CN219085302U - Power taking switch - Google Patents
Power taking switch Download PDFInfo
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- CN219085302U CN219085302U CN202223479405.7U CN202223479405U CN219085302U CN 219085302 U CN219085302 U CN 219085302U CN 202223479405 U CN202223479405 U CN 202223479405U CN 219085302 U CN219085302 U CN 219085302U
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- circuit board
- module
- main circuit
- cavity
- wifi communication
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Abstract
The utility model discloses an electricity taking switch, which comprises a shell (1) and a control component (2); the control assembly (2) comprises a main circuit board (3), a power module (4) and a relay module (5) are arranged on the front surface of the main circuit board (3), and a card reading module (9) is arranged on the back surface of the main circuit board (3); the lower end of the front surface of the main circuit board (3) is provided with a side circuit board (6) perpendicular to the main circuit board, the top surface of the side circuit board (6) is provided with a Bluetooth control module (7), and the bottom surface of the side circuit board (6) is provided with a WIFI communication module (8); the utility model has the Bluetooth and WIFI communication functions, can upload the power taking state in a networking way, and can control the power taking state in a room through the Bluetooth control module and the WIFI communication module, thereby improving the convenience of use.
Description
Technical Field
The utility model relates to the technical field of switches, in particular to an electricity taking switch.
Background
The power taking switch is an energy-saving product specially designed for hotel rooms, when guests of the hotel enter the rooms, the door card is inserted into the special card power taking switch, so that equipment such as illumination, televisions and air conditioners in the rooms can be used, when the guests leave the rooms, the door card is taken out, the circuits in the rooms are in a power-off state, and the power taking switch can save electric energy on one hand and can make the electricity consumption of the rooms safer on the other hand. The Chinese patent of utility model with publication number CN208189458U discloses a card-inserting electricity-taking switch, and specifically discloses a card-inserting panel comprising a switch backboard and a card-inserting panel arranged on one side of the switch backboard, wherein a first clamping block and an induction module are arranged on two sides of the card-inserting panel. The structure of the power taking switch disclosed in the patent of the utility model is a main current structure, only has the function of card insertion induction, and does not have a networking interaction function, for example, a hotel worker cannot remotely know whether a room is in an electrified state or a powered-off state through the power taking switch, and the hotel worker is required to go to the door for checking, so that the hotel worker is inconvenient to use.
Disclosure of Invention
The utility model aims to provide a power taking switch. The utility model has the Bluetooth and WIFI communication functions, can upload the power taking state in a networking way, and can control the power taking state in a room through the Bluetooth control module and the WIFI communication module, thereby improving the convenience of use.
The technical scheme of the utility model is as follows: an electricity taking switch comprises a shell and a control component; the control assembly comprises a main circuit board, wherein the front surface of the main circuit board is provided with a power supply module and a relay module, and the back surface of the main circuit board is provided with a card reading module; the lower end of the front surface of the main circuit board is provided with a side circuit board perpendicular to the main circuit board, the top surface of the side circuit board is provided with a Bluetooth control module, and the bottom surface of the side circuit board is provided with a WIFI communication module; the Bluetooth control module and the WIFI communication module are respectively connected with the relay module and the card reading module, the power supply module is connected with the relay module, and the relay module is connected with the card reading module; the power module is also connected with the Bluetooth control module and the WIFI communication module; the shell is internally provided with a jogged cavity, an opening of the jogged cavity is matched with the main circuit board, and the depth of the jogged cavity corresponds to the width of the side circuit board.
In the power taking switch, the upper part of the front surface of the main circuit board is provided with the connecting sleeve, the connecting sleeve is internally provided with the fixing cavity, and the side surface of the connecting sleeve is provided with the thread fixing hole communicated with the fixing cavity and the outside; the side part of the embedded cavity is provided with a connecting through hole corresponding to the thread fixing hole.
In the power taking switch, the side surface of the upper part of the connecting sleeve is a plane.
In the power taking switch, the shell is provided with uniformly distributed heat dissipation holes.
Compared with the prior art, the utility model has the following beneficial effects:
1. the control assembly comprises a main circuit board, wherein the front surface of the main circuit board is provided with a power supply module and a relay module, and the back surface of the main circuit board is provided with a card reading module; the lower end of the front surface of the main circuit board is provided with a side circuit board perpendicular to the main circuit board, the top surface of the side circuit board is provided with a Bluetooth control module, and the bottom surface of the side circuit board is provided with a WIFI communication module; the Bluetooth control module and the WIFI communication module are respectively connected with the relay module and the card reading module, the power supply module is connected with the relay module, and the relay module is connected with the card reading module; the power module is also connected with the Bluetooth control module and the WIFI communication module; the card reading module is used for reading the current card inserting state and is received by the Bluetooth control module and the WIFI communication module, and then the Bluetooth control module and the WIFI communication module carry out remote networking on the signal in a Bluetooth and WIFI connection mode, so that hotel staff can conveniently receive electricity taking conditions in a guest room remotely. In addition, simultaneously hotel staff also can long-range control signal that sends, and the signal is fed back to the relay after receiving by bluetooth control module or WIFI communication module, controls the circular telegram and the outage of card reading module through the switching of relay, and then realizes getting the remote control of electric state in the room, and practicality and convenience are good.
2. The utility model is divided into a main circuit board and a side circuit board, the area occupied by the control component transversely is effectively reduced by longitudinally arranging the side circuit board, the card reading module, the power module and the relay module fully occupy the front side and the back side of the main circuit board, and the Bluetooth control module and the WIFI communication module fully occupy the front side and the back side of the side circuit board.
2. The shell is internally provided with the embedded cavity, the opening of the embedded cavity is matched with the main circuit board, the depth of the embedded cavity corresponds to the width of the side circuit board, and the control assembly can be completely embedded into the shell and only keeps the card reading module to face outwards, so that the shell can protect all the modules inside, and the reliability of use is effectively improved.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic diagram of a main circuit board of the present utility model;
FIG. 3 is a schematic diagram of a side circuit board of the present utility model;
FIG. 4 is a schematic view of the structure of the housing of the present utility model;
fig. 5 is a schematic diagram of the connection structure of the control assembly of the present utility model.
The marks in the drawings are: 1-a housing; 2-a control assembly; 3-a main circuit board; 4-a power module; a 5-relay module; 6-side circuit boards; 7-a Bluetooth control module; 8-WIFI communication module; 9-a card reading module; 10-a chimeric cavity; 12-connecting sleeve; 13-a fixation cavity; 14-a threaded fixing hole; 15-connecting through holes; 16-heat dissipation holes.
Detailed Description
The utility model is further illustrated by the following figures and examples, which are not intended to be limiting.
Examples: an electricity taking switch, as shown in figure 1, comprises a shell 1 and a control component 2; as shown in fig. 2 and fig. 3, the control assembly 2 comprises a main circuit board 3, wherein a power module 4 and a relay module 5 are arranged on the front surface of the main circuit board 3, and a card reading module 9 is arranged on the back surface of the main circuit board 3; the lower end of the front surface of the main circuit board 3 is provided with a side circuit board 6 perpendicular to the main circuit board, the top surface of the side circuit board 6 is provided with a Bluetooth control module 7, and the bottom surface of the side circuit board 6 is provided with a WIFI communication module 8; as shown in fig. 5, the bluetooth control module 7 and the WIFI communication module 8 are respectively connected with the relay module 5 and the card reading module 9, the power module 4 is connected with the relay module 5, and the relay module 5 is connected with the card reading module 9; the power module 4 is also connected with the Bluetooth control module 7 and the WIFI communication module 8 to realize power supply; as shown in fig. 4, the housing 1 has a square engaging cavity 10, an opening of the engaging cavity 10 is engaged with the main circuit board 3, and a depth of the engaging cavity 10 corresponds to a width of the side circuit board 6; the upper part of the front surface of the main circuit board 3 is provided with a connecting sleeve 12, a fixed cavity 13 is arranged in the connecting sleeve 12, and the side surface of the connecting sleeve 12 is provided with a thread fixed hole 14 which is communicated with the fixed cavity 13 and the outside; the side part of the embedded cavity 10 is provided with a connecting through hole 15 corresponding to the thread fixing hole 14, when the embedded cavity is installed, the control assembly 2 is extended into the embedded cavity 10, and bolts are screwed into the connecting through hole 15 and the thread fixing hole 14 to realize connection between the shell 1 and the control assembly 2, so that the installation is convenient; the upper side surface of the connecting sleeve 12 is a plane, so that the connecting sleeve is convenient to attach to the side surface of the embedded cavity, and the stability after connection is improved; the shell 1 is provided with uniformly distributed heat dissipation holes 16, so that the control component 2 in the embedded cavity 10 can conveniently dissipate heat.
Working principle: the card reading module is used for reading the current card inserting state and is received by the Bluetooth control module and the WIFI communication module, and then the Bluetooth control module and the WIFI communication module carry out remote networking on the signal in a Bluetooth and WIFI connection mode, so that hotel staff can conveniently receive electricity taking conditions in a guest room remotely. In addition, simultaneously hotel staff also can long-range control signal that sends, and the signal is fed back to the relay after receiving by bluetooth control module or WIFI communication module, controls the circular telegram and the outage of card reading module through the switching of relay, and then realizes the remote control of getting the electric state in the room.
Claims (4)
1. An electricity taking switch is characterized in that: comprises a shell (1) and a control component (2); the control assembly (2) comprises a main circuit board (3), a power module (4) and a relay module (5) are arranged on the front surface of the main circuit board (3), and a card reading module (9) is arranged on the back surface of the main circuit board (3); the lower end of the front surface of the main circuit board (3) is provided with a side circuit board (6) perpendicular to the main circuit board, the top surface of the side circuit board (6) is provided with a Bluetooth control module (7), and the bottom surface of the side circuit board (6) is provided with a WIFI communication module (8); the Bluetooth control module (7) and the WIFI communication module (8) are respectively connected with the relay module (5) and the card reading module (9), the power module (4) is connected with the relay module (5), and the relay module (5) is connected with the card reading module (9); the power module (4) is also connected with the Bluetooth control module (7) and the WIFI communication module (8); the shell (1) is internally provided with a jogged cavity (10), an opening of the jogged cavity (10) is matched with the main circuit board (3), and the depth of the jogged cavity (10) corresponds to the width of the side circuit board (6).
2. The power take-off switch of claim 1, wherein: the upper part of the front surface of the main circuit board (3) is provided with a connecting sleeve (12), a fixed cavity (13) is arranged in the connecting sleeve (12), and the side surface of the connecting sleeve (12) is provided with a threaded fixed hole (14) for communicating the fixed cavity (13) with the outside; the side part of the embedded cavity (10) is provided with a connecting through hole (15) corresponding to the thread fixing hole (14).
3. The power take-off switch of claim 2, wherein: the upper side surface of the connecting sleeve (12) is a plane.
4. The power take-off switch of claim 1, wherein: and the shell (1) is provided with uniformly distributed radiating holes (16).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202223479405.7U CN219085302U (en) | 2022-12-26 | 2022-12-26 | Power taking switch |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202223479405.7U CN219085302U (en) | 2022-12-26 | 2022-12-26 | Power taking switch |
Publications (1)
Publication Number | Publication Date |
---|---|
CN219085302U true CN219085302U (en) | 2023-05-26 |
Family
ID=86401207
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202223479405.7U Active CN219085302U (en) | 2022-12-26 | 2022-12-26 | Power taking switch |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN219085302U (en) |
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2022
- 2022-12-26 CN CN202223479405.7U patent/CN219085302U/en active Active
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