The invention will be described in detail in the following description of preferred embodiments with reference to the following figures.
The invention relates to integration of an auxiliary display into a computer input device. Such a computer input device with auxiliary display can feedback a smaller window of a larger display (virtual or physical). The invention relates to a device and a method of using the device that involves a display, a processor, memory, input from buttons and movement sensors. A direct 1:1 relationship between position movement and change in the auxiliary display image gives the user greater pointing control and is limited only by the stored image data. This device can be used to augment or replace a larger physical display of a remote computer. It can also be incorporated with other hand held functionality (cell phone, GPS or media player) for a stand alone unit to open up a large screen of information relating to the local functionality.
In the case of a mouse as the computer input device, as the device is moved the display integrated into the mouse shows a window (i.e., a subset) of the display data that also moves. Movement of the mouse directly correlates to displaying a moving content within the window displayed on the auxiliary display of the mouse. The moving content so displayed is dependant upon motion of the mouse. Motion actuation and window display are preferably, but not necessarily, calibrated to give a 1:1 relationship between the motion of the input device and the change in window display, giving the illusion that the computer input device converts a flat surface into a large screen at the point of the open window. This 1:1 relationship helps to replicate a large display, such as that for fine detail work, such as drawing or handwriting input data. The user may rely on the 1:1 relationship of the auxiliary display for improved accuracy of the display's response to movement.
The auxiliary display can also be used to augment the main computer system display with extra display information that, because of the display of the computer input device, need not be shown on the main computer system display, such as toolbars, menus or workspaces. The need for a much larger primary display is thereby reduced, and the cost and energy consumption are also reduced. In both cases, the information to be displayed is larger than the content of the window, motion changes the window content and opens up to all areas of the larger content. In confined working conditions or for privacy consideration a small auxiliary display can be used only and hence can replace the large display.
The invention involves a display, a processor, memory, input from buttons and movement sensors. Several of these properties are communal with other hand held devices, such as cell phones, media player, PDAs, and GPS systems. The combination of these devices offer the opportunity to decrease the number of devices on the road. In the case of a cell phone, media player, PDA or GPS system, the use of a small window to gain access to larger content can also be used to gain access to the internal content of the cell phone, media player, PDA or GPS system, improving the user experience of these devices.
A hand-held device includes a display, a position sensor, a communication port operable to receive screen image data, and a processor. The processor is operable to determine a new cursor position in response to a change of position detected by the position sensor. Additionally, the processor is operable to display on the display a window of an image positionally referenced to the new cursor position in response to screen image data when the hand-held device is operated in a remote mode. Alternatively, the processor is operable to display on the display a local image in response to local image data and a cursor icon overlaid on the local image when the hand-held device is operated in a local mode. The local image displayed represents a fractional portion of the local image data that is selected in response to the new cursor position. Representing a fractional portion of the local image data, the local image displayed moves under the overlaid cursor icon in response to changing positions of the position sensor.
In an example of the hand-held device, the hand-held device is coupled to a computer system. The processor is additionally operable to send the new cursor position to the computer system and to receive the screen image data from the computer system.
In a variant of this example, an apparatus that includes such a hand-held device, also includes the computer system. The computer system is operable to generate the screen image data based on the new cursor position and to send the screen image data to the hand-held device.
In an embodiment of this variant, the screen image data from the computer system includes either on-screen image data or off-screen image data or both. The computer system is operable to select the screen image data from the on-screen image data when the computer system is operated in an on-screen mode. The computer system is operable to select the screen image data from the off-screen image data when the computer system is operated in an off-screen mode. The computer system is also operable to send the selected screen image data to the hand-held device.
In an example of this embodiment, the computer system is further operable to send an identification that the computer system is operating in either the on-screen mode or the off-screen mode.
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In further examples of the invention, the computer system includes a machine-readable medium that in turn includes sets of instructions operable in the computer system to cause the computer system to perform operations of the several methods discussed herein.
Collectively, the medium operable in the hand-held device and the medium operable in the computer system constitute machine-readable media.
Having described preferred embodiments of a novel hand held device and method of using such a device (which are intended to be illustrative and not limiting), it is noted that modifications and variations can be made by persons skilled in the art in light of the above teachings. It is therefore to be understood that changes may be made in the particular embodiments of the invention disclosed which are within the scope of the invention as defined by the appended claims.