unit includes a second current detection unit 13 for detecting the current at the output terminal of the air switch 7 and a first current detection unit for detecting the input current at the moving terminal and the output current at the second stationary terminal of the double-pole double-throw switch 6, and both the first current detection unit and the second current detection unit 13 are connected to the control unit 17.
The second current detecting unit 13 may be an embedded current detector for detecting the output current of the air switch 7.
As shown in fig. 1 and 2, the first current detection unit includes a first current detection module 9 and a second current detection module 10 for detecting an input current at a moving end of the double-pole double-throw switch 6, a third current detection module 11 and a fourth current detection module 12 for detecting an output current at a second stationary end of the double-pole double-throw switch 6, and the first current detection module 9, the second current detection module 10, the third current detection module 11 and the fourth current detection module 12 are all connected to the control unit 17.
The first current detection module 9, the second current detection module 10, the third current detection module 11 and the fourth current detection module 12 can be current collectors, when the checking charge and discharge test of the storage battery pack is performed, the first current detection module 9 and the second current detection module 10 are used for detecting the total current of the storage battery pack, the third current detection module 11 and the fourth current detection module 12 are used for detecting the output current of the second immovable end of the double-pole double-throw switch 6 and transmitting the detected current data to the control unit 17, and the control unit 17 stores and displays the received current data and can send the received current data to the charge and discharge tester 8.
As shown in the attached drawings 1 and 2, the environment monitoring unit comprises a smoke sensing data acquisition module 4, a plurality of temperature data acquisition modules 3 and a plurality of harmful gas data acquisition modules 5, the plurality of temperature data acquisition modules 3 and the plurality of harmful gas data acquisition modules 5 are respectively arranged at two sides of the inside of the cabinet body 1, and the temperature data acquisition modules 3, the smoke sensing data acquisition modules 4 and the harmful gas data acquisition modules 5 are all connected with the control unit 17.
The temperature data acquisition module 3 can be a temperature data acquisition unit for acquiring temperature data inside the cabinet 1 and transmitting the temperature data to the control unit 17. The smoke data acquisition module 4 may be a smoke data acquisition unit for acquiring smoke data inside the cabinet 1 and transmitting the smoke data to the control unit 17. The harmful gas data acquisition module 5 can be a harmful gas collector and is used for acquiring harmful gas data in the cabinet body 1 and transmitting the harmful gas data to the control unit 17.
When the alarm device works, if the control unit 17 judges that the received temperature data is greater than or equal to the corresponding set threshold value and the received smoke sensation data and the harmful gas data are both smaller than the corresponding set threshold value, secondary alarm is carried out, namely the control unit 17 controls the alarm unit to carry out primary alarm (for example, an indicator lamp emits light); if the control unit 17 determines that the received temperature data and the received harmful gas data are both greater than or equal to the corresponding set threshold values, and the received smoke sensation data are smaller than the corresponding set threshold values, a general alarm is performed, namely the control unit 17 controls the alarm unit to perform final alarm (for example, an alarm performs alarm); if the control unit 17 judges that the received temperature data, smoke sensation data and harmful gas data are all larger than or equal to the corresponding set thresholds, a serious alarm is given, namely the control unit 17 controls the fire extinguisher 2 to act, the fire is emergently extinguished inside the cabinet body 1, and automatic explosion prevention and fire suppression are realized.
As shown in fig. 1 and 2, the current/voltage collecting unit includes a current collecting module and a plurality of voltage collecting modules, and both the current collecting module and the plurality of voltage collecting modules are connected to the control unit 17.
The current collection module can be a current detection sensor and is used for collecting the total current flowing through the storage battery pack. The voltage acquisition module may be a voltage acquisition sensor for acquiring the cell voltage of each battery 16. After obtaining the data, the control unit 17 may directly send the data to the charge/discharge tester 8 when performing the verification charge/discharge test, thereby assisting the charge/discharge tester 8 in completing the test.
Therefore, the total current flowing through the storage battery pack and the monomer voltage of each storage battery 16 do not need to be detected by connecting corresponding equipment temporarily through an external cable during testing, the testing process is simplified, manual wiring errors are avoided, the complexity of cable laying of a machine room is reduced, and the normal and effective operation of the testing is ensured.
As shown in fig. 1 and 2, a display screen 14 is fixedly mounted on the outer side of the cabinet 1, and the display screen 14 is connected with a control unit 17.
The display screen 14 can be a touch liquid crystal display screen or a common liquid crystal display screen, besides the display screen 14 is connected with the control unit 17, the display screen 14 can be connected with the charge and discharge tester 8 when the checking charge and discharge test of the storage battery pack is carried out, and a user can directly operate the control unit 17 on the display screen 14 during use and can also be used for displaying relevant data of the control unit 17 and the charge and discharge tester 8.
As shown in fig. 1 and 2, the fire extinguisher 2 comprises a tank body and a fire extinguisher starting device, the fire extinguisher starting device comprises a valve action relay and a valve, the fire extinguishing nozzle is arranged at the gas outlet of the tank body, the valve is arranged between the fire extinguishing nozzle and the tank body, and the valve action relay is respectively connected with the control unit 17 and the valve.
Action commands are output to the valve action relay through the control unit 17, the valve action relay controls the valve to be opened, and the fire extinguishing nozzle sprays air to extinguish fire to the inside of the cabinet body 1, so that automatic explosion prevention and fire suppression are realized.
Above technical feature constitutes the utility model discloses a best embodiment, it has stronger adaptability and implements the effect, can increase and decrease unnecessary technical feature according to actual need, satisfies the demand of different situation.

Claims (14)

1. An explosion-proof and inflammable storage battery cabinet is characterized by comprising a cabinet body, a control unit, a charging and discharging test conversion unit, an alarm unit, a fire extinguisher, a current/voltage acquisition unit and an environment monitoring unit for detecting relevant environment data in the cabinet body, a fire extinguisher is fixedly arranged at the top of the cabinet body, a fire extinguishing nozzle of the fire extinguisher is positioned at the inner side of the top of the cabinet body, the cabinet body is provided with a control unit and an alarm unit, the lower part of the cabinet body is provided with an exhaust grille, a storage battery pack, an environment monitoring unit and a current/voltage acquisition unit are arranged in the cabinet body, the storage battery pack comprises a plurality of storage batteries arranged in the cabinet body from top to bottom, the storage batteries are connected in series, the alarm unit, the current/voltage acquisition unit and the environment monitoring unit are all connected with the control unit, and the charging and discharging test conversion unit is respectively connected with the control unit and the storage battery pack.
2. The storage battery cabinet based on explosion-proof and flammability as claimed in claim 1, characterized in that the charge-discharge test switching unit comprises a double-pole double-throw switch and an air switch, a first fixed end of the double-pole double-throw switch is connected to the working interface, a movable end of the double-pole double-throw switch is connected to the battery pack, and a second fixed end of the double-pole double-throw switch is connected to the air switch.
3. The storage battery cabinet based on explosion-proof and flammability as claimed in claim 1 or 2, characterized in that the charge and discharge test switching unit includes a second current detection unit for detecting the current at the output terminal of the air switch and a first current detection unit for detecting the input current at the moving terminal of the double-pole double-throw switch and the output current at the second stationary terminal, and both the first current detection unit and the second current detection unit are connected to the control unit.
4. The storage battery cabinet based on explosion-proof and inflammable properties of claim 3, wherein the first current detection unit comprises a first current detection module and a second current detection module for detecting the input current of the movable end of the double-pole double-throw switch, a third current detection module and a fourth current detection module for detecting the output current of the second immovable end of the double-pole double-throw switch, and the first current detection module, the second current detection module, the third current detection module and the fourth current detection module are all connected with the control unit.
5. The storage battery cabinet based on the explosion-proof and the flammability as claimed in claim 1, 2 or 4, characterized in that the environment monitoring unit comprises a smoke sensing data acquisition module, a plurality of temperature data acquisition modules and a plurality of harmful gas data acquisition modules, the plurality of temperature data acquisition modules and the plurality of harmful gas data acquisition modules are respectively arranged at two sides of the interior of the cabinet body, and the temperature data acquisition modules, the smoke sensing data acquisition modules and the harmful gas data acquisition modules are all connected with the control unit.
6. The storage battery cabinet based on the explosion-proof and the flammability as set forth in claim 3, characterized in that the environment monitoring unit comprises a smoke sensing data acquisition module, a plurality of temperature data acquisition modules and a plurality of harmful gas data acquisition modules, the plurality of temperature data acquisition modules and the plurality of harmful gas data acquisition modules are respectively disposed at two sides of the interior of the cabinet body, and the temperature data acquisition modules, the smoke sensing data acquisition modules and the harmful gas data acquisition modules are all connected with the control unit.
7. The storage battery cabinet based on explosion-proof and flammability as claimed in claim 1 or 2 or 4 or 6, characterized in that the current/voltage collection unit comprises a current collection module and a plurality of voltage collection modules, both of which are connected with the control unit.
8. The storage battery cabinet based on explosion-proof and inflammable according to claim 1, 2, 4 or 6, characterized in that a display screen is fixedly mounted on the outer side of the cabinet body, and the display screen is connected with the control unit.
9. The storage battery cabinet based on explosion-proof and flammability as claimed in claim 7, is characterized in that the display screen is fixedly installed outside the cabinet body, and the display screen is connected with the control unit.
10. The storage battery cabinet based on explosion-proof and flammability as claimed in any of claims 1 or 2 or 4 or 6 or 9, characterized in that the fire extinguisher includes a tank and a fire extinguisher starting device, the fire extinguisher starting device includes a valve action relay and a valve, the fire extinguishing nozzle is arranged at the air outlet of the tank, the valve is arranged between the fire extinguishing nozzle and the tank, the valve action relay is connected with the control unit and the valve respectively.
11. The storage battery cabinet based on explosion-proof and flammability as claimed in claim 3, characterized in that the fire extinguisher comprises a tank and a fire extinguisher starting device, the fire extinguisher starting device comprises a valve action relay and a valve, the fire extinguishing nozzle is arranged at the air outlet of the tank, the valve is arranged between the fire extinguishing nozzle and the tank, and the valve action relay is connected with the control unit and the valve respectively.
12. The storage battery cabinet based on explosion-proof and flammability as claimed in claim 5, characterized in that the fire extinguisher comprises a tank and a fire extinguisher starting device, the fire extinguisher starting device comprises a valve action relay and a valve, the fire extinguishing nozzle is arranged at the air outlet of the tank, the valve is arranged between the fire extinguishing nozzle and the tank, and the valve action relay is connected with the control unit and the valve respectively.
13. The storage battery cabinet based on explosion-proof and flammability as claimed in claim 7, characterized in that the fire extinguisher comprises a tank and a fire extinguisher starting device, the fire extinguisher starting device comprises a valve action relay and a valve, the fire extinguishing nozzle is arranged at the air outlet of the tank, the valve is arranged between the fire extinguishing nozzle and the tank, and the valve action relay is connected with the control unit and the valve respectively.
14. The storage battery cabinet based on explosion-proof and flammability as claimed in claim 8, characterized in that the fire extinguisher comprises a tank and a fire extinguisher starting device, the fire extinguisher starting device comprises a valve action relay and a valve, the fire extinguishing nozzle is arranged at the air outlet of the tank, the valve is arranged between the fire extinguishing nozzle and the tank, and the valve action relay is connected with the control unit and the valve respectively.
CN202020921875.6U 2020-05-27 2020-05-27 Storage battery cabinet based on explosion-proof and inflammable Active CN212303790U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020921875.6U CN212303790U (en) 2020-05-27 2020-05-27 Storage battery cabinet based on explosion-proof and inflammable

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020921875.6U CN212303790U (en) 2020-05-27 2020-05-27 Storage battery cabinet based on explosion-proof and inflammable

Publications (1)

Publication Number Publication Date
CN212303790U true CN212303790U (en) 2021-01-05

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Application Number Title Priority Date Filing Date
CN202020921875.6U Active CN212303790U (en) 2020-05-27 2020-05-27 Storage battery cabinet based on explosion-proof and inflammable

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CN (1) CN212303790U (en)

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