Adjustable intelligent power-saving device
By introducing protective and energy-saving control components into the intelligent energy-saving device, combined with a touch display and operation indicator lights, real-time monitoring and flexible adjustment of the circuit are achieved, solving the problem of the inability to adaptively adjust in existing technologies, and improving energy-saving effect and circuit stability.
Patent Information
- Application Number
- CN202422898942.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-27
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2034-11-27
AI Technical Summary
Existing smart energy-saving devices cannot adaptively adjust according to actual needs, resulting in reduced performance.
An intelligent energy-saving device was designed, which includes protection components, energy-saving control components, a touch display, and operation indicator lights. Through the combination of intelligent controller, voltage sensor, current sensor, relay and thyristor, the device enables real-time monitoring and flexible adjustment of the circuit.
It improves the effectiveness of intelligent energy-saving devices, enabling them to adjust circuit operation according to actual needs, ensuring circuit stability and safety, and reducing energy waste.
Smart Images

Figure CN223713340U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of intelligent power saving equipment, specifically adjustable intelligent power saving device. BACKGROUND
[0002] The intelligent power saver is a device for controlling power consumption through intelligent technology, aiming to help users save energy and reduce electricity charges, based on key technologies such as real-time monitoring, data analysis, remote control and automatic optimization, the intelligent power saver can monitor the energy consumption of electrical appliances in real time, through data collection and analysis, help users understand the energy consumption mode and peak use period of each electrical appliance, so as to take corresponding measures to reduce power consumption, and is often used in industrial production and other places.
[0003] According to Chinese patent application No. 202320544791.9, an intelligent power saving device is disclosed, which has a load regulating transformer and a detection mutual inductor connected in series between an input power supply and an output load, and connects the output load through a four-position load switch; the load regulating transformer comprises three groups of transformer coils, three groups of on-load switches, three-column iron cores and winding coils, wherein the winding coils comprise three groups of balanced coils connected in series; the three-phase input of the power supply side of the load regulating transformer is connected with a group of transformer coils respectively; each group of transformer coils corresponds to a group of on-load switches and a column iron core respectively, and each column iron core corresponds to a group of balanced coils; the three groups of on-load switches are connected with the three-phase output of the load side of the load regulating transformer respectively; a three-phase unbalanced compensation device is connected to the load side of the load regulating transformer, wherein the three-phase output of the three-phase unbalanced compensation device is connected with the three-phase output respectively; the input end of a power balance intelligent controller is connected with the detection mutual inductor, and the output end is connected with the three groups of on-load switches.
[0004] The prior art effectively solves the problem of power waste caused by the heat loss caused by the instantaneous flow when the load changes or the input voltage is too large, and has the advantages of reducing power waste and optimizing power saving, but the intelligent power saver usually monitors and adjusts the running condition of the circuit in a fixed way, and cannot be self-adapted according to the actual demand, thereby reducing the use effect of the intelligent power saver.
[0005] Therefore, the utility model provides an adjustable intelligent power saving device to solve the above problems. Utility model content
[0006] In order to solve the above technical problems, the utility model provides the following technical scheme:
[0007] The utility model relates to an adjustable intelligent power saving device, including protection assembly, protection assembly includes box and sealed door, the inner chamber of box installs power saving control assembly, and the box and sealed door are used for providing protection to power saving control assembly, and power saving control assembly includes intelligent controller, communication module, voltage sensor, current sensor, relay and thyristor, and power saving control assembly is used for monitoring and adjusting circuit, and the surface of sealed door installs touch display, and the upper end of the surface of box installs operation indicating lamp, and the output of touch display is connected with the input of intelligent controller, and the output and input of intelligent controller are interconnected with the output and input of communication module, and the output of communication module is connected with the input of external terminal, and the output of voltage sensor and current sensor all are connected with the input of intelligent controller, and the output of intelligent controller is connected with the input of relay and thyristor respectively.
[0008] Further, in the utility model, the inner chamber of the box is fixedly connected with a bridge, the power saving control assembly is installed on the surface of the bridge, and the sealed door is hingedly connected with the box through a hinge.
[0009] Further, in the utility model, the protection assembly further includes ventilation fans, the number of ventilation fans is two, and the ventilation fans are installed on the two sides of the box.
[0010] Further, in the utility model, the intelligent controller is composed of a development board and a DSP chip, and is provided with an ADC and a DAC.
[0011] Further, in the utility model, the communication module adopts RS-485 and is connected with the communication interface of the intelligent controller.
[0012] Further, in the utility model, the power module of the power saving control assembly adopts an AC-DC rectifier circuit and a voltage stabilizing circuit, and the intelligent controller is further provided with an EEPROM memory.
[0013] Beneficial effects, the utility model has following beneficial effects:
[0014] The utility model discloses a protection assembly, power saving control assembly, touch display and operation indicating lamp are set up, and the effect that intelligent power saving can be used can be played, and the protection assembly is used for providing installation and protection space to power saving control assembly, touch display and operation indicating lamp, and power saving control assembly can monitor and adjust the running condition of circuit, and the running parameter can be set through touch display, thereby can conveniently adjust the running condition of intelligent power saver, and the use effect of intelligent power saver is effectively improved. BRIEF DESCRIPTION OF DRAWINGS
[0015] Fig. 1 It is the front view structure schematic diagram of the utility model.
[0016] Fig. 2 is the connection state structure schematic diagram of the box body and the bridge and the electricity-saving control assembly of the utility model;
[0017] Fig. 3 is the system flow schematic diagram of the electricity-saving control assembly of the utility model.
[0018] In the figure:
[0019] 1, protection assembly; 101, box body; 102, sealing door; 103, bridge; 104, ventilation fan; 2, electricity-saving control assembly; 201, intelligent controller; 202, communication module; 203, voltage sensor; 204, current sensor; 205, relay; 206, thyristor; 3, touch display; 4, running indicator light. DETAILED DESCRIPTION
[0020] In order to more understand the technical content of the utility model, specific embodiments are raised and the following is described with the aid of the accompanying drawings. In the present disclosure, aspects of the utility model are described with reference to the accompanying drawings, in which many of the illustrated embodiments are shown. The embodiments of the present disclosure are not necessarily defined in all aspects including the utility model. It should be understood that the above-mentioned various concepts and embodiments, as well as those concepts and embodiments described in more detail below, can be implemented in any one of many ways, because the concepts and embodiments disclosed by the utility model are not limited to any implementation. In addition, some aspects of the utility model can be used alone, or used in any appropriate combination with other aspects of the utility model.
[0021] Example 1
[0022] As Figs. 1-3As shown, this is the first embodiment of the present invention. This embodiment provides an adjustable intelligent energy-saving device, including a protective component 1. The protective component 1 includes a housing 101 and a sealing door 102. An energy-saving control component 2 is installed inside the housing 101. The housing 101 and the sealing door 102 provide protection for the energy-saving control component 2. The energy-saving control component 2 includes an intelligent controller 201, a communication module 202, a voltage sensor 203, a current sensor 204, a relay 205, and a thyristor 206. The energy-saving control component 2 is used to monitor and adjust the circuit. The sealing door 102... A touch display 3 is mounted on the surface of housing 2. An indicator light 4 is mounted on the upper part of the surface of housing 101. The output terminal of the touch display 3 is connected to the input terminal of the intelligent controller 201. The output terminal and input terminal of the intelligent controller 201 are interconnected with the output terminal and input terminal of the communication module 202. The output terminal of the communication module 202 is connected to the input terminal of an external terminal. The output terminals of voltage sensor 203 and current sensor 204 are both connected to the input terminal of intelligent controller 201. The output terminal of intelligent controller 201 is connected to the input terminals of relay 205 and thyristor 206, respectively.
[0023] like Figs. 1-3 As shown, the enclosure 101 and the sealing door 102 provide installation and protection for the energy-saving control component 2, the touch display 3, and the operation indicator 4, effectively improving the stability of their operation. The touch display 3 is connected to the operation indicator 4, allowing the setting of the operating data for the energy-saving control component 2. This enables the adjustment of the current and voltage range of the circuit, allowing the energy-saving control component 2 to monitor and adjust according to the adjusted data. The voltage sensor 203 and the current sensor 204 monitor the circuit in real time according to the values set by the touch display 3 and feed the data back to the intelligent controller 201. The intelligent controller 201 controls the thyristor 206 to adjust the circuit's operating data, enabling flexible adjustment and effectively improving the performance of the intelligent energy-saving device. The intelligent controller 201 sends the operating data to an external terminal via the communication module 202, allowing real-time viewing of the operating data. The external terminal can be a mobile phone or a computer.
[0024] Example 2
[0025] Reference Figs. 1-3 This is the second embodiment of the present invention, which is based on the previous embodiment.
[0026] In this embodiment, a cable tray 103 is fixedly connected to the inner cavity of the housing 101, the power saving control component 2 is installed on the surface of the cable tray 103, and the sealing door 102 is hinged to the housing 101 via a hinge.
[0027] The protective component 1 also includes two ventilation fans 104, which are installed on both sides of the enclosure 101 respectively.
[0028] The intelligent controller 201 consists of a development board and a DSP chip, and is equipped with an ADC and a DAC.
[0029] The communication module 202 uses RS-485 and is connected to the communication interface of the intelligent controller 201.
[0030] The power module of the power saving control component 2 adopts an AC-to-DC rectifier circuit and a voltage regulator circuit, and the intelligent controller 201 is also equipped with an EEPROM memory.
[0031] like Figs. 1-3 As shown, the ADC is used to convert the analog signals output by the voltage sensor 203 and the current sensor 204 into digital signals for processing by the DSP chip. The DAC is used to convert digital signals into analog signals when analog control signals are required. The EEPROM memory is used to store power consumption data and user-set energy-saving strategies. The communication module 202 enables communication with an external terminal, allowing users to view the operating data of the smart energy-saving device. The cable tray 103 provides installation space for the energy-saving control component 2. The ventilation fan 104 ventilates the interior of the enclosure 101, cooling the heat generated by the energy-saving control component 2 and ensuring stable operation. Real-time monitoring by the voltage sensor 203 and the current sensor 204 also provides protection against overvoltage, undervoltage, overload, and short circuits. When sensor 203 detects that the voltage exceeds the preset upper limit, the intelligent controller 201 will trigger the protection circuit to cut off the power supply through relay 205 to prevent excessive voltage from damaging the electrical equipment. When the voltage is lower than the preset lower limit, the intelligent controller 201 will also trigger the protection circuit to cut off the power supply through relay 205 to avoid abnormal operation or damage to the equipment due to insufficient voltage. When current sensor 204 detects that the current exceeds the set threshold, the intelligent controller 201 will determine that it is an overload and trigger the protection circuit to cut off the power supply or reduce the power supply to prevent overload from causing the equipment to overheat or be damaged. In the case of a short circuit, the current will increase sharply. By monitoring the current change, the current sensor 204 will detect a sharp increase in current. When it detects a sharp increase in current, the intelligent controller 201 will trigger the protection circuit to cut off the power supply to avoid safety hazards caused by short circuit, thereby ensuring the stable operation of the circuit.
[0032] In use, first, the operation data of the intelligent power saver is set through the touch display 3, the corresponding current and voltage adjustment range is set, the voltage sensor 203 and the current sensor 204 monitor the circuit in operation according to the values set by the touch display 3, and feedback to the intelligent controller 201, and the operation data of the circuit is adjusted by the intelligent controller 201 controlling the thyristor 206, so that flexible adjustment can be realized, and the use effect of the intelligent power saver is effectively improved, and the intelligent controller 201 sends the operation data to the external terminal through the communication module 202, and the operation data can be viewed in real time through the external terminal;
[0033] Through the real-time monitoring of the voltage sensor 203 and the current sensor 204, the overvoltage, undervoltage, overload and short circuit of the circuit can also be protected, when the voltage sensor 203 detects that the voltage exceeds the preset upper limit value, the intelligent controller 201 triggers the protection circuit, and the power supply is cut off through the relay 205, so that the damage of the high voltage to the electrical equipment is prevented, when the voltage is lower than the preset lower limit value, the intelligent controller 201 also triggers the protection circuit to act, and the power supply is cut off through the relay 205, so that the abnormal work or damage of the equipment caused by insufficient voltage is avoided, when the current sensor 204 detects that the current exceeds the set threshold value, the intelligent controller 201 judges that it is an overload condition, and triggers the protection circuit to act, and the power supply is cut off or reduced, so that the overheating or damage of the equipment caused by overload is prevented, in the short circuit condition, the current increases sharply, the current sensor 204 monitors the current change, when the current increases sharply is detected, the intelligent controller 201 triggers the protection circuit to act, and the power supply is cut off, so that the safety hidden danger caused by short circuit is avoided, so that the stability of the circuit operation can be ensured.
[0034] The standard parts used in the application file can be purchased from the market, and can be customized according to the description and drawings, and the specific connection mode of each part adopts the conventional bolt, rivet, welding and other conventional means in the prior art, the machinery, parts and equipment adopt the conventional type in the prior art, the control mode is automatically controlled by the controller, and the control circuit of the controller can be realized by simple programming of the person skilled in the art, which belongs to the common knowledge in the art, and the application is mainly used to protect the mechanical device, so the control mode and circuit connection are not explained in detail.
[0035] Although the utility model has disclosed as above with preferred embodiments, it is not used to limit the utility model. Those skilled in the art without departing from the spirit and scope of the utility model can make various changes and decorations. Therefore, the protection scope of the utility model is defined by the claims.
Claims
1. An adjustable intelligent power saving device comprising a protection assembly (1), characterized in that: The protective assembly (1) comprises a box (101) and a sealing door (102), an electricity-saving control assembly (2) is arranged in the box (101), the box (101) and the sealing door (102) are used for protecting the electricity-saving control assembly (2), the electricity-saving control assembly (2) comprises an intelligent controller (201), a communication module (202), a voltage sensor (203), a current sensor (204), a relay (205) and a thyristor (206), the electricity-saving control assembly (2) is used for monitoring and adjusting a circuit, a touch display (3) is arranged on the surface of the sealing door (102), a running indicator (4) is arranged on the upper end of the surface of the box (101), the output end of the touch display (3) is connected with the input end of the intelligent controller (201), the output end and the input end of the intelligent controller (201) are interconnected with the output end and the input end of the communication module (202), the output end of the communication module (202) is connected with the input end of an external terminal, the output ends of the voltage sensor (203) and the current sensor (204) are connected with the input end of the intelligent controller (201), and the output end of the intelligent controller (201) is connected with the input end of the relay (205) and the thyristor (206) respectively.
2. The adjustable intelligent power saving device of claim 1, wherein: The inner cavity of the box (101) is fixedly connected with a bridge (103), the electricity-saving control assembly (2) is arranged on the surface of the bridge (103), and the sealing door (102) is hingedly connected with the box (101).
3. The adjustable intelligent energy-saving device as described in claim 1, characterized in that: The protective assembly (1) further comprises ventilation fans (104), the number of the ventilation fans (104) is two, and the ventilation fans (104) are arranged on the two sides of the box (101).
4. The adjustable intelligent energy-saving device as described in claim 1, characterized in that: The intelligent controller (201) is composed of a development board and a DSP chip, and is provided with an ADC and a DAC.
5. The adjustable intelligent energy-saving device as described in claim 1, characterized in that: The communication module (202) adopts RS-485 and is connected with the communication interface of the intelligent controller (201).
6. The adjustable intelligent energy-saving device as described in claim 1, characterized in that: The power module of the electricity-saving control assembly (2) adopts an AC-DC rectifier circuit and a voltage stabilizing circuit, and the intelligent controller (201) is further provided with an EEPROM memory.
Citation Information
Patent Citations
Intelligent power-saving device
CN219351287U