Integrated power set, control device and voltage regulation module

By setting up a configuration reserved area and secondary circuits on the circuit board, the problem of power conversion module shortages affecting product delivery speed was solved, realizing the system's flexibility and configurability, and ensuring that the product can quickly respond to model changes.

CN223666234UActive Publication Date: 2025-12-12HONG FU JIN PRECISION IND (WUHAN) CO LTD
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Patent Information

Application Number
CN202423013822.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-07
Publication Date
2025-12-12
Estimated Expiration
2034-12-07

AI Technical Summary

Technical Problem

Rising global prices of raw materials for integrated circuits have led to insufficient IC chip production capacity, and shortages of power conversion modules have affected product delivery speed.

Method used

The design incorporates an integrated power collection and control device, employing a reserved area and secondary circuit structure. This allows for flexible configuration of the first and second secondary circuits to accommodate the pin requirements of different power conversion modules and power controllers, thereby enhancing the system's flexibility and configurability.

Benefits of technology

When power conversion module and power controller models change, we can quickly adapt and meet pin requirements, avoid stockouts that affect product delivery speed, and provide convenient maintenance and upgrade conditions.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides an integrated power set, control equipment and a voltage regulation module. The integrated power set includes a power conversion module, a first circuit, a first sub-circuit, and a first circuit board. Wherein the power conversion module, the first circuit and the first auxiliary circuit are all installed on the first circuit board, the first circuit board is provided with at least one first configuration reservation area, and the first auxiliary circuit is installed on the first configuration reservation area. The power conversion module is connected with electric equipment through the first circuit and used for conducting power conversion on input voltage of the power source and then supplying power to the electric equipment, and the first auxiliary circuit is connected with the power conversion module through the first circuit. According to the integrated power set provided by the invention, the flexibility and configurability of the integrated power set can be improved, and the shipment speed of products is prevented from being influenced when the power conversion module is out of stock.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of power conversion equipment, and in particular to an integrated power set, a control device and a voltage regulation module. BACKGROUND

[0002] In recent years, the prices of global integrated circuit (IC) raw materials have continued to rise, but the production capacity of semiconductor manufacturing plants is limited, resulting in that the production capacity of IC chips worldwide cannot meet market demand. In actual production, if the current model of the power conversion module in the voltage regulator module is out of stock, another model of the power conversion module needs to be used and the corresponding peripheral circuit is drawn for use. However, it takes time to select the power conversion and draw the peripheral circuit, which affects the delivery speed of the product at this time. CONTENT OF THE UTILITY MODEL

[0003] In view of the above, the present application provides an integrated power set, a control device and a voltage regulation module, which are used to solve the problem that the out-of-stock power conversion module affects the delivery speed of the product.

[0004] The first aspect of the present application provides an integrated power set electrically connected between a power supply and an electrical equipment, the integrated power set comprising: a power conversion module, a first circuit, a first auxiliary circuit and a first circuit board. Wherein the power conversion module, the first circuit and the first auxiliary circuit are all mounted on the first circuit board, the first circuit board is provided with at least one first configuration reserved area, and the first auxiliary circuit is mounted on the first configuration reserved area. The power conversion module is connected with the electrical equipment through the first circuit, the power conversion module is used to convert the input voltage of the power supply to supply power to the electrical equipment, and the first auxiliary circuit is connected with the power conversion module through the first circuit.

[0005] The integrated power set of the present application is adopted, at least one first configuration reserved area is arranged on the first circuit board, and the first auxiliary circuit is arranged on the first configuration reserved area, so that the first auxiliary circuit can be connected with the power conversion module through the first circuit. When actually manufacturing, the corresponding first auxiliary circuit can be arranged on the first configuration reserved area according to the model of the power conversion module, the flexibility and configurability of the integrated power set are improved, and convenience is provided for subsequent maintenance and upgrading.

[0006] As an optional implementation, the first circuit includes a first input line, a second input line, a first filter module, a third input line, a first output line, and a second filter module. The first sub-circuit includes a third filter module, which is arranged on the first configuration reserved area. One end of the first input line is connected to a first pin of the power conversion module, and the other end of the first input line is configured to receive a control signal. One end of the second input line is connected to a second pin of the power conversion module, and the other end of the second input line is configured to be connected to a first power supply. The first filter module is connected to the second input line. One end of the third input line is connected to a third pin of the power conversion module, and the other end of the third input line is configured to be connected to a second power supply. The third filter module is connected to the third input line. One end of the first output line is connected to a fourth pin of the power conversion module, and the other end of the first output line is configured to output a power supply voltage. The second filter module is connected to the first output line.

[0007] As an optional implementation, the third filter module includes a first capacitor. One end of the first capacitor is connected to the second input line, and the other end of the first capacitor is grounded.

[0008] The second aspect of the present application provides a control device, including a power controller, a second circuit, a second sub-circuit, and a second circuit board. The power controller, the second circuit, and the second sub-circuit are all mounted on the second circuit board. The second circuit board is provided with at least one second configuration reserved area, and the second sub-circuit is mounted on the second configuration reserved area. The power controller is connected to the integrated power supply set through the second circuit on the second circuit board, and the power controller is connected to an external monitoring device through the second circuit, and the power controller is configured to output a corresponding control signal to the integrated power supply set according to a voltage detection signal collected by the external monitoring device, so as to control the integrated power supply set to perform power conversion. The second sub-circuit is connected to the power controller through the second circuit.

[0009] As an optional implementation, the second circuit includes a fourth input line, a fourth filter module, a fifth input line, and a second output line. The second sub-circuit includes a fifth filter module, which is arranged on the second configuration reserved area. One end of the fourth input line is connected to a first pin of the power controller, and the other end of the fourth input line is configured to be connected to a third power supply. The fourth filter module is connected to the fourth input line. One end of the fifth input line is connected to a second pin of the power controller, and the other end of the fifth input line is configured to be connected to the external monitoring device. The fifth filter module is connected to the fifth input line. One end of the second output line is connected to a third pin of the power controller, and the other end of the second output line is configured to be connected to the integrated power supply set, so as to output a control signal to the integrated power supply set, and control the integrated power supply set to perform power conversion.

[0010] As an optional implementation, the fifth filtering module includes a second capacitor, one end of the second capacitor is connected to the fifth input line, the other end of the second capacitor is grounded, and the second capacitor is arranged on the second configuration reserved area.

[0011] The third aspect of the present application provides a voltage regulation module, including: a control device and an integrated power set. The integrated power set includes a power conversion module, a first circuit, a first sub-circuit and a first circuit board, and the control device includes a power controller, a second circuit, a second sub-circuit and a second circuit board. The power conversion module, the first circuit and the first sub-circuit are all mounted on the first circuit board, and the power controller, the second circuit and the second sub-circuit are all mounted on the second circuit board. At least one first configuration reserved area is arranged on the first circuit board, and at least one second configuration reserved area is arranged on the second circuit board. The first sub-circuit is mounted on the first configuration reserved area, and the second sub-circuit is mounted on the second configuration reserved area.

[0012] The power conversion module is connected to the electrical device through the first circuit, and is used to convert the input voltage of the power supply to supply power to the electrical device. The first sub-circuit is connected to the power conversion module through the first circuit. The power controller is connected to the integrated power set through the second circuit on the second circuit board. The power controller is connected to the external monitoring device through the second circuit. The power conversion module is connected to the power controller through the first circuit and the second circuit. The power controller is used to output a corresponding control signal to the power controller according to the voltage detection signal collected by the external monitoring device, so as to control the power conversion of the power controller. The second sub-circuit is connected to the power controller through the second circuit.

[0013] As an optional implementation, the first circuit includes a first input line, a second input line, a first filtering module, a third input line, a first output line and a second filtering module. The first sub-circuit includes a third filtering module arranged on the first configuration reserved area. One end of the first input line is connected to a first pin of the power conversion module, and the other end of the first input line is used to receive the control signal output by the power controller through the second circuit. One end of the second input line is connected to a second pin of the power conversion module, and the other end of the second input line is used to connect a first power supply. The first filtering module is connected to the second input line. One end of the third input line is connected to a third pin of the power conversion module, and the other end of the third input line is used to connect a second power supply. The third filtering module is connected to the third input line. One end of the first output line is connected to a fourth pin of the power conversion module, and the other end of the first output line is used to output a power supply voltage. The second filtering module is connected to the first output line.

[0014] As an optional implementation, the second circuit includes a fourth input line, a fourth filter module, a fifth input line, and a second output line. The second sub-circuit includes a fifth filter module, which is arranged on the second configuration reserved area. One end of the fourth input line is connected to the first pin of the power controller, and the other end of the fourth input line is used to connect the third power supply. The fourth filter module is connected to the fourth input line. One end of the fifth input line is connected to the second pin of the power controller, and the other end of the fifth input line is used to connect an external monitoring device. The fifth filter module is connected to the fifth input line. One end of the second output line is connected to the third pin of the power controller, and the other end of the second output line is used to connect the integrated power set to output a control signal to the integrated power set, so as to control the integrated power set to perform power conversion.

[0015] As an optional implementation, the third filter module includes a first capacitor. One end of the first capacitor is connected to the second input line, and the other end of the first capacitor is grounded. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is a circuit diagram of a voltage regulation module provided by an embodiment of the present application.

[0017] Figure 2 is a circuit diagram of a voltage regulation module provided by another embodiment of the present application.

[0018] Figure 3 is a circuit diagram of a voltage regulation module provided by another embodiment of the present application.

[0019] Figure 4 is a circuit diagram of a voltage regulation module provided by another embodiment of the present application.

[0020] Figure 5 is a circuit diagram of a voltage regulation module provided by another embodiment of the present application.

[0021] Figure 6 is a circuit diagram of a voltage regulation module provided by another embodiment of the present application. DETAILED DESCRIPTION

[0022] The technical solutions of the present application are described in detail below with reference to the accompanying drawings and embodiments.

[0023] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the present application belongs. The terminology used in the description of the present application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the present application.

[0024] In recent years, global prices of integrated circuit raw materials have continued to rise, but the limited capacity of semiconductor manufacturers has resulted in a global supply of IC chips that cannot meet market demand. In actual production, a shortage of power conversion modules within voltage regulator modules can impact product delivery speed.

[0025] Therefore, this application provides an integrated power collection, control device and voltage regulation module to solve the problem of power conversion module shortage affecting product delivery speed.

[0026] Please see Figure 1 This is a circuit diagram of a voltage regulation module provided in an embodiment of this application. In this embodiment, the voltage regulation module includes a control device 200 and an integrated power unit 100. The integrated power unit 100 includes a power conversion module 10, a first circuit 13, a first sub-circuit 14, and a first circuit board 11. The control device 200 includes a power controller 20, a second circuit 23, a second sub-circuit 24, and a second circuit board 21.

[0027] Specifically, the power conversion module 10, the first circuit 13, and the first auxiliary circuit 14 are all mounted on the first circuit board 11, while the power controller 20, the second circuit 23, and the second auxiliary circuit 24 are all mounted on the second circuit board 21.

[0028] The first circuit board 11 has at least one first configuration reserved area 15, the second circuit board 21 has at least one second configuration reserved area 25, the first sub-circuit 14 is mounted on the first configuration reserved area 15, and the second sub-circuit 24 is mounted on the second configuration reserved area 25.

[0029] The power conversion module 10 can be connected to the first power supply VCC1 and the electrical equipment through the first circuit 13 on the first circuit board 11. The first auxiliary circuit 14 is connected to the power conversion module 10 through the first circuit 13. The power controller 20 is connected to the integrated power collection unit 100 through the second circuit 23 on the second circuit board 21. The power controller 20 is connected to the external monitoring device through the second circuit 23. The power conversion module 10 is connected to the power controller 20 through the first circuit 13 and the second circuit 23. The second auxiliary circuit 24 is connected to the power controller 20 through the second circuit 23. The power controller 20 is used to output a corresponding control signal to the power controller 20 based on the voltage detection signal collected by the external monitoring device, so that the power controller 20 can receive the voltage monitoring signal monitored by the external monitoring device through the second circuit 23, and control the power conversion module 10 to perform power conversion according to the voltage monitoring signal through the second circuit 23 and the first circuit 13, so as to provide the corresponding power supply voltage to the electrical equipment after the power conversion module 10 receives the electrical energy output by the first power supply VCC1.

[0030] In practical applications, a first auxiliary circuit 14 with corresponding functions can be set on the corresponding first configuration reserved area 15 to connect the first auxiliary circuit 14 with the first circuit 13. The signal received by the first circuit 13 is then converted by the first auxiliary circuit 14 into a signal that matches the pin requirements of the power conversion module 10, so as to meet the power requirements of each pin of the power conversion module 10. When the power controller 20 model is different, the power requirements of each pin are different. In practical applications, a second auxiliary circuit 24 with corresponding functions can be set on the corresponding second configuration reserved area 25 to connect the second auxiliary circuit 24 with the second circuit 23. The signal received by the second circuit 23 is then converted by the second auxiliary circuit 24 into a signal that matches the pin requirements of the power controller 20, so as to meet the power requirements of each pin of the power controller 20.

[0031] In practical applications, the first circuit board 11 and the second circuit board 21 can be two independent circuit boards or the same circuit board; no specific limitation is made here. This application can set various possible first configuration reserved areas 15 and corresponding first auxiliary circuits 14 on the first circuit board 11 according to the model of the power conversion module 10, and can also set various possible second configuration reserved areas 25 and corresponding second auxiliary circuits 24 on the second circuit board 21 according to the model of the power controller 20, to improve the flexibility and configurability of the voltage regulation module, and also to facilitate subsequent maintenance and upgrades. In actual manufacturing, the corresponding first auxiliary circuit 14 can be set on the corresponding first configuration reserved area 15 according to the pin requirements of the power conversion module 10, and the corresponding second auxiliary circuit 24 can be set on the corresponding second configuration reserved area 25 according to the pin requirements of the power controller 20, to meet the pin requirements of different power conversion modules 10 and power controllers 20.

[0032] Please see Figure 2 In one optional implementation, the first circuit 13 includes a first input line S1, a second input line S2, a first filter module 16, a third input line S3, a first output line S4, and a second filter module 17. The second circuit 23 includes a fourth input line S5, a fourth filter module 26, a fifth input line S6, and a second output line S7.

[0033] The first auxiliary circuit 14 includes a third filtering module, which is disposed on the first configuration reserved area 15. The second auxiliary circuit 24 includes a fifth filtering module, which is disposed on the second configuration reserved area 25.

[0034] The first input line S1 is connected to the first pin of the power conversion module 10 at one end, and the other end of the first input line S1 is connected to the other end of the second output line S7. The other end of the second output line S7 is connected to the third pin of the power controller 20, and one end of the second output line S7 is connected to the third pin of the power controller. The second input line S2 is connected to the second pin of the power conversion module 10 at one end, and the other end of the second input line S2 is used to connect to the first power supply VCC1. The first filter module 16 is connected to the second input line S2. The first output line S4 is connected to the fourth pin of the power conversion module 10 at one end, and the other end of the first output line S4 is connected to the electrical device. The second filter module 17 is connected to the first output line S4. The third input line S3 is connected to the third pin of the power conversion module 10 at one end, and the other end of the third input line S3 is used to connect to the second power supply VCC2. The third filter module is connected to the third input line S3. One end of the fourth input line S5 is connected to the first pin of the power controller 20, and the other end of the fourth input line S5 is used to connect to the third power supply VCC3. The fourth filter module 26 is connected to the fourth input line S5. One end of the fifth input line S6 is connected to the second pin of the power controller 20, and the other end of the fifth input line S6 is used to connect to an external monitoring device. The fifth filter module 24 is connected to the fifth input line S6.

[0035] When the voltage regulation module is working, the second power supply VCC2 provides power to the power conversion module 10 through the third input line S3 and the third filter module, and the third power supply VCC3 provides power to the power controller 20 through the fourth input line S5 and the fourth filter module 26. The second pin of the power controller 20 receives the voltage monitoring signal output by the external monitoring device through the fifth input line S6 and the fifth filter module. The first pin of the power conversion module 10 receives the control signal output by the third pin of the power controller 20 through the first input line S1 and the second output line S7, and then receives the control signal through the second input line S2 and the first filter module. The filter module 16 receives the electrical energy output from the first power supply VCC1, enabling the power conversion module 10 to convert the electrical energy output from the first power supply VCC1 into a power supply voltage according to the control signal and output the corresponding supply voltage to the electrical equipment to meet the power requirements of the electrical equipment. Specifically, the first filter module 16 is used to filter out noise in the first power supply VCC1 to reduce the impact of noise on the electrical energy output from the first power supply VCC1. The second filter module 17 is used to filter out noise in the supply voltage to avoid noise affecting the working state of the electrical equipment. The second power supply VCC2 can provide the corresponding working voltage to the power conversion module 10 through the third filter module.

[0036] Understandably, the pin requirements of different models of power conversion modules 10 vary in practical applications. Therefore, the first auxiliary circuit 14 corresponding to the model can be used to meet the pin requirements of the current power conversion module 10. In this embodiment, by setting the third filter module corresponding to the model of the power conversion module 10 on the third input line S3, the second power supply VCC2 can provide the corresponding power supply voltage to the power conversion module 10 through the third input line S3 and the third filter module. When any model of power conversion module 10 is out of stock, the user can directly replace it with another model of power conversion module 10 and connect the corresponding third filter module to the first circuit 13 to meet the pin requirements of the power conversion module 10 and the power demand of the electrical equipment, thus avoiding the impact on the product delivery speed when the power conversion module 10 is out of stock.

[0037] Understandably, the pin requirements of different models of power controller 20 vary in practical applications. Therefore, a second auxiliary circuit 24 corresponding to the model can be used to meet the pin requirements of the current power controller 20. In this embodiment, by setting the fifth filter module corresponding to the power controller 20 model on the corresponding second configuration reserved area 25, the power controller 20 can receive the voltage monitoring signal output by the external monitoring device through the fifth input line S6 and the fifth filter module. When any model of power controller 20 is out of stock, the user can directly replace it with another model of power controller 20 and set the corresponding fifth filter module on the corresponding second configuration reserved area 25 to meet the pin requirements of the power controller 20, thus avoiding the impact on product delivery speed when the power controller 20 is out of stock.

[0038] This is understandable; please refer to [link / reference]. Figure 3 In one possible embodiment, the third filtering module includes a first capacitor C1. One end of the first capacitor C1 is connected to the second input line S2, and the other end of the first capacitor C1 is grounded.

[0039] Optional, please refer to Figure 4 In one possible embodiment, the first auxiliary circuit 14 may further include a current limiting circuit, specifically a first resistor R1. The first resistor R1 is connected in series with the second input line S2, and both the first resistor R1 and the first capacitor C1 are located in the first configuration reserved area 15.

[0040] In practical applications, the pin input voltage and current requirements of different models of power conversion modules 10 vary. Specifically, the input voltage and current requirements of each pin of the power conversion module 10 can be determined by consulting the corresponding pin configuration table. Based on these requirements, the resistance value of the first resistor R1 and the capacitance value of the first capacitor C1 in the third filter module can be determined. Changing the resistance value of the first resistor R1 ensures that the current received by the third pin of the power conversion module 10 is within a preset range, preventing excessive current from damaging the power conversion module 10. Furthermore, changing the capacitance value of the first capacitor C1 improves the stability of the voltage output from the second power supply VCC2, preventing voltage fluctuations from affecting the operating state of the power conversion module 10. Optionally, such as... Figure 5 As shown, when the power conversion module 10 is the first type of power conversion module 10, a 1.1Ω resistor can be used as the first resistor R1 and connected to the corresponding first configuration reserved area 15 on the second input line S2 to limit the current output of the first power supply VCC1 and prevent excessive current from damaging the power conversion module 10. A 220nF capacitor is used as the first capacitor C1 and connected to the corresponding first configuration reserved area 15 on the second input line S2 to filter out noise in the power output of the first power supply VCC1, thereby providing the corresponding power supply voltage to the power conversion module 10. Figure 6 As shown, when the power conversion module 10 is the second type of power conversion module 10, a 2.2Ω resistor can be used as the first resistor R1 and connected to the corresponding first configuration reserved area 15 on the second input line S2 to limit the current output of the first power supply VCC1 and prevent the power conversion module 10 from being damaged by excessive current. A 110nF capacitor can be used as the first capacitor C1 and connected to the corresponding first configuration reserved area 15 on the second input line S2 to filter out noise in the power output of the first power supply VCC1, thereby providing the corresponding power supply voltage for the power conversion module 10. In practical applications, a first resistor R1 with a corresponding resistance value can be selected according to the pin current requirements of the power conversion module 10, and a first capacitor C1 with a corresponding capacitance value can be selected according to the pin frequency characteristics of the power conversion module 10. The first resistor R1 and the first capacitor C1 are connected to the corresponding first configuration reserved area 15 on the second input line S2, so that the first capacitor C1 can filter out noise in the first power supply VCC, and the magnitude of the output current of the first power supply VCC1 is limited by the first resistor R1, so as to avoid the power conversion module 10 being damaged by excessive output current of the first power supply VCC1.

[0041] In one possible embodiment, the fifth filtering module includes a second capacitor C2, one end of which is connected to the fifth input line S6, and the other end of which is grounded. The second capacitor C2 is disposed on the second configuration reserved area 25.

[0042] In practical applications, the pin input voltage and current requirements differ for different models of power controllers 20. The specific pin input voltage and current requirements can be determined by consulting the corresponding pin configuration table. Based on these requirements, the capacitance value of the second capacitor C2 in the fifth filter module can be determined, thereby changing the filtering efficiency of the fifth filter module. Optionally, such as... Figure 5 As shown, when the power controller 20 is the first type of power controller 20, a 220nF capacitor can be used as the second capacitor C2 and connected to the corresponding second configuration reserved area 25 on the fifth input line S6. This allows the second capacitor C2 to filter out noise in the voltage monitoring signal, preventing noise from affecting the accuracy of the voltage monitoring signal. Figure 6 As shown, when the power controller 20 is the second type, the 100pF second capacitor C2 can be connected to the corresponding second configuration reserved area 25 on the fifth input line S6; when the power controller 20 is the third type, the 470pF second capacitor C2 can be connected to the corresponding second configuration reserved area 25 on the fifth input line S6. In practical applications, the second capacitor C2 with the corresponding capacitance value can be selected according to the pin frequency characteristics of the power controller 20 to filter out noise in the voltage monitoring signal and avoid noise affecting the acquisition accuracy of the voltage monitoring signal.

[0043] In one possible embodiment, the first filtering module 16 includes an inductor L1, an electrolytic capacitor C3, and capacitors C4, C5, and C6. One end of the inductor L1 is connected to the first power supply VCC1 via a second input line S2, and the other end of the inductor L1 is connected to the second pin of the power conversion module 10 via the second input line S2. One end of capacitor C4 is connected to one end of inductor L1, and one end of electrolytic capacitors C3, C5, and C6 is connected to the other end of inductor L1. The other ends of electrolytic capacitors C3, C4, C5, and C6 are all grounded. This allows the inductor L1, electrolytic capacitor C3, and capacitors C4, C5, and C6 to filter out high-frequency noise and interference signals in the power output from the first power supply VCC1, thereby improving the stability and reliability of the power output from the first power supply VCC1.

[0044] In one possible embodiment, the second filtering module 17 includes an inductor L2, a capacitor C7, and an electrolytic capacitor C8. One end of the inductor L2 is connected to the fourth pin of the power conversion module 10 via the first output line S4, and the other end of the inductor L2 is connected to the power-consuming device via the first output line S4. One end of the capacitor C7 and the electrolytic capacitor C8 are connected to the other end of the inductor L2, and the other ends of the capacitor C7 and the electrolytic capacitor C8 are grounded. This allows the inductor L2, capacitor C7, and electrolytic capacitor C8 to filter out high-frequency noise and interference signals in the power supply voltage output by the power conversion module 10, thereby improving the stability and reliability of the power supply voltage.

[0045] In one possible embodiment, the fourth filtering module 26 includes a resistor R2 and capacitors C9 and C10. One end of the resistor R2 is connected to the first pin of the power controller 20 through the first output line S4, and the other end of the resistor R2 is connected to the third power supply VCC3 through the first output line S4. One end of capacitors C9 and C10 is connected to one end of the resistor R2, and the other end of capacitors C9 and C10 is grounded, so as to filter out high-frequency noise and interference signals in the supply voltage output by the third power supply VCC3 through the resistor R2 and capacitors C9 and C10, thereby improving the stability and reliability of the power output by the third power supply VCC3.

[0046] In one possible embodiment, the power controller 20 can also receive control signals output by the external control device 200 or feedback signals output by the power conversion module 10 via the second circuit 23. When the second circuit 23 receives control signals from the external control device 200, it can filter or current-limit the control signals via a corresponding second auxiliary circuit 24 before inputting them to the power controller 20 to control the power controller 20. Similarly, when the power conversion module 10 outputs feedback signals to the second circuit 23, the second circuit 23 can also filter or current-limit the feedback signals via the corresponding second auxiliary circuit 24 before inputting them to the power controller 20, enabling the power controller 20 to control the power conversion module 10 based on the feedback signals, thereby improving the control accuracy of the power controller 20. In practical applications, this is not the only possibility; it depends on the specific application environment, and all are within the scope of this application.

[0047] In one possible embodiment, the power conversion module 10 can also receive control signals output by an external device or the power controller 20 via the first circuit 13. When the first circuit 13 receives a control signal from an external device, the corresponding first auxiliary circuit 14 can filter or current-limit the control signal before inputting it to the power conversion module 10 to control the power conversion module 10. Similarly, when the power controller 20 outputs a control signal, the first auxiliary circuit 14 can filter or current-limit the control signal before inputting it to the power conversion module 10 to control its operation, thereby improving the control accuracy of the power conversion module 10.

[0048] In this embodiment, by setting multiple possible first configuration reserved areas 15 and corresponding first sub-circuit 14 on the first circuit board 11 according to the model of the power conversion module 10, and setting multiple possible second configuration reserved areas 25 and corresponding second sub-circuit 24 on the second circuit board 21 according to the model of the power controller 20, the flexibility and configurability of the voltage regulation module are improved, and convenience is also provided for subsequent maintenance and upgrades. In actual manufacturing, a corresponding first auxiliary circuit 14 can be set on the first configuration reserved area 15 according to the pin requirements of the power conversion module 10, and a corresponding second auxiliary circuit 24 can be set on the second configuration reserved area 25 according to the pin requirements of the power controller 20, so as to meet the pin requirements of different power conversion modules 10 and power controllers 20. When any model of power controller 20 is out of stock, another model of power controller 20 and the corresponding second auxiliary circuit 24 can be used to form a control device 200 to control the integrated power set 100. When any model of power conversion module 10 is out of stock, another model of power conversion module 10 and the corresponding first auxiliary circuit 14 can be used to form an integrated power set 100 to perform power conversion, so as to avoid the product delivery speed being affected when any model of power controller 20 or power conversion module 10 is out of stock.

[0049] It will be apparent to those skilled in the art that this application is not limited to the details of the exemplary embodiments described above, and that this application can be implemented in other specific forms without departing from the spirit or essential characteristics of this application. Therefore, any appropriate changes and variations made to the above embodiments within the essential spirit and scope of this application should fall within the scope of protection claimed by this application.

Claims

1. An integrated power collector, electrically connected between a power source and an electrical device, characterized in that, The integrated power unit includes: a power conversion module, a first circuit, a first secondary circuit, and a first circuit board; wherein... The power conversion module, the first circuit, and the first sub-circuit are all mounted on the first circuit board. The first circuit board has at least one first configuration reserved area, and the first sub-circuit is mounted on the first configuration reserved area. The power conversion module is connected to the electrical device through the first circuit. The power conversion module is used to convert the input voltage of the power supply to power the electrical device. The first auxiliary circuit is connected to the power conversion module through the first circuit.

2. The integrated power collector according to claim 1, characterized in that, The first circuit includes a first input line, a second input line, a first filter module, a third input line, a first output line, and a second filter module; The first auxiliary circuit includes a third filtering module, which is disposed on the first configuration reserved area; One end of the first input line is connected to the first pin of the power conversion module, and the other end of the first input line is used to receive control signals. One end of the second input line is connected to the second pin of the power conversion module, and the other end of the second input line is used to connect to a first power supply. The first filter module is connected to the second input line. One end of the third input line is connected to the third pin of the power conversion module, and the other end of the third input line is used to connect to a second power supply. The third filter module is connected to the third input line. One end of the first output line is connected to the fourth pin of the power conversion module, and the other end of the first output line is used to output the supply voltage. The second filter module is connected to the first output line.

3. The integrated power collector according to claim 2, characterized in that, The third filtering module includes a first capacitor; One end of the first capacitor is connected to the second input line, and the other end of the first capacitor is grounded.

4. A control device, characterized in that, include: Power controller, second circuit, second auxiliary circuit, and second circuit board; among which, The power controller, the second circuit, and the second auxiliary circuit are all mounted on the second circuit board; The second circuit board has at least one second configuration reserved area, and the second sub-circuit is mounted on the second configuration reserved area; The power controller is connected to the integrated power set via a second circuit on the second circuit board. The power controller is also connected to an external monitoring device via the second circuit. The power controller is used to output a corresponding control signal to the integrated power set based on the voltage detection signal collected by the external monitoring device, so as to control the integrated power set to perform power conversion. The second auxiliary circuit is connected to the power controller via the second circuit.

5. The control device according to claim 4, characterized in that, The second circuit includes a fourth input line, a fourth filter module, a fifth input line, and a second output line; The second auxiliary circuit includes a fifth filtering module, which is disposed on the second configuration reserved area; One end of the fourth input line is connected to the first pin of the power controller, and the other end of the fourth input line is used to connect to the third power supply. The fourth filter module is connected to the fourth input line. One end of the fifth input line is connected to the second pin of the power controller, and the other end of the fifth input line is used to connect to the external monitoring device. The fifth filter module is connected to the fifth input line. One end of the second output line is connected to the third pin of the power controller, and the other end of the second output line is used to connect to the integrated power set to output a control signal to the integrated power set and control the integrated power set to perform power conversion.

6. The control device according to claim 5, characterized in that, The fifth filtering module includes a second capacitor, one end of which is connected to the fifth input line, and the other end of which is grounded. The second capacitor is located in the second configuration reserved area.

7. A voltage regulation module, characterized in that, include: Control equipment and integrated power units; The integrated power unit includes a power conversion module, a first circuit, a first sub-circuit, and a first circuit board; the control device includes a power controller, a second circuit, a second sub-circuit, and a second circuit board. The power conversion module, the first circuit, and the first sub-circuit are all mounted on the first circuit board, and the power controller, the second circuit, and the second sub-circuit are all mounted on the second circuit board. The first circuit board has at least one first configuration reserved area, the second circuit board has at least one second configuration reserved area, the first sub-circuit is mounted on the first configuration reserved area, and the second sub-circuit is mounted on the second configuration reserved area; The power conversion module is connected to the electrical device through the first circuit. The power conversion module is used to convert the input voltage of the power supply to power the electrical device. The first auxiliary circuit is connected to the power conversion module through the first circuit. The power controller is connected to the integrated power unit through the second circuit on the second circuit board. The power controller is connected to the external monitoring device through the second circuit. The power conversion module is connected to the power controller through the first circuit and the second circuit. The power controller is used to output a corresponding control signal to the power controller based on the voltage detection signal collected by the external monitoring device, so as to control the power controller to perform power conversion. The second auxiliary circuit is connected to the power controller through the second circuit.

8. The voltage regulation module according to claim 7, characterized in that, The first circuit includes a first input line, a second input line, a first filter module, a third input line, a first output line, and a second filter module; The first auxiliary circuit includes a third filtering module, which is disposed on the first configuration reserved area; One end of the first input line is connected to the first pin of the power conversion module, and the other end of the first input line is used to receive the control signal output by the power controller through the second circuit. One end of the second input line is connected to the second pin of the power conversion module, and the other end of the second input line is used to connect to the first power supply. The first filter module is connected to the second input line. One end of the third input line is connected to the third pin of the power conversion module, and the other end of the third input line is used to connect to the second power supply. The third filter module is connected to the third input line. One end of the first output line is connected to the fourth pin of the power conversion module, and the other end of the first output line is used to output the supply voltage. The second filter module is connected to the first output line.

9. The voltage regulation module according to claim 8, characterized in that, The second circuit includes a fourth input line, a fourth filter module, a fifth input line, and a second output line; The second auxiliary circuit includes a fifth filtering module, which is disposed on the second configuration reserved area; One end of the fourth input line is connected to the first pin of the power controller, and the other end of the fourth input line is used to connect to the third power supply. The fourth filter module is connected to the fourth input line. One end of the fifth input line is connected to the second pin of the power controller, and the other end of the fifth input line is used to connect to the external monitoring device. The fifth filter module is connected to the fifth input line. One end of the second output line is connected to the third pin of the power controller, and the other end of the second output line is used to connect to the integrated power set to output a control signal to the integrated power set and control the integrated power set to perform power conversion.

10. The voltage regulation module according to claim 9, characterized in that, The third filtering module includes a first capacitor; One end of the first capacitor is connected to the second input line, and the other end of the first capacitor is grounded.