Detailed Description
The embodiment of the invention provides a computer input system. The computer input system includes, for example, a mobile device, a computer input apparatus, and a host computer. Specifically, when the display content of the mobile device meets a specific condition, the mobile device can actively output a signal to inform the computer input device, so that the computer input device can present a reminding mode to attract the attention of a user, and the user can operate the computer input device to execute a preset starting event on the host computer. The computer input equipment provided by the invention can make the execution time of the starting event of the host computer be related to the specific display content on the mobile device, so that when a user operates the computer, even if the mobile device cannot see the related display message nearby in real time, the user can know the message needing attention through the computer input equipment operated in the hand, and can immediately start the host computer to respond to the message needing attention on the mobile device.
[ embodiment of computer input System ]
Referring to fig. 1, fig. 1 is a schematic diagram of a computer input system according to an embodiment of the present invention. The computer input system 1 of the present embodiment may include a mobile device 10, a computer input device 12 and a host computer 14. Wherein the computer input device 12 is illustrated herein as an input device 121 and a mouse pad 123. In one embodiment, the computer input device 12 can receive the indication signal S1 and the actuating signal S2 outputted by the mobile apparatus 10, and the computer input device 12 can further output the start signal S3 to the host computer 14.
Further, when the display content of the mobile device 10 matches the default keyword, the mobile device 10 will output the indication signal S1 and the actuating signal S2 to the computer input device 12. The computer input device 12 may present a sensory signal on the mouse pad 123 that may attract attention of a person upon receiving the indication signal. The sensory signal is various combinations of light signals, panel display signals or sound signals, but the invention is not limited thereto. Upon receiving the brake signal S2, the computer input device 12 can, for example, enable the input device 121 to output an activation signal S3 to the host computer 14 according to the operation of a human. The input device 121 may be a mouse or a keyboard, for example, and for convenience of description, the following description is given by taking a wireless mouse as an example. The host computer 14 can start execution of the corresponding start event associated with the keyword displayed on the mobile device 10 when receiving the start signal S3. For example, the host computer 14 executes a start event, such as executing a specific application program or game program.
It is noted that, in an actual usage situation, the display content of the mobile device 10 matching the default keyword means whether the display content of the mobile device 10 executing the community application matches the default keyword. Examples of such community applications are face book (Facebook), Twitter (Twitter), puff (Plurk) or micro-blog (Weibo). The mobile device 10 may be, for example, a mobile phone, a tablet computer, or a notebook computer.
[ Another embodiment of a computer input System ]
Referring to fig. 2A, fig. 2A is a functional block diagram of a computer input system according to an embodiment of the present invention. The computer input system 1a of the present embodiment may include a mobile device 10, a computer input device 12a and a host computer 14. The computer input device 12a is illustrated here as a wireless mouse 121a and a mouse pad 123 a. The wireless mouse 121a includes a brake portion 1211, and the brake portion 1211 can start the execution function of the brake portion 1211 when the wireless mouse 121a receives the brake signal. Of course, the mouse-less device also includes other related circuits, such as a processing circuit, a wireless circuit, a displacement detection circuit, etc., and the specific structure of the wireless circuit is known to those skilled in the art, and only the actuator 1211 related to the present invention is described herein. Further, when the function of the actuator 1211 is turned on, the actuator 121 can provide a user operation to enable the wireless mouse 121a to output the start signal S3 to the host computer 14. In one embodiment, the actuating portion 1211 is a key circuit, and the key circuit outputs the start signal S3 to the host computer 14 when the wireless mouse 121a receives the actuating signal S2 and when the wireless mouse receives the user' S pressing of the key circuit. In another embodiment, the actuating portion 1211 can also be a sensing circuit, and the sensing circuit outputs the start signal S3 to the computer host 14 when the wireless mouse 121a receives the actuating signal S2 and the sensing circuit senses the sensory signal output by the mouse pad 123 a. The sensing circuit may be, for example, a barcode scanner or a light sensor, but the invention is not limited thereto.
The mouse board 123a may include a transmitting part 1231, a processing part 1233, and an indicating part 1235, wherein the processing part 1233 is coupled to the transmitting part 1231 and the indicating part 1235. The transmission part 1231 provides the mouse board 123a with the capability of wirelessly transmitting or wirelessly receiving the relevant signal to the outside. The processing part 1233 may control the indicating part 1235 to present the sensory signal when the transmitting part 1231 receives the indicating signal S1. Specifically, the transmitting part 1231 may be, for example, a wireless circuit, and the wireless circuit may be a bluetooth circuit or a wireless radio circuit. The processing unit 1233 may be a processor or a controller having an arithmetic processing capability. The indication part 1235 may be various combinations of a light emitting circuit, a panel display circuit and a sound output circuit, that is, the sense signal may be a light signal provided by the light emitting circuit, a display signal provided by the panel display circuit or a sound signal provided by the sound output circuit.
For example, fig. 2B is a schematic diagram of a mouse board, the indicating portion 1235 of the mouse board 123a is a light emitting circuit, the light emitting circuit includes a plurality of light emitting blocks 12351, and each light emitting block 12351 can emit light with different colors. In practice, the mobile device 10 may further send out the indication signal and the actuation signal according to the keywords corresponding to the different contents. For example, when the content displayed by the mobile device 10 matches a first keyword of the keywords, the indication signal output by the mobile device 10 is the first indication signal and the actuation signal output by the mobile device 10 is the first actuation signal. The mouse board 123a may control a first light-emitting block of the plurality of light-emitting blocks 12351 to emit light of a specific color in a manner of constant brightness or blinking according to the first indication signal. When the actuating portion 1211 of the wireless mouse 121a is a key circuit, the wireless mouse 121a can control the input of the specific first key or the specific first combination key in the key circuit according to the received first actuating signal, so as to be pressed by a person and correspondingly output a first starting signal to the computer host 14. When the actuating portion 1211 of the wireless mouse 121a is a light sensor, the wireless mouse 121a can control the light sensor to start the light sensing function according to the received first actuating signal, and when the light sensor of the wireless mouse 121a senses the light emitted from the first light emitting block of the mouse board 123a, the wireless mouse 121a outputs a corresponding first actuating signal to the computer host 14. When the host computer 14 receives the first start signal, it can automatically execute the corresponding first start event.
For the same reason, when the mobile device 10 displays content that matches the second keyword of the keywords. When the mobile device 10 outputs the second indication signal and the second actuation signal, the second light-emitting block of the mouse board 123a can emit light. The key circuit of the wireless mouse 121a can output a second start signal to the computer host 14 according to the operation, or the wireless mouse 121a can output the second start signal when the optical sensor thereof senses the light of the second light-emitting block of the mouse board 123 a. Finally, the host computer 14 can automatically execute the corresponding second start event when receiving the second start signal. Therefore, when the mobile device 10 displays the third keyword whose content matches the keyword, the process can be repeated according to the above-mentioned processing method, which is not described herein.
It is further noted that when the wireless mouse 121a does not receive any actuating signal S2, the brake 1211 will inhibit the wireless mouse 121a from outputting the start signal S3. Furthermore, if the brake 1211 is a key circuit, and the wireless mouse 121a does not receive the brake signal S2, the key circuit can still perform the function other than inhibiting the wireless mouse from outputting the activation signal without being affected.
Referring to fig. 2C in conjunction with fig. 2A, fig. 2C is a control flow chart of the computer input system provided in fig. 2A according to the embodiment of the invention. The input method of the computer input device according to the embodiment is to execute the corresponding start event to the host computer 14 according to the instruction of the mobile apparatus 10, and can be illustrated by fig. 2A and 2C, but the invention is not limited thereto. The flow shown in FIG. 2C may perform the following steps, for example, in conjunction with the architecture provided in FIG. 2A.
In step S201, it is determined whether the mobile device 10 is triggered. In one embodiment, a related program may be installed in the mobile device 10 to detect whether the content displayed by the mobile device 10 includes a default keyword, and when the content displayed by the mobile device 10 includes the default keyword, the mobile device 10 is triggered by the related program to start the subsequent operation.
When the mobile device 10 meets the trigger condition, the mobile device 10 outputs an indication signal S1 to the mouse pad 123a as shown in step S203, and outputs an actuation signal S2 to the wireless mouse 121a as shown in step S205.
When the mouse pad 123a receives the instruction signal S1, the instruction part 1235 of the mouse pad 123a outputs a sensory signal as shown in step S207.
When the wireless mouse 121a receives the activation signal S2, the function of the activation portion 1211 of the wireless mouse 121a is turned on, and the user can know that the function of the activation portion 1211 of the wireless mouse 121a is turned on through the sensory signal displayed by the indication portion 1235 of the mouse board 123 a. Therefore, when the wireless mouse 121a receives the operation of the actuator 1211 from the user, the wireless mouse 121a outputs the start signal S3 to the host computer 14 as shown in step S209.
When the host computer 14 receives the start signal S3, the start event is executed in step S211, so that the host computer 14 can make a corresponding real-time response according to the content that matches the keyword and is displayed by the mobile device 10.
[ further embodiment of computer input System ]
Referring to fig. 3A, fig. 3A is a functional block diagram of a computer input system according to an embodiment of the present invention. The computer input system 1b of the present embodiment may include a mobile device 10, a computer input device 12b and a host computer 14. The difference between the computer input system 1b shown in fig. 3A and the computer input system 1a shown in fig. 2A is that the indication signal S1 outputted to the mobile device 10 and the actuation signal S2 are processed differently, and only the difference is described here, and the rest can be referred to the foregoing embodiments.
The computer input device 12b shown in FIG. 3A receives the indication signal S1 and the actuating signal S2 output by the mobile device 10 through the mouse pad 123A, and outputs the actuating signal S2 to the wireless mouse 121a through the mouse pad 123A.
Referring to fig. 3B in conjunction with fig. 3A, fig. 3B is a control flow chart of the computer input system provided in fig. 3A according to the embodiment of the invention. The input method of the computer input device according to the embodiment is to execute a corresponding start event to the host computer according to the instruction of the mobile apparatus 10, and can be illustrated by fig. 3A and 3B, but the invention is not limited thereto. The flow shown in FIG. 3B may perform the following steps, for example, in conjunction with the architecture provided in FIG. 3A.
In step S301, it is determined whether the mobile device 10 is triggered. In one embodiment, a related program is installed in the mobile device 10 to detect whether the content displayed by the mobile device includes a default keyword, and when the content displayed by the mobile device includes the default keyword, the mobile device 10 is triggered by the related program to start the subsequent operation.
When the mobile device 10 meets the trigger condition, the mobile device 10 outputs an indication signal S1 to the mouse pad 123a as shown in step S303, and outputs an actuation signal S2 to the mouse pad 123a as shown in step S305.
When the mouse pad 123a receives the indication signal S1 and the actuation signal S2, the mouse pad 123a outputs the actuation signal S2 to the wireless mouse 121a as shown in step S307, and the indication part 1235 of the mouse pad 123a outputs the sensory signal as shown in step S309.
When the wireless mouse 121a receives the activation signal S2, the function of the activation portion 1211 of the wireless mouse 121a is turned on, and the user can know that the function of the activation portion 1211 of the wireless mouse 121a is turned on through the sensory signal displayed by the indication portion 1235 of the mouse board 123 a. Therefore, when the wireless mouse 121a receives the operation of the actuator 1211 from the user, the wireless mouse 121a outputs the start signal S3 to the host computer 14 as shown in step S311.
When the host computer 14 receives the start signal S3, the start event is executed in step S313, so that the host computer 14 can make a corresponding real-time response according to the content corresponding to the keyword displayed by the mobile device 10.
[ still another embodiment of the computer input System ]
Referring to fig. 4A, fig. 4A is a functional block diagram of a computer input system according to an embodiment of the present invention. The computer input system 1c of the present embodiment may include a mobile device 10, a computer input device 12c and a host computer 14. The difference between the computer input system 1c shown in fig. 4A and the computer input system 1a shown in fig. 2A is that the indication signal S1 outputted to the mobile device 10 and the actuation signal S2 are processed differently, and only the difference is described here, and the rest can be referred to the foregoing embodiments.
The computer input device 12c shown in fig. 4A receives the indication signal S1 and the actuating signal S2 output by the mobile device 10 via the wireless mouse 121a, and outputs the indication signal S1 to the mouse pad 123a via the wireless mouse 121 a.
Referring to fig. 4B in conjunction with fig. 4A, fig. 4B is a control flow chart of the computer input system provided in fig. 4A according to the embodiment of the invention. The input method of the computer input device according to the embodiment is to execute a corresponding start event to the host computer according to the instruction of the mobile device, and can be illustrated by fig. 4A and 4B, but the invention is not limited thereto. The flow shown in FIG. 4B may perform the following steps, for example, in conjunction with the architecture provided in FIG. 4A.
In step S401, it is determined whether the mobile device 10 is triggered. In one embodiment, the mobile device 10 is installed with a related program to detect whether the content displayed by the mobile device 10 includes a default keyword, and when the content displayed by the mobile device 10 includes the default keyword, the mobile device 10 is triggered by the related program to start the subsequent operation.
When the mobile device 10 meets the trigger condition, the mobile device 10 outputs an indication signal S1 to the wireless mouse 121a as shown in step S403, and outputs an actuation signal S2 to the wireless mouse 121a as shown in step S405.
When the wireless mouse 121a receives the indication signal S1 and the actuating signal S2, the wireless mouse 121a outputs an indication signal S1 to the mouse board 123a as shown in step S407.
When the mouse board 123a receives the instruction signal S1, the instruction part 1235 of the mouse board 123a outputs a sensory signal as shown in step S409.
When the wireless mouse 121a receives the activation signal S2, the function of the activation portion 1211 of the wireless mouse 121a is turned on, and the user can know that the function of the activation portion 1211 of the wireless mouse 121a is turned on through the sensory signal displayed by the indication portion 1235 of the mouse board 123 a. Therefore, when the wireless mouse 121a receives the operation of the actuator 1211 from the user, the wireless mouse 121a outputs the start signal S3 to the host computer 14 as shown in step S411.
When the host computer 14 receives the start signal S3, the start event is executed in step S413, so that the host computer 14 can make a corresponding real-time response according to the content that matches the keyword and is displayed by the mobile device 10.
It should be noted that, in the above embodiments, when the computer input device has output the start signal to the host computer or the host computer has started executing the start event, the computer input device or the host computer may return the report signal to the mobile apparatus. Therefore, the mobile device can know that the computer input equipment or the host computer reacts. And the mobile device can further output a stop signal to the computer input equipment, so that the actuating part of the input equipment stops outputting the starting signal and the indicating part of the mouse board stops outputting the sensory signal.
In addition, the start signal S3 in the above embodiment can be output to the host computer by an input device. In one embodiment, the start signal S3 may also be output to the mobile device by an input device. The mobile device may start the corresponding start event associated with the keyword displayed on the mobile device 10 when receiving the start signal S3. For example, the activation event performed by the mobile device 10 is the execution of a particular application or game program, for example.
[ technical effects of the embodiment ]
In summary, in the computer input system provided in the embodiments of the present invention, when the content displayed by the mobile device matches the keyword, the computer input device can receive the prompt of the related signal output by the mobile device, and the computer input device can present a prompt manner attracting the attention of the user, so that the user of the computer input device can further execute the preset start event to the host computer by operating the computer input device. Therefore, the invention can make the starting event related to the host computer execution be associated with the external information, so that the execution of the starting event is more convenient and real-time.
The above description is only an example of the present invention, and is not intended to limit the scope of the present invention.