Wireless power-saving mouse capable of realizing intelligent switching

The intelligent switch and storage compartment design solves the problem of accidental power consumption of the wireless mouse when it is not in use for a long time, realizes intelligent power saving and convenient power off of the wireless mouse, extends battery life, and improves ease of use.

CN223362601UActive Publication Date: 2025-09-19HUNAN RUIRUI ECOLOGICAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422660792.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-09-19
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

Rechargeable wireless mice consume power due to accidental touches when not in use for a long time, and the existing switch is inconvenient to operate, resulting in shortened battery life and even unusable power supply.

Method used

A wireless power-saving mouse with intelligent switching is designed. The wireless receiver interacts with the signal transceiver module and the control module in the mouse body to automatically control the opening and closing of the input sensing module and the storage module. Combined with the normally closed switch in the storage compartment, the mouse can be intelligently powered off.

Benefits of technology

It realizes intelligent power saving of the wireless mouse when not in use, prolongs battery life, avoids power consumption problems caused by accidental touches, and automatically powers off the mouse by placing the wireless receiver once, improving ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wireless electricity-saving mouse capable of realizing intelligent switching, which relates to the technical field of wireless mice, and comprises a wireless receiver and a mouse main body, a first signal transceiving module is arranged in the wireless receiver, and a power supply module, a control module, a second signal transceiving module, an input sensing module and a storage module are arranged in the mouse main body; the first signal receiving and transmitting module and the second signal receiving and transmitting module are in wireless connection and exchange signals, the wireless receiver sends an electrification connection signal to the second signal receiving and transmitting module when the wireless receiver is inserted into the equipment host and electrified, and the control module receives the electrification connection signal. The first switching circuit and the second switching circuit are controlled to be switched on, so that the input sensing module and the storage module are powered on and stop working when the power-on connection signal is not received; the wireless receiver is placed in the containing bin of the mouse body and is switched off through the normally-closed switch, the mouse body is powered off, energy is saved, the integrated operation of arranging the wireless receiver and powering off the mouse is achieved, and the convenient and practical effects are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of wireless mice, in particular to a wireless power-saving mouse capable of realizing an intelligent switch. Background Art

[0002] With the development of wireless communication technology, wireless mice have gradually played their portability advantages in the fields of office and study and are widely used, especially rechargeable wireless mice, which are more widely used than dry battery-powered wireless mice.

[0003] However, a rechargeable wireless mouse has a serious power consumption problem when not in use for a long time. Specifically, a wireless mouse that automatically sleeps can be reactivated by an accidental touch, consuming power. Therefore, a technology is needed to reactivate a wireless mouse without touching or moving it, so as to overcome the problem that the mouse consumes a lot of power due to accidental touches when not in use for a long time, shortening the battery life and even eventually becoming unusable. Furthermore, the technology needs to solve the problem that the mouse needs to start working, such as when the wireless receiver is plugged into the device host and powered on, to activate all functions, and put it into power-saving sleep when it is not in use.

[0004] Furthermore, the switch of the wireless mouse that is widely used now is generally provided with an on-off switch, but users generally do not remember to operate the on-off switch every time or frequently. In order to improve the convenience and practicality of operation, the technical effect of shutting down the mouse is improved on the basis of power saving, the battery life of the mouse is increased, and the convenience of use is improved without turning on the switch every time use. Therefore, there is a need for an operation method that integrates the placement of the wireless receiver to store the mouse and the power-off of the mouse to improve the convenience of use of the wireless mouse and increase the battery life of the mouse on the basis of convenient use, namely the intelligent power-off technology of the present invention. Utility Model Content

[0005] In order to solve the problems in the above-mentioned background technology or at least part of them, this utility model proposes a wireless power-saving mouse with an intelligent switch, which aims to solve the technical problem of power consumption caused by accidentally touching the mouse to restart working when it is in sleep mode, and integrates the placement of the wireless receiver and the power-off of the mouse to realize the intelligent switch and intelligent power-saving functions of the wireless mouse.

[0006] A wireless power-saving mouse with intelligent switch, comprising a mouse body and a wireless receiver for wirelessly connecting the mouse body to a device host;

[0007] The wireless receiver is provided with a first signal transceiver module for transmitting and receiving wireless signals;

[0008] The mouse body is provided with a power supply module, a control module, a second signal transceiver module wirelessly connected to the first signal transceiver module of the wireless receiver and interactively transmitting and receiving wireless signals therewith, and an input sensing module electrically connected to the control module and collecting mouse input signals;

[0009] The power supply module directly supplies power to the second signal transceiver module and the control module, and the second signal transceiver module is electrically connected to the control module;

[0010] The on / off state of the input sensing module is controlled by the control module. After the wireless receiver is electrically connected to the device host and powered on, it sends a power-on connection signal to the second signal transceiver module through the first signal transceiver module. The second signal transceiver module sends the power-on connection signal to the control module. After receiving the power-on connection signal, the control module controls the input sensing module to be powered on and start working. When the power-on connection signal is not received, the control module controls the input sensing module to be powered off and stop working.

[0011] An on / off power switch is provided in the accommodation compartment of the mouse body. When the wireless receiver is placed in the accommodation compartment, the on / off power switch is controlled to be in an off state, and the power module of the mouse body stops supplying power.

[0012] Preferably, the first signal transceiver module of the wireless receiver includes a first radio frequency chip, a first microprocessor, and a first antenna, and the second signal transceiver module of the mouse body includes a second radio frequency chip, a second microprocessor, and a second antenna. The first signal transceiver module and the second signal transceiver module exchange signals / data in a specified radio frequency band through the first radio frequency chip and the second radio frequency chip under the control and processing of the first microprocessor and the second microprocessor, and exchange signals / data through the first antenna and the second antenna.

[0013] Preferably, the input sensing module includes an image sensor, a micro switch and a mouse wheel sensor arranged in the mouse body.

[0014] Preferably, the input sensing module is electrically connected to the control module through a first switching circuit. After receiving a power-on connection signal, the control module controls the connection of the first switching circuit to power on the input sensing module and start working. After failing to receive a power-on connection signal, the control module controls the disconnection of the first switching circuit to power off the input sensing module and stop working.

[0015] Preferably, a first MOS transistor is provided in the first switch circuit. After receiving the power-on connection signal, the control module controls the first MOS transistor to be turned on to connect the first switch circuit, thereby further energizing the input sensing module to operate. After receiving no power-on connection signal sent by the second signal transceiver module, the control module controls the first MOS transistor to be turned off to disconnect the first switch circuit and de-energize the input sensing module to stop operating.

[0016] Preferably, the mouse body further includes a storage module electrically connected to the control module for storing the mouse DPI setting, and the mouse body is provided with a DPI button to adjust the DPI setting of the mouse.

[0017] Preferably, the storage module is electrically connected to the control module through a second switching circuit. After the control module receives the power-on connection signal sent by the first signal transceiver module through the second signal transceiver module, it controls the connection of the second switching circuit to power on the storage module and start working. After failing to receive the power-on connection signal, it controls the disconnection of the second switching circuit to power off the storage module and stop working.

[0018] Preferably, a second MOS transistor is provided in the second switch circuit, and the control module controls the second MOS transistor to be turned on to connect the second switch circuit after receiving the power-on connection signal, thereby further powering on the storage module to operate, and controls the second MOS transistor to be turned off to disconnect the second switch circuit and power off the storage module to stop operating after failing to receive the power-on connection signal.

[0019] Preferably, the power module directly supplies power to the second signal transceiver module and the control module, and indirectly supplies power to the input sensing module and the storage module through the control module, and by setting an on-off power switch in the accommodating compartment, when the wireless receiver is placed in the accommodating compartment, the on-off power switch is triggered to cut off the power supply to the on-off power supply.

[0020] Preferably, the power on / off switch is a normally closed switch, one end of which is connected to the output end of the power module, and the other end is connected in parallel to the input end of the control module and the second signal transceiver module. When the wireless receiver is placed in the accommodating compartment and clamped, the normally closed switch button is squeezed to put the normally closed switch in the off state to cut off the power output of the power module.

[0021] Preferably, the wireless receiver is further provided with a power-on prompt LED light. After the wireless receiver is plugged into the USB port of the device host and powered on, the power-on prompt LED light lights up to prompt that the power is on.

[0022] The utility model has the following beneficial effects:

[0023] 1. The present invention is a wireless power-saving mouse that implements an intelligent switch. After the wireless receiver is plugged into the device host and powered on, a power-on connection signal is sent to the second signal transceiver module in the mouse body through the first signal transceiver module, and the signal is sent to the control module so that the first switch circuit and the second switch circuit are controlled to be turned on to start the input sensing module and the storage module. When the wireless receiver is not powered on and does not send the power-on connection signal, the first switch circuit and the second switch circuit are controlled to be turned off, thereby further powering off the input sensing module and the storage module and saving energy. Unlike a commonly used wireless mouse, the mouse does not end its sleep state due to touching or pressing the mouse body. Therefore, the wireless mouse achieves intelligent power saving, improves the battery life of the wireless mouse, and shortens the time period during which the mouse power supply is damaged.

[0024] 2. The utility model is a wireless power-saving mouse with an intelligent switch. When the wireless receiver is placed in the storage compartment, the normally closed switch is pressed to cut off the power of the mouse. The mouse can be stored and moved, and the power of the mouse in the non-working state is cut off by placing the wireless receiver. It is more convenient to use. The mouse can be stored and the power supply of the mouse can be turned off by placing the wireless receiver once. It is more intelligent, power-saving and convenient. There is no need to turn on the closed switch again before each use like a commonly used wireless mouse. There is also no problem of the mouse battery being discharged due to forgetting to turn off the mouse on-off switch, which reduces the battery life of the mouse or even damages the power supply. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.

[0026] Figure 1 This is a schematic diagram of the overall structure of the wireless power-saving mouse provided in an embodiment of the present application;

[0027] Figure 2 This is a schematic diagram of the overall structure of the mouse body of the wireless power-saving mouse provided in an embodiment of the present application;

[0028] Figure 3 This is another schematic diagram of the overall structure of the mouse body of the wireless power-saving mouse provided in an embodiment of the present application;

[0029] Figure 4 This is a schematic diagram of the overall structure of a wireless receiver of a wireless power-saving mouse provided in an embodiment of the present application;

[0030] Figure 5This is another overall structural diagram of the wireless receiver of the wireless power-saving mouse provided in an embodiment of the present application;

[0031] Figure 6 This is a circuit diagram of the connection between the normally closed switch, the power module, the control module, and the second signal transceiver module provided in an embodiment of the present application;

[0032] Figure 7 This is a circuit diagram showing the connection between the first switch circuit with a built-in first MOS transistor, the control module, and the input sensing module provided in an embodiment of the present application;

[0033] Figure 8 This is a connection circuit diagram of the second switch circuit with a second MOS tube provided in an embodiment of the present application, and the control module and storage module.

[0034] Icons: 1. Wireless receiver; 11. First signal transceiver module; 12. USB interface of wireless receiver; 13. Power-on indication LED light; 2. Mouse body; 21. Second signal transceiver module; 22. Control module; 221. Input sensing module; 2212. First switch circuit; 222. Storage module; 2222. Second switch circuit; 2223. DPI button; 23. Power module; 24. Charging port; 25. Power on / off switch; 26. Storage compartment. DETAILED DESCRIPTION

[0035] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0036] In order to solve the technical problem of accidentally touching the mouse to restart working and consuming power when it is dormant and to integrate the placement of the wireless receiver and the power off of the mouse to realize the intelligent switch and intelligent power saving functions of the wireless mouse, the utility model discloses a wireless power-saving mouse that realizes intelligent switch.

[0037] The wireless mouse comprises a main body 2 and a wireless receiver 1 for wirelessly connecting the main body 2 to a device host. The wireless receiver 1 of the wireless mouse is connected to the USB interface of the device host via a USB interface 12 to realize power-on operation.

[0038] refer to Figure 1 , Figure 1 This is a schematic diagram of the overall structure of the wireless power-saving mouse provided in an embodiment of the present application.

[0039] The wireless receiver 1 is provided with a first signal transceiver module 11 for transmitting and receiving wireless signals;

[0040] The mouse body 2 is provided with a power supply module 23, a control module 22, a second signal transceiver module 21 wirelessly connected to the first signal transceiver module 11 of the wireless receiver 1 and interactively transmitting and receiving wireless signals therewith, and an input sensing module 221 electrically connected to the control module 22 and collecting mouse input signals;

[0041] The power supply module 23 directly supplies power to the second signal transceiver module 21 and the control module 22, and the second signal transceiver module 21 is electrically connected to the control module 22;

[0042] The on / off state of the input sensing module 221 is controlled by the control module 22. After the wireless receiver 1 is electrically connected to the device host and powered on, it sends a power-on connection signal to the second signal transceiver module 21 through the first signal transceiver module 11. The second signal transceiver module 21 then sends a power-on connection signal to the control module 22. After receiving the power-on connection signal, the control module 22 controls the input sensing module 221 to be powered on and start working. When the wireless receiver 1 is powered off, for example, after the device host is shut down, the first signal transceiver module 11 of the wireless receiver 1 no longer sends the power-on connection signal, and the control module 22 controls the input sensing module 221 to be powered off, stop working, and switch to a dormant state after failing to receive the power-on connection signal.

[0043] A power switch 25 is provided in the accommodation compartment 26 of the mouse body 2. When the wireless receiver 1 is placed in the accommodation compartment 26, the power switch 25 is controlled to be in an off state, and the power module 23 of the mouse body 2 stops supplying power.

[0044] The control module 22 is equipped with a controller, such as a PLC controller.

[0045] Preferably, the first signal transceiver module 11 of the wireless receiver 1 includes a first radio frequency chip, a first microprocessor, and a first antenna, and the second signal transceiver module 21 of the mouse body 2 includes a second radio frequency chip, a second microprocessor, and a second antenna. The first signal transceiver module 11 and the second signal transceiver module 21 interact with each other through the first radio frequency chip and the second radio frequency chip in a specified radio frequency band such as the 2.4 GHz frequency band under the control and processing of the first microprocessor and the second microprocessor, and interact with each other through the first antenna and the second antenna.

[0046] The input sensing module 221 is equipped with an image sensor for capturing mouse movement information, a micro switch for obtaining button click signals of the mouse body 2, and a mouse wheel sensor for obtaining mouse wheel data. When the input sensing module 221 is working, the mouse movement is captured in the form of an electrical signal and sent to the control module 22 for processing. The control module 22 sends the processed data to the second transceiver module, and then wirelessly sends it to the first signal transceiver module 11 so that it is transmitted to the device host for corresponding work feedback.

[0047] Furthermore, the input sensing module 221 is electrically connected to the control module 22 through the first switch circuit 2212. After receiving the power connection signal, the control module 22 controls the connection of the first switch circuit 2212 to power on the input sensing module 221 and start working. After failing to receive the power connection signal, the control module 22 controls the disconnection of the first switch circuit 2212 to power off the input sensing module 221 and stop working.

[0048] refer to Figure 7 The first switch circuit 2212 is provided with a first MOS transistor. After receiving the power-on connection signal, the control module 22 controls the first MOS transistor to turn on to connect the first switch circuit 2212, thereby powering on the input sensing module 221. After receiving the power-on connection signal sent by the second signal transceiver module 21, the control module 22 controls the first MOS transistor to turn off to disconnect the first switch circuit 2212 and power off the input sensing module 221 to stop working.

[0049] Furthermore, the mouse body 2 also includes a storage module 222 electrically connected to the control module 22, for storing the mouse DPI setting, and the mouse body 2 is provided with a DPI button 2223 to adjust the DPI setting of the control mouse; preferably, when the storage module 22 is working, it sends a working signal to the control module 22 for processing, and the control module 22 sends the processed data to the second transceiver module, and then wirelessly sends it to the first signal transceiver module 11 so that it is transmitted to the device host for corresponding work feedback.

[0050] The storage module 222 is electrically connected to the control module 22 through the second switch circuit 2222. After the control module 22 receives the power-on connection signal sent by the first signal transceiver module 11 through the second signal transceiver module 21, it controls the connection of the second switch circuit 2222 to power on the storage module 222 and start working. After failing to receive the power-on connection signal, it controls the disconnection of the second switch circuit 2222 to power off the storage module 222 and stop working.

[0051] refer to Figure 8The second switch circuit 2222 is provided with a second MOS transistor. After receiving the power-on connection signal, the control module 22 controls the second MOS transistor to turn on so that the second switch circuit 2222 is turned on, and further powers on the storage module 222 to work. After not receiving the power-on connection signal, the control module 22 controls the second MOS transistor to turn off so that the second switch circuit 2222 is disconnected and the storage module 222 is powered off and stops working.

[0052] Furthermore, the power module 23 directly supplies power to the second signal transceiver module 21 and the control module 22, and indirectly supplies power to the input sensing module 221 and the storage module 222 through the control module 22, and by setting an on-off power switch 25 in the accommodating compartment 26, when the wireless receiver 1 is placed in the accommodating compartment 26, the on-off power switch 25 is triggered to cut off the power supply to the on-off power supply, thereby realizing intelligent power-off and energy saving of the wireless mouse.

[0053] refer to Figure 6 、 Figure 4 、 Figure 3 The power on / off switch 25 is a normally closed switch, one end of which is connected to the output end of the power module 23, and the other end is connected in parallel to the input ends of the control module 22 and the second signal transceiver module 21. When the wireless receiver 1 is placed in the accommodating compartment 26 and clamped, the normally closed switch button is squeezed and pressed to put the normally closed switch into the off state to cut off the power output of the power module 23. The accommodating compartment 26 is configured to have a shape that can fit the clamping of the wireless receiver 1, such as adding a spherical crown-shaped soft silicone to the side wall of the accommodating compartment 26 to squeeze and enhance its clamping state; the accommodating compartment 26 is dug upward at the bottom of the mouse body 2.

[0054] Preferably, the power module 23 in the mouse body 2 includes a rechargeable battery, such as a rechargeable lithium battery to reduce the cost of the mouse, and a charging port 24 is provided on the non-gripping side of the mouse body 2 for charging the rechargeable battery, such as the front end and rear end of the non-gripping mouse. Figure 2 .

[0055] refer to Figure 4 、 Figure 5 The wireless receiver 1 is also provided with a power-on prompt LED light 13. After its USB interface 12 is inserted into the USB interface of the device host and powered on, the power-on prompt LED light 13 lights up to prompt that the power is on. The LED light 13 is embedded in the opposite end of the wireless receiver USB interface 12.

[0056] The working principle of the wireless power-saving mouse of the present utility model is:

[0057] This wireless power-saving mouse includes a wireless receiver 1 accommodated at the bottom of the mouse body 2. When in use, the wireless receiver 1 is taken out and connected to a USB interface of a device host, such as a computer. After power is turned on, the first signal transceiver module 11 sends a power connection signal to the second signal transceiver module 21 of the mouse body 2, and then sends it to the control module 22, so that the control module 22 controls the first switch circuit 2212 and the second switch circuit 2222 to turn on to enable the input sensing module 221 and the storage module 222 to work. When the device host is powered off or the wireless receiver 1 is not powered, the control module 22 no longer receives the power connection signal, and then controls the first switch circuit 2212 and the second switch circuit 2222 to turn off to stop the input sensing module 221 and the storage module 222 from working to save power, thereby extending the service life of the mouse battery and avoiding the battery consumption and power supply problems that are easily caused by the mouse being re-awakened after an accidental touch in a commonly used mouse.

[0058] After the wireless receiver 1 is inserted into the accommodating compartment 26 of the mouse body 2 and fixed, the normally closed switch is in the off state and cuts off the power output of the power module 23, so that the power inside the mouse body 2 is intelligently cut off to achieve energy saving. When the wireless receiver 1 is put away and the wireless mouse is stored, the power of the mouse can be cut off at the same time, which is convenient to operate and does not require using the switch button to cut off the power again like a common wireless mouse.

[0059] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A wireless power-saving mouse with intelligent switch, characterized in that: It comprises a mouse body (2) and a wireless receiver (1) for wirelessly connecting the mouse body (2) to a device host; The wireless receiver (1) is provided with a first signal transceiver module (11) for transmitting and receiving wireless signals; The mouse body (2) is provided with a power supply module (23), a control module (22), a second signal transceiver module (21) wirelessly connected to the first signal transceiver module (11) of the wireless receiver (1) and interactively transmitting and receiving wireless signals therewith, and an input sensing module (221) electrically connected to the control module (22) and collecting input signals from the mouse body (2); The power supply module (23) directly supplies power to the second signal transceiver module (21) and the control module (22), and the second signal transceiver module (21) is electrically connected to the control module (22); The on / off state of the input sensing module (221) is controlled by the control module (22); after the wireless receiver (1) is electrically connected to the device host and powered on, it sends a power-on connection signal to the second signal transceiver module (21) through the first signal transceiver module (11); the second signal transceiver module (21) sends the power-on connection signal to the control module (22); after receiving the power-on connection signal, the control module (22) controls the input sensing module (221) to be powered on and start working; and when the power-on connection signal is not received, the control module (222) controls the input sensing module (221) to be powered off and stop working; A power switch (25) is provided in the accommodation compartment (26) provided in the mouse body (2). When the wireless receiver (1) is placed in the accommodation compartment (26), the power switch (25) is controlled to be in an off state, and the power module (23) of the mouse body (2) stops supplying power.

2. The wireless power-saving mouse with intelligent switch according to claim 1, characterized in that: The first signal transceiver module (11) of the wireless receiver (1) includes a first radio frequency chip, a first microprocessor, and a first antenna, and the second signal transceiver module (21) of the mouse body (2) includes a second radio frequency chip, a second microprocessor, and a second antenna. The first signal transceiver module (11) and the second signal transceiver module (21) perform signal / data interaction in a specified radio frequency band through the first radio frequency chip and the second radio frequency chip under the control processing of the first microprocessor and the second microprocessor, and exchange signals / data through the first antenna and the second antenna.

3. The wireless power-saving mouse with intelligent switch according to claim 2, characterized in that: The input sensing module (221) comprises an image sensor, a micro switch and a mouse wheel sensor arranged in the mouse body (2).

4. The wireless power-saving mouse with intelligent switch according to claim 3, characterized in that: The input sensing module (221) is electrically connected to the control module (22) via a first switch circuit (2212); after receiving a power-on connection signal, the control module (22) controls the first switch circuit (2212) to be connected, thereby powering on the input sensing module (221) and starting operation; and after failing to receive a power-on connection signal, the control module (222) controls the first switch circuit (2212) to be disconnected, thereby powering off the input sensing module (221) and stopping operation.

5. The wireless power-saving mouse with intelligent switch according to claim 4, characterized in that: The first switch circuit (2212) is provided with a first MOS transistor. After receiving a power-on connection signal, the control module (22) controls the first MOS transistor to conduct, thereby connecting the first switch circuit (2212) and further energizing the input sensing module (221) to operate. After receiving no power-on connection signal sent by the second signal transceiver module (21), the control module (22) controls the first MOS transistor to cut off, thereby disconnecting the first switch circuit (2212) and causing the input sensing module (221) to be powered off and stop operating.

6. The wireless power-saving mouse with intelligent switch according to claim 5, characterized in that: The mouse body (2) further comprises a storage module (222) electrically connected to the control module (22) for storing the mouse DPI setting, and the mouse body (2) is provided with a DPI button (2223) for adjusting the mouse DPI setting.

7. The wireless power-saving mouse with intelligent switch according to claim 6, characterized in that: The storage module (222) is electrically connected to the control module (22) via a second switch circuit (2222). After receiving a power-on connection signal sent by the first signal transceiver module (11) via the second signal transceiver module (21), the control module (22) controls the second switch circuit (2222) to be connected, thereby powering on the storage module (222) and starting operation. After failing to receive the power-on connection signal, the control module (222) controls the second switch circuit (2222) to be disconnected, thereby powering off the storage module (222) and stopping operation.

8. The wireless power-saving mouse with intelligent switch according to claim 7, characterized in that: The second switch circuit (2222) is provided with a second MOS transistor. After receiving the power-on connection signal, the control module (22) controls the second MOS transistor to be turned on so as to connect the second switch circuit (2222), thereby further energizing the storage module (222) for operation. After failing to receive the power-on connection signal, the control module (22) controls the second MOS transistor to be turned off so as to disconnect the second switch circuit (2222), thereby powering off the storage module (222) and stopping operation.

9. The wireless power-saving mouse with intelligent switch according to claim 8, characterized in that: The power module (23) directly supplies power to the second signal transceiver module (21) and the control module (22), and indirectly supplies power to the input sensing module (221) and the storage module (222) through the control module (22). A power on / off switch (25) is provided in the accommodating compartment (26), so that when the wireless receiver (1) is placed in the accommodating compartment (26), the power on / off switch (25) is triggered to cut off the power supply to the power on / off power supply.

10. The wireless power-saving mouse with intelligent switch according to claim 9, characterized in that: The power on / off switch (25) is a normally closed switch, one end of which is connected to the output end of the power module (23), and the other end of which is connected in parallel to the input end of the control module (22) and the second signal transceiver module (21). When the wireless receiver (1) is placed in the accommodating compartment (26) and clamped, the normally closed switch button is pressed to put the normally closed switch in an off state to cut off the power output of the power module (23).

11. The wireless power-saving mouse with intelligent switch according to claim 1, characterized in that: The wireless receiver (1) is also provided with a power-on prompt LED light (13). After its USB interface (12) is correspondingly inserted into the USB interface of the device host and powered on, the power-on prompt LED light (13) lights up to prompt that the power is on.