CN208334511U - electromagnetic radiation monitoring device - Google Patents

electromagnetic radiation monitoring device Download PDF

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Publication number
CN208334511U
CN208334511U CN201821097874.3U CN201821097874U CN208334511U CN 208334511 U CN208334511 U CN 208334511U CN 201821097874 U CN201821097874 U CN 201821097874U CN 208334511 U CN208334511 U CN 208334511U
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China
Prior art keywords
electromagnetic radiation
monitor
processor
data
mobile terminal
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CN201821097874.3U
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Inventor
刘金丹
郝广北
欧阳溢
李晓辉
陆德坚
李京超
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Beijing Safety Technology Co ltd
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Beijing Safety Technology Co ltd
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Priority to CN201821097874.3U priority Critical patent/CN208334511U/en
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Abstract

The utility model provides a kind of electromagnetic radiation monitoring device, is related to the technical field of electromagnetic radiation monitoring, including monitor ontology and wireless communication device;Monitor ontology obtains original electromagnet radiation detection data;Wireless communication device includes receiver, processor and radio transmitter;Radio transmitter is connect with communication of mobile terminal, and mobile terminal is wirelessly connected monitor ontology, and original electromagnet radiation detection data can be uploaded to the trackability that mobile terminal fundamentally solves environment measuring data in real time;Statistical disposition is carried out to original electromagnet radiation detection data by processor, the setting function of the summary processing such as average value, the average, mean deviation of r.m.s. of available statistics electromagnetic radiation data and parameter, ensure that the accuracy of data while improving on-site test working efficiency;It provides the foundation to realize to the supervision of the process of electromagnetic radiation monitoring, information and data, remote upload.

Description

Electromagnetic radiation monitoring device
Technical field
The utility model relates to electromagnetic radiation monitoring technical fields, more particularly, to a kind of electromagnetic radiation monitoring device.
Background technique
In current information-intensive society, with electrified development, in human habitat, various electromagnetic wave sources are increasingly More, the electromagnetic wave of the various frequency ranges such as radio broadcasting, microwave communication, TV station, transmission line of electricity has been full of entire living space, people Class is just being lived in increasingly dense electromagnetic environment, and the electromagnetic energy sharply increased also makes while bringing convenience to the mankind Electromagnetic environment deteriorates increasingly, and high-intensitive electromagnetic radiation is it could even be possible to directly harm human health.In this case artificial The task of on-site test work gradually increases, therefore improves electromagnetic environment monitor technology, improves the importance of scene detection efficiency Also increasingly prominent.
Original artificial on-site test work is to hold electromagnetic radiation monitoring instrument by testing staff to read after measurement point is stablized It takes and records several groups of detection datas on record form, after the completion of work to be detected, testing staff carries out recorded data The data statistic analysis such as artificial calculating, there are many drawbacks for this detection mode, if scene detection efficiency is low, detection data Accuracy rate is low, and detection data counts the problems such as calculating task is heavy.
Utility model content
In view of this, being deposited in the prior art the purpose of this utility model is to provide electromagnetic radiation monitoring device with alleviating Detection efficiency it is low, the accuracy rate of detection data is low, and detection data counts the heavy technical problem of calculating task.
In a first aspect, the utility model embodiment provides a kind of electromagnetic radiation monitoring device, comprising: monitor ontology and Wireless communication device;
Monitor ontology includes monitor host and probe;Probe, the electromagnetism of the space environment for detecting region to be measured Wave signal, and it is converted into the electric signal that can be monitored the measurement of instrument host, and electric signal is sent to monitor host;Monitor master Machine is electrically connected with probe, for receiving electric signal and handling electric signal, obtains original electromagnet radiation detection data;
Wireless communication device includes receiver, processor and radio transmitter;Receiver is sent out with processor and wirelessly respectively Device is sent to be electrically connected, and radio transmitter and processor are electrically connected;
Monitor host and receiver communicate to connect, and receiver obtains original electromagnetic radiation inspection for receiving monitor host Measured data, and original electromagnet radiation detection data are transmitted separately to processor and radio transmitter;Processor is used for original Electromagnet radiation detection data carry out statistical disposition, obtain statistics electromagnetic radiation data, and statistics electromagnetic radiation data is transmitted to Radio transmitter, radio transmitter are connect with communication of mobile terminal, by original electromagnet radiation detection data and average electromagnetism spoke It penetrates data and is transmitted to mobile terminal.
With reference to first aspect, the utility model embodiment provides the first possible embodiment of first aspect, In, radio transmitter is built-in with bluetooth communication, and bluetooth communication is connect by Bluetooth transmission with communication of mobile terminal.
With reference to first aspect, the utility model embodiment provides second of possible embodiment of first aspect, In, radio transmitter can receive the instruction of mobile terminal by bluetooth communication, to control the processing by mobile terminal Device carries out statistical disposition to original electromagnet radiation detection data.
With reference to first aspect, the utility model embodiment provides the third possible embodiment of first aspect, In, processor can the data acquisition intervals parameter to monitor host be configured, when mobile terminal pass through the Bluetooth communication When module sends instruction, processor can reset the measurement parameter of monitor host.
With reference to first aspect, the utility model embodiment provides the 4th kind of possible embodiment of first aspect, In, optical fiber interface is provided on monitor host, receiver is connect by optical fiber interface with monitor main-machine communication.
With reference to first aspect, the utility model embodiment provides the 5th kind of possible embodiment of first aspect, In, processor is built-in with main control chip, and main control chip is electrically connected with receiver, processor and radio transmitter respectively, master control Chip can be used for controlling monitor host, set remote control mode for the operating mode of monitor host, so that monitor host It is not responding to the operation of itself key, only receives the data acquisition or control instruction of main control chip transmission.
With reference to first aspect, the utility model embodiment provides the 6th kind of possible embodiment of first aspect, In, receiver is also used to receive the model number information of monitor host, to be passed model number information by radio transmitter Transport to mobile terminal.
With reference to first aspect, the utility model embodiment provides the 7th kind of possible embodiment of first aspect, In, wireless communication device is built-in with battery power supply.
With reference to first aspect, the utility model embodiment provides the 8th kind of possible embodiment of first aspect, In, wireless communication device is fixedly connected on monitor host.
With reference to first aspect, the utility model embodiment provides the 9th kind of possible embodiment of first aspect, In, the utility model embodiment provides electromagnetic radiation monitoring device, further includes monitoring modular;
Monitoring modular and receiver are electrically connected, and monitoring modular is used to detect whether monitor host is in remote control mode, When monitor host exits remote control mode, then automatic transmission order allows monitor host to enter remote control mode.
The utility model embodiment bring it is following the utility model has the advantages that
(1) electromagnetic radiation monitoring device passes through the wireless communication device with wireless transmission and processing function, so that mobile Terminal wireless connects monitor ontology, and original electromagnet radiation detection data can be uploaded in real time at the APP of mobile terminal, passes through shifting The detection data for the original electromagnet radiation detection data that dynamic terminal can check at any time, detection time fundamentally solve environment The trackability of detection data.
(2) statistical disposition, available average electromagnetic radiation are carried out to original electromagnet radiation detection data by processor The setting function of the processing of the summary such as the average value of data, r.m.s. average, mean deviation and parameter, improves on-site test It ensure that the accuracy of data while working efficiency.
(3) technical solution that traditional electromagnetic radiation monitoring instrument is provided by this patent may be implemented to be wirelessly connected intelligence Mobile terminal, and monitoring data and information are uploaded into monitor supervision platform eventually by intelligent terminal, electromagnetic radiation is supervised to realize The process of survey, the supervision of information and data, remote upload provide the foundation.
Other feature and advantage of the utility model will illustrate in the following description, also, partly from specification In become apparent, or understood and implementing the utility model.The purpose of this utility model and other advantages are illustrating Specifically noted structure is achieved and obtained in book, claims and attached drawing.
To enable the above objects, features, and advantages of the utility model to be clearer and more comprehensible, preferred embodiment is cited below particularly, and Cooperate appended attached drawing, is described in detail below.
Detailed description of the invention
It, below will be right in order to illustrate more clearly of specific embodiment of the present invention or technical solution in the prior art Specific embodiment or attached drawing needed to be used in the description of the prior art are briefly described, it should be apparent that, it is described below In attached drawing be that some embodiments of the utility model are not paying creativeness for those of ordinary skill in the art Under the premise of labour, it is also possible to obtain other drawings based on these drawings.
Fig. 1 is the structural block diagram of electromagnetic radiation monitoring device provided by the embodiment of the utility model;
Fig. 2 is the structural schematic diagram of electromagnetic radiation monitoring device provided by the embodiment of the utility model;
Fig. 3 is the structural representation of the wireless communication device of electromagnetic radiation monitoring device provided by the embodiment of the utility model Figure.
Icon: 100- monitor ontology;101- monitor host;102- probe;200- wireless communication device;201- is received Device;202- processor;203- radio transmitter;213- bluetooth communication;204- main control chip;300- mobile terminal;400- Optical fiber interface;500- optical fiber;600- monitoring modular.
Specific embodiment
To keep the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, below in conjunction with attached drawing to this The technical solution of utility model is clearly and completely described, it is clear that described embodiment is that the utility model a part is real Example is applied, instead of all the embodiments.Based on the embodiments of the present invention, those of ordinary skill in the art are not making Every other embodiment obtained, fall within the protection scope of the utility model under the premise of creative work.
At present under the development trend of current all things on earth interconnection, to the remote supervisory demand of electromagnet radiation detection data and process More urgent, traditional portable electromagnetic radiation monitor, is a stand-alone device, does not have wireless communication function, Wu Falian Mobile Internet is connect, the monitoring data of acquisition can not upload in real time on remote supervisory platform, be based on this, and the utility model is implemented A kind of electromagnetic radiation monitoring device that example provides, intelligent terminal are wirelessly connected supervising platform by mobile Internet, will monitor number According to and facility information etc. upload supervising platform, realize traditional electromagnetic radiation monitoring instrument connection remote supervisory platform.
It is described in detail below by embodiment.
Fig. 1 is the structural block diagram of electromagnetic radiation monitoring device provided in this embodiment;Wherein, receiver 201 respectively with place It manages device 202 and radio transmitter 203 is electrically connected, and radio transmitter 203 and processor 202 are electrically connected.
Fig. 2 is the structural schematic diagram of electromagnetic radiation monitoring device provided in this embodiment;Wherein, receiver 201 is for connecing It receives monitor host 101 and obtains original electromagnet radiation detection data, and original electromagnet radiation detection data are transmitted separately to locate Manage device 202 and radio transmitter 203.
Fig. 3 is the structural schematic diagram of the wireless communication device of electromagnetic radiation monitoring device provided in this embodiment;Wherein, nothing Line communication device 200 is electrically connected by the optical fiber interface 400 of optical fiber 500 and monitor ontology 100.
Present embodiments provide a kind of electromagnetic radiation monitoring device, comprising: monitor ontology 100 and wireless communication device 200;Monitor ontology 100 includes monitor host 101 and probe 102;Probe 102, for detecting the spatial loop in region to be measured The electromagnetic wave signal in border, and it is converted into the electric signal that can be monitored the measurement of instrument host 101, and electric signal is sent to monitor master Machine 101;Monitor host 101 is electrically connected with probe 102, for receiving electric signal and handling electric signal, is obtained original Electromagnet radiation detection data;Wireless communication device 200 includes receiver 201, processor 202 and radio transmitter 203;Receiver 201 are electrically connected with processor 202 and radio transmitter 203 respectively, and radio transmitter 203 and processor 202 are electrically connected; Monitor host 101 and receiver 201 communicate to connect, and receiver 201 obtains original electromagnetism spoke for receiving monitor host 101 Detection data is penetrated, and original electromagnet radiation detection data are transmitted separately to processor 202 and radio transmitter 203;Processor 202, for carrying out statistical disposition to original electromagnet radiation detection data, obtain statistics electromagnetic radiation data, and will count electromagnetism spoke It penetrates data and is transmitted to radio transmitter 203, radio transmitter 203 and mobile terminal 300 communicate to connect, by original electromagnetic radiation Detection data and statistics electromagnetic radiation data are transmitted to mobile terminal 300.
Wherein, mobile terminal 300 may include smart phone, PAD plate and tablet computer etc., have it is wireless and Bluetooth function.
Specifically, processor 202 is used to carry out statistical disposition to original electromagnet radiation detection data, can be for original electricity Magnetic radiation detection data carries out the data processings such as average value, the average, standard deviation calculation of r.m.s..Wherein, according to the prior art In algorithm can be easy to calculate average value, the data such as the average, standard deviation calculation of r.m.s., details are not described herein again.
In addition, monitor ontology 100 is electromagnetic radiation monitoring instrument, it is the instrument of the dedicated test electromagnetic radiation of radiation data Device is existing product, is mainly used for the actinometry of electric appliance, high-voltage line, base station etc. in life, can effectively help people Far from radiation source, from the harm of radiation.
Monitor ontology 100 in the present embodiment includes monitor host 101 and probe 102, using probe 102 more it is enough more Add radiation data that is convenient and more accurately detecting environment;In the present embodiment, monitor host 101 and probe 102 are solid Surely it is electrically connected, forms complete monitor ontology 100, be then encapsulated monitor ontology 100 with shell, to Monitor host 101 and probe 102 are protected.
Electromagnetic radiation monitoring device provided in this embodiment, has the advantages that
(1) electromagnetic radiation monitoring device passes through the wireless communication device 200 with wireless transmission and processing function, so that moving Dynamic terminal 300 is wirelessly connected monitor ontology 100, and original electromagnet radiation detection data can be uploaded to mobile terminal 300 in real time At APP, pass through the detection data for the original electromagnet radiation detection data that mobile terminal 300 can be checked at any time, detection time, from root Solves the trackability of environment measuring data in sheet.
(2) statistical disposition, available statistics electromagnetism spoke are carried out to original electromagnet radiation detection data by processor 202 The setting function of penetrating the processing of the summary such as average value, the r.m.s. average, mean deviation of data and parameter, improves live inspection It ensure that the accuracy of data while surveying working efficiency.
(3) technical solution that traditional electromagnetic radiation monitoring instrument is provided by this patent may be implemented to be wirelessly connected intelligence Mobile terminal 300, and monitoring data and information are uploaded into monitor supervision platform eventually by intelligent terminal, to realize to electromagnetic radiation The process of monitoring, the supervision of information and data, remote upload provide the foundation.
On the basis of the above embodiments, further, the wireless hair of electromagnetic radiation monitoring device provided in this embodiment Device 203 is sent to be built-in with bluetooth communication 213, bluetooth communication 213 passes through Bluetooth transmission and 300 communication link of mobile terminal It connects.
Further, radio transmitter 203 can receive the instruction of mobile terminal 300 by bluetooth communication 213, with logical It crosses mobile terminal 300 and controls the processor 202 to the progress statistical disposition of original electromagnet radiation detection data.
Specifically, since bluetooth communication 213 realizes the wireless connection of radio transmitter 203 and mobile terminal 300, It, can also be by passing through mobile terminal 300 so as to realize that radio transmitter 203 transmits data-signal to mobile terminal 300 Manipulation instruction is sent to radio transmitter 203 and processor 202.
Further, processor 202 can the data acquisition intervals parameter to monitor host 101 be configured, work as movement When terminal 300 sends instruction by the bluetooth communication 213, processor 202 can be to the measurement parameter of monitor host 101 It is reset.
Further, be provided with optical fiber interface 400 on monitor host 101, receiver 201 by optical fiber interface 400 with Monitor host 101 communicates to connect.
Further, receiver 201 is also used to receive the model number information of monitor host 101, by wirelessly sending out Send device 203 that model number information is transmitted to mobile terminal 300.
Further, wireless communication device 200 is built-in with battery power supply.
In the present embodiment, in order to improve on-site test working efficiency, its labor intensity is reduced, the present invention provides one kind Electromagnetic radiation monitoring device, device 200 is wirelessly connected mobile terminal 300, testing staff to monitor ontology 100 by wireless communication By mobile terminal 300, it can be directly viewable on-site test data, real time data, data statistics processing is as a result, and when measurement Between, the information such as 100 model number of monitor ontology, module electricity, significantly improve electromagnet radiation detection working efficiency and The reliability of detection data is ensured.
Specifically, wireless communication device 200 is communicated by optical fiber 500 with monitor host 101, according to monitor sheet The communication protocol of body 100 obtains the detection data measured on monitor ontology 100 and the at this time equipment of electromagnetic radiation monitoring instrument Information;Wherein, there are two types of data acquisitions, and one is the data for directly reading monitor ontology 100, work as radio transmitter 203 when receiving the reading detection data instruction that mobile terminal 300 sends, and wireless communication device 200 obtains detection data and uploads to On the APP of mobile terminal 300;Another kind is uploaded after processor 202 carries out statistical disposition, when wireless communication device 200 is received When the data simplified method process instruction sent to mobile terminal 300, several groups of data that mobile terminal 300 will acquire are calculated The processing such as average value, standard deviation, and result is uploaded to mobile terminal 300;Testing staff can be as desired by mobile terminal 300 send data parameters setting instruction to wireless communication device 200 to be configured to parameters such as data acquisition intervals.Pass through shifting Dynamic terminal 300, testing staff can also the model of query facility, number information and situations such as internal battery electricity, avoid scene Management absence of the testing staff to detection device.
Further, processor 202 is built-in with main control chip 204, main control chip 204 respectively with receiver 201, processor 202 and radio transmitter 203 be electrically connected, main control chip 204 can be used for controlling monitor host 101, by monitor host 101 Operating mode be set as remote control mode so that monitor host 101 is not responding to the operation of itself key, only receive main control chip The data acquisition of 204 transmission or control instruction.
Specifically, wireless communication device 200 passes through communication protocol and monitor of the optical fiber 500 based on monitor ontology 100 Host 101 communicates, thus by that can set remote control mode (long-range mould for monitor ontology 100 by main control chip 204 Formula), at this moment monitor ontology 100 is not responding to the operation of itself key, and only reception comes from communication port (optical fiber interface 400) Data acquisition or control instruction.
Further, wireless communication device 200 is fixedly connected on monitor host 101.
Wherein, the connection type of wireless communication device 200 and monitor ontology 100 can be a variety of, such as: wireless communication It is provided with threaded hole on device 200, wireless communication device 200 is fixed on monitor ontology 100 by external screw;Again Such as: wireless communication device 200 can be connected on monitor ontology 100 by buckle;For another example: by wireless communication device 200 It is be bonded between monitor ontology 100.
Preferably, the connection type of wireless communication device 200 and monitor ontology 100 is to be connected by screw to.
Further, electromagnetic radiation monitoring device is present embodiments provided, further includes monitoring modular 600;Monitoring modular 600 It is electrically connected with receiver 201, monitoring modular 600 works as monitor for whether detecting monitor host 101 in remote control mode When host 101 exits remote control mode, then automatic transmission order allows monitor host 101 to enter remote control mode.
The bluetooth connection signal of radio transmitter 203 and mobile terminal 300, when bluetooth communication 213 and mobile terminal When 300 connections disconnect, monitoring modular 600 can send reconnect instruction.
Specifically, monitoring modular 600 can by the bluetooth connection signal of radio transmitter 203 and mobile terminal 300, when When bluetooth communication 213 connect disconnection with mobile terminal 300, monitoring modular 600 is transmitted a signal at main control chip 204, Main control chip 204 can the instruction of spontaneous reconnect, mobile terminal 300 and wireless communication device 200 are sent again Link order enables testing staff to restore remotely to connect in time, and detection work is normally carried out, and improves scene inspection The working efficiency of survey.
In addition, monitoring modular 600 can also monitor wireless communication device 200 and the connection signal of monitor ontology 100 is No disconnection, when wireless communication device 200 exits the connection with monitor ontology 100, monitoring modular 600 can be transmitted signal To main control chip 204, and mobile terminal 300 is reported to, wireless communication device 200 and monitor ontology 100 disconnect, monitor Ontology 100 restores self-service monitoring pattern, guarantees that monitor ontology 100 can restore normal use in time.
Electromagnetic radiation monitoring device provided in this embodiment can be wirelessly connected the electromagnetic radiation monitoring instrument of mobile terminal 300, It fundamentally solves original artificial on-site test to work existing low efficiency, the reliability accuracy of data is low and testing number The problems such as heavy according to processing work, so that design is more reasonable, it is more practical.
In the description of the utility model embodiment unless specifically defined or limited otherwise, term " installation ", " phase Even ", " connection " shall be understood in a broad sense, for example, it may be being fixedly connected, may be a detachable connection, or be integrally connected;It can To be mechanical connection, it is also possible to be electrically connected;It can be directly connected, can also can be indirectly connected through an intermediary Connection inside two elements.For the ordinary skill in the art, above-mentioned term can be understood at this with concrete condition Concrete meaning in utility model.
It is in the description of the present invention, it should be noted that term " center ", "upper", "lower", "left", "right", " perpendicular Directly ", the orientation or positional relationship of the instructions such as "horizontal", "inner", "outside" is to be based on the orientation or positional relationship shown in the drawings, and is only For ease of description the utility model and simplify description, rather than the device or element of indication or suggestion meaning must have it is specific Orientation, be constructed and operated in a specific orientation, therefore should not be understood as limiting the present invention.In addition, term " the One ", " second ", " third " are used for descriptive purposes only and cannot be understood as indicating or suggesting relative importance.
In several embodiments provided herein, it should be understood that disclosed systems, devices and methods, it can be with It realizes by another way.The apparatus embodiments described above are merely exemplary, for example, the division of the unit, Only a kind of logical function partition, there may be another division manner in actual implementation, in another example, multiple units or components can To combine or be desirably integrated into another system, or some features can be ignored or not executed.Another point, it is shown or beg for The mutual coupling, direct-coupling or communication connection of opinion can be through some communication interfaces, device or unit it is indirect Coupling or communication connection can be electrical property, mechanical or other forms.
The unit as illustrated by the separation member may or may not be physically separated, aobvious as unit The component shown may or may not be physical unit, it can and it is in one place, or may be distributed over multiple In network unit.It can select some or all of unit therein according to the actual needs to realize the mesh of this embodiment scheme 's.
In addition, each functional unit in each embodiment of the utility model can integrate in one processing unit, It can be each unit to physically exist alone, can also be integrated in one unit with two or more units.
Finally, it should be noted that embodiment described above, only specific embodiment of the present utility model, to illustrate this The technical solution of utility model, rather than its limitations, the protection scope of the utility model is not limited thereto, although referring to aforementioned The utility model is described in detail in embodiment, those skilled in the art should understand that: it is any to be familiar with this skill The technical staff in art field within the technical scope disclosed by the utility model, still can be to skill documented by previous embodiment Art scheme modify or can readily occur in variation or equivalent replacement of some of the technical features;And these modifications, Variation or replacement, the spirit and model of the utility model embodiment technical solution that it does not separate the essence of the corresponding technical solution It encloses, should be covered within the scope of the utility model.Therefore, the protection scope of the utility model is answered described is wanted with right Subject to the protection scope asked.

Claims (10)

1. a kind of electromagnetic radiation monitoring device characterized by comprising monitor ontology and wireless communication device;
The monitor ontology includes monitor host and probe;The probe, for detecting the space environment in region to be measured Electromagnetic wave signal, and it is converted into the electric signal that can be measured by the monitor host, and the electric signal is sent to the prison Survey instrument host;The monitor host is electrically connected with the probe, for receiving the electric signal and carrying out to the electric signal Processing, obtains original electromagnet radiation detection data;
The wireless communication device includes receiver, processor and radio transmitter;The receiver respectively with the processor It is electrically connected with the radio transmitter, and the radio transmitter and the processor are electrically connected;
The monitor host and the receiver communicate to connect, and the receiver obtains original for receiving the monitor host Beginning electromagnet radiation detection data, and the original electromagnet radiation detection data are transmitted separately to the processor and described wireless Transmitter;The processor is used to carry out statistical disposition to the original electromagnet radiation detection data, obtains statistics electromagnetic radiation Data, and statistics electromagnetic radiation data is transmitted to the radio transmitter, the radio transmitter and communication of mobile terminal connect It connects, the original electromagnet radiation detection data and the statistics electromagnetic radiation data is transmitted to mobile terminal.
2. electromagnetic radiation monitoring device according to claim 1, which is characterized in that the radio transmitter is built-in with bluetooth Communication module, the bluetooth communication are connect by Bluetooth transmission with communication of mobile terminal.
3. electromagnetic radiation monitoring device according to claim 2, which is characterized in that the radio transmitter can be by described Bluetooth communication receives the instruction of mobile terminal, to control the processor to the original electromagnetic radiation by mobile terminal Detection data carries out statistical disposition.
4. electromagnetic radiation monitoring device according to claim 3, which is characterized in that the processor can be to the monitor The data acquisition intervals parameter of host is configured, described when mobile terminal is sent by the bluetooth communication to be instructed Processor can reset the measurement parameter of the monitor host.
5. electromagnetic radiation monitoring device according to claim 1, which is characterized in that be provided with light on the monitor host Fine interface, the receiver are connect by the optical fiber interface with the monitor main-machine communication.
6. electromagnetic radiation monitoring device according to claim 5, which is characterized in that the processor is built-in with master control core Piece, the main control chip are electrically connected with the receiver, processor and radio transmitter respectively, and the main control chip can be used for The monitor host is controlled, and sets remote control mode for the operating mode of the monitor host, so that the monitor Host is not responding to the operation of itself key, only receives the data acquisition or control instruction of main control chip transmission.
7. electromagnetic radiation monitoring device according to claim 5, which is characterized in that the receiver is also used to receive described The model number information of monitor host, it is mobile whole to be transmitted to the model number information by the radio transmitter End.
8. electromagnetic radiation monitoring device according to claim 1, which is characterized in that the wireless communication device is built-in with electricity Pond power supply.
9. electromagnetic radiation monitoring device according to claim 1-8, which is characterized in that the wireless communication device It is fixedly connected on the monitor host.
10. electromagnetic radiation monitoring device according to claim 9, which is characterized in that further include monitoring modular;
The monitoring modular and the receiver are electrically connected, and the monitoring modular is for detecting whether the monitor host is located In remote control mode, when the monitor host exits remote control mode, then automatic transmission order allows the monitor host to enter To remote control mode.
CN201821097874.3U 2018-07-11 2018-07-11 electromagnetic radiation monitoring device Active CN208334511U (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110702998A (en) * 2019-11-09 2020-01-17 重庆市辐射技术服务中心有限公司 Electromagnetic radiation monitoring system based on mobile terminal and monitoring method thereof
CN110850181A (en) * 2019-11-09 2020-02-28 重庆市辐射技术服务中心有限公司 Base station electromagnetic radiation environment monitoring method and mobile monitoring device applied to same
CN113219260A (en) * 2021-05-24 2021-08-06 李祥芹 Regional environment electromagnetic radiation level monitoring device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110702998A (en) * 2019-11-09 2020-01-17 重庆市辐射技术服务中心有限公司 Electromagnetic radiation monitoring system based on mobile terminal and monitoring method thereof
CN110850181A (en) * 2019-11-09 2020-02-28 重庆市辐射技术服务中心有限公司 Base station electromagnetic radiation environment monitoring method and mobile monitoring device applied to same
CN113219260A (en) * 2021-05-24 2021-08-06 李祥芹 Regional environment electromagnetic radiation level monitoring device

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