CN219641801U - Internet of things current monitoring module - Google Patents

Internet of things current monitoring module Download PDF

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Publication number
CN219641801U
CN219641801U CN202320755017.2U CN202320755017U CN219641801U CN 219641801 U CN219641801 U CN 219641801U CN 202320755017 U CN202320755017 U CN 202320755017U CN 219641801 U CN219641801 U CN 219641801U
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seat
internet
things
detection
connection
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CN202320755017.2U
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Chinese (zh)
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翁永庆
季庆文
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Zhejiang Mingsheng Technology Co ltd
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Zhejiang Mingsheng Technology Co ltd
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Abstract

The utility model relates to the technical field of power engineering, in particular to an internet of things current monitoring module, which comprises an upper limit seat, an upper detection seat, a lower limit seat, a lower detection seat, a current detection sensor, an internet of things connecting seat and a module mounting seat. The utility model is convenient to adjust the position relation between the upper detection seat and the lower detection seat by arranging the upper limit seat and the lower limit seat, and is convenient to connect and fix the current detection sensor and electric power design lines to be detected with different sizes. Through the thing networking connecting seat on the lower spacing seat, install whole current detection module on the module mount pad, the module mount pad is set up in advance on the electric power design circuit that waits to detect, can realize from this that the current detection sensor on detection seat and the lower detection seat can be connected with the module mount pad on the electric power design circuit that waits to detect to let the current detection sensor wait to detect the electric power design circuit and carry out the line detection.

Description

Internet of things current monitoring module
Technical Field
The utility model relates to the technical field of power engineering, in particular to an internet of things current monitoring module.
Background
The current detection module is also a current sensor commonly used in power engineering. In the internet of things universal interconnection field, an internet of things current detection module with an individual identifier can automatically detect and display current, and automatically protect a power unit connected with the current detection module when dangerous conditions such as overcurrent and overvoltage occur, and even perform higher-level intelligent control.
The existing current monitoring module is large in size, complex in installation structure, cannot be quickly and conveniently arranged in a certain group of power design lines of the power engineering, and cannot meet the detection requirement of the power design lines with individual identification in the power design of the Internet of things.
Disclosure of Invention
Aiming at the technical problems in the background technology, the utility model provides an Internet of things current monitoring module.
The technical scheme of the utility model is as follows: the current monitoring module of the Internet of things comprises an upper limit seat, an upper detection seat, a lower limit seat, a lower detection seat, a current detection sensor, an Internet of things connecting seat and a module mounting seat.
The current detection sensors are arranged on the upper detection seat and the lower detection seat; the electric power design circuit to be detected is arranged between the upper detection seat and the lower detection seat; the upper detection seat is arranged on the upper limit seat; the lower detection seat is arranged on the lower limit seat; the upper limit seat and the lower limit seat are detachably connected.
The internet of things connecting seat is arranged on the lower limit seat and is in communication connection with the current detection sensor; the module mount pad sets up on the mounting panel that the electric power design circuit that waits to detect is located, and module mount pad and thing networking connecting seat can dismantle and be connected.
Preferably, the device further comprises an upper connecting seat, a lower connecting seat and a connecting piece; the upper connecting seat is arranged on the upper limit seat; the lower connecting seat is arranged on the lower limiting seat; the connecting piece is arranged on the upper connecting seat and the lower connecting seat.
Preferably, the connecting piece comprises a connecting screw and a connecting nut; the connecting screws are arranged on the upper connecting seat and the lower connecting seat; the connecting nut is in threaded connection with the connecting screw.
Preferably, the anti-collision device also comprises an anti-collision seat and a rubber strip; the anti-collision seat is arranged on the upper limit seat; the rubber strip is arranged on the anti-collision seat.
Preferably, the device also comprises a communication connecting seat; the communication connecting seat is arranged on the module mounting seat; the internet of things connecting seat is detachably arranged on the communication connecting seat; the current detection sensor is in communication connection with the communication connection base through the internet of things connection base.
Preferably, the device also comprises a communication connection induction piece; the connecting seat of the Internet of things is provided with a connecting groove; and the communication connection sensing piece is positioned in the connecting groove under the connection state of the Internet of things connecting seat and the communication connecting seat.
Preferably, the device further comprises a fixing screw; the fixed screw is arranged on the module mounting seat and the to-be-mounted surface of the current monitoring module of the Internet of things.
Compared with the prior art, the technical scheme provided by the utility model has the following beneficial technical effects: through setting up spacing seat and lower spacing seat, be convenient for adjust the positional relationship between detection seat and the lower detection seat, be convenient for with electric power design circuit connection fixed that waits to detect of electric current detection sensor and not unidimensional. Through the thing networking connecting seat on the lower spacing seat, install whole current detection module on the module mount pad, the module mount pad is set up in advance on the electric power design circuit that waits to detect, can realize from this that the current detection sensor on detection seat and the lower detection seat can be connected with the module mount pad on the electric power design circuit that waits to detect to let the current detection sensor wait to detect the electric power design circuit and carry out the line detection. The current monitoring module is simple in installation mode, the built-in internet of things connecting seat can be used for carrying out individual marking on the electric power design circuit to be detected, so that detection data are transmitted back to the internet of things channel, and the intelligent degree of current detection on the electric power design circuit is improved.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment of the present utility model.
Fig. 2 is an exploded view of one embodiment of the present utility model.
Fig. 3 is a schematic view of a partial enlarged structure at a in fig. 2.
Reference numerals: 1. an upper limit seat; 2. an upper detection seat; 3. a lower limit seat; 4. a lower detection seat; 5. a current detection sensor; 6. an upper connecting seat; 7. a lower connecting seat; 8. a connecting piece; 9. an anti-collision seat; 10. a rubber strip; 11. the internet of things connecting seat; 12. a module mounting base; 13. a communication connecting seat; 14. and (5) fixing a screw.
Detailed Description
Example 1
The current monitoring module of the internet of things provided by the embodiment comprises an upper limit seat 1, an upper detection seat 2, a lower limit seat 3, a lower detection seat 4, a current detection sensor 5, an internet of things connection seat 11 and a module installation seat 12.
As shown in fig. 1, the current detection sensor 5 is provided on the upper detection seat 2 and the lower detection seat 4; the electric power design circuit to be detected is arranged between the upper detection seat 2 and the lower detection seat 4; the upper detection seat 2 is arranged on the upper limit seat 1; the lower detection seat 4 is arranged on the lower limit seat 3; the upper limit seat 1 and the lower limit seat 3 are detachably connected.
The internet of things connecting seat 11 is arranged on the lower limit seat 3, and the internet of things connecting seat 11 is in communication connection with the current detection sensor 5; the module mount pad 12 sets up on the mounting panel that the electric power design circuit that waits to detect is located, and module mount pad 12 is connected with thing networking connecting seat 11 can be dismantled.
In this embodiment, by setting the upper limit seat 1 and the lower limit seat 3, it is convenient to adjust the positional relationship between the upper detection seat 2 and the lower detection seat 4, and it is convenient to connect and fix the current detection sensor 5 and the electric power design lines to be detected of different sizes. Through the thing networking connecting seat 11 on the lower spacing seat 3, install whole electric current detection module on module mount pad 12, module mount pad 12 is set up in advance on the electric power design circuit that waits to detect, can realize from this that the electric current that detects on seat 2 and the lower detection seat 4 detects the sensor 5 can be connected with the module mount pad 12 on the electric power design circuit that waits to detect, thereby let the electric current detect the sensor 5 wait to detect the electric power design circuit and carry out the line detection. The current monitoring module is simple in installation mode, the built-in internet of things connecting seat 11 can be used for carrying out individual marking on the electric power design line to be detected, so that detection data are transmitted back to the internet of things channel, and the intelligent degree of current detection on the electric power design line is improved.
Example two
The current monitoring module of the internet of things provided by the embodiment comprises an upper limit seat 1, an upper detection seat 2, a lower limit seat 3, a lower detection seat 4, a current detection sensor 5, an internet of things connection seat 11 and a module installation seat 12.
As shown in fig. 1 to 3, the current detection sensor 5 is provided on the upper detection seat 2 and the lower detection seat 4; the electric power design circuit to be detected is arranged between the upper detection seat 2 and the lower detection seat 4; the upper detection seat 2 is arranged on the upper limit seat 1; the lower detection seat 4 is arranged on the lower limit seat 3; the upper limit seat 1 and the lower limit seat 3 are detachably connected.
The internet of things connecting seat 11 is arranged on the lower limit seat 3, and the internet of things connecting seat 11 is in communication connection with the current detection sensor 5; the module mount pad 12 sets up on the mounting panel that the electric power design circuit that waits to detect is located, and module mount pad 12 is connected with thing networking connecting seat 11 can be dismantled.
Further, the device also comprises an upper connecting seat 6, a lower connecting seat 7 and a connecting piece 8; the upper connecting seat 6 is arranged on the upper limit seat 1; the lower connecting seat 7 is arranged on the lower limiting seat 3; the connecting piece 8 is arranged on the upper connecting seat 6 and the lower connecting seat 7.
Further, the connecting piece 8 comprises a connecting screw and a connecting nut; the connecting screws are arranged on the upper connecting seat 6 and the lower connecting seat 7; the connecting nut is in threaded connection with the connecting screw.
Further, the anti-collision device also comprises an anti-collision seat 9 and a rubber strip 10; the anti-collision seat 9 is arranged on the upper limit seat 1; the rubber strip 10 is arranged on the anti-collision seat 9 and plays a role in protecting the current monitoring module.
In this embodiment, by setting the upper limit seat 1 and the lower limit seat 3, it is convenient to adjust the positional relationship between the upper detection seat 2 and the lower detection seat 4, and it is convenient to connect and fix the current detection sensor 5 and the electric power design lines to be detected of different sizes. Through the thing networking connecting seat 11 on the lower spacing seat 3, install whole electric current detection module on module mount pad 12, module mount pad 12 is set up in advance on the electric power design circuit that waits to detect, can realize from this that the electric current that detects on seat 2 and the lower detection seat 4 detects the sensor 5 can be connected with the module mount pad 12 on the electric power design circuit that waits to detect, thereby let the electric current detect the sensor 5 wait to detect the electric power design circuit and carry out the line detection. The current monitoring module is simple in installation mode, the built-in internet of things connecting seat 11 can be used for carrying out individual marking on the electric power design line to be detected, so that detection data are transmitted back to the internet of things channel, and the intelligent degree of current detection on the electric power design line is improved.
Example III
The current monitoring module of the internet of things provided by the embodiment comprises an upper limit seat 1, an upper detection seat 2, a lower limit seat 3, a lower detection seat 4, a current detection sensor 5, an internet of things connection seat 11 and a module installation seat 12.
As shown in fig. 1 to 3, the current detection sensor 5 is provided on the upper detection seat 2 and the lower detection seat 4; the electric power design circuit to be detected is arranged between the upper detection seat 2 and the lower detection seat 4; the upper detection seat 2 is arranged on the upper limit seat 1; the lower detection seat 4 is arranged on the lower limit seat 3; the upper limit seat 1 and the lower limit seat 3 are detachably connected.
The internet of things connecting seat 11 is arranged on the lower limit seat 3, and the internet of things connecting seat 11 is in communication connection with the current detection sensor 5; the module mount pad 12 sets up on the mounting panel that the electric power design circuit that waits to detect is located, and module mount pad 12 is connected with thing networking connecting seat 11 can be dismantled.
Further, the device also comprises a communication connection seat 13; the communication connection seat 13 is arranged on the module installation seat 12; the internet of things connecting seat 11 is detachably arranged on the communication connecting seat 13; the current detection sensor 5 is in communication connection with the communication connection seat 13 through the internet of things connection seat 11.
Further, the device also comprises a communication connection induction piece 15; the connecting seat 11 of the Internet of things is provided with a connecting groove 16; under the connected state of the internet of things connecting seat 11 and the communication connecting seat 13, the communication connection sensing piece 15 is located in the connecting groove 16, and therefore the internet of things connecting seat 11 and the module mounting seat 12 are in communication connection.
Further, the device also comprises a set screw 14; the set screw 14 is disposed on the module mount 12 and the to-be-mounted surface of the current monitoring module of the internet of things.
In this embodiment, by setting the upper limit seat 1 and the lower limit seat 3, it is convenient to adjust the positional relationship between the upper detection seat 2 and the lower detection seat 4, and it is convenient to connect and fix the current detection sensor 5 and the electric power design lines to be detected of different sizes. Through the thing networking connecting seat 11 on the lower spacing seat 3, install whole electric current detection module on module mount pad 12, module mount pad 12 is set up in advance on the electric power design circuit that waits to detect, can realize from this that the electric current that detects on seat 2 and the lower detection seat 4 detects the sensor 5 can be connected with the module mount pad 12 on the electric power design circuit that waits to detect, thereby let the electric current detect the sensor 5 wait to detect the electric power design circuit and carry out the line detection. The current monitoring module is simple in installation mode, the built-in internet of things connecting seat 11 can be used for carrying out individual marking on the electric power design line to be detected, so that detection data are transmitted back to the internet of things channel, and the intelligent degree of current detection on the electric power design line is improved.
It is to be understood that the above-described embodiments of the present utility model are merely illustrative of or explanation of the principles of the present utility model and are in no way limiting of the utility model. Accordingly, any modification, equivalent replacement, improvement, etc. made without departing from the spirit and scope of the present utility model should be included in the scope of the present utility model. Furthermore, the appended claims are intended to cover all such changes and modifications that fall within the scope and boundary of the appended claims, or equivalents of such scope and boundary.

Claims (7)

1. The current monitoring module of the Internet of things comprises a current detection sensor (5); the device is characterized by comprising an upper limit seat (1), an upper detection seat (2), a lower limit seat (3), a lower detection seat (4), an Internet of things connecting seat (11) and a module mounting seat (12);
the current detection sensor (5) is arranged on the upper detection seat (2) and the lower detection seat (4); the electric power design circuit to be detected is arranged between the upper detection seat (2) and the lower detection seat (4); the upper detection seat (2) is arranged on the upper limit seat (1); the lower detection seat (4) is arranged on the lower limit seat (3); the upper limit seat (1) and the lower limit seat (3) are detachably connected;
the internet of things connecting seat (11) is arranged on the lower limit seat (3), and the internet of things connecting seat (11) is in communication connection with the current detection sensor (5); the module installation seat (12) is arranged on an installation panel where the electric power design line to be detected is located, and the module installation seat (12) is detachably connected with the Internet of things connection seat (11).
2. The internet of things current monitoring module according to claim 1, further comprising an upper connection base (6), a lower connection base (7) and a connection piece (8); the upper connecting seat (6) is arranged on the upper limit seat (1); the lower connecting seat (7) is arranged on the lower limiting seat (3); the connecting piece (8) is arranged on the upper connecting seat (6) and the lower connecting seat (7).
3. The internet of things current monitoring module according to claim 2, characterized in that the connection (8) comprises a connection screw and a connection nut; the connecting screws are arranged on the upper connecting seat (6) and the lower connecting seat (7); the connecting nut is in threaded connection with the connecting screw.
4. The internet of things current monitoring module according to claim 1, further comprising an anti-collision seat (9) and a rubber strip (10); the anti-collision seat (9) is arranged on the upper limit seat (1); the rubber strip (10) is arranged on the anti-collision seat (9).
5. The internet of things current monitoring module according to claim 1, further comprising a communication connection base (13); the communication connecting seat (13) is arranged on the module mounting seat (12); the internet of things connecting seat (11) is detachably arranged on the communication connecting seat (13); the current detection sensor (5) is in communication connection with the communication connection seat (13) through the internet of things connection seat (11).
6. The internet of things current monitoring module according to claim 1, further comprising a communication connection sensing piece (15); a connecting groove (16) is formed in the connecting seat (11) of the Internet of things; and under the connection state of the Internet of things connecting seat (11) and the communication connecting seat (13), the communication connection sensing piece (15) is positioned in the connecting groove (16).
7. The internet of things current monitoring module of claim 1, further comprising a set screw (14); the fixing screw (14) is arranged on the module mounting seat (12) and the to-be-mounted surface of the current monitoring module of the Internet of things.
CN202320755017.2U 2023-04-07 2023-04-07 Internet of things current monitoring module Active CN219641801U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320755017.2U CN219641801U (en) 2023-04-07 2023-04-07 Internet of things current monitoring module

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320755017.2U CN219641801U (en) 2023-04-07 2023-04-07 Internet of things current monitoring module

Publications (1)

Publication Number Publication Date
CN219641801U true CN219641801U (en) 2023-09-05

Family

ID=87807972

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320755017.2U Active CN219641801U (en) 2023-04-07 2023-04-07 Internet of things current monitoring module

Country Status (1)

Country Link
CN (1) CN219641801U (en)

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