CN203386090U - Electrothermal textile intelligent controller - Google Patents
Electrothermal textile intelligent controller Download PDFInfo
- Publication number
- CN203386090U CN203386090U CN201320460135.7U CN201320460135U CN203386090U CN 203386090 U CN203386090 U CN 203386090U CN 201320460135 U CN201320460135 U CN 201320460135U CN 203386090 U CN203386090 U CN 203386090U
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- electric heating
- photon
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Abstract
The utility model discloses an electrothermal textile intelligent controller, which comprises a low-voltage main control module controlling an electrothermal body, wherein the low-voltage main control module is provided with a power supply adapter module, the power supply adapter module converts 220V alternating current into 24V direct current and delivers the 24V direct current to the low-voltage main control module. The low-voltage main control module comprises a power supply conversion circuit, a temperature collection circuit, a button scanning circuit, a display scanning circuit, a photon generating circuit, a negative voltage generating circuit, a heating control circuit and a core microcomputer processor, wherein the core microcomputer processor receives data signals inputted by the temperature collection circuit and the button scanning circuit, and electric signal instructions are outputted to the display scanning circuit, the photon generating circuit, the negative voltage generating circuit and the heating control circuit respectively after passing through operational processing; and the photon generating circuit, the negative voltage generating circuit and the heating control circuit automatically control a photon generating module, a negative voltage generating module and a heating execution module in the electrothermal body respectively according to the corresponding signals instructions.
Description
Technical field
The utility model relates to the electric heating control technology, particularly relates to the heating control apparatus of domestic electric heating textile, specifically a kind of electric heating textile intelligent controller.
Background technology
Electric heating textile such as electric blanket, heat preservation mattress, jade mattress, health-care shawl etc. are generally used in the family, and the electric heating textile is mainly that the Electrothermic wire heating arranged by inside provides people a cosy temperature.The current raising along with people's living standard, on the function of people to the electric heating textile, have higher requirement, the electric heating textile can not only be people's heating of dispeling cold in cold winter, has also introduced the theory of health-care physical therapy, such as magnetic therapy, photon pulse, infrared ray etc. simultaneously.But along with the traditional controller of the increase of electric heating functions of textile fabrics because its structure is comparatively simple, function singleness can't meet multi-functional needs, besides controller of the prior art is all line voltage usually, and do not introduce photon theory or lack of wisdom and control, thereby regulate and operation very inconvenient, poor stability.Therefore market demand has more advanced, simple and safe a kind of operation tool.
Summary of the invention
Technical problem to be solved in the utility model is for above-mentioned prior art present situation, and low-voltage power supply, DC heating, energy-saving safe are provided, laborsaving, the easy to operate a kind of electric heating textile intelligent controller of saving worry.
The utility model solves the problems of the technologies described above adopted technical scheme: a kind of electric heating textile intelligent controller, comprise for controlling the low pressure main control module of outside electric heating main body, the low pressure main control module is equipped with power adaptation module, the direct current that this power adaptation module converts the electric main of 220 volts to the DC24 volt flows to the low pressure main control module, include power-switching circuit in the low pressure main control module, temperature collection circuit, key scanning circuit, the reading scan circuit, photon produces circuit, negative voltage generating circuit, heating control circuit and core micro processor, the core micro processor receives in real time data-signal electric signal instruction dispensing after the internal processes calculation process of temperature collection circuit, key scanning circuit Gather and input and exports to reading scan circuit, photon generation circuit, negative voltage generating circuit and heating control circuit, photon generation circuit, negative voltage generating circuit and the corresponding signal instruction of heating control circuit basis automatic electric are respectively controlled photon generation module, negative pressure generation module and the heating execution module in outside electric heating main body.
For optimizing technique scheme, the measure of taking also comprises:
Above-mentioned power-switching circuit is obtained electric energy and is converted holding temperature Acquisition Circuit, key scanning circuit, reading scan circuit, photon generation circuit, negative voltage generating circuit, heating control circuit and the required voltage of core micro processor work respectively to from the DC24 volt direct current of power adaptation module input.
Above-mentioned temperature collection circuit is connected with the temperature collect module in outside electric heating main body, and the temperature parameter in this temperature collect module Real-time Collection electric heating main body feeds back to the core micro processor through temperature collection circuit.
Above-mentioned low pressure main control module disposes the function button module of manual embedding key command, and key scanning circuit is delivered to the core micro processor by the key command of function button module input in real time.
Above-mentioned function button module comprises power switching module, photon key-press module, negative pressure switch module, time switch module and rotation adjustment module.
Above-mentioned low pressure main control module is equipped with display module, and the reading scan circuit is connected with display module, and display module converts the analog electrical signal of reading scan circuit input to visual signal.
Above-mentioned display module comprises for the digital display module of displays temperature and timing and for the negative pressure indicating module that shows the negative voltage generating circuit duty with for showing that photon produces the photon indicating module of circuit working state.
Be provided with the fuse protection module in above-mentioned power adaptation module.
Compared with prior art, the intelligent controller of utility model is equipped with power adaptation module, this power adaptation module converts the civil power of 220 volts the direct current safety utilization of electric power of 24 volts to for low pressure main control module and outside electric heating main body, therefore more safe and reliable in operation, the danger that can avoid people to get an electric shock.Be provided with the core micro processor in the low pressure main control module, core micro processor inside is provided with Operations Control Procedure, and the core micro processor can in addition provide the electric signal of the temperature collection circuit that receives and key scanning circuit feedback the signal of people's visuality and produce circuit, negative voltage generating circuit and heating control circuit by photon by the reading scan circuit after calculation process controls outside electric heating main body automatically.The utility model has the advantages that: low-voltage power supply, stop to get an electric shock, DC heating, forever radiationless, computer is controlled, easy and simple to handle, and the photon negative pressure is good for health.
The accompanying drawing explanation
Fig. 1 is the control principle schematic diagram of utility model embodiment.
Embodiment
Embodiment below in conjunction with accompanying drawing to utility model is described in further detail.
Figure 1 shows that the theory structure schematic diagram of utility model.
Reference numeral wherein is: low pressure main control module 1, power adaptation module 2, function button module 3, display module 4, electric heating main body 5.
As shown in Figure 1, a kind of electric heating textile intelligent controller of utility model, comprise for controlling the low pressure main control module 1 of outside electric heating main body 5, low pressure main control module 1 is equipped with power adaptation module 2, the direct current that power adaptation module 2 converts the electric main of 220 volts to the DC24 volt flows to low pressure main control module 1, includes power-switching circuit, temperature collection circuit, key scanning circuit, reading scan circuit, photon in low pressure main control module 1 and produces circuit, negative voltage generating circuit, heating control circuit and core micro processor; The core micro processor receives in real time data-signal electric signal instruction dispensing after the internal processes calculation process of temperature collection circuit, key scanning circuit Gather and input and exports to reading scan circuit, photon generation circuit, negative voltage generating circuit and heating control circuit; Photon generation circuit, negative voltage generating circuit and the corresponding signal instruction of heating control circuit basis automatic electric are respectively controlled photon generation module, negative pressure generation module and the heating execution module in outside electric heating main body 5.The utility model low-voltage DC supply, computer is controlled outside electric heating main body 5.Temperature collection circuit and key scanning circuit Real-time Collection temperature data and key command are sent to the core micro processor.Core micro processor inside is provided with Operations Control Procedure, the core micro processor in addition can provide visual signal output by the reading scan circuit after calculation process by the temperature data that collects and key command, can produce photon generation module, negative pressure generation module and the heating execution module that circuit, negative voltage generating circuit and heating control circuit control in electric heating main body 5 by photon simultaneously and carry out.The utility model DC heating is radiationless, low-voltage power supply is safe and reliable, computer is controlled accurate constant temperature, have easy and simple to handle, the characteristics of friendly interface.
In embodiment, power-switching circuit is obtained electric energy and is converted holding temperature Acquisition Circuit, key scanning circuit, reading scan circuit, photon generation circuit, negative voltage generating circuit, heating control circuit and the required voltage of core micro processor work respectively to from the DC24 volt direct current of power adaptation module 2 inputs.
In embodiment, temperature collection circuit is connected with the temperature collect module in outside electric heating main body 5, and the temperature parameter in this temperature collect module Real-time Collection electric heating main body 5 feeds back to the core micro processor through temperature collection circuit.
In embodiment, low pressure main control module 1 disposes the function button module 3 of manual embedding key command, and key scanning circuit is delivered to the core micro processor by the key command of function button module 3 inputs in real time.
In embodiment, function button module 3 comprises power switching module, photon key-press module, negative pressure switch module, time switch module and rotation adjustment module.
In embodiment, low pressure main control module 1 is equipped with display module 4, and the reading scan circuit is connected with display module 4, and display module 4 converts the analog electrical signal of reading scan circuit input to visual signal.
In embodiment, display module 4 comprises for the digital display module of displays temperature and timing and for the negative pressure indicating module that shows the negative voltage generating circuit duty with for showing that photon produces the photon indicating module of circuit working state.
In embodiment, be provided with the fuse protection module in power adaptation module 2.
Product of the present utility model connects this product and outside electric heating main body in use, plugs in, and power adaptation module converts the civil power of AC 220 V to safe 24 volts of powered by direct current.
One, press under normal circumstances the power switching module start, digital display module can show the actual temperature of current electric heating main body, when if the actual temperature detected is less than the temperature of core micro processor setting, the core micro processor sends the electric signal instruction and impels the heating control circuit conducting to make to heat execution module work heating, when if instead the actual temperature of electric heating main body is more than or equal to design temperature, the core micro processor sends the electric signal instruction to be impelled heating control circuit cut-off to make to heat execution module to stop heating, so move in circles, guarantee the permanent stability of electric heating body temperature.
When again pressing power switching module, shut down, digital display module extinguishes, and the electric heating main body stops heating.
When start, the default setting temperature of this product core micro processor is 45 degree, and the Temperature Setting range of adjustment is at 0-70 ℃.Can enter the adjustment program after pressing the rotation adjustment module after start, now rotate the rotation adjustment module and can regulate design temperature by the core micro processor.When entering the adjustment program, digital display module displays temperature setting value.After pressing the time switch module, the core micro processor enters the timing setting pattern, and now rotate the rotation adjustment module and can regulate setting-up time, when entering the timing setting program, digital display module Displaying timer setting value.
Two, this product is pressed the photon key-press module after start, and photon produces circuit can conducting impel the work of photon generation module, and now the photon indicating module is bright.When click again the photon key-press module the photon indicating module extinguish, the photon generation module quits work.Core micro processor of the present utility model can be closed this function in the work of photon generation module after one hour automatically.
Three products are pressed the negative pressure switch module after start, and the negative pressure indicating module is bright, and negative voltage generating circuit impels the negative pressure generation module electronegative.When again by the negative pressure switch module the negative pressure indicating module go out, negative voltage generating circuit quits work, the negative pressure generation module is not charged.Same this function operation can be closed after 1 hour automatically.
Claims (8)
1. an electric heating textile intelligent controller, comprise for controlling the low pressure main control module (1) of outside electric heating main body (5), it is characterized in that: described low pressure main control module (1) is equipped with power adaptation module (2), the direct current that described power adaptation module (2) converts the electric main of 220 volts to the DC24 volt flows to low pressure main control module (1), include power-switching circuit in described low pressure main control module (1), temperature collection circuit, key scanning circuit, the reading scan circuit, photon produces circuit, negative voltage generating circuit, heating control circuit and core micro processor, described core micro processor receives in real time data-signal electric signal instruction dispensing after the internal processes calculation process of temperature collection circuit, key scanning circuit Gather and input and exports to reading scan circuit, photon generation circuit, negative voltage generating circuit and heating control circuit, described photon generation circuit, negative voltage generating circuit and the corresponding signal instruction of heating control circuit basis automatic electric are respectively controlled photon generation module, negative pressure generation module and the heating execution module in outside electric heating main body (5).
2. a kind of electric heating textile intelligent controller according to claim 1, is characterized in that: obtain electric energy the DC24 volt direct current that described power-switching circuit is inputted from power adaptation module (2) and convert holding temperature Acquisition Circuit, key scanning circuit, reading scan circuit, photon generation circuit, negative voltage generating circuit, heating control circuit and the required voltage of core micro processor work respectively to.
3. a kind of electric heating textile intelligent controller according to claim 2, it is characterized in that: described temperature collection circuit is connected with the temperature collect module in outside electric heating main body (5), and the temperature parameter in this temperature collect module Real-time Collection electric heating main body (5) feeds back to the core micro processor through temperature collection circuit.
4. a kind of electric heating textile intelligent controller according to claim 3, it is characterized in that: described low pressure main control module (1) disposes the function button module (3) of manual embedding key command, and described key scanning circuit is delivered to the core micro processor by the key command of function button module (3) input in real time.
5. a kind of electric heating textile intelligent controller according to claim 4 is characterized in that: described function button module (3) comprises power switching module, photon key-press module, negative pressure switch module, time switch module and rotation adjustment module.
6. a kind of electric heating textile intelligent controller according to claim 5, it is characterized in that: described low pressure main control module (1) is equipped with display module (4), described reading scan circuit is connected with display module (4), and described display module (4) converts the analog electrical signal of reading scan circuit input to visual signal.
7. a kind of electric heating textile intelligent controller according to claim 6 is characterized in that: described display module (4) comprises for the digital display module of displays temperature and timing and for the negative pressure indicating module that shows the negative voltage generating circuit duty with for showing that photon produces the photon indicating module of circuit working state.
8. a kind of electric heating textile intelligent controller according to claim 7, it is characterized in that: described power adaptation module is provided with the fuse protection module in (2).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201320460135.7U CN203386090U (en) | 2013-07-31 | 2013-07-31 | Electrothermal textile intelligent controller |
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CN201320460135.7U CN203386090U (en) | 2013-07-31 | 2013-07-31 | Electrothermal textile intelligent controller |
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CN203386090U true CN203386090U (en) | 2014-01-08 |
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CN201320460135.7U Expired - Fee Related CN203386090U (en) | 2013-07-31 | 2013-07-31 | Electrothermal textile intelligent controller |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103399598A (en) * | 2013-07-31 | 2013-11-20 | 宁波锦春电器有限公司 | Electric heating textile intelligent controller |
-
2013
- 2013-07-31 CN CN201320460135.7U patent/CN203386090U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103399598A (en) * | 2013-07-31 | 2013-11-20 | 宁波锦春电器有限公司 | Electric heating textile intelligent controller |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20140108 Termination date: 20140731 |
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EXPY | Termination of patent right or utility model |