The present invention relates to the technical field of leakage protection, in particular to a self-test leakage protector with a timing function and electric equipment.
Traditional leakage protectors and timers are manufactured and sold separately, and if both functions are required for electrical control, they must be purchased separately and combined together, which increases the cost and control complexity. On the market, there are products that combine the above-mentioned two functions together, which are either integrated in a leak protector/timer or in a terminal product, but such a product is a simple combination of the two products with limited cost reduction, high standby power consumption, and low safety.
Therefore, the present invention provides a self-test leakage protector with a timing function and electric equipment leakage protection, to overcome the shortcomings of a high cost, high power consumption and low safety of a leakage protector in the prior art.
An embodiment of the present invention provides a self-test leakage protector with a timing function, including a leakage protection module, a timer module, a DC power supply module, and a DC power supply module control switch, wherein
the DC power supply module is configured to convert AC power to DC power and supply power to the leakage protection module and the timer module;
the DC power supply module control switch is connected between the DC power supply module and the leakage protection module, or between input AC power and the DC power supply module that supplies power to the leakage protection module, and is in an off state under a standby condition; according to a timing function requirement, the timer module sends a signal of turning off or turning on the DC power supply module control switch; and when the timer module sends the signal of turning on the DC power supply module control switch, the DC power supply module control switch is closed, such that the leakage protection module is powered on for power-on reset, followed by a self-test of a leakage function, and if the self-test is passed, power is supplied to a load, and the self-test is carried out every time before power is supplied to the load.
In an embodiment, the leakage protection module and the timer module share the DC power supply module, or the leakage protection module and the timer module are each connected to an independent DC power supply module for power supply thereto.
In an embodiment, the DC power supply module includes a buck circuit, a rectifier circuit, and a filter-stabilizer circuit connected successively, wherein after the buck circuit performs a voltage step-down operation on the AC power, the power is converted by the rectifier circuit to DC power, which is then led to the filter-stabilizer circuit to output smooth DC power.
In an embodiment, the timer module includes a timer circuit and a switch with timing position indication, or includes a timer circuit, a timing selection switch and a display circuit.
In an embodiment, the timer circuit is an MCU or an application-specific timing integrated circuit.
In an embodiment, the self-test leakage protector with a timing function further includes an AC zero-crossing detection circuit, which is connected between the DC power supply module and the timer module to provide time base correction for the MCU in the timer module.
In an embodiment, the switch with timing position indication is a rotary switch including a plurality of timing positions to indicate timing lengths to be selected.
In an embodiment, the display circuit comprises a plurality of indicator lights to indicate timing lengths.
In a second aspect, an embodiment of the present invention provides electric equipment, including the self-test leakage protector with a timing function in the first aspect integrated on a device thereof.
The technical solutions of the present invention have the following advantages:
1. The self-test leakage protector with a timing function provided in an embodiment of the present invention includes a leakage protection module, a timer module, a DC power supply module, and a DC power supply module control switch, wherein the DC power supply module control switch is connected between the DC power supply module and the leakage protection module, or between input AC power and the DC power supply module that supplies power to the leakage protection module, and is in an off state under a standby condition; according to a timing function requirement, the timer module sends a signal of turning off or turning on the DC power supply module control switch; and when the timer module sends the signal of turning on the DC power supply module control switch, the DC power supply module control switch is closed, such that the leakage protection module is powered on for power-on reset, followed by a self-test of a leakage function, and if the self-test is passed, power is supplied to a load, and the self-test is carried out every time before power is supplied to the load. In the invention, the timing function of the timer is integrated in the self-test leakage protector capable of self testing, so the leakage protector is a separate product having a timing function with high safety, low standby power consumption and a low cost.
2. The timer switch of the self-test leakage protector with a timing function provided in an embodiment of the present invention is a selector switch with time scale, so a time indication circuit can be omitted to reduce the cost, while reducing the standby power consumption of the timer module.
3. In the electric equipment provided in an embodiment of the present invention, a self-test leakage protector with a timing function is integrated thereon, and when a timing signal controls the leakage protection module to be connected to the supply power, the leakage protection module has a function of power-on reset, and a self-test of a leakage function is carried out immediately after the power-on reset, to ensure electric equipment and personal safety.
To describe the technical solutions in the embodiments of the present invention or in the prior art more clearly, the accompanying drawings to be used in the description of the embodiments or the prior art are introduced below briefly. Obviously, the accompanying drawings in the following description are merely some of the embodiments of the present invention, and for those of ordinary skill in the art, other drawings may also be obtained based on these drawings without creative work.
Technical solutions of the present invention will be described below clearly and completely in conjunction with the accompanying drawings. Obviously, the described embodiments are part of, instead of all of embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art without creative work, based on the embodiments in the present invention, fall into the protection scope of the present invention.
In addition, technical features involved in different embodiments of the present invention described below may be combined with each other so long as they do not conflict with each other.
A self-test leakage protector with a timing function provided in an embodiment of the present invention includes a DC power supply module 1, a DC power supply module control switch 2, a leakage protection module 3, and a timer module 4, wherein the DC power supply module 1 is configured to convert AC power to DC power and supply power to the leakage protection module 3 and the timer module 4; the leakage protection module 3 and the timer module 4 share the DC power supply module (as shown in
The DC power supply module 1 in this embodiment includes a buck circuit, a rectifier circuit, and a filter-stabilizer circuit connected successively, wherein after the buck circuit performs a voltage step-down operation on the AC power, the power is converted by the rectifier circuit to DC power, which is then led to the filter-stabilizer circuit to output smooth DC power.
The timer module in this embodiment includes a timer circuit and a switch with timing position indication (as shown in
In a specific embodiment, as shown in
The switch S2 with timing position indication in the embodiment of the invention is a selector switch with time scale, so a time indication circuit can be omitted to reduce the cost, while reducing the standby power consumption of the timer module. A timing length is adjusted by the rotary switch (a first gear position indicates stay-on; a second gear position indicates stop; a third gear position indicates a timing length of 2 hours delayed by 20 minutes; a fourth gear position indicates a timing length of 4 hours delayed by 20 minutes; a fifth gear position indicates a timing length of 6 hours delayed by 20 minutes; a sixth gear position indicates a timing length of 8 hours delayed by 20 minutes; and a seven gear position indicates a timing length of 12 hours delayed by 20 minutes). After a midway gear shift, the timer recounts time; and after 24 hours, the timer is restarted for timing (24 hours is for a cycle period for the timer), and the timing lengths corresponding to the gear positions of the rotary switch described above are only used as an example, but not a limitation.
In another specific embodiment, the leakage protector includes components as shown in
An embodiment of the present invention further provides electric equipment, the self-test leakage protector with a timing function described in the above embodiment being integrated on a device thereof. The electric equipment may be any of electric fittings or various electric equipment that need leakage protection, such as various power tools, swimming pool pumps (SPAs), electric equipment operating in engineering applications, etc. By integrating the leakage protector provided in this embodiment, the equipment is not only low in standby power consumption and low in cost, but also high in safety, and electric equipment and personal safety can be ensured.
Obviously, the embodiments described above are merely examples for clear description, and are not intended to limit the implementations. Other variations or modifications of the various forms may also be made by those skilled in the art based on the above description. There is no need and no way to describe all implementations in an exhaustive manner here. Obvious variations or modifications derived therefrom are still within the protection scope of the invention-creation.
Number | Date | Country | Kind |
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202011359837.7 | Nov 2020 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2021/093801 | 5/14/2021 | WO |