Finger mouse

By designing a mouse that conforms to the shape of the finger, using a concave curved surface and a hemispherical finger extrusion, the problem of inaccurate control of the existing mouse is solved, and precise control and comfort are improved.

CN120255709APending Publication Date: 2025-07-04DALIAN JIANMIN SHIPPING CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510618532.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-14
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

During the control movement process, existing mice are prone to insufficient finger control, resulting in unmet pointer movement that does not meet the expectations, especially in shooting electronic games and electronic paintings.

Method used

Design a mouse that conforms to the shape of a finger, adopts a concave curved surface and a hemispherical finger squeeze section to increase friction to reduce finger movement errors, and achieve precise control through optical sensors and main control chips.

Benefits of technology

It improves the accuracy of mouse movement and the comfort of long-term use, reduces pointer errors caused by finger movement, and improves the user experience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120255709A_ABST
    Figure CN120255709A_ABST
Patent Text Reader

Abstract

A finger mouse belongs to the technical field of computer indicating devices and comprises a mouse body and a forefinger placing portion, the mouse body is connected with the forefinger placing portion through a hose, a left mouse button is arranged on the forefinger placing portion, and an optical sensor is arranged at the bottom of the forefinger placing portion. A thumb placing part, an index finger bearing part, a roller key, a middle finger placing part, a ring finger placing part and a little finger placing part are arranged on the mouse main body according to finger shapes, a sensor switch key, a mouse right key, a mouse left key and an optical sensor are arranged below the middle finger placing part and the ring finger placing part, and the optical sensor, the roller key, the sensor switch key and the mouse right key are connected with a main control chip; and the main control chip is connected with the signal output part and the power supply. The mouse in accordance with the finger shape design is adopted, the index finger placing part of the mouse moving control part adopts the concave curved surface design, an index finger is supported and placed, comfort is provided for the index finger after long-time use, and a mouse concave wrapping part is arranged on the index finger placing part.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention belongs to the technical field of computer pointing devices, and particularly relates to a finger mouse. Background Art

[0002] During the process of controlling the mouse movement, the pointer movement may not meet the expected due to inaccurate control. For example, in shooting video games, there may be misses, and in digital painting, there may be deviations. Since fingers are relatively flexible, a mouse controlled by fingers can more accurately achieve the expected movement of the pointer. Summary of the Invention

[0003] To solve the defects existing in the prior art, a finger mouse is provided, which includes a mouse body and an index finger placement part. The mouse body is connected to the index finger placement part through a flexible tube. A left mouse button is arranged on the index finger placement part, and an optical sensor is arranged at the bottom of the index finger placement part. On the mouse body, a thumb placement part, an index finger support part, a scroll wheel key, a middle finger placement part, a ring finger placement part, and a little finger placement part are arranged according to the palm arc. A sensor power switch and a right mouse button are arranged below the middle finger placement part and the ring finger placement part. The left mouse button, the optical sensor, the scroll wheel key, the sensor power switch, and the right mouse button are connected to a main control chip, and the main control chip is connected to a signal output part and a power supply.

[0004] Further, a plurality of finger pressing parts are arranged on the index finger placement part for preventing the finger from generating deviation movement.

[0005] Further, the finger pressing part is hemispherical.

[0006] Further, the index finger placement part adopts a concave curved surface design, and a mouse concave wrapping part for providing support for the index finger is arranged on the index finger placement part.

[0007] Further, a friction part for preventing the finger from generating deviation movement is arranged on the mouse concave wrapping part of the index finger placement part.

[0008] Further, a page up key, a page down key, a mouse sensitivity adjustment or custom key position are arranged on the left side of the mouse body.

[0009] Further, the page up key, the page down key, the mouse sensitivity adjustment or custom key position are connected to the main control chip.

[0010] Further, a middle finger clamping part is arranged on the right side of the index finger placement part.

[0011] The beneficial effects of the present invention are as follows: The mouse of the present invention is designed to conform to the shape of a finger. The control part for the index finger of the mouse, i.e., the index finger placement part, is designed with a concave curved surface, which provides a support for the index finger and offers comfort after long-term use. A mouse concave wrapping part is provided on the index finger placement part. Additionally, since the finger has soft tissues, when the finger moves, it may happen that the finger moves while the mouse optical sensor does not move immediately due to lack of immediate force, resulting in a movement deviation. The finger squeezing part is designed as a hemisphere to squeeze the finger and increase friction, thereby reducing the error in controlling the mouse movement. The present invention increases the friction force and finger comfort during the movement of the finger pulp through the friction part, and designs to avoid or reduce the pointer movement error caused by the finger moving without driving the mouse concave wrapping part to move. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 is the top view of the finger mouse of the present invention;

[0013] Figure 2 is the left view of the finger mouse of the present invention;

[0014] Figure 3 is the right view of the finger mouse of the present invention;

[0015] Figure 4 is the circuit principle block diagram of the finger mouse of the present invention;

[0016] Figure 5 is the control system block diagram of the finger mouse of the present invention.

[0017] 1. Index finger placement part, 2. Finger squeezing part, 3. Friction part, 31. Mouse left button, 4. Index finger support part, 5. Mouse body, 6. Hose, 7. Thumb placement part, 8. Page up key, 9. Page down key, 10. Mouse sensitivity adjustment or custom key position, 11. Little finger placement part, 12. Ring finger placement part, 13. Middle finger placement part, 14. Scroll wheel key, 15. Sensor power key, 16. Mouse right button, 17. Middle finger pinching part, 18. Signal output part. DETAILED DESCRIPTION OF THE INVENTION

[0018] A finger mouse, as Figures 1 - 5As shown in the figure, it includes a mouse body 5 and an index finger placement part 1. The mouse body 5 is connected to the index finger placement part 1 through a hose 6. A left mouse button 31 is provided on the index finger placement part 1, and an optical sensor is provided at the bottom of the index finger placement part 1. On the mouse body 5, a thumb placement part 7, an index finger support part 4, a scroll wheel key 14, a middle finger placement part 13, a ring finger placement part 12, and a little finger placement part 11 are provided according to the shape of the fingers. Below the middle finger placement part 13 and the ring finger placement part 12, a sensor on / off key 15 and a right mouse button 16 are provided. The left mouse button 31, the optical sensor, the scroll wheel key 14, the sensor on / off key 15, and the right mouse button 16 are connected to a main control chip, and the main control chip is connected to a signal output part 18 and a power supply.

[0019] Among them, the finger pressing part is hemispherical.

[0020] Among them, a finger pressing part 2 for preventing the finger from deviating and moving is provided on the index finger placement part 1.

[0021] Among them, the index finger placement part 1 adopts a concave curved surface design, and a mouse concave wrapping part for providing support for the index finger is provided on the index finger placement part 1.

[0022] Among them, a friction part 3 for preventing the finger from deviating and moving is provided on the mouse concave wrapping part of the index finger placement part 1.

[0023] Among them, a page up key 8, a page down key 9, and a mouse sensitivity adjustment or custom key position 10 are provided on the left side of the mouse body 5.

[0024] Among them, the page up key 8, the page down key 9, and the mouse sensitivity adjustment or custom key position 10 are connected to the main control chip.

[0025] Among them, a middle finger pinching part 17 is provided on the right side of the index finger placement part 1.

[0026] The functions of each component are as follows:

[0027] The index finger placement part 1 adopts a concave curved surface design to provide support for the index finger and provide comfort for the index finger after long-term use. A mouse concave wrapping part is provided on the index finger placement part 1.

[0028] Finger pressing part 2: Since the finger has soft tissues, when the finger moves, the finger may move, but the mouse optical sensor may have a movement deviation due to not being immediately stressed. Therefore, it is designed to be hemispherical to squeeze the finger and increase friction, thereby reducing the error in controlling the mouse movement.

[0029] Friction part 3: Increase the friction force during finger movement and the comfort of the finger, and avoid or reduce the pointer movement error caused by the finger movement not driving the mouse concave wrapping part to move by increasing the friction force design.

[0030] The index finger support part 4 receives the placement of the base of the index finger, providing comfort when using the mouse and controlling the movement of the mouse body.

[0031] The mouse body 5 conforms to the arc of the palm, providing a place for the palm to rest and better control of its movement.

[0032] The flexible tube 6 enables the fingers to control the mouse movement without being affected by the palm, wrist or arm.

[0033] The thumb placement part 7 provides comfort when using the mouse and combines with the 11 to control the movement of the main body.

[0034] The little finger placement part 11 provides comfort when using the mouse and combines with the thumb placement part 7 to control the movement of the main body.

[0035] The ring finger placement part 12 provides comfort when using the mouse and controls the movement of the mouse body.

[0036] The middle finger placement part 13 provides comfort when using the mouse and controls the movement of the mouse body.

[0037] The sensor on / off key 15, when pressed, the sensor is turned off, and when released, the sensor can be used normally. When in use, there may be a situation where the mouse position moves significantly, which will cause discomfort or the mouse moves out of the mouse pad. Therefore, it is necessary to move the mouse back without changing the pointer position. When this key is pressed, pulling the mouse back will not affect the pointer position. If the sensor switch function is not used, this key position can be set as a custom key position.

[0038] The middle finger lifting part 17, when in use, there may be a situation where the mouse position moves significantly, which will cause discomfort or the mouse moves out of the mouse pad. Therefore, it is necessary to move the mouse back without changing the pointer position. Combine with the index finger to lift this part 1, and pulling the mouse back will not affect the pointer position.

[0039] The signal output part 18 outputs the mouse power supply and control signals, controls the mouse power supply, supports wired and wireless connections, and outputs the mouse signals.

[0040] The optical sensor is a device for detecting the movement of the mouse.

[0041] The main control chip receives the movement information of the optical sensor, processes the signals of each button and the scroll wheel, and supports wired and wireless connections.

[0042] The optical sensor, the left mouse button 31, the page up key 8, the page down key 9, the mouse sensitivity adjustment or custom key position 10, the scroll wheel key 14, the sensor on / off key 15, the right mouse button 16 send the signals for controlling the mouse movement and mouse clicks to the main control chip through a connecting wire. The main control chip sends the movement information of the optical sensor and the button signal of the left mouse button to the receiving end such as a computer, a mobile phone, etc. through the signal output terminal to realize the control of the mouse.

[0043] The above are only the preferred embodiments of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present invention, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present invention.

Claims

1. A finger mouse, characterized in that, It includes a mouse body (5) and an index finger placement part (1). The mouse body (5) is connected to the index finger placement part (1) through a hose (6). A left mouse button (31) is provided on the index finger placement part (1), and an optical sensor is provided at the bottom of the index finger placement part (1). On the mouse body (5), a thumb placement part (7), an index finger support part (4), a scroll wheel key (14), a middle finger placement part (13), a ring finger placement part (12), and a little finger placement part (11) are arranged according to the palm arc. A sensor power switch (15) and a right mouse button (16) are provided below the middle finger placement part (13) and the ring finger placement part (12). The left mouse button (31), the optical sensor, the scroll wheel key (14), the sensor power switch (15), and the right mouse button (16) are connected to a main control chip, and the main control chip is connected to a signal output part (18) and a power supply.

2. The finger mouse according to claim 1, wherein A plurality of finger pressing parts (2) for preventing the finger from deviating and moving are provided on the index finger placement part (1).

3. The finger mouse according to claim 2, wherein The finger pressing part (2) is hemispherical.

4. The finger mouse according to claim 1, wherein The index finger placement part (1) adopts a concave curved surface design, and a mouse concave wrapping part for providing support for the index finger is provided on the index finger placement part (1).

5. The finger mouse according to claim 4, wherein A friction part (3) for preventing the finger from deviating and moving is provided on the mouse concave wrapping part of the index finger placement part (1).

6. The finger mouse according to claim 1, wherein A page up key (8), a page down key (9), and a mouse sensitivity adjustment or custom key position (10) are provided on the left side of the mouse body (5).

7. The finger mouse according to claim 6, wherein The page up key (8), the page down key (9), and the mouse sensitivity adjustment or custom key position (10) are connected to the main control chip.

8. The finger mouse according to claim 1, wherein A middle finger pinching part (17) is provided on the right side of the index finger placement part (1).