The present invention relates to a pointing device with tilt-adjusting function and associated controlling method, and more particularly to a pointing device which corrects display tilt by transforming movement information outputted by the pointing device and associated controlling method.
In a computer system, a pointing device such as a mouse or a pen mouse is used for controlling a cursor shown on a display device. It is easy to use such pointing device to select or point to an object on the display device. However, the performance of the pointing device in drawing or writing is usually unsatisfied because the operation of the pointing device should meet a strict precision requirement. Since the hand-eye coordination and manipulating habit of different users are different, the holding angle of the pointing device for different users also varies. In other words, the cursor-moving path shown on the display device is different from the moving path expected by the user.
When a pen is used to write or draw on a paper sheet, the tip contact surface and the paper sheet are coplanar. On the other hand, when the pointing device (e.g. a mouse or a pen mouse) is used to control the cursor moving on the display device, the surface supporting the pointing device and the display device are not coplanar. That is, the movement of the pointing device is not exact the cursor movement. As such, it is necessary for the user to correlate the movement of the pointing device with the cursor movement. However, it is apparent that the results of correlation are different among different users.
Hereinafter, the deviation between the real image drawn via a pointing device and the ideal image will be illustrated with reference to
Generally, the deviation angle between the user basis and the standard basis is manually corrected. The manual correcting method is neither user-friendly nor ergonomic. Otherwise, to prevent the deviation or tilt, the user may use a drawing tablet. By referring to the edge of the drawing tablet, it becomes easier to draw or write in a precise direction to meet the standard basis. Although the use of the drawing tablet may correct the deviation or tilt, there are still some drawbacks. For example, since the size of the drawing tablet is much bulkier than the ordinary pointing device, the use of the drawing tablet is inconvenient.
From the above discussions, the conventional method for correcting the deviation angle between the user basis and the standard basis is usually unsatisfied. Although the use of the drawing tablet may correct the deviation angle, another problem occurs. Therefore, there is a need of providing a device for correcting the deviation angle.
In accordance with an aspect, a pointing device with tilt-adjusting function cooperating with a display device is provided. The pointing device includes a casing, a sensing unit disposed in the casing and a modulation structure disposed on the casing. The sensing unit senses a first movement of the pointing device to acquire first movement information when the sensing unit is arranged in a first position. The sensing unit also senses the first movement of the pointing device to acquire second movement information when the sensing unit is arranged in a second position. The modulation structure is connected with the sensing unit for adjusting the sensing unit from the first position to the second position.
In accordance with another aspect, a display system including a pointing device and a display device is provided. The pointing device includes a casing, a sensing unit disposed in the casing and a modulation structure disposed on the casing. The sensing unit senses a first movement of the pointing device to acquire first movement information when the sensing unit is arranged in a first position. The sensing unit also senses the first movement of the pointing device to acquire second movement information when the sensing unit is arranged in a second position. The modulation structure is connected with the sensing unit for adjusting the sensing unit from the first position to the second position. The display device displays a cursor moving along a first moving path and a second moving path corresponding to the first movement information and the second movement information, respectively.
In accordance with an aspect, a controlling method of a pointing device is provided. The pointing device includes a sensing unit and a modulation structure. The sensing unit senses a first movement of the pointing device to acquire first movement information when the sensing unit is arranged in a first position. Then, the sensing unit is adjusted from the first position to a second position through the modulation structure. The sensing unit further senses the first movement to acquire second movement information when the sensing unit is arranged in the second position.
Other objectives, features and advantages of the present invention will be further understood from the further technological features disclosed by the embodiments of the present invention wherein there are shown and described preferred embodiments of this invention, simply by way of illustration of modes best suited to carry out the invention.
These and other features and advantages of the various embodiments disclosed herein will be better understood with respect to the following description and drawings, in which like numbers refer to like parts throughout, and in which:
It is to be understood that other embodiment may be utilized and structural changes may be made without departing from the scope of the present invention. Also, it is to be understood that the phraseology and terminology used herein are for the purpose of description and should not be regarded as limiting. The use of “including,” “comprising,” or “having” and variations thereof herein is meant to encompass the items listed thereafter and equivalents thereof as well as additional items. Unless limited otherwise, the terms “connected,” “coupled,” and “mounted,” and variations thereof herein are used broadly and encompass direct and indirect connections, couplings, and mountings.
As previously described in the prior art, when the moving path of the pointing device is shown on the display device, a tilt usually occurs. For obviating the drawbacks encountered in the prior art, the present invention provides a pointing device for use with a display device (e.g. a screen or a tablet computer). The pointing device may be an optical mouse, a mechanical mouse, a pen mouse, a trackball or other known pointing device. In accordance with a key feature of the present invention, a modulation structure is provided for adjusting the physical position of a sensing unit. After the position of the sensing unit is adjusted, the result of sensing the movement of the pointing device will be changed, so that the movement information transmitted from the pointing device to the display device is also changed. According to the change of the movement information, the display deviation or tilt will be effectively corrected.
The pointing device 33 includes a sensing unit 331, a first transceiver unit 335, a first controlling unit 337 and a modulation structure 333. The sensing unit 331 is originally in a first position for sensing a first movement of the pointing device 33, thereby acquiring first movement information. The first transceiver unit 335 is electrically connected with the sensing unit 331 and in communication with the display device 31. Through the first transceiver unit 335, the first movement information acquired by operating the pointing device 33 will be transmitted to the display device 31. The modulation structure 333 is connected with the sensing unit 331. Through the modulation structure 333, the sensing unit 331 is adjusted from the initial first position to a second position. When the sensing unit 331 is in the second position, the first movement of the pointing device 33 is sensed to acquire second movement information. Through the first transceiver unit 335, the second movement information is transmitted to the display device 31. Moreover, the pointing device 33 may also have a casing 339. The sensing unit 331, the first transceiver unit 335, the first controlling unit 337 and other internal components are disposed in the casing 339.
The modulation structure 333, which is connected with the sensing unit 331 for adjusting the position of the sensing unit 331, is a core component of the pointing device 33. Since the sensing unit 331 is adjusted from the first position to the second position through the modulation structure 333, the user basis is changed. When the sensing unit 331 is in the second position, the first movement of the pointing device 33 is sensed to acquire the second movement information. Then, the second movement information is transmitted to the display device 31 through the first transceiver unit 335. Moreover, the modulation structure 333 may be connected with the first controlling unit 337. The first controlling unit 337 is used for controlling the modulation structure 333 to adjust the sensing unit 331.
Depending on the shape, the structure or other factors of the pointing device 33, the way of adjusting the sensing unit 331 through the modulation structure 333 is varied. In some embodiments, the modulation structure 333 includes a sliding part and a rotating mechanism. The sliding part and the rotating mechanism are linked with each other, and the rotating mechanism is further linked to the sensing unit 331. By moving the sliding part, the rotating mechanism is correspondingly driven to adjust the sensing unit 331 from the first position to the second position.
The display device 31 cooperating with the pointing device 33 includes a second transceiver unit 315, a display unit 311 and a second controlling unit 313. The second transceiver unit 315 is in communication with the first transceiver unit 335 of the pointing device 33 for receiving the first movement information and the second movement information from the first transceiver unit 335. The display device 31 is electrically connected with the second transceiver unit 315 for displaying an image according to the first movement information or the second movement information. The second controlling unit 313 is electrically connected with the display unit 311 and the second transceiver unit 315 for extracting the first movement information and the second movement information, thereby obtaining corresponding coordinate values and issuing corresponding control signals. In response to the control signals, a first moving path corresponding to the first movement information and a second moving path corresponding to the second movement information are respectively shown on the display unit 311. The second moving path complies with a new user basis which is more consistent with the standard basis (x-y coordinate system) of the display device 31.
Hereinafter, the internal configurations and the moving paths shown on the display device 31 before and after the sensing unit 311 is adjusted will be illustrated with reference to
As shown in
Please refer to
According to the present invention, there are many approaches of adjusting the position of the sensing unit 331 to adjust the deviation between the user basis and the standard basis (in Step 505). Some of the approaches are illustrated in the following description.
A first approach is to adjust the position of the sensing unit 331 connected with the modulation structure 333 by manually manipulating (e.g. rotating or moving) the modulation structure 333 of the pointing device 33. Thus, the movement information in response to the movement of the pointing device 33 is changed. According to the movement information, the user may visually determine whether there is a deviation angle between the user basis and the standard basis. If display tilt exists, the step of adjusting the sensing unit 331 is repeated till there is no deviation angle between the user basis and the standard basis by visual determination.
A second approach uses a training program executed in the display device 31 to adjust the sensing unit 331. Before the pointing device 33 is used to draw or handwrite, the user may draw a test horizontal line or a test vertical line. According to the tilt degree of the test line, the training program may instruct the user how to adjust the sensing unit 331 through the modulation structure 333. For example, the training program may specify the moving/rotating direction or the moving/rotating degree of the sensing unit 331. Graduation may be marked on the pointing device 33 to assist the adjustment.
The modulation structure 333 of the pointing device 33 may include a motor (not shown). The motor is electrically connected to the sensing unit 331. The motor may rotate or move the sensing unit 331 to the second position. The extent of adjusting the sensing unit 331 through the motor may be manually controlled. Alternatively, the motor is connected with the first controlling unit 337 for receiving a control signal issued from the first controlling unit 337. After the adjusting instruction is transmitted from the display device 31 and received by the first transceiver unit 335, the motor is controlled by the first controlling unit 337 to adjust the position of the sensing unit 331 according to the adjusting instruction.
Hereinafter, the internal configurations of a pointing device will be illustrated by referring to a pen mouse.
In
The above embodiments are illustrated by adjusting the position of the sensing unit through the modulation structure. In some embodiments, a manual control element (not shown) may be disposed on the casing 339 of the pointing device 33 and connected with the modulation structure 333. An example of the manual control element includes but is not limited to a button or a knob. Through the manual control element, the modulation structure 333 is controlled to adjust the position of the sensing unit 331. It is to be noted that numerous modifications and alterations of the modulation structure 333 may be made while retaining the teachings of the invention. For example, the modulation structure 333 may be a track, a gear, a reel or another structure capable of driving movement of the sensing unit 311. In other words, any structure capable of moving or rotating the sensing unit 311 may be used as the modulation structure 333.
In the above embodiments, the position of the sensing unit 331 of the pointing device 33 is adjusted through the modulation structure 333. It is to be noted that numerous modifications and alterations of the way of communicating the pointing device and the display device may be made while retaining the teachings of the invention.
Furthermore, the pointing device 33 may have auto-adjusting function for individual user. The adjusting information, for example offset angle of the sensing unit 331, may be recorded in a memory unit (not shown) of the pointing device 33. The memory unit is electrically connected with the first controlling unit 337 for recording associated information. After the controlling method of the pointing device 33 of the present invention is implemented, the information associated with the optimal position of the sensing unit 331 will be recorded in the memory unit. Once the pointing device 33 is operated by the designated user, the sensing unit 331 can be adjusted to the desired position (e.g. the second position) through the modulation structure 333 according to the recorded information.
The above description is given by way of example, and not limitation. Given the above disclosure, one skilled in the art could devise variations that are within the scope and spirit of the invention disclosed herein, including configurations ways of the recessed portions and materials and/or designs of the attaching structures. Further, the various features of the embodiments disclosed herein can be used alone, or in varying combinations with each other and are not intended to be limited to the specific combination described herein. Thus, the scope of the claims is not to be limited by the illustrated embodiments.
Number | Date | Country | Kind |
---|---|---|---|
098144302 | Dec 2009 | TW | national |