Mouse device

CN222896412UActive Publication Date: 2025-05-23CHICONY ELECTRONICS CO LTD
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Patent Information

Application Number
CN202422017702.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-05-23
Estimated Expiration
2034-08-20

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Abstract

A mouse device comprises a shell, a cover plate and at least one solar charging panel. The shell comprises an accommodating space and a central long shaft. The cover plate covers the housing and shields the accommodating space. The cover plate comprises a decoration part and at least one light-transmitting part. The decoration part is located on part of the cover plate, and the light-transmitting part is located on the other part of the cover plate. The light-transmitting part and the central long axis are arranged in a staggered mode, and the long axis of the light-transmitting part is parallel to the central long axis. The solar charging panel is arranged in the accommodating space and corresponds to the light-transmitting part.
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Description

Technical Field

[0001] The utility model relates to a mouse device, in particular to a solar mouse device. Background Art

[0002] A mouse device is a common computer peripheral input device. The mouse cursor of an operating window (such as word processing, drawing, web browsing, etc.) can be controlled by moving the mouse device, and instructions can be transmitted by clicking the mouse buttons. In order to facilitate user operation, most mouse devices are wireless mouse devices that need to be charged or replaced with batteries.

[0003] In response to the improvement of environmental awareness, solar charging technology is also applied to mouse devices. However, most of the solar-powered mouse devices on the market place the solar charging panel in the center of the mouse device. Therefore, when the user operates the mouse device, the solar charging panel is located directly under the user's palm and is shielded by the palm. In other words, it is impossible to charge while using the mouse, so the battery may be insufficient after long-term use. There is a need for improvement. Utility Model Content

[0004] In view of the above problems, the main purpose of the utility model is to provide a mouse device, which includes a cover plate and at least one solar charging panel. The cover plate includes at least one light-transmitting portion and its setting position to solve the problem that the conventional solar-charged mouse device may have insufficient power after long-term use.

[0005] In order to achieve the above-mentioned purpose, the utility model provides a mouse device, which includes a shell, a cover plate and at least one solar charging panel. The shell includes a containing space and a central long axis. The cover plate covers the shell and shields the containing space. The cover plate includes a decorative portion and at least one light-transmitting portion. The decorative portion is located on a portion of the cover plate, and the light-transmitting portion is located on the other portion of the cover plate. The light-transmitting portion and the central long axis are staggered, and the long axis of the light-transmitting portion is parallel to the central long axis. The solar charging panel is arranged in the containing space and corresponds to the light-transmitting portion.

[0006] According to an embodiment of the present invention, the decorative portion is located on the outer periphery of the light-transmitting portion.

[0007] According to an embodiment of the present invention, the light-transmitting portion is an elongated square frame.

[0008] According to an embodiment of the present invention, the total area of ​​the light-transmitting portions is greater than or equal to the total area of ​​the decorative portions.

[0009] According to one embodiment of the utility model, the area of ​​the solar charging panel is larger than the area of ​​the light-transmitting portion.

[0010] According to an embodiment of the utility model, the long axis of the solar charging panel and the central long axis are parallel to each other, and the solar charging panel is arranged on the shell in an inclined manner.

[0011] According to an embodiment of the utility model, the mouse device further comprises at least one supporting member, the housing is arranged obliquely, and the solar charging panel is arranged on the supporting member.

[0012] According to an embodiment of the present invention, the support member is detachably assembled to the cover plate.

[0013] According to an embodiment of the present invention, the support member includes a first long side and a second long side opposite to each other. The first long side is close to the central long axis, and the first long side is closer to the bottom surface of the cover plate than the second long side.

[0014] According to an embodiment of the present invention, there are two light-transmitting parts and two solar charging panels, and the two solar charging panels correspond to the two light-transmitting parts respectively.

[0015] According to an embodiment of the utility model, two solar charging panels are symmetrically arranged in the accommodating space of the shell with the central long axis as the axis, and two light-transmitting parts are symmetrically distributed on the cover plate with the central long axis as the axis.

[0016] According to an embodiment of the utility model, the mouse device further comprises a roller module disposed in the accommodation space of the housing. The roller module comprises a roller and an encoder. The roller has an accommodation groove, and the encoder is disposed in the accommodation groove.

[0017] According to an embodiment of the present invention, the roller module further includes a base, and the roller is disposed on the base.

[0018] According to an embodiment of the present invention, the decorative portion is formed on the cover plate by coating, transfer printing, or texturing.

[0019] According to an embodiment of the present invention, the housing includes a pivoting portion, the cover plate includes a pivoting hole, and the pivoting portion is connected to the pivoting hole.

[0020] As described above, according to the mouse device of the utility model, it includes a shell, a cover plate and a solar charging panel. The cover plate includes a decorative portion and a light-transmitting portion. The solar charging panel is arranged in the accommodating space of the shell and corresponds to the light-transmitting portion. Therefore, the light outside the mouse device can pass through the light-transmitting portion and irradiate the solar charging panel in the accommodating space, so that the solar charging panel can convert the radiation energy into electrical energy for use. In addition, since the light-transmitting portion and the central long axis are staggered, and the long axis of the light-transmitting portion and the central long axis are parallel to each other, the palm of the user will not completely cover the light-transmitting portion when operating the mouse device. Therefore, the light outside the mouse device can still pass through the light-transmitting portion from the gap of the user's hand and be used by the solar charging panel, thereby avoiding the situation where the mouse device is insufficient due to long-term use. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 FIG. 1 is a schematic diagram of a mouse device according to an embodiment of the present invention.

[0022] Figure 2 for Figure 1 An exploded view of the mouse device is shown.

[0023] Figure 3 for Figure 1 The mouse device is shown as a cross-sectional schematic diagram along line AA.

[0024] Figure 4 for Figure 1 The mouse device shown is a schematic cross-sectional view along line BB.

[0025] Figure 5 for Figure 2 A schematic diagram of a portion of the bottom surface of the cover plate is shown.

[0026] Fig. 6A for Figure 2 An enlarged schematic diagram of the roller module is shown.

[0027] Figure 6B for Figure 2 An exploded schematic diagram of the roller module is shown.

[0028] Figure 7 FIG. 4 is a schematic diagram of a mouse device according to another embodiment of the present invention.

[0029] Description of reference numerals:

[0030] Mouse device 1, 1a Housing 10

[0031] Accommodating space 11 Central long axis 12

[0032] Pivot portion 13 Resetting member 14

[0033] Cover plate 20, 20a first part 201

[0034] Second part 202 Decorative parts 21, 21a

[0035] Light-transmitting portion 22, 22a Bottom surface 23

[0036] Fixed portion 24 Limiting portion 25

[0037] Side 251, 252 Pivot hole 26

[0038] Solar charging panel 30 Support member 40

[0039] The first long side 41 and the second long side 42

[0040] Trigger portion 43 Abutment portion 44

[0041] Roller module 50 Roller 51

[0042] Accommodating groove 511 Encoder 52

[0043] Fixing part 521 Base 53

[0044] Card slot 531 Circuit board 60

[0045] Switch 61 AA line

[0046] BB Line DETAILED DESCRIPTION

[0047] In order to better understand the technical content of the present invention, preferred specific embodiments are described below.

[0048] Figure 1 is a schematic diagram of a mouse device according to an embodiment of the utility model, Figure 2 for Figure 1 Please refer to the exploded diagram of the mouse device shown in the figure. Figure 1 and Figure 2 As shown. In this embodiment, the mouse device 1 includes a shell 10, a cover plate 20 and at least one solar charging panel 30. Among them, the shell 10 includes a accommodating space 11 and a central long axis 12. The accommodating space 11 is the internal space of the shell 10. In order to facilitate the user to hold and operate, the appearance of the mouse device 1 is usually similar to a long arc structure, and is often a left-right symmetrical structure, so that the shell 10 has a central long axis 12. It should be noted that the central long axis 12 can be a virtual reference line or a physical long structure. In this embodiment, the central long axis 12 takes a virtual reference line as an example, which is located at the center of the shell 10.

[0049] The cover plate 20 covers the housing 10 and shields the accommodating space 11. In this embodiment, the cover plate 20 includes a first portion 201 and a second portion 202, which are respectively disposed on opposite sides of the central long axis 12. The first portion 201 and the second portion 202 of the cover plate 20 can be used as the left button and the right button of the mouse device 1. In other embodiments, the cover plate 20 can also be a sheet body with a long opening in the middle, so that the sheet cover plate 20 can be divided into the left button and the right button of the mouse device 1.

[0050] In addition, the cover plate 20 of the present embodiment includes a decorative portion 21 and at least one light-transmitting portion 22. The decorative portion 21 is located on a portion of the cover plate 20, and the light-transmitting portion 22 is located on the other portion of the cover plate 20. In the present embodiment, the cover plate 20 may be a plate body of a light-transmitting material, and the decorative portion 21 is formed on the cover plate 20 by coating, transfer, or biting, and the other untreated portion is the light-transmitting portion 22. For example, ink is coated on a plate body of a light-transmitting material (i.e., the cover plate 20) by coating or transfer, and the untreated portion (i.e., the position of the light-transmitting portion 22) is retained, thereby simultaneously forming a decorative portion 21 having an ink layer and an untreated light-transmitting portion 22. Among them, the light-transmitting portion 22 is the light-transmitting plate body itself. The main function of the decorative portion 21 is to shield the structure in the accommodating space 11. Therefore, the ink used to form the decorative portion 21 may be a light-transmitting ink or a light-impermeable ink, and it only needs to be able to achieve the purpose of shielding the internal structure of the accommodating space 11, and the utility model is not limited.

[0051] In addition, the plate body (i.e., the cover plate 20) made of a light-transmitting material can also be textured to form a decorative portion 21 at the same time. The textured mold has both a textured pattern portion (corresponding to the decorative portion 21) and a smooth portion (light-transmitting portion 22). During demolding, a decorative portion 21 with a textured pattern and a smooth light-transmitting portion 22 can be formed on the cover plate 20 at the same time. Among them, the textured pattern can make the decorative portion 21 produce an atomized effect, and can also achieve the purpose of shielding the internal structure of the accommodating space 11. The light-transmitting portion 22 is also the light-transmitting plate body itself. In other embodiments, the atomized decorative portion 21 can also be formed on the surface of the plate body (i.e., the cover plate 20) made of a light-transmitting material by etching or the like, and the untreated portion is the light-transmitting portion 22. The present utility model does not limit the manufacturing method of the decorative portion 21.

[0052] The decorative portion 21 and the light-transmitting portion 22 are formed simultaneously in the aforementioned manner, and the decorative portion 21 is located at the outer periphery of the light-transmitting portion 22. In addition, the light-transmitting portion 22 is staggered with the central long axis 12. That is, the position of the light-transmitting portion 22 does not overlap with the central long axis 12, so that the light-transmitting portion 22 can avoid the central position of the mouse device 1. In addition, the long axis of the light-transmitting portion 22 is parallel to the central long axis 12. In other words, the light-transmitting portion 22 is an elongated structure. Preferably, the light-transmitting portion 22 of this embodiment is an elongated square frame, and is parallel to the central long axis 12.

[0053] In the present embodiment, the number of the light-transmitting portions 22 is two. Specifically, the first portion 201 and the second portion 202 of the cover plate 20 each have a light-transmitting portion 22. Similarly, the first portion 201 and the second portion 202 are respectively coated, transferred, or bitten to form the decorative portion 21. At the same time, the portion of the oblong frame is retained without being processed, so that the light-transmitting portion 22 of the oblong frame can be formed. In addition, since the first portion 201 and the second portion 202 are arranged on both sides of the central long axis 12, the light-transmitting portions 22 located in the first portion 201 and the second portion 202 are also staggered with the central long axis 12, and the long axis of the light-transmitting portion 22 is parallel to the central long axis 12. Preferably, the two light-transmitting portions 22 are symmetrically distributed on the cover plate 20 with the central long axis 12 as the axis, such as Figure 1 shown.

[0054] Figure 3 for Figure 1 The cross-sectional view of the mouse device at line AA is shown in the figure. Figure 1 , Figure 2 and Figure 3 As shown. The solar charging panel 30 is arranged in the accommodating space 11 and corresponds to the light-transmitting portion 22. Since the number of light-transmitting portions 22 in this embodiment is two, the number of solar charging panels 30 can also be two accordingly. The two solar charging panels 30 are arranged on opposite sides of the central long axis 12 to correspond to the two light-transmitting portions 22 respectively. Preferably, the two solar charging panels 30 are symmetrically arranged in the accommodating space 11 of the shell 10 with the central long axis 12 as the axis. In addition, since the light-transmitting portion 22 is an elongated square frame, the solar charging panel 30 of this embodiment is an elongated plate body accordingly. In addition, the long axis of the solar charging panel 30 is parallel to the central long axis 12 to correspond to the light-transmitting portion 22.

[0055] Therefore, the light outside the mouse device 1 can pass through the light-transmitting portion 22 and illuminate the solar charging panel 30 in the accommodating space 11, so that the solar charging panel 30 can convert the radiation energy into electrical energy for use. In addition, the light-transmitting portion 22 and the central long axis 12 are arranged in an interlaced manner, and the long axis of the light-transmitting portion 22 and the central long axis 12 are parallel to each other. Therefore, when the user operates the mouse device 1, the palm of the user will not completely cover the light-transmitting portion 22, and the light outside the mouse device 1 can still pass through the light-transmitting portion from the gap between the user's hands to be used by the solar charging panel 30 in the accommodating space 11.

[0056] Preferably, the total area of ​​the light-transmitting portion 22 can be greater than or equal to the total area of ​​the decorative portion 21, so that the light outside the mouse device 1 has a sufficient range to pass through the light-transmitting portion 22. In this embodiment, the total area of ​​the light-transmitting portion 22 is the total area of ​​the light-transmitting portion 22 on the first part 201 and the second part 202. Similarly, the total area of ​​the decorative portion 21 is the total area of ​​the decorative portion 21 on the first part 201 and the second part 202. Preferably, the area of ​​the solar charging panel 30 is greater than the area of ​​the light-transmitting portion 22, so that the solar charging panel 30 can effectively utilize the light passing through the light-transmitting portion 22.

[0057] Preferably, the solar charging panel 30 of this embodiment is disposed obliquely in the accommodating space 11 of the housing 10 . Figure 4 for Figure 1 The cross-sectional diagram of the mouse device shown is taken along line BB. Figure 5 for Figure 2 For a partial schematic diagram of the bottom surface of the cover shown, please refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 As shown. Among them, Figure 5 for Figure 2 The bottom surface 23 of the first part 201 of the cover plate 20 shown in the figure. Specifically, the mouse device 1 of this embodiment also includes at least one support member 40, and the solar charging panel 30 is arranged between the cover plate 20 and the support member 40. The number of the support members 40 in this embodiment is the same as the number of the solar charging panels 30, so two support members 40 are taken as an example. The support member 40 is a long plate body, which includes a first long side 41 and a second long side 42 opposite to each other. First, the solar charging panel 30 can be arranged above the support member 40. Among them, the solar charging panel 30 and the support member 40 respectively have mutually matching fixed structures, which can be, for example but not limited to, structures such as a protrusion and a groove, a slider and a slide groove, or a hook and a slot, and are connected to each other through the aforementioned fixed structures. For example, the long side of the solar charging panel 30 has a slider, and the long side of the support member 40 has a slide groove, and the slider is arranged in the slide groove so that the solar charging panel 30 and the support member 40 are fixed to each other.

[0058] Next, the support member 40 with the solar charging panel 30 disposed on it is assembled to the cover plate 20. The support member 40 is obliquely disposed on the bottom surface 23 of the cover plate 20. In one embodiment, the support member 40 can be directly fixed to the bottom surface 23 of the cover plate 20. In this embodiment, the support member 40 can be detachably assembled to the bottom surface 23 of the cover plate 20, for example, by screwing the support member 40 to the cover plate 20. Figure 4 and Figure 5As shown, the bottom surface 23 of the cover plate 20 further includes two fixing portions 24, which may be a combination of locking holes and screws. The two opposite short sides of the support member 40 are respectively locked to the two fixing portions 24 of the cover plate 20.

[0059] Furthermore, when the support member 40 is disposed on the cover plate 20, the first long side 41 close to the central long axis 12 can be closer to the bottom surface 23, and the second long side 42 on the other side can be farther from the bottom surface 23, so that the support member 40 and the solar charging panel 30 above it are inclinedly disposed on the bottom surface 23 of the cover plate 20. Preferably, the cover plate 20 further includes two stoppers 25, which are disposed on the bottom surface 23, such as Figure 3 and Figure 5 As shown. The height of the side of the limiting portion 25 is designed to increase gradually outward. Specifically, the height of the side 251 of the limiting portion 25 close to the central long axis 12 is less than the height of the side 252 close to the outside. When the solar charging panel 30 and the support member 40 are assembled to the cover plate 20, the two side edges 251 and 252 of the limiting portion 25 abut against the upper surface of the solar charging panel 30, and the first long side 41 is closer to the bottom surface 23, while the second long side 42 is farther from the bottom surface 23, as shown in FIG. Figure 3 In other words, through the structure of the limiting portion 25 , the solar charging panel 30 and the support member 40 are both disposed obliquely on the bottom surface 23 of the cover plate 20 .

[0060] Then, the cover plate 20, the solar charging panel 30 and the support member 40 are assembled to the housing 10. Figure 2 , Figure 4 and Figure 5 As shown, in this embodiment, the housing 10 includes a pivoting portion 13, and the cover plate 20 includes a pivoting hole 26. The pivoting portion 13 is located in the accommodating space 11 of the housing 10, and the pivoting hole 26 is located on the bottom surface 23 of the cover plate 20. The cover plate 20 and the housing 10 are connected to each other by connecting the pivoting portion 13 to the pivoting hole 26, for example, the pivoting portion 13 is a pivoting rod, which is accommodated in the pivoting hole 26. In other embodiments, the opposite configuration may also be used, for example, the housing 10 has a pivoting hole, and the cover plate 20 is a pivoting portion, which is not limited by the present invention.

[0061] When the solar charging panel 30 and the support member 40 are assembled with the cover plate 20 to the housing 10, the solar charging panel 30 and the support member 40 are tilted in the accommodating space 11 and gradually sink from the central long axis 12 to the two side walls of the housing 10. Figure 3As shown. In addition, since the solar charging panel 30 is arranged above the support member 40, the solar charging panel 30 gradually sinks from the central long axis 12 to the two side walls of the shell 10. Since the solar charging panel 30 is also arranged obliquely on the shell 10, the solar charging panel 30 can correspond to the light-transmitting portion 22 with a larger area, and the installation area of ​​the solar charging panel 30 can be increased, so that the solar charging panel 30 can utilize more radiation energy and convert it into electrical energy. In this embodiment, the solar charging panel 30 and the support member 40 are assembled to the cover plate 20, and then the cover plate 20 together with the solar charging panel 30 and the support member 40 are assembled to the shell 10. In other embodiments, the solar charging panel 30 and the support member 40 can also be first arranged obliquely in the accommodating space 11 of the shell 10, and then the cover plate 20 is pivotally connected to the shell 10, but the utility model is not limited to this.

[0062] Please refer to Figure 2 and Figure 4 As shown, the mouse device 1 of this embodiment also includes a circuit board 60, which is arranged in the accommodating space 11 of the shell 10. The circuit board 60 includes a switch 61 and a power unit (not shown). The power unit can be a battery, which is electrically connected to the solar charging panel 30 to transfer the electric energy converted by the solar charging panel 30 to the power unit of the circuit board 60. Specifically, the solar charging panel 30 also has an electrical connection end (not shown), which can be, for example but not limited to, a circuit conductor or electrode contact of a flexible circuit board (i.e., FPC) for electrical connection with the conductive terminal on the circuit board 60. Through the aforementioned structure, the electric power converted by the solar charging panel 30 is transferred to the power unit, and power is supplied to the use of the mouse device 1.

[0063] like Figure 4 As shown, preferably, the support member 40 has a trigger portion 43, which is located on the lower surface of the support member 40 and extends toward the accommodating space 11 to face the circuit board 60. The trigger portion 43 is used to contact the switch 61 on the circuit board 60. When the first portion 201 or the second portion 202 of the cover plate 20 is pressed (i.e., the operation of pressing the left and right keys), the cover plate 20 swings toward the direction of the housing 10 with the pivot portion 13 as the axis. Since the support member 40 is connected to the cover plate 20, the trigger portion 43 moves downward at the same time and triggers the switch 61 to generate a trigger signal.

[0064] Better, such as Figure 3As shown, the shell 10 also includes a reset member 14, such as a spring. The reset member 14 is disposed in the accommodating space 11, and one end is fixed to the support column in the accommodating space 11, and the other end abuts the support member 40. Specifically, the support member 40 also includes an abutment portion 44, which is also located on the lower surface of the support member 40 and extends in the direction of the reset member 14. When the cover plate 20 is pressed, the support member 40 moves downward with the cover plate 20, so that the abutment portion 44 presses down the reset member 14. When the cover plate 20 stops being pressed, the reset member 14 provides an elastic force to return the support member 40 and the cover plate 20 to their original positions. In addition, the setting of the reset member 14 also has the effect of regulating the pressing force on the cover plate 20.

[0065] Fig. 6A for Figure 2 The enlarged schematic diagram of the roller module shown, Figure 6B for Figure 2 For the exploded view of the roller module shown in Figure 2 , Figure 3 , Fig. 6A and Figure 6B Preferably, the mouse device 1 of this embodiment further includes a roller module 50. The roller module 50 is disposed in the accommodation space 11 of the housing 10. Preferably, the roller module 50 of this embodiment is located in the same straight line as the central long axis 12, as shown in FIG. Figure 3 As shown. In this embodiment, the roller module 50 includes a roller 51, an encoder 52 and a base 53. The roller 51 is disposed in the base 53. Moreover, the roller 51 is pivotally connected to the side wall of the base 53 so that the roller 51 can rotate in the base 53. In addition, the roller 51 of this embodiment has a receiving groove 511, and the opening of the receiving groove 511 is located on the side of the roller 51. The encoder 52 is disposed in the receiving groove 511 to detect the amplitude and number of revolutions of the roller 51. Moreover, the encoder 52 of this embodiment also includes a fixing portion 521, which is connected to the base 53.

[0066] Specifically, the fixing portion 521 of the encoder 52 is a convex portion, and the base 53 has a corresponding slot 531. The fixing portion 521 is engaged with the slot 531, so that the encoder 52 can be suspended in the receiving slot 511 of the roller 51. Fig. 6A As shown. In other embodiments, the fixing portion 521 of the encoder 52 may also be a structure similar to a hook, so that the fixing portion 521 can be directly hung on the side wall of the base 53, and the utility model is not limited thereto. In addition, the encoder 52 is connected to the base 53 through the fixing portion 521, so that the encoder 52 does not contact the inner wall of the receiving groove 511. When the roller 51 rotates, the encoder 52 does not rotate with the roller 51, and thus the amplitude and number of rotations thereof can be detected.

[0067] Furthermore, the encoder 52 is disposed in the receiving groove 511, which can reduce the overall volume of the roller module 50 to achieve the effect of saving space. That is, the receiving space 11 of the housing 10 has more space to accommodate the solar charging panel 30, or the area of ​​the solar charging panel 30 can be increased, so that the solar charging panel 30 can utilize more radiation energy.

[0068] Figure 7 This is a schematic diagram of a mouse device according to another embodiment of the present invention. Figure 7 The mouse device 1a of this embodiment includes a housing 10, a cover plate 20a and at least one solar charging panel 30. The solar charging panel 30 can be directly referred to Figure 2 or Figure 3 As shown. In addition, since the shape, structure and connection relationship of the shell 10 and the solar charging panel 30 are the same as those of the aforementioned embodiment, the element symbols are used. The difference from the aforementioned embodiment lies in the patterns of the decorative portion 21a and the light-transmitting portion 22a of the cover 20a of this embodiment. Specifically, the cover 20a of this embodiment is also a plate body made of a light-transmitting material, and the decorative portion 21a is also formed on the cover 20a by coating, transfer, or biting treatment, and the other untreated portion is the light-transmitting portion 22a. In this embodiment, the untreated pattern is different from that of the aforementioned embodiment to form decorative portions 21a and light-transmitting portions 22a with different patterns. As Figure 7 As shown, the light-transmitting portion 22a of this embodiment is also a long square frame, but has irregular patterns similar to sawtooth at both ends. In other embodiments, the light-transmitting portion 22a can also be other patterns, as long as the light-transmitting portion 22a and the central long axis 12 are staggered and the long axis of the light-transmitting portion 22a is parallel to the central long axis 12, and the utility model is not limited thereto.

[0069] In summary, according to the mouse device of the utility model, it includes a shell, a cover plate and a solar charging panel. The cover plate includes a decorative portion and a light-transmitting portion. The solar charging panel is arranged in the accommodating space of the shell and corresponds to the light-transmitting portion. Therefore, the light outside the mouse device can pass through the light-transmitting portion and illuminate the solar charging panel in the accommodating space, so that the solar charging panel can convert the radiation energy into electrical energy for use. In addition, since the light-transmitting portion and the central long axis are staggered, and the long axis of the light-transmitting portion and the central long axis are parallel to each other, the palm of the user will not completely cover the light-transmitting portion when operating the mouse device. Therefore, the light outside the mouse device can still pass through the light-transmitting portion from the gap of the user's hand and be used by the solar charging panel, thereby avoiding the situation where the mouse device is insufficient due to long-term use.

[0070] It should be noted that the above embodiments are provided for the purpose of illustration, and the scope of rights claimed by the present utility model shall be based on the claims, and shall not be limited to the above embodiments.

Claims

1. A mouse device, characterized in that: include: The shell includes a containing space and a central long axis; a cover plate, covering the housing and shielding the accommodating space, the cover plate comprising a decorative portion and at least one light-transmitting portion, the decorative portion being located at a portion of the cover plate, the light-transmitting portion being located at other portions of the cover plate, the light-transmitting portion being staggered with the central long axis, and the long axis of the light-transmitting portion being parallel to the central long axis; as well as At least one solar charging panel is disposed in the accommodating space and corresponds to the light-transmitting portion.

2. The mouse device according to claim 1, wherein: The decorative portion is located at an outer periphery of the light-transmitting portion.

3. The mouse device according to claim 1, wherein: The light-transmitting portion is a long square frame.

4. The mouse device according to claim 1, wherein: The total area of ​​the light-transmitting portions is greater than or equal to the total area of ​​the decorative portions.

5. The mouse device according to claim 1, wherein: The area of ​​the solar charging panel is larger than the area of ​​the light-transmitting portion.

6. The mouse device according to claim 1, wherein: The long axis of the solar charging panel is parallel to the central long axis, and the solar charging panel is arranged obliquely in the accommodating space.

7. The mouse device according to claim 1, wherein: Also includes: At least one support member is obliquely arranged on the bottom surface of the cover plate, and the solar charging panel is arranged between the cover plate and the support member.

8. The mouse device according to claim 1, wherein: Also includes: At least one support member is obliquely arranged on the shell, and the solar charging panel is arranged on the support member.

9. The mouse device according to claim 7 or 8, characterized in that: The support member includes a first long side and a second long side opposite to each other. The first long side is close to the central long axis, and the first long side is closer to the cover plate than the second long side.

10. The mouse device according to claim 1, wherein: The number of the at least one light-transmitting portion is two, the number of the at least one solar charging panel is two, and the two solar charging panels correspond to the two light-transmitting portions respectively.

11. The mouse device according to claim 10, wherein: The two solar charging panels are symmetrically arranged in the accommodating space of the shell with the central long axis as the axis, and the two light-transmitting parts are symmetrically distributed on the cover plate with the central long axis as the axis.

12. The mouse device according to claim 1, wherein: Also includes: The roller module is arranged in the accommodating space of the housing. The roller module comprises a roller and an encoder. The roller has an accommodating groove, and the encoder is arranged in the accommodating groove.

13. The mouse device according to claim 12, wherein: The roller module also includes a base, and the roller is arranged on the base.

14. The mouse device according to claim 1, wherein: The decorative part is formed on the cover plate by coating, transfer printing, or texturing.

15. The mouse device according to claim 1, wherein: The housing includes a pivoting portion, the cover includes a pivoting hole, and the pivoting portion is connected to the pivoting hole.