CN201425712Y - Electricity-saving and intelligent electric appliance controller for building - Google Patents

Electricity-saving and intelligent electric appliance controller for building Download PDF

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Publication number
CN201425712Y
CN201425712Y CN2009201151304U CN200920115130U CN201425712Y CN 201425712 Y CN201425712 Y CN 201425712Y CN 2009201151304 U CN2009201151304 U CN 2009201151304U CN 200920115130 U CN200920115130 U CN 200920115130U CN 201425712 Y CN201425712 Y CN 201425712Y
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China
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controller
building
electricity
data processor
electrical appliance
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Expired - Fee Related
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CN2009201151304U
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Chinese (zh)
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赵勤彪
王庆山
韩宏伟
沈智浩
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Abstract

The utility model discloses an electricity-saving and intelligent electric appliance controller for a building, which comprises a sensor for monitoring the environment, a communicator exchanging datawith external equipment, a display, a data processor, a power supply controller and a time management module, wherein, the sensor, the communicator, the display, the power supply controller and the time management module are connected with the data processor. The utility model has the advantages that data communication can be performed with a host machine; the parameter of each controller can be set through the host machine, so as to realize unified management; environment monitoring can be carried out even when no people is on the spot; besides, independent parameters can be set for an individual controller; all the operation can be prompted via sound, thereby resulting more accurate regulation of users; the users are prompted via sound and light when the machine breaks down or the systemis about to be shut down; uplink data and downlink data are separated, thereby providing great convenience for classification control of the system and saving the cost of the whole system; and the utility model can be a time switch for equipment and increase or decrease the amount of the controllers randomly.

Description

Electricity-saving intelligent electrical appliance controller for building
Technical field
The utility model relates to electricity-saving intelligent electrical appliance controller for building.
Background technology
Present stage, the office of each enterprise or unit disperses relatively, office's quantity increases, and various air-conditionings, illuminating lamp also increase relatively; These electrical appliances forget that the electric energy of closing and causing consuming also increases severely when unmanned office.According to statistics, if everyone can in time take down charger or close the plate power supply after using up charger for mobile phone, the genset of several 5,000,000 kilowatt hours can be closed in the whole world.Therefore, the waste of electric power is very obvious, and this brings massive losses for the economy of enterprise or unit.And the timing controller that some enterprise or unit adopt, that task is provided with is single, man-machine interaction is poor, main website and the scene can not be provided with jointly, can not unified management, site environment can not monitor or the like drawback, make handling cost increase and lose positive effect.
The utility model content
The purpose of this utility model is to provide electricity-saving intelligent electrical appliance controller for building, can effectively solve existing air-conditioning and lighting controller task single, main website is set and on-the-spotly can not be provided with jointly, can not unified management, the problem that can not monitor of site environment.
In order to solve the problems of the technologies described above, the utility model is achieved through the following technical solutions: electricity-saving intelligent electrical appliance controller for building, comprise monitoring of environmental sensor, with communicator, display, data processor, power-supply controller of electric, the time management module of external unit swap data, described sensor, communicator, display, power-supply controller of electric, time management module all are connected with data processor.
Preferably, described time management module comprises clock module and time block; Can be regularly to system, allow the equipment of control start working or close in the time of appointment.
Preferably, described power-supply controller of electric comprises power module and at least one relay; Relay is used for the control circuit switch, can control the switch of light fixture and central controller, and power module is used for realizing that common alternating current changes low-voltage DC.
Preferably, also comprise acousto-optic device, described acousto-optic device links to each other with data processor; Auditory tone cues is carried out in various operations, and it is more accurate that the user is adjusted, and breaks down or promptly will carry out acousto-optic hint to the user in the relational system at machine.
Preferably, also comprise the manual reversion key, described manual reversion key links to each other with data processor; Beyond the default working times such as needs overtime work, can make device start by this key.
Preferably, described communicator adopts one or more communication modes in wireless telecommunications, carrier communication, RS485 communication, the CAN bus communication; Automatically route networking realizes each other or and master station communication.
Preferably, also comprise storer, described storer links to each other with data processor; Storer can be preserved the data that are provided with to single controller.
Preferably, also comprise the downgoing communication circuit, described downgoing communication circuit links to each other with data processor; Upstream and downstream data is separated, and the cost of total system is saved in the classification control of more convenient system.
Preferably, also comprise man-machine interface, described man-machine interface links to each other with data processor; Can carry out the data setting to single controller.
Preferably, external unit comprises split-type air conditioner, central air conditioner, light fixture and socket, adopts controlled in wireless between described controller and split-type air conditioner and the socket, adopts relay control between described controller and central air conditioner and the light fixture; At the characteristics of distinct device, adopt different communication modes.
Compared with prior art, the utility model has the advantages that: can carry out data communication with main frame, can use the parameter of each controller of host setting, realize unified management, on-the-spot no personnel also can carry out environmental monitoring, also can set independent parameter for independent controller, auditory tone cues is carried out in various operations, it is more accurate that the user is adjusted, and breaks down or promptly will carry out acousto-optic hint to the user in the relational system at machine, and upstream and downstream data is separated, the classification control of more convenient system, save the cost of total system, be the equipment time switch, increase or reduce the quantity of controller arbitrarily.
Description of drawings
The utility model is described in further detail below in conjunction with accompanying drawing:
Fig. 1 is that the utility model electricity-saving intelligent electrical appliance controller for building circuit constitutes block diagram;
Fig. 2 is the utility model electricity-saving intelligent electrical appliance controller for building main program flow chart;
Fig. 3 is the utility model electricity-saving intelligent electrical appliance controller for building data processor schematic diagram;
Fig. 4 is the utility model electricity-saving intelligent electrical appliance controller for building wireless module schematic diagram;
Fig. 5 is the utility model electricity-saving intelligent electrical appliance controller for building temperature sensor schematic diagram;
Fig. 6 is the utility model electricity-saving intelligent electrical appliance controller for building humidity sensor schematic diagram;
Fig. 7 is the utility model electricity-saving intelligent electrical appliance controller for building Liquid Crystal Module schematic diagram;
Fig. 8 is the utility model electricity-saving intelligent electrical appliance controller for building infrared emission schematic diagram.
Embodiment
Consult the embodiment of Fig. 1 for the utility model electricity-saving intelligent electrical appliance controller for building, the sensor 1 that comprises monitoring of environmental, communicator 2 with the external unit swap data, display 3, data processor 4, power-supply controller of electric 5, time management module 10, described sensor 1, communicator 2, display 3, power-supply controller of electric 5, time management module 10 all is connected with data processor 4, described time management module 10 comprises clock module 101 and time block 102, described power-supply controller of electric 5 comprises power module 51 and at least one relay 52, also comprise acousto-optic device 9, described acousto-optic device 9 links to each other with data processor 4, also comprise manual reversion key 81, described manual reversion key 81 links to each other with data processor 4, described communicator 2 adopts wireless telecommunications, carrier communication, the RS485 communication, one or more communication modes in the CAN bus communication, also comprise storer 6, described storer 6 links to each other with data processor 4, also comprise man-machine interface 82, described man-machine interface 82 links to each other with data processor 4, also comprise downgoing communication circuit 7, described downgoing communication circuit 7 links to each other with data processor 4, external unit comprises split-type air conditioner, central air conditioner, light fixture and socket, adopt controlled in wireless between described controller and split-type air conditioner and the socket, adopt relay 52 controls between described controller and central air conditioner and the light fixture, described shell adopts 86 type switch enclosures, 86 type switch enclosures adopt China GB/T1245-1987 standard, described sensor 1 comprises temperature sensor 11 and humidity sensor 12, described display 3 is LCD or LED or charactron demonstration, described data processor 4 adopts MCU, also comprise watchdog device 41, described watchdog device 41 is connected on the MCU to be monitored.
Principle of work is consulted Fig. 2, after the start-up system, and initialization system clock, systematic parameter and task data, begin to feed dog, detection has or not the wired or wireless signal of principal computer, if the instruction of just carrying out principal computer is arranged, just do not wait arrived task time, carry out the order of setting again.
The start back receives the instruction that master control system sends by communicator 2, the environmental data that monitors with sensor 1 is by data processor 4 contrasts then, and by communicator 2 usefulness are infrared split-type air conditioner is adjusted by data processor 4, perhaps data processor 4 is controlled by 5 pairs of central air conditioner of power-supply controller of electric and light fixture, the user can be that independent this control device is set independent data to satisfy the not needs of chummery by the man-machine interface on the shell 8 also, these independent data messages will be stored in the storer 6, and can show the current environment temperature and the temperature and humidity of humidity and setting, current time or the like by display 3.
Consult Fig. 3 to Fig. 8, sensor has two, and MF1 is used for the collecting temperature data, reference power source is provided by precision voltage source, and MF1 is input to the AD port PA7 mouth of data processor 4 by the dividing potential drop of precision resistance R9, gather the voltage of getting by data processor 4, be converted into temperature data.HS1 is used for gathering humidity data, HS1 and precision resistance R10, Schmidt trigger U6 constitute an oscillatory circuit, the oscillatory circuit oscillation frequency will change with the variation relevant with humidity of HS1 electric capacity, simultaneously through outputing to the input capture ICP end of data processor 4 after the Schmidt trigger shaping of U6, data processor 4 captures frequency data, and conversion process becomes the ambient humidity data.The display part drives liquid crystal display by data processor 4 control Liquid Crystal Module HT1621 chip for driving.The parameter such as temperature, pattern wind speed that can data presented comprises the speed of time on date, temperature, humidity, central air conditioner or split-type air conditioner.Wireless module links to each other with data processor 4 with RXD by TXD.The infrared emission circuit is by the infrared carrier signal of the PWM output pin OCOPB3 output 38K hertz of data processor 4, drive and the R1 current limliting through Q1, output to infrared transmitting tube IRD1 and go up the have or not coded signal that send air-conditioning of data processor 4, be used for being provided with the parameters such as temperature, pattern, wind speed of outside split-type air conditioner by control 38K carrier signal.
The above only is the specific embodiment of the utility model the best, but architectural feature of the present utility model is not limited thereto, any those skilled in the art is in field of the present utility model, and variation of being done or modification all are encompassed among the claim of the present utility model.

Claims (10)

1. electricity-saving intelligent electrical appliance controller for building, it is characterized in that: comprise monitoring of environmental sensor (1), with communicator (2), display (3), data processor (4), power-supply controller of electric (5), the time management module (10) of external unit swap data, described sensor (1), communicator (2), display (3), power-supply controller of electric (5), time management module (10) all are connected with data processor (4).
2. electricity-saving intelligent electrical appliance controller for building as claimed in claim 1 is characterized in that: described time management module (10) comprises clock module (101) and time block (102).
3. electricity-saving intelligent electrical appliance controller for building as claimed in claim 1 is characterized in that: described power-supply controller of electric (5) comprises power module (51) and at least one relay (52).
4. electricity-saving intelligent electrical appliance controller for building as claimed in claim 1 is characterized in that: also comprise acousto-optic device (9), described acousto-optic device (9) links to each other with data processor (4).
5. electricity-saving intelligent electrical appliance controller for building as claimed in claim 1 is characterized in that: also comprise manual reversion key (81), described manual reversion key (81) links to each other with data processor (4).
6. electricity-saving intelligent electrical appliance controller for building as claimed in claim 1 is characterized in that: described communicator (2) adopts one or more communication modes in wireless telecommunications, carrier communication, RS485 communication, the CAN bus communication.
7. electricity-saving intelligent electrical appliance controller for building as claimed in claim 1 is characterized in that: also comprise storer (6), described storer (6) links to each other with data processor (4).
8. electricity-saving intelligent electrical appliance controller for building as claimed in claim 1 is characterized in that: also comprise man-machine interface (82), described man-machine interface (82) links to each other with data processor (4).
9. electricity-saving intelligent electrical appliance controller for building as claimed in claim 1 is characterized in that: also comprise downgoing communication circuit (7), described downgoing communication circuit (7) links to each other with data processor (4).
10. electricity-saving intelligent electrical appliance controller for building as claimed in claim 6, it is characterized in that: external unit comprises split-type air conditioner, central air conditioner, light fixture and socket, adopt controlled in wireless between described controller and split-type air conditioner and the socket, adopt relay (52) control between described controller and central air conditioner and the light fixture.
CN2009201151304U 2009-03-11 2009-03-11 Electricity-saving and intelligent electric appliance controller for building Expired - Fee Related CN201425712Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009201151304U CN201425712Y (en) 2009-03-11 2009-03-11 Electricity-saving and intelligent electric appliance controller for building

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Application Number Priority Date Filing Date Title
CN2009201151304U CN201425712Y (en) 2009-03-11 2009-03-11 Electricity-saving and intelligent electric appliance controller for building

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CN201425712Y true CN201425712Y (en) 2010-03-17

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101819435A (en) * 2010-04-16 2010-09-01 上海市建筑科学研究院(集团)有限公司 Environment zone controller
CN101819435B (en) * 2010-04-16 2016-12-14 上海市建筑科学研究院(集团)有限公司 Environment zone controller
CN109031971A (en) * 2018-08-21 2018-12-18 李三查 A kind of portable intelligent control device and intelligence control system

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101819435A (en) * 2010-04-16 2010-09-01 上海市建筑科学研究院(集团)有限公司 Environment zone controller
CN101819435B (en) * 2010-04-16 2016-12-14 上海市建筑科学研究院(集团)有限公司 Environment zone controller
CN109031971A (en) * 2018-08-21 2018-12-18 李三查 A kind of portable intelligent control device and intelligence control system

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C14 Grant of patent or utility model
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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20100317

Termination date: 20170311

CF01 Termination of patent right due to non-payment of annual fee