CN211906497U - Alarm device - Google Patents

Alarm device Download PDF

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Publication number
CN211906497U
CN211906497U CN202020656788.2U CN202020656788U CN211906497U CN 211906497 U CN211906497 U CN 211906497U CN 202020656788 U CN202020656788 U CN 202020656788U CN 211906497 U CN211906497 U CN 211906497U
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unit
alarm
power supply
trigger signal
security
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CN202020656788.2U
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邓先付
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Shenzhen Pilot Guards Safety Technology Co ltd
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Shenzhen Pilot Guards Safety Technology Co ltd
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Abstract

The application discloses an alarm. Relate to the security protection field, wherein, the alarm includes receiving element: the device is connected with a detection unit arranged in a detection area, and is used for receiving the trigger signal of the detection area acquired by the detection unit and sending the received trigger signal, and the processing unit: the network unit is used for receiving the trigger signal and sending a security prompt according to the trigger signal: the security monitoring system is used for receiving the security data sent by the processing unit, pushing the security data to the terminal through the server, and carrying out security monitoring on the detection area through the terminal. Compared with the detection area coverage range caused by the adoption of a wired network in the related technology, the security data pushing method and the security data pushing device have the advantages that the security data pushing is carried out through the network unit and the server, the security data of the detection area covered by the network can be pushed to the terminal through the server, the user can carry out whole-course real-time monitoring on the detection area, and the problem of region limitation and timeliness of a traditional alarm is solved.

Description

Alarm device
Technical Field
The application relates to the security protection field, especially relates to alarm.
Background
The alarm is very important in a security system, but the traditional alarm has the defects of limited coverage area, small range and low transmission distance of alarm signals, and the defects limit the application of the alarm in the security field.
Disclosure of Invention
The present application is directed to solving at least one of the problems in the prior art. Therefore, the alarm can improve the coverage of the detection area of the alarm, increase the transmission distance of signals and expand the application of the alarm in the security field.
In a first aspect, an embodiment of the present application provides an alarm, including:
a receiving unit: the device comprises a detection unit, a trigger unit and a control unit, wherein the detection unit is used for being connected with a detection area, receiving a trigger signal of the detection area acquired by the detection unit and sending the received trigger signal;
a processing unit: the receiving unit is connected with the receiving unit and used for receiving the trigger signal sent by the receiving unit and sending a security protection prompt according to the trigger signal;
a network unit: and the processing unit is connected with the security data and used for receiving the security data sent by the processing unit and pushing the security data to a terminal through a server, so that the security data can be monitored in the detection area through the terminal, and the security data comprises: the triggering signal and the security prompt.
Further, the receiving unit is configured to receive a trigger signal acquired by at least one of the detecting units.
Further, the alarm still includes function setting unit, function setting unit with processing unit connects, is used for setting up the running state of alarm and the network connection parameter of network element, the running state includes: an operating state or a sleep state, the operating state including: one or more of a defense deploying state, a defense withdrawing state, a defense reserving and deploying state and an alarm state.
Further, the alarm still includes:
a reminding unit: and the processing unit is connected with the monitoring unit and is used for reminding the security prompt or the working state.
Further, the reminding unit comprises: one or more of a voice unit and a display unit.
Furthermore, the alarm further comprises an antenna unit, wherein the antenna unit is connected with the detection unit and the receiving unit, and is used for receiving the trigger signal sent by the detection unit and enhancing the trigger signal and then sending the trigger signal to the receiving unit.
Further, the alarm still includes power supply unit, power supply unit is used for doing the alarm power supply, power supply unit includes: a power source.
Further, the power supply unit still includes backup battery, the alarm still includes:
a power supply detection unit: the processing unit is connected with the power supply and is used for detecting whether the power supply fails or not; and the standby battery is used for supplying power to the alarm when the power supply fails.
Further, the power supply detection unit is further configured to detect a power supply voltage of the backup battery, and when the power supply voltage is lower than a preset voltage threshold, send a power supply early warning prompt to the processing unit.
Further, the detection unit includes: one or more of a magnetic detector, an infrared detector, a laser detector and a photoelectric detector.
The beneficial effects of the embodiment of the application are that:
the alarm of the embodiment of the application comprises a receiving unit: the device is connected with a detection unit arranged in a detection area, and is used for receiving the trigger signal of the detection area acquired by the detection unit and sending the received trigger signal, and the processing unit: be connected with the receiving element for receive trigger signal and send the security protection suggestion according to trigger signal, the network element: be connected with processing unit for receive the security protection data that processing unit sent, and be used for through the server with security protection data propelling movement to terminal, with through terminal to carrying out security protection monitoring to the detection area, security protection data includes: triggering signals and security protection prompts. Compared with the detection area coverage range caused by the adoption of a wired network in the related technology, the security data pushing method and the security data pushing device have the advantages that the security data pushing is carried out through the network unit and the server, the security data of the detection area covered by the network can be pushed to the terminal through the server, the user can carry out whole-course real-time monitoring on the detection area, and the problem of region limitation and timeliness of a traditional alarm is solved.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the application.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and together with the description, serve to explain the principles of the application. It is obvious that the drawings in the following description are only some embodiments of the application, and that for a person skilled in the art, other drawings can be derived from them without inventive effort. In the drawings:
FIG. 1 is a schematic diagram of a structural connection of an embodiment of an alarm system including an alarm according to an embodiment of the present application;
fig. 2 is a structural connection schematic diagram of a specific embodiment of the alarm of the embodiment of the application.
Detailed Description
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following description will be made with reference to the accompanying drawings. It is obvious that the drawings in the following description are only some examples of the present application, and that for a person skilled in the art, other drawings and other embodiments can be obtained from these drawings without inventive effort.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein in the description of the present application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application.
The flow charts shown in the drawings are merely illustrative and do not necessarily include all of the contents and operations/steps, nor do they necessarily have to be performed in the order described. For example, some operations/steps may be decomposed, and some operations/steps may be combined or partially combined, so that the actual execution sequence may be changed according to the actual situation.
The alarm in the related art usually has the defects of being limited by wired network laying, small coverage area, short signal transmission distance, single alarm information transmission and the like, so the alarm is provided by the application to solve the defects to a certain extent, a wireless network is used as a transmission carrier, the autonomous management of a single area is realized, the whole-course real-time monitoring of a large area consisting of a plurality of detection areas is realized, and the regional limitation and the timeliness of the traditional alarm are solved.
An alarm 100 is provided in an embodiment of the present application, and fig. 1 is a schematic structural connection diagram of an alarm system including the alarm 100 provided in the embodiment of the present application, where the alarm system includes: alarm 100, detection unit 200 and server 300.
The alarm 100 is in communication connection with the detection unit 200, and the alarm 100 is also in communication connection with the server 300.
The detection unit 200: and the trigger signal acquisition unit is arranged in the detection area and is used for acquiring the trigger signal of the detection area.
In an embodiment, the number of the detection units 200 is at least one, and one detection unit 200 may be installed in each detection area according to the number of the detection areas, for example, areas such as dormitories, rooms, yards, public areas, and the like may be used as the detection areas according to security needs, and security monitoring may be performed on a plurality of detection areas at the same time.
In one embodiment, the detection unit 200 comprises: one or more of a magnetic detector, an infrared detector, a laser detector and a photoelectric detector, that is, a trigger signal is detected by the detection unit 200 according to a setting, for example, an infrared detector is installed at a doorway, and if a person passes through the detection unit, infrared sensing is triggered, so that the trigger signal is collected by the infrared detector in the detection area.
It can be understood that one or more than one detection unit 200 can be installed in the same detection area, and the detection units can be of different types or the same type, or a plurality of detection areas are provided with a plurality of detection units 200 of different types, so that the detection areas can be covered according to security requirements.
The server 300: and the terminal is connected with the alarm 100 and used for receiving security data sent by the alarm 100 and pushing the security data to the terminal 400 so as to realize security monitoring of the detection area.
In one embodiment, the terminal 400 includes: the embodiment of the present application is not limited herein, and the embodiment of the present application only needs to enable a user to visually obtain security data.
In one embodiment, the user receives the security data pushed by the server 300 through a client on the terminal 400 or mobile phone software, and monitors the security state of each detection area in real time, so as to facilitate timely response. Meanwhile, the alarm 100 of the embodiment of the application uses a wireless network as a transmission carrier, and in a detection area covered by the network, the independent management of a single detection area or the whole-course monitoring of a large area formed by a plurality of detection areas is realized through a client or mobile phone software, so that the security state of the detection areas can be known in real time.
Referring to fig. 2, which is a schematic view of the structural connection of the alarm 100 of the present application, it can be seen that the alarm 100 includes the following components:
the receiving unit 110: for connecting the detection unit 200 installed in the detection area, for receiving the trigger signal of the detection area acquired by the detection unit 200 and for sending the received trigger signal, i.e. if the trigger signal acquired by the detection unit 200 in the detection area, the trigger signal is sent to the receiving unit 110.
In one embodiment, the antenna unit 120 further comprises: the detection unit 200 and the receiving unit 110 are in communication connection, and are configured to receive the trigger signal sent by the detection unit 200, enhance the trigger signal, and send the enhanced trigger signal to the receiving unit 110, that is, the antenna unit 120 enhances the power of the trigger signal, and increases the transmission distance of the trigger signal in the detection area, so that the alarm 100 can cover a larger detection area, and the use range of the alarm 100 is expanded.
In one embodiment, the detecting unit 200 encodes the trigger signal by EV1527 encoding protocol at 433MHz frequency, and transmits the trigger signal to the antenna unit 120 in the form of radio frequency wireless signal, and a 433MHz spring antenna is used as the antenna unit 120, and after receiving the radio frequency wireless signal and performing power amplification, the detecting unit 200 transmits the amplified trigger signal to the receiving unit 110 for further processing.
The processing unit 130: and the receiving unit 110 is connected to send a security prompt according to the trigger signal.
In one embodiment, a Micro Control Unit (MCU) is used as the processing Unit 130, and the MCU analyzes the received trigger signal and converts the analysis result into a security prompt. For example, the MCU receives an infrared trigger signal collected by an infrared detector in the detection area, judges whether an invader appears in the detection area according to the infrared trigger signal, and generates a security prompt.
The network unit 140: the processing unit 130 is connected to receive and send security data to the server 300, so that the server 300 pushes the security data to a terminal, and security monitoring of a detection area is achieved, where the security data includes: triggering signals and security protection prompts.
In one embodiment, the network unit 140 is implemented by a wireless module, for example, a WIFI module of the model HF-LPT230, which is a small-sized product with low power consumption and supports the wireless transmission standard: the 802.11b/g/n wireless standard realizes the mutual communication between the security data in the processing unit 130 and the background of the server 300, and can improve the use coverage of the alarm 100.
In one embodiment, the network unit 140 and the processing unit 130 communicate with each other through a URAT (Universal Asynchronous Receiver/Transmitter) serial port, and perform data interaction by using an AT command of the serial port.
In one embodiment, the function setting unit 150 is further included: connected to the processing unit 130, for setting an operation state of the alarm 100 and a network connection parameter of the network unit 140, wherein the operation state includes: the operating mode or the sleep mode, specifically, the operating mode includes: one or more of a defense deploying state, a defense withdrawing state, a defense reserving and deploying state and an alarm state. For example, selecting which operation state to enter or configuring network connection parameters, such as user name, password, connection network speed, etc., by means of pressing a key or touching a screen.
In one embodiment, the operating state is as follows.
1) And (3) defense state: the alarm 100 is placed in a security task (e.g., anti-theft) to enter a security state, which may be a armed state, an armed state, or a powered-on state.
2) A disarming state: this refers to the revocation of security tasks (e.g., theft prevention), also known as disarm or off states.
3) And (3) keeping a defense state: when a user is in a detection area (such as home), only an alert state needs to be arranged on the entrance or the periphery of the detection area, namely a home defense state.
4) And (4) alarm state: the finger processing unit 130 sends a security prompt according to the trigger signal, sends an alarm signal on the detection site according to the security prompt, and pushes the security prompt to the mobile phone software on the terminal 400 (for example, a mobile phone) of the user, thereby implementing a series of alarm actions.
In one embodiment, the function setting unit 150 is implemented by a key, and the function selection can be performed by a key frequency or a key duration, for example: in the disarming state, the key is pressed for 5 seconds to shut down, in the shutdown state, the key is pressed for 2 seconds to enter the startup state, and then the key is pressed for 5 seconds to enter the network connection parameter configuration.
In one embodiment, the reminder unit 160 is included: and the processing unit 130 is in communication connection and is used for reminding security prompt or working state. For example, at night, the processing unit 130 determines that someone invades according to the trigger signal, and then the reminding unit 160 sends out a reminding signal to remind relevant people to pay attention in a security prompt manner.
In one embodiment, the reminder unit 160 includes a voice unit and/or a display unit.
For example, the voice unit can be controlled by an existing voice chip to output a voice signal, for example, the type of the voice chip is WTN6090, the sampling rate of the voice chip of the type can reach up to 32kHz to 48kHz, and meanwhile, the voice unit includes 16-level volume control, and two audio output modes are respectively: PWM (Pulse width modulation) and DAC (Digital to Analog Converter) and have the feature of ultra-low power consumption. For example, similar to: "alarm! Human intrusion, SOS alarm and other voice signals, or similar signals are generated according to the working state: the voice signals of entering a defense state, entering a defense withdrawing state, entering a defense reserving and deploying state, entering an alarm state and the like.
In an implementation mode, the voice signal can be played through a voice loudspeaker to inform a user of the current security prompt or working state.
For example, the display unit may prompt through the color or the flashing frequency of the indicator light, for example, the display unit may prompt through the LED three-color light to display three colors of red, yellow, and green, for example:
the green light is always on: indicating that the alarm 100 is in a disarmed state;
the yellow light is normally on: indicating that the alarm 100 is in the armed state;
the red light is normally on: indicating that the operational state of the alarm 100 is in an alarm state;
flashing with yellow light: indicating that the working state of the alarm 100 is in a delayed defense entering state;
flashing with red light: indicating that the working state of the alarm 100 is in a delayed entering alarm state;
it should be understood that the above is only an example of the display unit, and the present embodiment does not limit this.
In one embodiment, the power supply unit further comprises: the power supply unit is used for supplying power to the alarm 100, and for example, the power supply unit is connected to the receiving unit 110, the processing unit 130, the network unit 140, and the antenna unit 120 of the alarm 100. Wherein the power supply unit includes: a power source.
In one embodiment, the power supply unit further comprises a backup battery.
In one embodiment, the power supply detection unit: and the power supply detection unit is connected to the processing unit 130, and is configured to detect whether the power supply fails, where the backup battery is used to supply power to the alarm 100 when the power supply fails, and the power supply detection unit is further configured to detect a power supply voltage of the backup battery, and send a power supply warning prompt to the processing unit 130 when the power supply voltage is lower than a preset voltage threshold (e.g., 5V).
For example, commercial power (e.g., 220V ac) is converted to a common operating voltage (e.g., 5V dc) by a transformer through a power supply, and is output for powering various functional units or backup batteries of the alarm 100.
In one embodiment, the backup battery may be a 3.7V/280mAh lithium battery for powering the alarm 100 through the backup battery when the power fails.
The alarm of this application embodiment carries out security protection data propelling movement through network element and server, can pass through server propelling movement to the terminal with the security protection data that has the detection zone that the network covered, realizes that the user carries out whole real time monitoring to the detection zone, has solved the region limitation and the ageing of traditional alarm.
It should be noted that: the sequence of the embodiments of the present application is only for description, and does not represent the advantages and disadvantages of the embodiments. And specific embodiments thereof have been described above. Other embodiments are within the scope of the following claims. In some cases, the actions or steps recited in the claims may be performed in a different order than in the embodiments and still achieve desirable results. In addition, the processes depicted in the accompanying figures do not necessarily require the particular order shown, or sequential order, to achieve desirable results. In some embodiments, multitasking and parallel processing may also be possible or may be advantageous.
The embodiments in the present specification are described in a progressive manner, and the same and similar parts among the embodiments are referred to each other, and each embodiment focuses on the differences from the other embodiments.
The above embodiments are only used for illustrating the technical solutions of the present application, and not for limiting the same, although the present application is described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present disclosure, and the present disclosure should be construed as being covered by the claims and the specification.

Claims (10)

1. Alarm, its characterized in that includes:
a receiving unit: the device comprises a detection unit, a trigger unit and a control unit, wherein the detection unit is used for being connected with a detection area, receiving a trigger signal of the detection area acquired by the detection unit and sending the received trigger signal;
a processing unit: the receiving unit is connected with the receiving unit and used for receiving the trigger signal sent by the receiving unit and sending a security protection prompt according to the trigger signal;
a network unit: and the processing unit is connected with the security data and used for receiving the security data sent by the processing unit and pushing the security data to a terminal through a server, so that the security data can be monitored in the detection area through the terminal, and the security data comprises: the triggering signal and the security prompt.
2. The alarm apparatus according to claim 1, wherein said receiving unit is adapted to receive a trigger signal collected by at least one of said detecting units.
3. The alarm of claim 1, further comprising:
a function setting unit: and the processing unit is connected with the alarm device and used for setting the running state of the alarm device and the network connection parameters of the network unit, and the running state comprises the following steps: an operating state or a sleep state, the operating state including: one or more of a defense deploying state, a defense withdrawing state, a defense reserving and deploying state and an alarm state.
4. The alarm of claim 3, further comprising:
a reminding unit: and the processing unit is connected with the monitoring unit and is used for reminding the security prompt or the working state.
5. The alarm of claim 4, wherein the reminder unit comprises: a speech unit and/or a display unit.
6. The alarm of claim 1, further comprising:
an antenna unit: and the trigger signal is connected with the receiving unit and used for enhancing the trigger signal received by the receiving unit.
7. An alarm unit according to any one of claims 1 to 6 further including: a power supply unit: for supplying power to the alarm, the power supply unit includes: a power source.
8. The alarm of claim 7, wherein the power supply unit further comprises a battery backup, the alarm further comprising:
a power supply detection unit: the processing unit is connected with the power supply and is used for detecting whether the power supply fails or not; and the standby battery is used for supplying power to the alarm when the power supply fails.
9. The alarm of claim 8, wherein the power supply detection unit is further configured to detect a power supply voltage of the backup battery, and further configured to send a power supply warning prompt to the processing unit when the power supply voltage is lower than a preset voltage threshold.
10. The alarm of claim 7, wherein the detection unit comprises: one or more of a magnetic detector, an infrared detector, a laser detector and a photoelectric detector.
CN202020656788.2U 2020-04-26 2020-04-26 Alarm device Active CN211906497U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020656788.2U CN211906497U (en) 2020-04-26 2020-04-26 Alarm device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020656788.2U CN211906497U (en) 2020-04-26 2020-04-26 Alarm device

Publications (1)

Publication Number Publication Date
CN211906497U true CN211906497U (en) 2020-11-10

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CN202020656788.2U Active CN211906497U (en) 2020-04-26 2020-04-26 Alarm device

Country Status (1)

Country Link
CN (1) CN211906497U (en)

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