WO2011035510A1 - 鼠标 - Google Patents

鼠标 Download PDF

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Publication number
WO2011035510A1
WO2011035510A1 PCT/CN2009/075585 CN2009075585W WO2011035510A1 WO 2011035510 A1 WO2011035510 A1 WO 2011035510A1 CN 2009075585 W CN2009075585 W CN 2009075585W WO 2011035510 A1 WO2011035510 A1 WO 2011035510A1
Authority
WO
WIPO (PCT)
Prior art keywords
mouse
mouse according
plug
data line
finger
Prior art date
Application number
PCT/CN2009/075585
Other languages
English (en)
French (fr)
Inventor
林威廉
Original Assignee
北京华旗资讯数码科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN2009202460042U external-priority patent/CN201590048U/zh
Priority claimed from CN2009202460076U external-priority patent/CN201583907U/zh
Application filed by 北京华旗资讯数码科技有限公司 filed Critical 北京华旗资讯数码科技有限公司
Publication of WO2011035510A1 publication Critical patent/WO2011035510A1/zh

Links

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/033Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
    • G06F3/0354Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor with detection of 2D relative movements between the device, or an operating part thereof, and a plane or surface, e.g. 2D mice, trackballs, pens or pucks
    • G06F3/03543Mice or pucks
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/033Indexing scheme relating to G06F3/033
    • G06F2203/0333Ergonomic shaped mouse for one hand

Definitions

  • the present invention relates to a mouse for operating a cursor movement, and more particularly to a mouse of a small-sized flat structure. Background technique
  • the mouse brings great convenience to computer operation. Due to the long and high frequency of operating the computer with the mouse, the operational comfort and flexibility of the mouse are an important factor in selecting a mouse.
  • the prior art mouse uses ergonomic principles to improve the structural design of the mouse to better suit the comfort and convenience of handling when held by hand.
  • the prior art mouse is bulky, inconvenient to carry, and requires a large space for movement, which is inconvenient for the user's operation in a small space, such as a user who uses a notebook computer.
  • the prior art mouse operation is The operation of the hand is to support the movement of the mouse by the wrist. When the mouse is held by the hand for a long time, it is easy to cause fatigue and easily lead to misoperation. Summary of the invention
  • the invention provides a mouse, which is small in size, convenient to carry, and improves the flexibility and comfort of operation.
  • the present invention provides a mouse, including a mouse body, a circuit board disposed in the mouse body, a microprocessor, an operation key, and a signal receiving and processing device disposed on the circuit board, and the signal receiving and processing The device receives an external signal and transmits it to the microprocessor for processing.
  • the mouse body has a flat body structure.
  • the mouse body of the mouse of the invention adopts a flat type structure, which reduces the volume of the curved bow portion of the traditional mouse body, saves the occupied space of the mouse, facilitates miniaturization of the mouse, and can be operated by using fingers without
  • the mouse body needs to be held by hand to improve the flexibility of operation, reduce fatigue during operation, and improve the comfort of operation.
  • Figure 1 is a perspective view of a first embodiment of a mouse of the present invention.
  • Figure 2 is an exploded perspective view of the first embodiment of the mouse of the present invention.
  • Figure 3 is an exploded perspective view of a second embodiment of the mouse of the present invention.
  • Figure 4 is a perspective view of a third embodiment of the mouse of the present invention.
  • Figure 5 is a cross-sectional view showing the side of a third embodiment of the mouse of the present invention.
  • Figure 6 is a view showing the state of use of the third embodiment of the mouse of the present invention.
  • Figure 7 is a perspective view of a fourth embodiment of the mouse of the present invention.
  • Figure 8 is a view showing the state of use of the fourth embodiment of the mouse of the present invention.
  • Figure 9 is a view showing the operational state of the fourth embodiment of the mouse of the present invention.
  • Figure 10 is a perspective view of a fifth embodiment of the mouse of the present invention.
  • Figure 11 is a perspective view of a sixth embodiment of the mouse of the present invention.
  • Figure 12 is a perspective view of another angle of view of Figure 11 .
  • Figure 13 is a perspective view of the data line device of Figure 11 .
  • Figure 14 is a partial schematic view of Figure 11.
  • Figure 15 is a perspective view of a seventh embodiment of the mouse of the present invention.
  • Figure 16 is a block diagram showing the structure of a mouse using a photo-sensing device.
  • FIG 17 is a block diagram showing the structural principle of the mechanical ball rolling mechanism of the mouse of the present invention. detailed description
  • the mouse of the invention is a flat type structure, which occupies less space and can be placed or used in the case of a small space.
  • the mouse of the present invention can be The flat structure is designed to be conveniently placed into the internal space of the notebook computer.
  • the mouse of the present invention is designed as the size of the PCMCIA card, so that the mouse is small in size and convenient for direct placement.
  • the structure of the tablet body of the mouse of the present invention is light in structure and can be operated by fingers, thereby increasing the convenience and flexibility of use.
  • the mouse 100 of the first embodiment of the present invention includes an upper casing 1 and a lower casing 2, and the upper and lower casings 1 and 2 are assembled and integrated to form a flat-type mouse body.
  • the substantially rectangular body structure of the mouse body reduces the mouse body of the curved structure of the support of the palm of the conventional mouse, and the mouse body can be held by hand, and the strength of the hand operation and the fatigue of long-time operation are reduced.
  • a circuit board is disposed on the lower casing 2, A microprocessor 24, a signal receiving and processing device 25, a power supply for providing mouse operation, and left and right function keys 11, 12 for operating left and right buttons 21, 22 are provided on the circuit board.
  • Stripe-like protrusions are provided on the left function key 11 and the right function key 12, and the protrusions are provided for increasing the comfort and friction between the finger and the left and right function keys 11, 12 during operation, and the shape may also be an ellipse Shape, dot shape, pattern shape, etc., or a material that increases the frictional force on the function key may be used to increase the anti-slip effect during operation, thereby improving the sensitivity and reliability of the operation.
  • the through hole 26 is disposed on the circuit board for receiving an external signal.
  • the signal receiving and processing device 25 is an image sensing device for receiving an external optical signal. Converted by the image sensing device into an electrical signal and further transmitted to the microprocessor for processing; when the mouse is a mechanical mouse, the signal receiving and processing device 25 uses a mechanical ball processing device to convert the mechanical motion of the ball into an electrical signal. It is then transmitted to the microprocessor.
  • the present embodiment is different from the first embodiment in that the upper casing 1 of the mouse can also be provided with an elastic finger sleeve 15, and the elastic finger sleeve 15 is curved.
  • the structure is arranged to conform to the shape of the human body's fingers, and the upper casing of the mouse body located at the rear of the left and right function keys 21, 22 is arranged side by side.
  • the finger is inserted into the elastic finger sleeve 15 and passed through
  • the elastic finger sleeve 15 is relatively fixed to the mouse body, thereby facilitating the flexible operation of the mouse of the present invention by fingers without slipping.
  • the elastic finger sleeve 15 may be provided one or two. When two elastic finger sleeves are provided, corresponding to the upper surface of the upper casing disposed at the rear position of the left and right function keys 21, 22, for the convenience of the user. .
  • FIG. 4 is a perspective view of a third embodiment of the present invention.
  • the image sensing device is used as the signal receiving and processing device in the embodiment and can be folded out or folded into the mouse body.
  • the image sensing device 3 is movably connected to the mouse body, and the connection mechanism between the image sensing device 3 and the mouse body can be connected by a hinge, or a hinge connection, or other movable connection structure, where the image sensing device 3 and the mouse body are connected.
  • the connecting structure may protrude from the upper surface of the upper casing 1 of the mouse body and may provide a frictional rib on the upper surface of the protruding connecting structure, and when the mouse is operated, the finger can be operated to operate the left and right function keys 21, 22 When moving, the finger is blocked by the set ribs and does not easily move out of the operating areas of the left and right function keys 21, 22, thereby increasing the flexibility and reliability of the mouse operation.
  • the corresponding image sensing device 3 on the mouse body is provided with a bearing hole 16, and the image sensing device 3 can rotate around the mouse body.
  • the image sensing device 3 includes an optical system and a photo-sensing device, and the optical system includes a light source 31, an optical system mirror 32, and a reflected light receiving device 33 disposed in the optical component case 34.
  • the light emitted by the light source 31 is reflected by the optical system mirror 32 onto the reflecting surface 200, and then reflected by the reflecting surface 200.
  • the reflected light receiving device 33 includes a lens for receiving reflected light and an image sensing element for converting the optical signal into an electrical signal, and then transmitted by the image sensing element to the microprocessor for processing.
  • the image sensing component can be a CCD image sensor or a CMOS image sensor.
  • the electrical signal converted by the image sensing component can be directly processed by the image processor 25 and then transmitted to the microprocessor 24.
  • All of the components in the photo-sensing device 3 may be housed in the optical component case 34, or only a part thereof, for example, the light source 31 and the optical system mirror 32 are housed in the optical component case 34, and the processing circuit of the image sensing element 33 is provided.
  • the portion may be disposed on the circuit board as the image processor 25, and the optical component case 34 is hinged to the mouse body by a hinge provided on the mouse body (for example, the middle portion).
  • the image sensing device 3 rotates and protrudes from the bearing hole 16, and the optical component box 34 is rotated at a certain angle with respect to the mouse body. At this time, the optical system mirror 31 and the external platform are enlarged.
  • the distance of the reflective surface 200 is such that the resolution and sensitivity of the mouse of the present invention are improved.
  • the image sensing device 3 is housed in the carrying hole 16 and integrated with the mouse body, so that the mouse body remains For the flat structure, as shown in Figure 4, it is convenient to place the mouse without occupying extra space, which is beneficial to the miniaturization and portability of the mouse.
  • the folding image sensing device 3 used in the mouse of the third embodiment of the present invention can be applied to other electronic devices that require image sensing devices, and the image sensing device 3 is movably connected to the carrier of the electronic device.
  • the accuracy of the image sensing of the electronic device can be increased, and the size of the electronic device that is provided with the folded image sensing device 2 is miniaturized.
  • the carrier of the electronic device is provided with a bearing hole for accommodating the image sensing device 2, When the image sensing device 3 is used, it can be folded and received in the carrying hole, and integrated with the mouse body. When in use, the image sensing device can be protruded from the carrying hole and at a certain height from the mouse body.
  • the image sensing device 3 rotates and protrudes from the bearing hole 16, and the optical component case 21 is rotated at an angle with respect to the mouse body. At this time, the distance between the optical system mirror 32 and the reflecting surface 200 of the external platform is increased.
  • the image sensing device 3 is tilted at an angle with the mouse body to increase the optical path length of the optical projection, thereby contributing to improving the resolution and sensitivity of the mouse of the present invention.
  • the photo-sensing device 3 is accommodated in The bearing hole 16 is integrated with the mouse body, so that the mouse body is still a flat structure, which facilitates the placement of the mouse without occupying extra space, and is advantageous for miniaturization and portability of the mouse.
  • a light-transmitting hole 26 is formed in the bottom of the mouse body.
  • the light emitted by the light source 31 of the image sensing device 3 passes through the optical system mirror 32 and passes through the light-transmitting hole 26 to be projected on the surface of the reflecting surface 200.
  • the reflected light reflected by the reflecting surface 200 is further reflected.
  • the light is transmitted through the light transmission hole 26 to the lens system, and then sensed and received by the image sensing element, and the sensed reflected light signal is converted into an electrical signal.
  • the fourth embodiment of the present invention is different from the third embodiment of the present invention in that the upper housing 1 of the mouse body can also be provided with a finger back pressing plate 4 and a finger back.
  • the pressure plate 4 is hinged to the mouse body by a platen hinge 44 provided at the front end of the upper casing 1 of the mouse body.
  • the finger back pressure plate 4 is provided with function key through holes 41, 42 corresponding to the positions of the left and right function keys 11, 12, respectively, and a finger back through hole is provided at the rear end of the finger back pressure plate 4. 43.
  • the corresponding finger portion above the left and right function keys 11, 12 can be fixedly operated by the function key through holes 41, 42.
  • a part of the finger back of the finger can be passed through the finger back through hole 43 to more stably hold the finger of the operation mouse with the mouse of the embodiment to improve the reliability of the operation.
  • the pressure contact pad of the finger back plate 4 and the back of the finger may be provided, and the pressure pad may be made of a soft object such as a sponge.
  • the provided cushion pad increases the friction between the finger and the mouse and the contact comfort between the finger back, and also improves the flexibility and reliability of the mouse operation.
  • the mouse body of the mouse of the present invention is further provided with a scroll key 28, and the scroll key 28 can be disposed on the upper end surface of the mouse body.
  • the scroll key 28 is disposed on the circuit board of the lower casing. After assembly, the surface of the upper casing 1 is exposed.
  • the scroll key 28 of the mouse of the present invention can also be disposed on the side of the mouse body, as shown in FIG. 4, FIG. 6, FIG. 7, and FIG. 9 of the third and fourth embodiments, for the user of the right-handed operation to operate the left side of the mouse.
  • the scroll key 28 can be operated by the right hand thumb at the same time.
  • the scroll key 28 can also be disposed on the right side of the mouse body.
  • the scroll key 28 uses a rolling gear key, and the gear can also be made into a rough surface light wheel.
  • a sliding touch key can also be used.
  • the mouse of the present invention adopts a method of setting a scroll key on the side of the mouse body, so that the mouse of the flat body structure of the present invention does not occupy the space of the height of the mouse body, and reduces the height of the mouse, thereby making the mouse of the present invention smaller in size.
  • Easy to place and carry. you can set the scroll key on both the left and right sides of the mouse body, and use the software settings to define any of the scroll keys. You can also use the two scroll keys to use them as different function keys.
  • the finger When the mouse of the embodiment is operated, the finger is placed on the left and right function keys 11, 12, and the thumb is used to operate the scroll key 28 on the side of the mouse body, and the finger can be dragged on the left and right function keys 11, 12 Move the mouse to move, and use the scroll keys to operate the mouse to turn pages.
  • the mouse of the present invention may further include a wireless receiving device 5.
  • the circuit board of the mouse body is provided with a wireless transmitting device, and can communicate with the computer by using a wireless connection manner such as radio, infrared light or Bluetooth.
  • the wireless receiving device 5 can be plugged and connected to the computer through a USB interface, or other interface such as 1394.
  • the wireless connection between the mouse and the computer transmits data of the mouse motion track.
  • a wireless receiving device slot 17 for accommodating the wireless receiving device 5 is opened on the side of the mouse.
  • the wireless receiving device slot 17 can also be disposed at other locations on the body of the mouse, such as the bottom, the upper portion, and the like.
  • FIG. 11 and FIG. 12 are a sixth embodiment of a mouse according to the present invention.
  • the image sensing device of the third embodiment is used as a signal receiving and processing device, and the image sensing device is configured by a hinge or the like.
  • the movable body is connected to the mouse body and can be rotated around the mouse body.
  • the mouse body is correspondingly disposed with a carrying hole for receiving the image sensing device, so that the image sensing device is folded and folded relative to the mouse body, and receives the external through the through hole 26
  • the signal is sent to the microprocessor for processing to generate operational data for the mouse to move relative to the outside.
  • the circuit board of the mouse body is also connected to a data line device, which includes a data line 61 and a plug 62.
  • the data line 61 is connected to the circuit board inside the mouse body, and the other end is connected to the plug 62.
  • the plug 62 is inserted into a data interface of a computer or other data processing device, such as a PDA or the like, and the operating data of the generated mouse moving relative to the external platform is transmitted through the data line and transmitted to the computer through the plug 62 to realize the moving operation of the cursor.
  • the plug 62 includes a USB plug, an IEEE1394 plug or other data plug.
  • the plug 61 is a USB plug
  • the plug includes a plug body 621 and a connecting conductor 622 for USB data interface connection on the plug body.
  • the plug body is housed in a space of a standard USB socket such that the height of the plug body is compatible with the height of the docking space of the standard USB plug.
  • one end of the data line connecting plug is provided with an elastic buffer body for preventing the data line from being wound and broken.
  • the data lines are arranged in a flat cable shape, and the buffer body includes a lateral buffer body 612 disposed in a crisscross arrangement and a cross-connected longitudinal buffer body 611.
  • the longitudinal buffer body 611 is connected to the lateral buffer body 612 to prevent the data line 61 from being disturbed up and down.
  • the data line is aged and broken.
  • the data line can also be set as a round data line, and the buffer body can be added to the buffer body 613 for setting the left and right data lines.
  • a wire take-up mechanism for accommodating the data line device is disposed on the mouse body.
  • the wire take-up mechanism includes a receiving groove 71 provided on the side wall of the mouse body, and a receiving groove 71 provided at the bottom of the mouse body.
  • the cable 61 is wound around the main body of the mouse, and is accommodated in the take-up slot 19 for a plurality of turns, and is accommodated in the take-up slot 19 provided on the side wall of the mouse body. After the data cable is completely received in the take-up slot 19, finally, the plug The 62 is housed in the storage slot 71.
  • the data cable is prevented from being stored in the take-up slot 16 and the line is too long to be accommodated.
  • the length of the receiving slot 71 is set to a certain margin, so that when the data line is too long, the plug 61 is placed in the housing. In the case of the inside of the groove 71, a part of the redundant data lines may be accommodated in the storage groove 71.
  • the wall body 112 and the lower wall 113 of the edge body 111 of the mouse body are recessed.
  • the wire grooves 19 and the inner walls of the upper and lower wall bodies 111 and 112 are respectively provided with a plurality of zigzag upper and lower fixing points 111a and 11b.
  • each of the data lines is located between each of the two adjacent upper and lower fixed points ll la, 111b to form a take-up space, and the upper and lower fixed points ll la
  • the 111b placed data line is slid and slides out of the take-up slot 19.
  • the front end of the upper surface of the mouse body of the mouse is provided with a scroll key 28', and the surface of the mouse body is protruded after assembly, which conforms to the scroll key of the mouse of the prior art.
  • the setting habits are convenient for the user's habits.
  • a scroll key may be simultaneously set on the left and right side walls of the mouse body, and different functions may be respectively set by right and left scroll keys on the left and right side walls, or the left side wall may be opened according to the left or right hand. Use the scroll key, or turn on the scroll button on the right side to match the left-handed habit.
  • the scroll keys When the scroll keys are simultaneously set on the left and right side walls of the mouse body, different operation functions when the left and right scroll keys are used at the same time can be set, or one scroll key of the left and right scroll keys is set to be used and the other scroll key is closed, and the prior art can be used.
  • the software program sets the operating functions of the above different conditions for the left and right scroll keys.
  • the scroll key in order to reduce the influence of the scroll key on the volume of the mouse, the scroll key can also be set as the scroll key of the optical sensing of the prior art, and details are not described herein again.
  • the image sensing device 3 ′ of the mouse body may be disposed to protrude from the upper surface of the mouse body.
  • the optical inductance of the infrared light source of the prior art mouse may be used.
  • Device structure When the photo-sensing device 3' uses the photo-sensing device of the laser light source, the structure of the photo-sensing device can be kept flush with the upper surface of the mouse body of the flat-type structure.
  • FIG. 16 is a block diagram showing the circuit structure of a mouse using a photo-sensing device according to the present invention.
  • the microprocessor is powered by the power supply, receives and processes the user through the command input unit, such as the left and right function keys, and of course, can also input commands through other operation keys such as page turning keys, commands input by the input unit, and input of the optical transmitting and receiving device.
  • the data port can be connected to an external data device by selecting an infrared transmitting device, a Bluetooth transmitting device, or a USB connection.
  • Figure 17 is a block diagram showing the circuit structure of a mechanical ball rolling device of the mouse of the present invention. Unlike a mouse using a photo-sensing device, a mechanical structure is employed as a signal receiving and processing device. The other structures are the same as those of the mouse structure using the photo-sensing device, and will not be described here.
  • the above-described embodiments are illustrative of the manner of the structure and circuit structure of the present invention, and are not intended to limit the scope of the present invention.
  • the structures or features of the above-described embodiments may be modified or replaced by those skilled in the art, for example,
  • the photo-inductance device of the folding structure in the second embodiment can also be connected to the mouse body, thereby increasing the sensitivity of the mouse operation.
  • the elastic finger sleeve of the first embodiment can also be used to facilitate the user to fix the finger with the mouse body, thereby increasing the convenience of operation.
  • the mouse of the present invention adopts the structure of the flat body, which reduces the space occupied by the mouse compared with the prior art mouse, and is convenient for the mouse to be placed, for example, can be conveniently carried, and the flat type structure can be manufactured as a PCMCIA card.
  • the size can be placed in the PCMCIA card slot of the notebook, which is convenient to carry with the notebook computer. It also reduces the inconvenience of using the touchpad to operate the cursor, and improves the sensitivity of the cursor operation.
  • the present invention proposes to provide an image sensing device that is foldable and can be integrated with the mouse body as a signal receiving and processing device.
  • the image sensing device When in use, the image sensing device is extended from the mouse, increasing the distance between the photo-sensing device and the relatively moving reflecting surface, thereby increasing the photo-sensing accuracy, and when not in use, the image sensing device can be directly used. It fits in the body of the mouse and is easy to carry without taking up extra space on the mouse.
  • the present invention further provides a clamping body on the mouse body. When the mouse is operated, the finger can be engaged with the clamping body, and the finger and the mouse can be relatively stable and fixed. The reliability and flexibility of the mouse operation can be increased, and the ease and convenience of the mouse operation can be improved. Therefore, the mouse of the present invention is small in size, convenient to use, and flexible.
  • the invention adopts a wire receiving groove on the side wall of the mouse body, so that the data line is placed without occupying extra space of the mouse, and a receiving slot is arranged at the bottom of the mouse body for placing the plug, and the space of the mouse body is fully utilized, and the space is not occupied.
  • the extra space is advantageous for reducing the volume of the mouse, maintaining the flat structure of the mouse body of the present invention, facilitating the miniaturization of the mouse, and also facilitating the placement of the mouse of the present invention for portability and use.
  • the left and right function keys are pressed by the finger to operate, the flexibility of the operation is increased, the hand movement is performed during the finger operation, the flexibility of the finger operation mouse is increased, and the prior art is prevented from being brought by the wrist of the hand. Fatigue or pain in the wrist or arm, improving the comfort and flexibility of the mouse operation, suitable for people who use the mouse for a long time.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Position Input By Displaying (AREA)

Description

技术领域
本发明涉及一种用于操作光标移动的鼠标, 尤其涉及体积小巧的平板型结构的鼠 标。 背景技术
鼠标作为计算机的必备外围设备, 给计算机操作带来极大的方便。 由于使用鼠标 操作计算机的时间长和高频率, 鼠标的操作舒适性和灵活性则成为选择鼠标的重要因 素。 现有技术的鼠标, 采用人体工程学的原理, 改进了鼠标的结构设计, 以更符合用 手握持时操作的舒适度和方便性。
然而, 现有技术的鼠标体积大, 携带不方便, 移动时所需要的空间大, 不便于空 间小的情况下的用户的操作, 如使用笔记本电脑的用户, 此外, 现有技术的鼠标操作 是通过手的力量进行操作,是手腕支撑鼠标移动,当用手握持鼠标进行长时间操作时, 易导致疲劳, 也易导致误操作。 发明内容
本发明提供一种鼠标, 体积小巧, 便于携带, 提高操作的灵活性和舒适性。 为解决上述技术问题, 本发明提供一种鼠标, 包括鼠标本体, 设置于鼠标本体内 的电路板, 电路板上设置微处理器、 操作键及信号接收与处理装置, 所述的信号接收 与处理装置接收外部的信号并传输给微处理器处理, 所述的鼠标本体呈平板体结构。
由上述可知, 本发明鼠标的鼠标本体采用平板型结构, 减小传统的鼠标本体的弧 形弓起部分的体积,节省鼠标的占用空间,便于鼠标的小型化,可使用手指进行操作, 而不需要用手握持鼠标本体, 提高操作的灵活性, 减少操作时的疲劳, 提高操作的舒 适度。 附图说明
图 1是本发明鼠标第一实施例的立体图。
图 2是本发明鼠标第一实施例的立体分解图。 图 3是本发明鼠标第二实施例的立体分解图。
图 4是本发明鼠标第三实施例的立体图。
图 5是本发明鼠标第三实施例的侧面的剖视图。
图 6是本发明鼠标第三实施例的使用状态图。
图 7是本发明鼠标第四实施例的立体图。
图 8是本发明鼠标第四实施例的使用状态图。
图 9是本发明鼠标第四实施例的操作状态图。
图 10是本发明鼠标第五实施例的立体图。
图 11是本发明鼠标第六实施例的立体图。
图 12是图 11的另一视角的立体图。
图 13是图 11的数据线装置的立体图。
图 14是图 11的局部示意图。
图 15是本发明鼠标的第七实施例的立体图。
图 16是本发明鼠标采用光电感测装置的结构原理框图。
图 17是本发明鼠标采用机械滚球机构的结构原理框图。 具体实施方式
为进一步阐述本发明达成预定目的所采取的技术手段及功效,以下结合附图及实 施例, 对本发明鼠标的具体实施方式、 结构特征及其功效, 详细说明如下。
本发明鼠标为平板型结构,占用空间少,方便于小空间的情况下也能放置或使用, 尤其当笔记本电脑配置本发明的鼠标时, 由于鼠标为平板型结构, 可将本发明的鼠标 的平板结构设计成方便放置入笔记本电脑内部空间的结构, 例如, 利用笔记本电脑所 具有的 PCMCIA卡的扩展空间, 将本发明的鼠标设计成 PCMCIA卡的体积大小, 使得鼠标 的体积小巧, 便于直接放置入 PCMCIA卡的插槽内, 使用时, 可直接从插槽内拿出, 方 便使用,而不占用笔记本额外的空间。而本发明的鼠标的平板体的结构,其结构轻巧, 可使用手指操作, 增加使用的方便性及灵活性。
请参阅图 1及图 2, 本发明第一实施例的鼠标 100包括上壳体 1、 下壳体 2, 上、 下 壳体 1、 2组装合成一体形成平板型结构的鼠标本体, 平板型结构的鼠标本体的大致矩 形体结构, 减少了传统的鼠标的突起的支撑手掌的弧形结构的鼠标本体, 可不需要用 手握持鼠标本体, 减少手操作的力量和长时间操作的疲劳度。 下壳体 2上设置电路板, 电路板上设置微处理器 24、信号接收与处理装置 25、提供鼠标工作的电源以及包括操 作左、 右按键 21、 22的左、 右功能键 11、 12。
在左功能键 11和右功能键 12上设置有条纹状突起,所设置的突起用于增加操作时 手指与左、 右功能键 11、 12之间的舒适度及摩擦力, 形状还可以是椭圆状、 点状、 花 纹状等, 或者还可以采用在功能键上设置提高摩擦力的材料, 以增加操作时的防滑效 果, 从而提高操作的灵敏性和可靠性。
通孔 26设置于电路板上用于接收外部的信号, 在本具体实施例中, 当鼠标为光电 鼠标时, 信号接收与处理装置 25为影像感测装置, 用于接收外部的光信号后, 由影像 感测装置转换为电信号并进一步传输至微处理器进行处理; 当鼠标为机械鼠标时, 则 信号接收与处理装置 25采用机械滚球处理装置,将滚球的机械运动转换为电信号进而 传输给微处理器。
如图 3所示, 为本发明的第二实施例, 本实施例与第一实施例不同的是, 鼠标的 上壳体 1还可以设置弹性指套体 15, 弹性指套体 15为弧形结构, 以符合人体的手指的 形状, 并列设置位于左、 右功能键 21、 22的后方的鼠标本体的上壳体, 操作本发明的 鼠标时, 手指套入弹性指套体 15内, 并通过弹性指套体 15与鼠标本体相对固定, 进而 方便手指灵活操作本发明的鼠标而不易滑落。 弹性指套体 15可以设置一个, 也可以设 置两个, 设置两个弹性指套体时, 对应设置于左、 右功能键 21、 22的后方位置的上壳 体的上表面, 以方便用户使用。
请参阅图 4, 为本发明的第三实施例的立体图。 与第一实施例不同之处在于, 本 实施例中采用影像感测装置作为信号接收与处理装置且可以折叠伸出或收合于鼠标 本体内。 影像感测装置 3与鼠标本体活动连接, 影像感测装置 3与鼠标本体的连接机构 可以采用铰链连接, 或者转轴连接, 或者其他的活动连接结构, 影像感测装置 3与鼠 标本体的连接处的连接结构可以突出于鼠标本体的上壳体 1的上表面并可以在突出的 连接结构上表面设置增加摩擦力的凸棱, 在操作鼠标时, 可以使得手指按键操作左、 右功能键 21、 22移动时, 手指被所设置的凸棱阻挡而不易移动滑出左、 右功能键 21、 22的操作区域, 也因此增加鼠标操作的灵活性和可靠性。
结合参阅图 5、 图 6, 鼠标本体上对应影像感测装置 3设置承载孔 16, 影像感测装 置 3可以围绕鼠标本体旋转运动。 影像感测装置 3包括光学系统和光电感测装置, 光学 系统包括设置在光学部件盒 34内的光源 31、光学系统镜 32和反射光接收装置 33。光源 31所发出的光经过光学系统镜 32反射到反射面 200上, 再经过反射面 200的反射, 由反 射光接收装置 33所接收,反射光接收装置 33包括接收反射光的透镜和用以将光信号转 换为电信号的影像感测元件, 再由影像感测元件传输给微处理器处理。 影像感测元件 可以是 CCD影像感测器, 也可以是 CMOS影像感测器, 影像感测元件所转换的电信号可 以直接由影像处理器 25处理, 之后再传输给微处理器 24。
光电感测装置 3中的所有元件均可装在光学部件盒 34内, 也可以只是其中一部 分, 例如光源 31和光学系统镜 32装在光学部件盒 34内, 而影像感测元件 33的处理 电路部分可以设置在电路板上, 成为影像处理器 25, 光学部件盒 34通过设置在鼠标 本体上 (例如中部) 的铰链与鼠标本体铰接。
又如图 6所示, 当需要使用鼠标时, 影像感测装置 3旋转伸出承载孔 16, 光学部 件盒 34相对鼠标本体转动了一定角度, 此时由于加大了光学系统镜 31与外部平台的 反射面 200的距离,这样有助于提高本发明鼠标的分辨率和灵敏度;当不使用鼠标时, 影像感测装置 3收纳于承载孔 16内, 与鼠标本体合为一体, 使得鼠标本体仍然为平 板型结构造型, 如图 4所示, 方便鼠标的放置, 而不占用额外空间, 有利于鼠标的小 型化和便携性。
本发明的第三实施例的鼠标所采用的折叠式的影像感测装置 3, 可以适用于其他 需要影像感测装置的电子装置上,将影像感测装置 3活动连接于电子装置的承载体上, 可以增加电子装置的影像感测的精确度, 使得设置折叠式影像感测装置 2的电子装置 的体积小型化, 电子装置的承载体上设置用以容纳影像感测装置 2的承载孔, 不使用 影像感测装置 3时可以折叠收容于该承载孔内, 并与鼠标本体成为一体结构, 而使用 时, 可以将该影像感测装置从承载孔内伸出并相对于鼠标本体距离一定高度。
当需要使用鼠标时, 影像感测装置 3旋转伸出承载孔 16, 光学部件盒体 21相对 鼠标本体转动了一定角度, 此时由于加大了光学系统镜 32与外部平台的反射面 200 的距离, 使得影像感测装置 3与鼠标本体倾斜成一角度, 使得光学的投射的光路长度 增加, 从而有助于提高本发明鼠标的分辨率和灵敏度; 当不使用鼠标时, 光电感测装 置 3收纳于承载孔 16内, 与鼠标本体合为一体, 使得鼠标本体仍然为平板型结构造 型, 方便鼠标的放置, 而不占用额外空间, 有利于鼠标的小型化和便携性。
鼠标本体的底部开设透光孔 26, 影像感测装置 3的光源 31发射的光经过光学系 统镜 32后通过透光孔 26后投射于反射面 200的面上, 反射面 200反射的反射光再通 过透光孔 26发射至透镜系统, 之后被影像感测元件所感测接收, 并将所感测的反射 光信号转换为电信号。 如图 7、 图 8所示, 为本发明的第四实施例, 与本发明的第三实施例不同之处在 于, 鼠标本体的上壳体 1上, 还可以设置手指背压板 4, 手指背压板 4通过设置在鼠 标本体的上壳体 1的前端的压板铰链 44与鼠标本体铰接。
结合参阅图 8、 图 9, 手指背压板 4上开有分别对应于左、 右功能键 11、 12位置 上方的功能键通孔 41、 42, 在手指背压板 4的后端设置手指背通孔 43, 当用户手持 本实施例的鼠标, 手指被手指背压板 4压住时, 左、 右功能键 11、 12的上方对应的 手指部分可以通过功能键通孔 41、 42 固定操作的手指头, 手指弓起的手指背的一部 分可以通过手指背通孔 43 以更稳定地将操作鼠标的手指与本实施例的鼠标相对稳定 扣住, 以提高操作的可靠性。 为增加操作时的舒适性, 可以在手指背压板 4与手指背 的接触面, 还可以设置压板缓压垫, 缓压垫可以用海绵等柔软物体做成。 在操作本发 明的鼠标时, 所设置的缓压垫增加手指与鼠标的摩擦力和手指背之间的接触舒适性, 也提高鼠标操作的灵活性和可靠性。
本发明鼠标的鼠标本体还设置有滚动键 28, 滚动键 28可以设置在鼠标本体上端 面, 在第一实施例中, 如图 1及 2所示, 滚动键 28设置在下壳体的电路板上, 组装 后突露出上壳体 1的表面。
本发明的鼠标的滚动键 28还可以设置在鼠标本体的侧面, 如第三、 第四实施例 的图 4、 图 6、 图 7、 图 9中, 为方便右手操作的使用者操作鼠标的左、 右功能键 11、 12时, 可以同时用右手的大拇指操作滚动键 28进行滚动操作, 当然, 为了方便左手 操作, 也可以将滚动键 28设置在鼠标本体的右侧面。 滚动键 28采用滚动齿轮键, 也 可以将齿轮做成粗糙面光轮, 当然也可以采用滑动触摸键。 因此, 本发明鼠标采用在 鼠标本体的侧面设置滚动键的方式, 使得本发明的平板体结构的鼠标不占用鼠标本体 的高度的空间, 降低鼠标的高度, 从而使得本发明的鼠标体积更为小巧, 便于放置与 携带。 或者, 还可以在鼠标本体的左右侧边均设置滚动键, 通过软件设置进行功能定 义其中的任意滚动键使用, 也可以启动两个滚动键同时作为不同的功能键使用。
在操作本实施例的鼠标时, 手指放置在左、 右功能键 11、 12上, 大拇指用以操 作鼠标本体的侧面的滚动键 28, 手指按在左、 右功能键 11、 12上可以拖动鼠标进行 移动, 同时可以使用滚动键操作鼠标进行翻页等功能。
如图 10所示, 本发明的鼠标, 还可包括无线接收装置 5, 鼠标本体的电路板设置 无线发射装置, 可以采用无线电、 红外光或蓝芽方式等无线连接方式与计算机连接通 信。 无线接收装置 5通过 USB接口, 或 1394等其他接口, 可插拔连接于计算机, 用 于鼠标与计算机的无线连接进而传输鼠标运动轨迹的数据。在鼠标的侧面开有用于收 纳无线接收装置 5的无线接收装置槽 17。 无线接收装置槽 17也可以设置在鼠标本体 的其他位置,如底部、上部等。将本发明的采用无线连接方式适用于其他的实施例中, 为本领域的技术人员所易于熟知变换实施, 在此不再赘述。
如图 11、 图 12, 为本发明鼠标的第六实施例, 在本具体实施例中, 采用上述第三 实施例的影像感测装置作为信号接收与处理装置,影像感测装置通过铰链等结构活动 连接于鼠标本体, 可以围绕鼠标本体旋转运动, 鼠标本体对应设置承载孔用以收容影 像感测装置, 使得影像感测装置相对于鼠标本体作折叠收合式的结构, 并通过通孔 26 接收外部的信号发送给微处理器进行处理, 生成鼠标相对于外部移动的操作数据。 鼠 标本体上表面的左、 右功能键 11、 12移动时, 手指被所设置的凸棱 115阻挡而不易移 动滑出左、 右功能键 11、 12的操作区域, 还可以在左右功能键 11、 12的键位区域上设 置凸出点 111、 121 , 以此增加手指与左、 右功能键 11、 12的摩擦力, 避免操作时手指 滑动, 增加鼠标操作的灵活性和可靠性。
鼠标本体的电路板还连接数据线装置, 数据线装置包括数据线 61和插头 62。数据 线 61—端连接鼠标本体内部的电路板, 另一端连接插头 62。插头 62插入计算机或者其 他数据处理装置的数据接口内, 例如 PDA等, 微处理器处理生成的鼠标相对于外部平 台移动的操作数据通过数据线传输并通过插头 62传输至计算机进而实现光标的移动 操作。 插头 62包括 USB插头、 IEEE1394插头或者其他数据插头, 在本具体实施例中, 插头 61采用 USB插头, 插头包括插头本体 621和和布设于插头本体上的用于进行 USB数 据接口连接的连接导体 622, 插头本体容纳于标准 USB插座的空间, 使得插头本体的高 度相容于标准 USB插头的插接空间的高度。
如图 13,为了避免数据线 61因为经常绕线或者使用时挠动而减少数据线的使用寿 命, 数据线连接插头的一端设置防止数据线缠绕断裂的弹性的缓冲体。数据线设置成 扁片线缆状, 缓冲体包括设置成十字交叉设置的横向缓冲体 612和交叉连接的纵向缓 冲体 611, 纵向缓冲体 611连接横向缓冲体 612, 避免数据线 61上、 下扰动使得数据线 老化断裂。 当然, 数据线也可以设置为圆型数据线, 缓冲体则可以增加设置放置数据 线左右挠动的缓冲体 613。
结合参阅图 11、 图 12, 为了便于本发明的鼠标的数据线装置的收纳, 以减小鼠标 的占用空间, 方便放置。 鼠标本体上设置用以收纳数据线装置的收线机构。 收线机构 包括设置在鼠标本体的四周侧壁设置收线槽 19和鼠标本体的底部设置的收容槽 71,数 据线 61盘绕鼠标本体四周, 收容于收线槽 19内盘绕若干圈, 并容纳于鼠标本体四周侧 壁设置的收线槽 19内, 数据线完全收纳于收线槽 19内后, 最后, 插头 62收容于收容槽 71内。在具体实施例中, 避免数据线盘绕收纳于收线槽 16内出现线过长而不能容纳的 情况, 收容槽 71的长度设置一定的宽余空间, 使得数据线过长时, 插头 61放置于收容 槽 71内时, 一部分冗余的数据线也可以收纳于收容槽 71内。
如图 14, 为了便于数据线收纳在收线槽内固定和避免数据线外凸滑动出收线槽, 在鼠标本体的边缘壁体 111上壁体 112和下壁体 113之间内陷形成收线槽 19, 上、 下壁 体 111、 112的内壁上分别设置若干的锯齿状的上、 下固定点 l l la、 l l lb。 因此, 当数 据线收纳于收线槽 19内时, 每一股数据线则位于每两相邻的上、 下固定点 l l la、 111b 之间形成收线空间内, 上、 下固定点 l l la、 111b放置数据线受到滑动而滑出收线槽 19 外。
如图 15所示, 与第六实施例不同的是, 本实施例鼠标的鼠标本体的上表面前端 设置滚动键 28', 组装后突露出鼠标本体的表面, 符合现有技术的鼠标的滚动键的设 置习惯, 便于使用者的习惯使用。 或者, 还可以在鼠标本体的左、 右两侧壁同时设置 滚动键, 可以通过对左、 右两侧壁的左右滚动键分别设置不同的功能, 或者根据左手 或右手开启其中的左侧壁的滚动键的使用功能, 或者开启右侧壁的滚动键以符合左手 使用习惯。 在鼠标本体的左右侧壁同时设置滚动键的情况, 可以设置左右滚动键同时 使用时不同的操作功能, 或者设置左右滚动键的一个滚动键开启使用而另一滚动键关 闭,可以采用现有技术的软件程序设置左右滚动键的上述不同情况的操作功能。当然, 为了减小滚动键对鼠标的体积影响, 还可以将滚动键设置为现有技术的光学感测的滚 动键, 在此不再赘述。 在本具体实施例中, 为了降低制造成本, 也可以将鼠标本体的 影像感测装置 3' 设置为突出于鼠标本体的上表面, 例如, 可以采用现有技术的鼠标 的红外光源的光电感测装置结构。 在光电感测装置 3' 采用激光光源的光电感测装置 时, 可以使得光电感测装置的结构与平板型结构的鼠标本体上表面保持一致齐平。
如图 16所示, 为本发明采用光电感测装置的鼠标的电路结构框图。 微处理器由 电源供电, 接收并处理用户通过命令输入单元, 例如左、 右功能键, 当然还可以通过 翻页键等其他操作键输入命令, 命令输入单元输入的命令以及光学发射与接收装置输 入的数据信号, 并通过数据端口与外部数据设备, 例如计算机, 交换数据。 数据端口 可以通过选择使用红外发射装置、蓝牙发射装置或者 USB连线的方式与外部的数据设 备连接。 图 17为本发明鼠标采用机械滚球装置的电路结构框图。与采用光电感测装置的 鼠标不同的是, 采用机械结构作为信号接收与处理装置。其他的结构与采用光电感 测装置的鼠标结构框图相同, 在此不再赘述。
上述实施例是对本发明的结构及电路结构原理的方式的说明,非用以限制本发明 的范围, 上述实施例的结构或特征, 本领域的普通技术人员可以显而易见的变换或替 换实施, 例如, 在第一实施例中, 信号接收与处理装置采用光电感测装置时, 也可以 采用第二实施例中的折叠式结构的光电感测装置与鼠标本体连接,进而增加鼠标操作 的灵敏度。在第二实施例中, 也可以采用第一实施例的弹性指套体的方式来方便使用 者将手指与鼠标本体固定, 增加操作的方便性。
综上所述, 本发明的鼠标采用平板体的结构, 相比于现有技术的鼠标, 减少了体 积的占用空间,便于鼠标放置,例如,可以方便携带,平板型结构可以制造成为 PCMCIA 卡的体积大小,可放置入笔记本的 PCMCIA的卡槽中,进而方便与笔记本电脑一并携带, 也减少了笔记本电脑使用触摸板来操作光标的不方便, 提高光标操作的灵敏性; 在本 发明鼠标的体积小巧化的同时, 为了增加鼠标的操作的灵敏性和精度, 本发明提出了 在鼠标本体上设置可折叠并可收合与鼠标本体为一体的影像感测装置作为信号接收 与处理装置, 因此, 在使用时, 将影像感测装置从鼠标本伸出, 增加光电感测装置与 相对移动的反射面的距离, 进而增加光电感测精度, 而在不使用时, 可以直接将影像 感测装置收合于鼠标本体内成为一体, 也方便携带而不额外占用鼠标的空间; 为了增 加鼠标操作时的可靠性, 本发明还进一步在鼠标本体上设置夹持体, 当操作鼠标时, 可以将手指与该夹持体相扣合, 可将手指与鼠标相对稳定而固定, 增加鼠标操作的可 靠性和灵活性, 可以提高了鼠标操作的简易性和便捷性, 因此, 本发明的鼠标体积小 巧, 使用方便、 灵活。
此外, 本发明采用在鼠标本体的四周侧壁设置收线槽, 便于数据线放置不占用鼠 标额外空间, 在鼠标本体的底部设置收容槽用以放置插头, 充分利用鼠标本体的自身 空间, 不占用额外的空间, 有利于减小鼠标的体积, 保持本发明的鼠标本体的平板型 结构, 便于鼠标的体积小型化, 也使得本发明的鼠标便于放置, 便于携带和使用。 本 发明的鼠标操作时采用手指按住左右功能键进行操作, 增加操作的灵活性, 手指操作 时带动手运动, 增加手指操作鼠标的灵活, 避免现有技术通过手的握持支动手腕带来 的手腕或手臂的疲劳或疼痛, 提高鼠标操作的舒适度和灵活性, 适合于长时间使用鼠 标操作的人群。

Claims

权 利 要 求 书
I、 一种鼠标, 包括鼠标本体, 设置于鼠标本体内的电路板, 电路板上设置微 处理器、 操作键及信号接收与处理装置, 所述的信号接收与处理装置接收外部的 信号并传输给微处理器处理, 其特征在于, 所述的鼠标本体呈平板体结构。
2、 根据权利要求 1所述的鼠标, 其特征在于, 所述的鼠标本体包括上壳体、 下壳体, 所述的上、 下壳体组装为一体形成平板体结构的鼠标本体。
3、 根据权利要求 2所述的鼠标, 其特征在于, 所述的上壳体的上表面为平面。
4、 根据权利要求 1所述的鼠标, 其特征在于, 所述的信号接收与处理装置包 括光学系统和光电感测装置, 所述的信号接收与处理装置与鼠标本体活动连接。
5、 根据权利要求 4所述的鼠标, 其特征在于, 所述的鼠标本体开设承载孔, 当鼠标不使用时, 所述的信号接收与处理装置收容于承载孔内, 当所述的鼠标使 用时, 所述的信号接收与处理装置相对承载本体旋转并伸出承载孔。
6、 根据权利要求 5所述的鼠标, 其特征在于, 所述的信号接收与处理装置与 承载本体通过铰链活动连接。
7、 根据权利要求 1所述的鼠标, 其特征在于, 还包括与电路板连接的数据线 装置, 所述的数据线装置连接外部的数据处理装置的数据接口并传输微处理器处 理生成的操作数据。
8、 根据权利要求 7所述的鼠标, 其特征在于, 所述的鼠标本体设置放置数据 线装置的收线机构。
9、 根据权利要求 8所述的鼠标, 其特征在于, 所述的收线机构包括鼠标本体 的四周侧壁设置的收线槽和鼠标本体的底部设置的收容槽。
10、 根据权利要求 9所述的鼠标, 其特征在于, 所述的鼠标本体的边缘壁体的 上壁体和下壁体之间凹陷形成所述的收线槽。
I I、 根据权利要求 10所述的鼠标, 其特征在于, 所述的上壁体和下壁体的内 壁上分别设置锯齿状的上、 下固定点, 所述的数据线收纳于收线槽内, 每一股数 据线位于每两相邻的上、 下固定点之间形成收线空间内。
12、 根据权利要求 3所述的鼠标, 其特征在于, 所述的数据线装置包括数据线 和插头, 所述的数据线分别连接电路板和插头, 所述的插头插入计算机的数据接 口传输鼠标的操作数据, 所述的数据线盘绕容纳于所述的收线槽内, 所述的插头 收容于收容槽内。
13、 根据权利要求 12所述的鼠标, 其特征在于, 所述的插头包括插头本体和 布设于插头本体上的用于进行 USB数据接口连接的连接导体,所述的插头本体容纳 于标准 USB插座的空间。
14、 根据权利要求 1所述的鼠标, 其特征在于, 所述的鼠标本体的上表面还连 接至少一个夹持体。
15、 根据权利要求 13所述的鼠标, 其特征在于, 所述的夹持体为弧形的弹性指 套体, 操作时, 手指套入所述的弹性指套体与上壳体形成的空间内。
16、 根据权利要求 15所述的鼠标, 其特征在于, 所述的操作键包括设置于鼠标 本体前端的左、 右功能键, 所述的弹性指套体为两个, 并列设置并位于左、 右功能 键的后方的鼠标本体上。
17、 根据权利要求 13所述的鼠标, 其特征在于, 所述的夹持体为手指背压板, 所述的手指背压板与所述的上壳体的前端活动连接。
18、 根据权利要求 17所示的鼠标, 其特征在于, 所述的手指背压板上开设功能 键通孔和手指背通孔, 所述的手指背通孔与手指背部相扣合。
19、 根据权利要求 1-18任一项所述的鼠标, 其特征在于, 所述的操作键包括设 置于鼠标本体前端的左、 右功能键, 所述的左、 右按键的上表面设置凸纹或防滑材 料。
20、 根据权利要求 19所述的鼠标, 其特征在于, 还包括设置于上壳体表面的滚 动键或位于鼠标本体侧边的滚动键或者鼠标本体的左、右两侧壁同时设置的滚动键。
PCT/CN2009/075585 2009-09-25 2009-12-15 鼠标 WO2011035510A1 (zh)

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CN200920246007.6 2009-09-25
CN200920246004.2 2009-09-25
CN2009202460042U CN201590048U (zh) 2009-09-25 2009-09-25 鼠标
CN2009202460076U CN201583907U (zh) 2009-09-25 2009-09-25 平板鼠标

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1369772A (zh) * 2001-02-13 2002-09-18 宏碁股份有限公司 具有集线槽的鼠标
WO2006013343A2 (en) * 2004-08-06 2006-02-09 Simon Richard Daniel Flat and collapsible mouse
CN201035536Y (zh) * 2007-04-16 2008-03-12 王春根 指套式鼠标
CN101419512A (zh) * 2008-11-18 2009-04-29 林威廉 一种鼠标
CN201247451Y (zh) * 2008-07-18 2009-05-27 袁志科 鼠标

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1369772A (zh) * 2001-02-13 2002-09-18 宏碁股份有限公司 具有集线槽的鼠标
WO2006013343A2 (en) * 2004-08-06 2006-02-09 Simon Richard Daniel Flat and collapsible mouse
CN201035536Y (zh) * 2007-04-16 2008-03-12 王春根 指套式鼠标
CN201247451Y (zh) * 2008-07-18 2009-05-27 袁志科 鼠标
CN101419512A (zh) * 2008-11-18 2009-04-29 林威廉 一种鼠标

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