1. Field of Invention
The present invention relates to a smart electronic connecting device. More particularly, the present invention relates to a smart electronic connecting device with smart learning function to control an electrical socket to provide the electricity or not.
2. Description of Related Art
Traditionally, timing control function is widely used in the electrical products to save energy effectively or reserve control according to the settings of a user. Generally speaking, the user can formally set timing control just according to the predetermined time, for example 1 hour, two hours to 24 hours etc. . . . , which is set by the manufacturers to the electrical products.
As the demand for customized, the manufacturers further provide the timing device with learning the habit of the user to automatically enable the timing control at the predetermined time according the above-mentioned preferred setting of the user. However, the above-mentioned timing control is to automatically enable just according to the predetermined time set by the user to enable such that it is still inconvenient. For example, in the prior technology, if the user enable the electrical product at 12 o'clock and set the usage time as 2 hours preset by the manufacturer, the electrical product will be enabled for 2 hours at 12 o'clock next day such that this learning method is still simple and inelastic.
A smart learning device provided by the present invention can provide smart operating management in any electrical product effectively and flexibly.
The present invention aims to provide a smart electronic to connecting device by intelligently learning the operating habit of the user to achieve the goal of imitating the user for operating the electronic connecting device.
In order to achieve the aforementioned object, a technical aspect of the present invention relates to a smart electronic connecting device applicable to control the electronic connection between an external power supply and an external electronic connector. The smart electronic connecting device includes an input unit, a processing module, a mode generation unit, an output unit and a relay unit. The input unit is connected to the external power supply. The processing module includes a timing generation unit, a control unit and a memory unit, wherein the processing module is electrically connected to the relay unit, the timing generation unit generates a timing signal, and the control unit generates a control signal. The mode generation unit is connected to the processing module, and the mode generation unit generates multiple mode selecting signals to the control unit. The output unit is connected to the external electronic connector. The relay unit is connected between the input unit and the output unit, and the relay unit is turned on/off selectively according to the control signal of the control unit to conduct the input unit and the output unit, wherein the memory unit records the turn-on connection status of the relay unit within the predetermined period, and recurs the turn-on connection status in one mode corresponding to one signal of the mode selecting signals.
In compared with the prior art, this present invention provides a smart electronic connecting device for the user to control an electronic connecting unit by manual control, learning control and smart control. In another word, besides the electronic connecting unit can be manually controlled to conduct or not, the electronic connecting unit can also recur the operation habit of the user automatically by way of learning. While the status is automatically in smart control, the user can still temporarily or completely interrupt the smart control procedure by manual control at any time, and while the user stops the manual control, the smart control procedure can resume again processing the smart control continuously. Further, while the external power supply powers off, the electricity stored in the internal power storage unit can be provided to the smart electronic connecting device to operate to not lose the operation mode which has been stored. Besides, the timing of the present invention can be obtained from the internal timing generator, and the timing can also be obtained from the frequency of the external power supply as the reference of timing. The indicating device can indicate the manual control mode, the learning control mode and the smart control mode etc. . . . .
The following objectives, features, advantages and embodiments of the present invention can be more fully understood, with reference made to the accompanying drawings as follows:
Referring to
The input unit 12 is connected to the external power supply 1 to import the electricity of the external power supply 1 to the smart electronic connecting device 10. The processing module 14 has a timing generation unit 142, a control unit 144 and a memory unit 146, and the timing generation unit 142 generates a timing signal TS, and the control unit 144 generates a control signal CS, wherein the timing generation unit 142 provides the reference of the basic time units for the operation of the control unit 144. For example, the timing generation unit 142 can generate the timing signal TS to the control unit 144 via the internal time generator having an oscillator, or as shown in
Referring to
The manual control mode represents that the mode generation is unit 16 can directly control the turn-on connection status between the input unit 12 and the output unit 18. For example, while the manual control mode is enabled, the input unit 12 will conduct with output unit 18 such that the external power supply 1 directly provides electricity to the external electronic connector 2.
The learning control mode represents that the control unit 144 of the processing module 14 can generate at least a control signal CS to control the turn-on connection status of the relay unit 20 according to the operation status of the mode generation unit 16, and record the manual control mode proceeded by the mode generation unit 16 within a predetermined period (i.e. the recurrence period). In another word, after the learning control mode is enabled, the user still needs to decide the turn-on connection status as the manual control mode to conduct the input unit 12 and the output unit 18 or not, but the different is that the control unit 144 of the processing module 14 will synchronous record the turn-on connection status of the manual control mode, generate a time and connection status corresponding table 148 according to the turn-on connection status, and store the time and connection status corresponding table 148 in the memory unit 146. That means this function can store the turn-on connection status between the input unit 12 and the output unit 18 corresponding to the usage status in the memory unit 146. Especially, the turn-on connection status within the predetermined period can be recorded in the above-mentioned record period, e.g. 24 hours, or the user can decide the predetermined period as when to start and stop to record the turn-on connection status, or after the learning control mode is enabled, the turn-on connection status will be recorded continuously until the memory unit 146 is full.
The smart control mode represents that the processing module 14 reads the turn-on connection status stored in memory unit 146, and the turn-on connection status can recurs through the processing module 14 such that the input unit 12 and the output unit 18 can be conducted or not according to the turn-on connection status, e.g. manual control mode (also called operation habit) of the user in the past 24 hours can be recurred.
The output unit 18 is connected to the external electronic connector 2, and the output unit 18 is in socket type including two electrodes or three electrodes, etc. . . . . The relay unit 20 is connected between the output unit 12 and the output unit 18, and the relay unit 20 can be is turned on/off selectively according to the control signal CS of the control unit 144 to conduct the input unit 12 and the output unit 18. In another word, the control signal CS can further decide to conduct the input unit 12 and the output unit 18 according the mode selecting signals MSS generated from the mode generation unit 16.
Further, the memory unit 146 of the above-mentioned processing module 14 stores the turn-on connection status of the relay unit 20 in a predetermined period, and recurs the turn-on connection status in one mode of to the mode selecting signals MSS such that the mode of the mode selecting signals MSS is the smart control mode. While the control unit 144 of the processing module 14 operates in the smart control mode, the control unit 144 will read the time and connection status corresponding table 148 from the memory unit 146, and recur to generate the control signal to control the turn-on connection status of the relay unit 20 in the recurrence period according to the time and connection status corresponding table 148.
Referring to
Another design type (as shown in
Referring to
Referring to
Besides, in another embodiment, the method of the smart electronic connection further comprises step S5 after step S4. In step S5, after the smart control mode is enabled automatically, the recurring of the operation history by the smart control mode can be interrupted at any time according to the manual control mode of the mode generation unit. Besides, in step S6, after the smart control mode is interrupted by the manual control mode, the smart control mode resumes to recur the operation history within the predetermined period.
In the above-mentioned contents, the method of the smart electronic connection further indicates the manual control mode, the learning control mode and the smart control mode generated by the mode generation unit via providing the indicating unit. Besides, the method of the smart electronic connection further provides the internal power supply unit to receive the electricity from the external power supply and store the electricity to the power storage unit, wherein the power of the external power supply goes off, the power storage unit provides the electricity needed by the mode generation unit, the control unit and the indicating unit.
Referring to
Referring to
Although the present invention has been described with reference to the above embodiments, these embodiments are not intended to limit the present invention. It will be apparent to those skilled in the art that various modifications and variations can be made without departing from the scope or spirit of the present invention. Therefore, the scope of the present invention shall be defined by the appended claims.
Number | Date | Country | Kind |
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99132299 | Sep 2010 | TW | national |