Eight-bit scene switch with intelligent control function
By designing an eight-position scene switch with intelligent control functions, combined with power control, Bluetooth control and button display modules, the problem of the single function of traditional smart home controllers is solved, realizing diversified scene control and intuitive status, and improving the user experience.
Patent Information
- Application Number
- CN202423053388.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-12-11
AI Technical Summary
Traditional smart home controllers have limited functionality, cannot meet the needs of diverse scenarios, and cannot intuitively provide information about the current status of devices.
An eight-position scene switch with intelligent control function was designed, which includes a power control module, a Bluetooth control module and a button display module. Remote control is realized through the Bluetooth module, and the button display module provides intuitive status indication.
It achieves convenient and intuitive control of diverse scenarios, allowing users to quickly switch scenario modes via APP or buttons, improving the accuracy and convenience of operation.
Smart Images

Figure CN223666327U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of intelligent switch, specifically point to a kind of eight scene switches with intelligent control function. BACKGROUND
[0002] With the development of Internet of Things technology, smart home control systems gradually popular, users can through mobile phone APP, voice assistant and so on Various ways are carried out to the intelligent control of home equipment. However, in actual use, traditional smart home controller often single function, user experience is not good, difficult to meet the diversified scene demand, people's demand for convenience, practicality increasingly deepen, traditional wall switch cannot satisfy more and more functional requirements.
[0003] The current market of smart home controller mainly includes the wireless controller based on Wi-Fi and the traditional remote controller based on infrared. Although the wireless controller based on Wi-Fi can realize remote control, there is the problem of unstable network, leading to high control delay. While the traditional remote controller based on infrared, although the cost is low, but cannot realize remote control, and control distance is limited. In addition, the two kinds of controllers usually do not have intuitive status indicator, it is difficult for users to quickly determine the working state of the current device. CONTENT OF THE UTILITY MODEL
[0004] The technical problem to be solved by the utility model is how to meet the requirements of traditional controller function, diversified scene demand and intuitive understanding of the state of the current scene mode.
[0005] In order to solve the above problems, the technical scheme adopted by the utility model is as follows: the eight scene switch with intelligent control function provided by the utility model, including key, panel, mounting frame and installation shell, the mounting frame is fixed in the installation shell through bolt, the key is fixed on the panel, the panel is fixed in the mounting frame, further including intelligent control eight scene function module, the intelligent control eight scene function module is located on the panel, the intelligent control eight scene function module includes power control module, bluetooth control module and key display module, the power control module is externally connected with alternating current municipal power 220VAC, the power control module output end is equipped with female J2, the bluetooth control module includes bluetooth module U1 BL1, voltage stabilizer U1 and network identification KEY, the voltage stabilizer U1's 1 pin and 3 pin are connected with pin J1, alternating current municipal power 220VAC rectification filtering output 5V voltage through female J2, pin J1 connection output to voltage stabilizer U1 through the power control module, voltage stabilizer U1's 5 pin output 3.3V voltage VCC is connected to bluetooth module U1 BL1's 8 pin, the pin of bluetooth module U1 BL1 is connected through network identification KEY and key, bluetooth module U1 BL1's 14 pin is connected VCC through resistance R8, bluetooth module U1 BL1's 18 pin is connected to ground, the key display module is equipped with eight groups and is connected with female J2 and bluetooth module U1 BL1 respectively.
[0006] Further, the 2 pin of the bluetooth module U1 BL1 is also connected with the key S7 through the network identification KEY 8; the 3 pin of the bluetooth module U1 BL1 is connected with the key S3 through the network identification KEY 3; the 4 pin of the bluetooth module U1 BL1 is connected with the key S2 through the network identification KEY 1; the 5 pin of the bluetooth module U1 BL1 is connected with the key S8 through the network identification KEY 7; the 6 pin of the bluetooth module U1 BL1 is connected with the key S6 through the network identification KEY 5, the 11 pin of the bluetooth module U1 BL1 is connected with the key S1 through the network identification KEY 2; the 12 pin of the bluetooth module U1 BL1 is connected with the key S5 through the network identification KEY 6; the 13 pin of the bluetooth module U1 BL1 is connected with the key S4 through the network identification KEY 4.
[0007] Further, the power supply control module comprises an F1 fuse resistor, a transformer TS1, a power supply chip U2, the 220V AC power supply is connected to the zero line N1 through the one end of the F1 fuse resistor and the other end of the F1 fuse resistor is connected to the zero line N1, the other end is connected to the rectifier bridge BD1 to be rectified into a direct current, and then the direct current is connected to the π-type filter circuit composed of the inductor TL1, the resistor R2, the electrolytic capacitor C5 and the electrolytic capacitor C6 to be filtered, and the capacitor C4, the resistor R3 and the resistor R6 and the diode D2 are connected to the 1 and 2 pins of the transformer TS1, the 2 pin of the transformer TS1 is also connected to the 5 pin and the 6 pin of the high-voltage MOSFET drain of the power supply chip U2, and the 1 pin of the transformer TS1 and the 1 pin of the power supply chip U2 form a path, and the resistor R4 and the resistor R7 are connected in series in the path to supply power to the power supply chip U2.
[0008] Further, the 5 pin of the transformer TS1 is connected to the ground through the diode F7, the resistor R8 and the capacitor C12 in series, and the other end is connected to the 2 pin of the power supply chip U2 through the resistor R10 and the resistor R11 in parallel, and then the resistor R15 is connected to the ground.
[0009] Further, the 4 pin of the power supply chip U2 is connected to the ground through the resistor R16 and the resistor R17, and the 8 pin of the power supply chip U2 is connected to the ground.
[0010] Further, the secondary of the transformer TS1 is connected to the 7 pin of the female plug J2 through the capacitor C1, the resistor R1, the diode D1, the solid-state capacitor C8 and the resistor R5.
[0011] Further, the 2 pin of the voltage stabilizer U1 is connected to the ground, the 3 pin of the voltage stabilizer U1 is connected to the ground through the capacitor C2, the 9 pin of the Bluetooth module U1 BL1 is connected to the ground through the parallel connection of the capacitor C10 and the capacitor C11, and the 1 pin and the 2 pin of the Bluetooth module U1 BL1 are connected to the P2TXD.
[0012] Further, the 7 pin of the Bluetooth module U1 BL1 is connected to the base of the triode Q1 through the one end of the resistor R13, the collector of the triode Q1 is connected to the key display module, and the emitter and the base of the triode Q1 are connected to the ground through the resistor R14.
[0013] The beneficial effects achieved by the above structure are as follows:
[0014] 1. The eight-scene switch with intelligent control function provided in the scheme can remotely or by key control the quick switching circuit scene work command through the Bluetooth control module, has the conventional wall switch function, and can also be controlled through the APP.
[0015] 2. The eight-scene switch with intelligent control function provided in the scheme can make the user intuitively understand the state of the current scene mode by adapting the key display module on the Bluetooth control module and the key, and improve the operation accuracy. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 The power control module circuit diagram of the utility model;
[0017] Figure 2 The Bluetooth control module circuit diagram of the utility model;
[0018] Figure 3 The first circuit diagram of the key display module of the utility model;
[0019] Figure 4 The second circuit diagram of the key display module of the utility model;
[0020] Figure 5 The first internal structure schematic view of the utility model;
[0021] Figure 6 The second internal structure schematic view of the utility model.
[0022] Among them, 1, installation shell, 2, mounting bracket, 3, panel, 4, key 5, intelligent control eight-scene function module.
[0023] The drawings are used to provide further understanding of the utility model, and constitute a part of the specification, and are used together with the embodiments of the utility model to explain the utility model, and do not constitute the limitation of the utility model. DETAILED DESCRIPTION
[0024] The technical scheme in the embodiments of the utility model will be clearly and completely described in combination with the drawings in the embodiments of the utility model, obviously, the described embodiments are only a part of the embodiments of the utility model, not all the embodiments; based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor are within the protection scope of the utility model.
[0025] As Figures 1-6As shown, the utility model provides a kind of eight scene switches with intelligent control function, specifically use, the panel 3 with the intelligent control eight scene function module 5 and button 4 are fixed on mounting frame 2 by bolt, and fixed in mounting shell 1 by bolt, AC mains 220VAC is connected to zero line N1 by F1 fuse resistance one end pressure-sensitive resistance MOV1;The other end connects rectifier bridge BD1 and carries out rectification;It is connected to the π type filter circuit of inductance TL1, resistance R2, electrolytic capacitor C5 and electrolytic capacitor C6 and carries out filtering after alternating current rectification into direct current;Voltage after filtering is connected to the 1,2 foot of transformer TS1 primary through capacitor C4, resistance R3, R6 and diode D2;2 foot is also connected to the high-voltage MOSFET drain of 5 foot, 6 foot of power supply chip U2, as high-voltage starting power supply;Voltage after filtering is also connected to the 1 foot of power supply chip U2 through resistance R4, R7, and it is powered;The 5 foot of transformer TS1 primary is connected to ground through diode F7, resistance R8, capacitor C12 one end;The other end is connected to the 2 foot of power supply chip U2 through parallel resistance R10, R11, and then connected to ground through resistance R15, and it is voltage feedback;The 4 foot of power supply chip U2 is connected to ground through resistance R16, R17, and it is current sampling, stable power;The 8 foot of power supply chip U2 is connected to ground.
[0026] As Figure 2As shown, the 5V voltage filtered by rectification filtering is connected to the 1st pin and the 3rd pin of the voltage stabilizer U1 through the female connector J2 and the male connector J1, the 2nd pin of the voltage stabilizer U1 is connected to the ground, the 3rd pin of the voltage stabilizer U1 is connected to the ground through the capacitor C2, the 5th pin of the voltage stabilizer U1 outputs the 3.3V voltage VCC after voltage stabilization and is connected to the 8th pin of the Bluetooth module U1 BL1, the 9th pin of the Bluetooth module U1 BL1 is connected to the ground through the parallel connection of the capacitors C10 and C11, and the Bluetooth module U1 BL1 is powered; the 1st pin and the 2nd pin of the Bluetooth module U1 BL1 are connected to P2TXD, and VCC and GND of P1 are used for burning programs; the 2nd pin of the Bluetooth module U1 BL1 is also connected to the key S7 through the network identifier KEY8; the 3rd pin of the Bluetooth module U1 BL1 is connected to the key S3 through the network identifier KEY3; the 4th pin of the Bluetooth module U1 BL1 is connected to the key S2 through the network identifier KEY1; the 5th pin of the Bluetooth module U1 BL1 is connected to the key S8 through the network identifier KEY7; the 6th pin of the Bluetooth module U1 BL1 is connected to the key S6 through the network identifier KEY5; the 7th pin of the Bluetooth module U1 BL1 is connected to the base of the triode Q1 through one end of the resistor R13, the collector of the triode Q1 is connected to the key display module, and the emitter and the base of the triode Q1 are connected to the ground through the parallel connection of the resistor R14; the 11th pin of the Bluetooth module U1 BL1 is connected to the key S1 through the network identifier KEY2; the 12th pin of the Bluetooth module U1 BL1 is connected to the key S5 through the network identifier KEY6; the 13th pin of the Bluetooth module U1 BL1 is connected to the key S4 through the network identifier KEY4; VCC is also connected to the 14th pin of the Bluetooth module U1 BL1 through the resistor R8; and the 18th pin of the Bluetooth module U1 BL1 is connected to the ground.
[0027] As shown in Figure 3 and Figure 4 The key display module is electrically connected to the female connector J2 and the Bluetooth module U1 BL1, and the key display module includes multiple groups of light-emitting diodes, and the connection mode is as follows:
[0028] The VCC voltage output by the voltage stabilizer is connected to the 4th pin of the Bluetooth module U1 BL1 through the resistor R36, and the network identifier LED2 is connected to the base of the triode Q6 and Q9 through the resistors R29 and R33, respectively, to provide key signals; the 5V voltage filtered by rectification filtering is connected to the emitter of the triode Q6 through the parallel connection of the light-emitting diodes D18, D20, D22, and D24 and the resistor R27; the collector of Q6 is connected to the collector of Q1 through the network identifier VA; at the same time, the 5V voltage is connected to the collector of the triode Q9 through the parallel connection of the light-emitting diodes D26 and D27 and the resistor R32, and the emitter of Q9 is connected to the ground;
[0029] The VCC voltage output by the voltage stabilizer is connected to the button S2 through the resistor R37 and connected to the pin 11 of the Bluetooth module U1BL1, and the network identification LED1 is connected to the resistors R21 and R26 through the base of the transistors Q2 and Q5, respectively, to provide a button signal; the 5V voltage is connected to the emitter of the transistor Q2 through the parallel connection of the light emitting diodes D4, D6, D9 and D11 and the resistor R18; the collector of the Q2 is connected to the collector of the Q1 through the network identification VA; at the same time, the 5V voltage is connected to the collector of the transistor Q5 through the parallel connection of the light emitting diodes D15 and D16 and the resistor R24, and the emitter of the Q5 is connected to the ground;
[0030] The VCC voltage output by the voltage stabilizer is connected to the button S3 through the resistor R42 and connected to the pin 3 of the Bluetooth module U1BL1, and the network identification LED3 is connected to the resistors R43 and R50 through the base of the transistors Q10 and Q12, respectively, to provide a button signal; the 5V voltage is connected to the emitter of the transistor Q10 through the parallel connection of the light emitting diodes D29, D31, D33 and D35 and the resistor R39; the collector of the Q10 is connected to the collector of the Q1 through the network identification VA; at the same time, the 5V voltage is connected to the collector of the transistor Q12 through the parallel connection of the light emitting diodes D38 and D39 and the resistor R45, and the emitter of the Q12 is connected to the ground;
[0031] The VCC voltage output by the voltage stabilizer is connected to the button S4 through the resistor R47 and connected to the pin 13 of the Bluetooth module U1BL1, and the network identification LED4 is connected to the resistors R63 and R66 through the base of the transistors Q15 and Q17, respectively, to provide a button signal; the 5V voltage is connected to the emitter of the transistor Q15 through the parallel connection of the light emitting diodes D41, D43, D46 and D48 and the resistor R57; the collector of the Q15 is connected to the collector of the Q1 through the network identification VA; at the same time, the 5V voltage is connected to the collector of the transistor Q17 through the parallel connection of the light emitting diodes D49 and D52 and the resistor R61, and the emitter of the Q17 is connected to the ground;
[0032] The VCC voltage output by the voltage stabilizer is connected to the button S5 through the resistor R52 and connected to the pin 12 of the Bluetooth module U1BL1, and the network identification LED6 is connected to the resistors R30 and R35 through the base of the transistors Q7 and Q8, respectively, to provide a button signal; the 5V voltage is connected to the emitter of the transistor Q7 through the parallel connection of the light emitting diodes D17, D19, D21 and D23 and the resistor R28; the collector of the Q7 is connected to the collector of the Q1 through the network identification VA; at the same time, the 5V voltage is connected to the collector of the transistor Q8 through the parallel connection of the light emitting diodes D25 and D28 and the resistor R31, and the emitter of the Q8 is connected to the ground;
[0033] The VCC voltage outputted by the voltage stabilizer is connected to the button S6, connected to the pin 6 of the Bluetooth module U1BL1 through the resistor R53, and connected to the resistors R22 and R25 through the network identification LED 5 to the bases of the transistors Q3 and Q4 respectively to provide the button signal; the 5V voltage is connected to the light emitting diodes D5, D8, D10 and D12 in parallel, connected to the emitter of the transistor Q3 through the resistor R19; the collector of the transistor Q3 is connected to the collector of the transistor Q1 through the network identification VA; meanwhile, the 5V voltage is connected to the light emitting diodes D13 and D14 in parallel, connected to the collector of the transistor Q4 through the resistor R23, and the emitter of the transistor Q4 is connected to the ground.
[0034] The VCC voltage outputted by the voltage stabilizer is connected to the button S7, connected to the pin 2 of the Bluetooth module U1BL1 through the resistor R59, and connected to the resistors R58 and R65 through the network identification LED 8 to the bases of the transistors Q14 and Q16 respectively to provide the button signal; the 5V voltage is connected to the light emitting diodes D42, D44, D45 and D47 in parallel, connected to the emitter of the transistor Q14 through the resistor R56; the collector of the transistor Q14 is connected to the collector of the transistor Q1 through the network identification VA; meanwhile, the 5V voltage is connected to the light emitting diodes D50 and D51 in parallel, connected to the collector of the transistor Q16 through the resistor R60, and the emitter of the transistor Q16 is connected to the ground.
[0035] The VCC voltage is connected to the button S8, connected to the pin 5 of the Bluetooth module U1BL1 through the resistor R62, and connected to the resistors R44 and R49 through the network identification LED 7 to the bases of the transistors Q11 and Q13 respectively to provide the button signal; the 5V voltage is connected to the light emitting diodes D30, D32, D34 and D36 in parallel, connected to the emitter of the transistor Q11 through the resistor R41; the collector of the transistor Q11 is connected to the collector of the transistor Q1 through the network identification VA; meanwhile, the 5V voltage is connected to the light emitting diodes D37 and D40 in parallel, connected to the collector of the transistor Q13 through the resistor R46, and the emitter of the transistor Q13 is connected to the ground, and the light emitting diodes are in two display states of white light and yellow light.
[0036] The above describes the utility model and its implementation mode, which is not limited, and the drawings shown are only one of the implementation modes of the utility model, and the actual structure is not limited thereto. In summary, if a person skilled in the art is inspired thereby, without departing from the creative purpose of the utility model, similar structure modes and embodiments are not creatively designed, which shall belong to the protection scope of the utility model.
Claims
1. An eight-bit scene switch with intelligent control function, comprising a key, a panel and a mounting frame, the key is fixed on the panel, and the panel is fixed in the mounting frame, characterized in that, Also include intelligent control eight scene function module, the intelligent control eight scene function module is located on the panel, the intelligent control eight scene function module includes power control module, bluetooth control module and key display module, the power control module is externally connected with alternating current mains 220VAC, the power control module output end is equipped with female J2, the bluetooth control module includes bluetooth module U1 BL1, voltage stabilizer U1 and network identification KEY, the voltage stabilizer U1's 1 foot, 3 foot is connected with the pin J1, alternating current mains 220VAC rectification filter output 5V voltage through female J2, pin J1 connection output to voltage stabilizer U1, voltage stabilizer U1's 5 foot output 3.3V voltage VCC is connected to the 8 foot of bluetooth module U1 BL1, the pin foot of bluetooth module U1 BL1 is connected through network identification KEY and key, the 14 foot of bluetooth module U1 BL1 is connected VCC through resistance R8, the 18 foot of bluetooth module U1 BL1 is connected to ground, the key display module is equipped with eight groups and is connected with female J2 and bluetooth module U1 BL1 respectively.
2. The eight scene switch with intelligent control function according to claim 1, characterized in that: The 2 foot of bluetooth module U1 BL1 is also connected with the key S7 through network identification KEY8;The 3 foot of bluetooth module U1 BL1 is connected with the key S3 through network identification KEY3;The 4 foot of bluetooth module U1 BL1 is connected with the key S2 through network identification KEY1;The 5 foot of bluetooth module U1 BL1 is connected with the key S8 through network identification KEY7;The 6 foot of bluetooth module U1 BL1 is connected with the key S6 through network identification KEY5, the 11 foot of bluetooth module U1 BL1 is connected with the key S1 through network identification KEY2;The 12 foot of bluetooth module U1 BL1 is connected with the key S5 through network identification KEY6;The 13 foot of bluetooth module U1 BL1 is connected with the key S4 through network identification KEY4.
3. The eight scene switch with intelligent control function according to claim 2, characterized in that: The power control module includes F1 fuse resistor, transformer TS1, power chip U2, the alternating current mains 220VAC is connected through F1 fuse resistor one end pressure sensitive resistance MOV1 to zero line N1, the other end connects rectifier bridge BD1 and carries out rectification as direct current, and then is connected with the π type filter circuit that inductance TL1, resistance R2, electrolytic capacitor C5 and electrolytic capacitor C6 constitute carries out filtering, and through the capacitor C4, resistance R3, R6 and diode D2 in the circuit are connected to the 1, 2 foot of transformer TS1 primary, the 2 foot of transformer TS1 is also connected to the 5 foot, 6 foot high voltage MOSFET drain of power chip U2, as high voltage start power supply the 1 foot of transformer TS1 and the 1 foot of power chip U2 form a passage, and the resistance R4, resistance R7 in the passage are connected in series for power supply of power chip U2.
4. The eight scene switch with intelligent control function according to claim 3, characterized in that: One end of the 5 foot of transformer TS1 primary is connected to ground in series with diode F7, resistance R8, capacitor C12, the other end is connected to the 2 foot of power chip U2 in parallel with resistance R10, R11 and then is connected to ground in series with resistance R15.
5. An eight scene switch with intelligent control function according to claim 4, characterized in that: The 4-pin of the power supply chip U2 is connected to the ground through resistors R16, R17, and the 8-pin of the power supply chip U2 is connected to the ground.
6. An eight scene switch with intelligent control function according to claim 5, characterized in that: The secondary of the transformer TS1 is connected to the 7-pin of the female plug J2 through rectification and filtering output of 5V voltage with the capacitor C1, resistor R1, diode D1, solid-state capacitor C8, and resistor R5.
7. An eight scene switch with intelligent control function according to claim 6, characterized in that: The 2-pin of the voltage stabilizer U1 is connected to the ground, the 3-pin of the voltage stabilizer U1 is connected to the ground through the capacitor C2, the 9-pin of the Bluetooth module U1 BL1 is connected to the ground through the parallel connection of capacitors C10, C11, the 1-pin and 2-pin of the Bluetooth module U1 BL1 are connected with P2TXD.
8. The eight scene switch with intelligent control function according to claim 7, characterized in that: The 7-pin of the Bluetooth module U1 BL1 is connected to the base of the triode Q1 through one end of the resistor R13, the collector of the triode Q1 is connected to the key display module, and the emitter and base of the triode Q1 are connected to the ground in parallel with the resistor R14.