CN211303393U - Intelligent controller for kitchen waste disposer - Google Patents

Intelligent controller for kitchen waste disposer Download PDF

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Publication number
CN211303393U
CN211303393U CN201922154534.0U CN201922154534U CN211303393U CN 211303393 U CN211303393 U CN 211303393U CN 201922154534 U CN201922154534 U CN 201922154534U CN 211303393 U CN211303393 U CN 211303393U
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CN
China
Prior art keywords
module
chip microcomputer
single chip
motor
signal
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Expired - Fee Related
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CN201922154534.0U
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Chinese (zh)
Inventor
彭全果
施兴为
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Ningbo Chuangwei Electronic Technology Co ltd
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Ningbo Chuangwei Electronic Technology Co ltd
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Priority to CN201922154534.0U priority Critical patent/CN211303393U/en
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Abstract

An intelligent controller for a kitchen waste disposer comprises a control box shell, an intelligent control panel, a power connecting line and an equipment connecting line, wherein the control box shell is divided into an upper shell and a lower shell which are mutually clamped and connected, the intelligent control panel is fixedly arranged in the control box shell, the two sides of the control box shell are respectively connected with the power connecting line and the equipment connecting line, the intelligent control panel comprises a motor switch control module, an overload detection module, a forward and reverse rotation control module and a wireless receiving module, the intelligent control panel is also provided with a power on/off button, a reset/learning key, an indicator light and a single chip microcomputer with a timing function, the motor switch control module comprises a first relay, and the forward and reverse rotation control module comprises a second relay; this practical intelligent control ware can carry out remote controller and pair, multiple mode switching on and shutting down, intelligent adjustment when transshipping, when the adjustment is invalid overcurrent protection, reset and get into multiple control functions such as stop state, and multiple functions are integrated, and is very practical.

Description

Intelligent controller for kitchen waste disposer
Technical Field
The utility model relates to a surplus refuse treatment field in kitchen especially relates to an intelligent control ware for surplus refuse treatment ware in kitchen.
Background
Along with the continuous promotion of garbage classification, the household kitchen waste disposer is more common, the kitchen waste disposer is arranged below a kitchen sink and is connected with a drain pipe, a grinding cutter head is driven by a small-sized direct current or alternating current motor to smash food, the food waste in a crushing cavity is mainly smashed for multiple times by using centrifugal force and then discharged into a sewer, the processed components are usually complex and can be wound on parts such as the grinding disc, so that the machine cannot be locked, not only is the machine failure easily caused, but also certain potential safety hazard exists, a control system of the machine needs to be further improved, the machine can automatically adjust the locked-rotor condition by timely motor reversal, if the machine cannot self-repair by judging, the machine should be stopped in time, the power of the motor is cut off, and the safety is ensured; on the other hand, the use scene of using kitchen garbage disposer is generally for wet hand condition such as after washing dishes, and the user need bow to close the machine after using, and the operation is comparatively troublesome, needs to make further improvement to the start-up and the stop operation of machine, makes it more convenient.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that the problem to prior art exists provides an intelligent control ware that is used for surplus garbage disposer in kitchen that accessible just installed intelligent regulation when can wireless switch on and off, detect locked rotor.
The utility model provides a technical scheme that above-mentioned technical problem adopted does: the utility model provides an intelligent control ware for kitchen garbage disposer which characterized in that: the intelligent control box comprises a control box shell, an intelligent control panel, a power supply connecting wire and an equipment connecting wire, wherein the control box shell is divided into an upper shell and a lower shell which are mutually clamped and connected, the intelligent control panel is fixedly arranged in the control box shell, the two sides of the control box shell are respectively connected with the power supply connecting wire and the equipment connecting wire, the intelligent control panel comprises a motor switch control module, an overload detection module, a forward and reverse rotation control module and a wireless receiving module, the intelligent control panel is also provided with a startup and shutdown key, a reset/study key, an indicator light and a single chip with a timing function, the upper shell is matched with the startup and shutdown key and the reset/study key to be provided with through holes, and the upper shell is matched with the indicator light to be provided with; the motor switch control module, the overload detection module, the forward and reverse rotation control module, the wireless receiving module, the power on and off key, the reset/learning key and the indicator light are all electrically connected with the single chip microcomputer, the motor switch control module comprises a first relay, and the forward and reverse rotation control module comprises a second relay; the power supply connecting wire is inserted into the socket, and the equipment connecting wire is connected with the kitchen waste disposer body;
the single chip microcomputer is used for receiving signals of the overload detection module, the wireless receiving module, the power on/off key and the reset/learning key, sending corresponding control signals to the motor switch control module, the forward/reverse rotation control module and the indicator lamp and having a timing function;
the motor switch control module is used for controlling the on-off of the motor after receiving a starting or shutdown signal output by the single chip microcomputer, and the first relay is responsible for switching the switch;
the overload detection module is used for sending an overload signal to the singlechip when the circuit is overloaded;
the forward and reverse rotation control module is used for sending reverse rotation and forward rotation signals to the second relay alternately when the overload detection module sends an overload signal to the single chip microcomputer, and the second relay controls the motor correspondingly;
the wireless receiving module is used for receiving a wirelessly transmitted starting or shutdown signal and transmitting the starting or shutdown signal to the singlechip;
the reset/learning key comprises a click reset function and a learning function which requires long pressing, the reset function is used for exiting from an overcurrent protection state, and the learning function is used for pairing with the remote controller;
the indicating lamp is used for making corresponding feedback of on or off after receiving the signal of the singlechip.
Further, the trigger signal of the overload signal is that the current exceeds 5.5 amperes, the single chip microcomputer starts timing after receiving the overload signal sent by the overload detection module, the timing is over 3 seconds, the single chip microcomputer sends a reverse rotation signal to the second relay, the forward and reverse rotation control module controls the motor to rotate reversely, the single chip microcomputer starts timing again, the timing time is set to 5 seconds, if the single chip microcomputer does not receive the overload signal again within 5 seconds of reverse rotation, the single chip microcomputer sends a forward rotation signal to the second relay, and the forward and reverse rotation control module controls the motor to restore forward rotation; if the single chip microcomputer receives the overload signal again within 5 seconds after the motor is started and reversely rotated, the single chip microcomputer enters forward rotation again, after the overload signal is repeatedly transmitted for 3 times, the single chip microcomputer outputs a shutdown signal to the first relay, the first relay disconnects the power supply of the motor, and the motor enters an overcurrent protection state.
Furthermore, a gasket is clamped at the joint of the upper shell and the lower shell.
Furthermore, the intelligent control panel still includes alarm module, alarm module includes audible alarm ware, and alarm module is connected with the singlechip electricity.
A kitchen waste processor is connected with the intelligent controller.
Compared with the prior art, the utility model is used for kitchen garbage disposer's intelligent control ware has designed following function: firstly, the motor can be started/stopped, namely the kitchen waste disposer is controlled to be started or stopped, and the kitchen waste disposer is directly controlled by a power on/off key on an intelligent controller or wirelessly controlled by a key on a remote controller, so that the kitchen waste disposer is more suitable for the operation habit of a user and has good user experience; secondly, detecting overload and adjusting in time through positive and negative rotation; thirdly, after the adjustment is still unable to be recovered to normal for several times, overcurrent protection is carried out, the second action and the third action accurately control the adjustment action through the timing function of the single chip microcomputer, the safety performance of the kitchen waste disposer is improved, the kitchen waste disposer can be self-repaired when encountering a stalling problem to a certain extent, the failure rate is reduced, and the use of the device is more smooth and convenient; this practical intelligent control ware is integrated with multiple functions on intelligent control board, and structural design is exquisite simple, and is very practical.
Drawings
Fig. 1 is a schematic perspective view of the intelligent controller for kitchen garbage disposer of the present invention.
Fig. 2 is an exploded view of the intelligent controller for kitchen garbage disposer of the present invention.
Fig. 3 is a perspective view of the upper housing of the present invention from another viewing angle.
Fig. 4 is a schematic diagram of the circuit connection of the present invention.
Fig. 5 is a perspective view of a remote controller paired with an intelligent controller.
Fig. 6 is a schematic perspective view of a kitchen waste disposer using the intelligent controller of the present invention.
Reference numerals: 1. a control box housing; 11. an upper housing; 111. a through hole; 112. a light-transmitting hole; 12. a lower housing; 2. An intelligent control panel; 21. a motor switch control module; 211. a first relay; 22. an overload detection module; 23. a forward and reverse rotation control module; 231. a second relay; 24. a wireless receiving module; 25. a power-on and power-off button; 26. a reset/learn key; 27. an indicator light; 28. a single chip microcomputer; 3. a power connection line; 4. a device connection line; 5. a gasket; 6. a remote controller;
Detailed Description
The present invention will be described in further detail with reference to the following embodiments.
As shown in fig. 1 to 6, an intelligent controller for a kitchen waste disposer comprises a control box shell 1, an intelligent control board 2, a power connection line 3 and an equipment connection line 4, wherein the control box shell 1 is divided into an upper shell 11 and a lower shell 12 which are mutually clamped and connected, the intelligent control board 2 is fixedly arranged in the control box shell 1, two sides of the control box shell 1 are respectively connected with the power connection line 3 and the equipment connection line 4, the intelligent control board 2 comprises a motor switch control module 21 and an overload detection module 22, the intelligent control panel 2 is also provided with a power on/off key 25, a reset/learning key 26, an indicator lamp 27 and a singlechip 28 with a timing function, the upper shell 11 is provided with a through hole 111 matched with the power on/off key 25 and the reset/learning key 26, and the upper shell 11 is provided with a light hole 112 matched with the indicator lamp 27; the motor switch control module 21, the overload detection module 22, the forward and reverse rotation control module 23, the wireless receiving module 24, the on-off key 25, the reset/learning key 26 and the indicator lamp 27 are all electrically connected with the single chip microcomputer 28, the motor switch control module 21 comprises a first relay 211, and the forward and reverse rotation control module 23 comprises a second relay 231; the power supply connecting wire 3 is inserted into the socket, and the equipment connecting wire 4 is connected with the kitchen waste disposer body; the motor refers to a motor arranged on the kitchen waste disposer, and the operation and the stop of the kitchen waste disposer are controlled by controlling the starting and the stopping of the motor.
The single chip microcomputer 28 is used for receiving signals of the overload detection module 22, the wireless receiving module 24, the on-off key 25 and the reset/learning key 26, sending corresponding control signals to the motor switch control module 21, the forward and reverse rotation control module 23 and the indicator lamp 27, and having a timing function;
the motor switch control module 21 is configured to control the power on and off of the motor after receiving a power on or off signal output by the single chip microcomputer 28, wherein the first relay 211 is responsible for switching the switch; the overload detection module 22 is used for sending an overload signal to the single chip microcomputer 28 when the circuit is overloaded, namely the motor is locked, and the measurement principle is that the voltage drop is formed by measuring the current flowing through the resistor;
the forward and reverse rotation control module 23 is configured to send a reverse rotation signal and a forward rotation signal alternately to the second relay 231 by the single chip microcomputer 28 when the overload detection module 22 sends an overload signal to the single chip microcomputer 28, and the second relay 231 performs corresponding control on the motor;
the wireless receiving module 24 is used for receiving a wirelessly transmitted power-on or power-off signal and transmitting the power-on or power-off signal to the single chip microcomputer 28, and the single chip microcomputer 28 controls the on and off of the motor; an external remote controller 6 is arranged in cooperation with the intelligent controller, the remote controller 6 can be pasted on any position of a wall surface according to the operation habit of a user, a wireless switch is arranged on the remote controller 6, a wireless transmitting module is arranged in the remote controller 6, when the user presses the wireless switch for the first time, the wireless transmitting module sends a starting signal to a wireless receiving module 24 of the intelligent controller, the wireless receiving module 24 receives the starting signal and then sends the starting signal to a singlechip 28, when the user presses the wireless switch again, the wireless transmitting module sends a shutdown signal to the wireless receiving module 24 of the intelligent controller, the wireless receiving module 24 receives the shutdown signal and then sends the shutdown signal to the singlechip 28, and the user can control the starting and the stopping of the motor through the remote controller;
the reset/learn key 26 includes a reset function of clicking for exiting the overcurrent protection state and a learn function of requiring a long press for pairing with the remote controller 6. The indicator lamp 27 is used for making corresponding feedback of normal lighting, flickering and the like after receiving the signal of the singlechip 28.
The specific control process of the intelligent controller is as follows:
remote controller pairing control: when the motor is stopped, the reset/learning key 26 is pressed for a long time to enter a pairing mode of the remote controller 6, the wireless receiving module 24 keeps a receiving state, the single chip microcomputer 28 controls the indicator lamp 27 to continuously flash, the wireless switch is pressed in the pairing mode of the remote controller 6, the wireless receiving module 24 receives a signal and then transmits the signal to the single chip microcomputer 28, the single chip microcomputer 28 controls the indicator lamp 27 to be turned off, namely the indicator lamp 27 stops flashing to indicate that pairing is successful, and after pairing is completed, the control box can make a relevant response to an instruction of the remote controller 6.
Starting a motor: when the motor is started, a user presses a wireless switch of the remote controller 6, a wireless transmitting module in the remote controller 6 transmits a starting signal, a wireless receiving module 24 in a control box receives the starting signal and then transmits the starting signal to the single chip microcomputer 28, the single chip microcomputer 28 outputs the starting signal to a first relay 211 of the motor switch control module 21, the first relay 211 switches on and off, a circuit of the motor is switched on, the motor rotates forwards, and meanwhile, the single chip microcomputer 28 starts to time; or, in a stop state, the on-off button 25 is pressed, a button signal is directly transmitted to the single chip microcomputer 28, the single chip microcomputer 28 outputs the button signal to the first relay 211 of the motor on-off control module 21, the first relay 211 turns on a circuit of the motor, and the single chip microcomputer 28 starts timing; both methods can start the motor, only one is to transmit the signal to the singlechip 28 through the wireless receiving module 24, and the other is to directly transmit a key signal to the singlechip 28.
Turning off the motor: the shutdown is divided into three situations, firstly, a user presses a wireless switch of the remote controller 6 again in the running process of the motor, a wireless transmitting module in the remote controller 6 transmits a shutdown signal, a wireless receiving module 24 in a control box transmits the shutdown signal to the single chip microcomputer 28 after receiving the shutdown signal, the single chip microcomputer 28 outputs the shutdown signal to a first relay 211 of the motor switch control module 21, the first relay 211 switches, a circuit of the motor is turned off, the motor stops rotating, and the single chip microcomputer 28 stops timing; secondly, the user presses the on-off button 25 again during the operation of the motor, the button signal is directly transmitted to the single chip microcomputer 28, the single chip microcomputer 28 outputs the button signal to the first relay 211 of the motor on-off control module 21, the first relay 211 turns off the circuit of the motor, and the single chip microcomputer 28 stops timing; thirdly, in the process of timing for 3 minutes by the single chip microcomputer 28, the user does not operate the wireless switch of the remote controller 6 or the on-off button 25 again, when the timing is over 3 minutes, the single chip microcomputer 28 directly controls the first relay 211 to turn off the circuit of the motor, and meanwhile, the single chip microcomputer 28 stops timing.
Overload intelligent adjustment: when the overload detection module 22 detects that the circuit is overloaded, an overload signal is sent to the single chip microcomputer 28, in this embodiment, a trigger signal of the overload signal is set to a current value exceeding 5.5A, the single chip microcomputer 28 starts timing, when the timing is over 3 seconds, the single chip microcomputer 28 sends a reverse rotation signal to the second relay 231, the forward and reverse rotation control module 23 controls the motor to rotate reversely, at this time, the single chip microcomputer 28 starts timing again, the timing time is set to 5 seconds, if the single chip microcomputer 28 does not receive the overload signal again within 5 seconds of reverse rotation, the single chip microcomputer 28 sends a forward rotation signal to the second relay 231, and the forward and reverse rotation control module 23 controls the motor; if the single chip microcomputer 28 receives the overload signal again within 5 seconds after the motor is started and rotates reversely, namely the motor is still locked, the motor enters forward rotation again, and after the motor rotates repeatedly for 3 times, overcurrent protection is achieved.
Overcurrent protection: the protection measure is that when the overload intelligent adjustment fails, the motor is forcibly turned off, and the specific control process is that the overload intelligent adjustment is completed, the single chip microcomputer 28 still receives the overload signal sent by the overload detection module 22, the single chip microcomputer 28 outputs a turn-off signal to the first relay 211, the first relay 211 cuts off the power supply of the motor, and the motor enters an overcurrent protection state, and at this moment, the single chip microcomputer 28 receives a turn-on signal sent by the turn-on/off key 25 or the wireless switch of the remote controller 6, and the turn-on signal is not fed back to the first relay 211, namely, the key at this moment.
Resetting and protecting: when the kitchen waste disposer carries out overcurrent protection due to the fact that a motor is clamped, the kitchen waste disposer can exit from an overcurrent protection state only by pressing a reset/learning key 26, enters into a resettable protection state and keeps a stop state, and meanwhile, a single chip microcomputer 28 sends a signal to an indicator lamp 27 to control the indicator lamp 27 to flicker for 2 times; in the stop state, the motor can be operated by pressing the on/off button 25 or the wireless switch of the remote controller 6.
Preferably, the gasket 5 is clamped at the joint of the upper shell 11 and the lower shell 12, so that the clamping is tighter, and the water leakage prevention performance is improved.
Preferably, intelligent control panel 2 still includes alarm module, and alarm module includes audible alarm ware, and alarm module and singlechip 28 electricity are connected, and 28 start the overcurrent protection at the singlechip and report to the police simultaneously, and the chimes of doom sets up to last 10 seconds.
Finally, it should be noted that: the above embodiments are merely illustrative of the technical solutions of the present invention, and not limitative thereof; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention in its corresponding aspects.

Claims (5)

1. The utility model provides an intelligent control ware for kitchen garbage disposer which characterized in that: including control box casing (1), intelligent control board (2), power connecting wire (3) and equipment connecting wire (4), control box casing (1) divide into last casing (11) and lower casing (12) that mutual block is connected, intelligent control board (2) are fixed to be set up in control box casing (1), power connecting wire (3) and equipment connecting wire (4) are connected respectively to control box casing (1) both sides, including motor on-off control module (21), overload detection module (22), just reversing control module (23) and wireless receiving module (24) on intelligent control board (2), still be provided with on-off switch button (25), reset/study key (26), pilot lamp (27) and singlechip (28) that have timing function on intelligent control board (2), go up casing (11) and on-off switch button (25), The reset/learning key (26) is provided with a through hole (111) in a matching way, and the upper shell (11) and the indicator lamp (27) are provided with a light hole (112) in a matching way; the motor switch control module (21), the overload detection module (22), the forward and reverse rotation control module (23), the wireless receiving module (24), the power on and off key (25), the reset/learning key (26) and the indicator lamp (27) are all electrically connected with the single chip microcomputer (28), the motor switch control module (21) comprises a first relay (211), and the forward and reverse rotation control module (23) comprises a second relay (231); the power supply connecting wire (3) is inserted into the socket, and the equipment connecting wire (4) is connected with the kitchen waste disposer body;
the single chip microcomputer (28) is used for receiving signals of the overload detection module (22), the wireless receiving module (24), the on-off key (25) and the reset/learning key (26), sending corresponding control signals to the motor on-off control module (21), the forward and reverse rotation control module (23) and the indicator lamp (27), and having a timing function;
the motor switch control module (21) is used for controlling the on-off of the motor after receiving a starting or shutdown signal output by the singlechip (28), and the first relay (211) is responsible for switching the switch;
the overload detection module (22) is used for sending an overload signal to the singlechip (28) when the circuit is overloaded;
the forward and reverse rotation control module (23) is used for sending reverse rotation and forward rotation signals to the second relay (231) alternately by the singlechip (28) when the overload detection module (22) sends an overload signal to the singlechip (28), and the second relay (231) controls the motor correspondingly;
the wireless receiving module (24) is used for receiving a wirelessly transmitted power-on or power-off signal and transmitting the power-on or power-off signal to the singlechip (28);
the reset/learning key (26) comprises a reset function of point pressing and a learning function of long pressing, wherein the reset function is used for exiting an overcurrent protection state, and the learning function is used for pairing with the remote controller (6); the indicator light (27) is used for making corresponding feedback of on or off after receiving the signal of the singlechip (28).
2. The intelligent controller for the kitchen waste disposer according to claim 1, wherein the trigger signal of the overload signal is that the current exceeds 5.5 amperes, the single chip microcomputer (28) starts timing after receiving the overload signal sent by the overload detection module (22) and expires 3 seconds, the single chip microcomputer (28) sends a reverse rotation signal to the second relay (231), the forward and reverse rotation control module (23) controls the motor to rotate reversely, the single chip microcomputer (28) starts timing again, the timing time is set to 5 seconds, if the single chip microcomputer (28) does not receive the overload signal again within 5 seconds of reverse rotation, the single chip microcomputer (28) sends a forward rotation signal to the second relay (231), and the forward and reverse rotation control module (23) controls the motor to recover forward rotation; if the single chip microcomputer (28) receives the overload signal again within 5 seconds after the motor is started and reversely rotated, the single chip microcomputer enters forward rotation again, after the operation is repeated for 3 times, the single chip microcomputer (28) outputs a shutdown signal to the first relay (211), the first relay (211) cuts off the power supply of the motor, and the motor enters an overcurrent protection state.
3. The intelligent controller for a kitchen waste disposer of claim 1, wherein the joint of the upper shell (11) and the lower shell (12) is clamped with a gasket (5).
4. The intelligent controller for the kitchen waste disposer according to claim 1, wherein the intelligent control board (2) further comprises an alarm module, the alarm module comprises an audible alarm, and the alarm module is electrically connected with the single chip microcomputer (28).
5. A kitchen garbage disposer is characterized in that: the kitchen waste processor is connected with the intelligent controller of any one of claims 1-4.
CN201922154534.0U 2019-12-05 2019-12-05 Intelligent controller for kitchen waste disposer Expired - Fee Related CN211303393U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922154534.0U CN211303393U (en) 2019-12-05 2019-12-05 Intelligent controller for kitchen waste disposer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922154534.0U CN211303393U (en) 2019-12-05 2019-12-05 Intelligent controller for kitchen waste disposer

Publications (1)

Publication Number Publication Date
CN211303393U true CN211303393U (en) 2020-08-21

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CN201922154534.0U Expired - Fee Related CN211303393U (en) 2019-12-05 2019-12-05 Intelligent controller for kitchen waste disposer

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113253654A (en) * 2021-05-31 2021-08-13 中国电子科技集团公司第五十八研究所 Intelligent control implementation method of kitchen waste object processor

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113253654A (en) * 2021-05-31 2021-08-13 中国电子科技集团公司第五十八研究所 Intelligent control implementation method of kitchen waste object processor

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Granted publication date: 20200821

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