SYSTEM FOR PACKAGING A PORTABLE COMPUTER
20220357768 · 2022-11-10
Inventors
Cpc classification
G06F1/1607
PHYSICS
G06F1/1679
PHYSICS
International classification
Abstract
A portable computer system comprising at least two flat screen displays that is configurable so that in a stowed state, the system is conveniently carried and the flat screens are protected.
Claims
1. A computer system comprised of: a first housing comprised of a first side and a second side, the first side comprised of a first flat screen, and the first housing further comprised of a first articulated stand component adjustably attached to the first housing; a second housing comprised of a third side and a fourth side, the third side comprised of a second flat screen and the second housing further comprised of a second articulated stand component adjustably attached to the second display component; at least one attachment mechanism comprising either said first housing or said second housing, said attachment mechanism comprised of a slot running at least partly along the periphery of the first or second housing on the first side or third side, respectively, between the edge of the first or second housing, respectively and the corresponding first flat screen and second flat screen, respectively, and further comprised of a tongue running at least partly along the periphery of the second or first housing on the third side or first side, respectively, between the edge of the second or first housing, respectively and the corresponding second flat screen and first flat screen, respectively, said tongue configured to enter into the slot in a stowed state with an orientation where the first side faces the third side, said first housing and second housing configured to hold the first side away from the third side, by a predetermined distance in the stowed state and where said attachment mechanism is configured to release the first housing from the second housing in a deployed state; and a computer module comprising either the first housing or the second housing.
2. The computer system of claim 1 where the articulated first stand component and the second articulated stand component that in the deployed state supports the respective first flat screen and second flat screen in a substantially vertical position and in the stowed state fold against a corresponding first and second corresponding areas of the corresponding first and second housing.
3. The computer system of claim 2 where the corresponding first or second housing is further comprised of a handle assembly that is configurable to fold into a top edge of the corresponding first or second housing.
4. The system of claim 1 where the attachment mechanism is comprised of a tongue member that protrudes from the first housing and is positioned such that the tongue member enters a slot that comprising the second housing when the first housing and second housing are mated together to place the system in the stowed state.
5. The system of claim 1 where the attachment mechanism is further comprised of a locking mechanism that in the stowed state prevents the tongue from sliding out of the slot, and then selectably permits the tongue to slide out of the slot when the system is being transformed into the deployed state.
6. The system of claim 1 where the attachment mechanism is further comprised of at least one locking flap, said locking flap comprised of a first end that is attached to the first housing by a movable hinge and a second end that when the system is placed in the stowed state, the second end of the locking flap extends into a locking mechanism comprising the second housing.
7. The system of claim 1 where the attachment mechanism is comprised of a grooved shelf comprising an at least one first edge of the first housing that when the system is placed in the stowed state, receives a second edge portion of the second housing.
8. The system of claim 7 where the attachment mechanism is further comprised of either at least one locking flap or at least one tongue and slot pair.
9. The system of claim 8 where the attachment mechanism is comprised of at least one locking flap that comprises an edge opposite the first edge that further comprises either the first or second display component housings.
10. The system of claim 1 where the attachment mechanism is comprised of a first tongue and slot and a second tongue and slot situated proximate to a corresponding first and second corners sharing a first edge of the corresponding first and second housings and a first locking flap and a second locking flap comprising a second edge of the first and the second housings that is opposite to the first edge.
11. The system of claim 1 further comprising a spacing mechanism that in the stowed state maintains a separation or otherwise minimizes a stress between a first surface comprising the first flat screen and a second surface comprising the second flat screen.
12. The system of claim 11 where the spacing mechanism is a spacer strip that extends along at least one edge of at least the first flat screen or the second flat screen.
13. The system of claim 12 where the spacer strip is comprised of a resilient material.
14. The system of claim 11 where the spacing mechanism is comprised of the attachment mechanism.
15. The system of claim 14 where the spacing mechanism is comprised of a tongue member that protrudes from the first housing and is positioned such that the tongue member enters a slot that comprises the second housing when the first housing and second housing are mated together to place the system in the stowed state and the tongue member is of sufficient length to slide into the slot on the second housing and lock into place while the first screen surface does not touch the second screen surface, and is locked so as to inhibit motion of the tongue further in or out of the slot.
16. The system of claim 1 further comprising a bumper that substantially surrounds the four edges of the mated first and second display components, said bumper configured to substantially block dust or moisture from entering the space between the first and second flat screens when the system is in the stowed state.
17. The system of claim 11 where the spacer mechanism is at least one stand-off mounted proximate to at least one corner of the first or second housing, said stand off protruding from the surface of the respective first or second housing to hold the first and second screen surfaces away from each other by a predetermined distance when the system is in the stowed state.
18. The system of claim 1 where the first display component and second display component are further comprised of a corresponding first and second housing and the first display component housing is comprised of a shape that forms a first interlocking edge that protrudes along all four edges of the housing perpendicular to the plane of the first flat screen, and the second display component housing is comprised of a shape that forms a second interlocking edge that protrudes along all four edges of the second component housing perpendicular to the plane of the second flat screen such that when the system is in the stowed state, the first interlocking edge mates with the second interlocking edge.
19. The system of claim 18 where the first display component housing is shaped to form a protruding lip that protrudes along all four edges of the first display component housing, perpendicular to the plane of the flat screen comprising the first display component, and configured so that in the stowed state, the four outer edges of the second display component housing slides into place within an interior of the four edges of the protruding lip that is proud of a first display component surface.
20. The system of claim 1 further comprising a keyboard module that is comprised of an attachment mechanism that selectably attaches the keyboard module to the first module or the second module in the stored state and is detachable from the corresponding first module or second module when in the deployed state.
Description
DESCRIPTION OF THE FIGURES
[0004] The headings provided herein are for convenience only and do not necessarily affect the scope or meaning of the claimed invention. In the drawings, the same reference numbers and any acronyms identify elements or acts with the same or similar structure or functionality for ease of understanding and convenience. To easily identify the discussion of any particular element or act, the most significant digit or digits in a reference number refer to the Figure number in which that element is first introduced (e.g., element 101 is first introduced and discussed with respect to
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DETAILED DESCRIPTION
[0016] Various examples of the invention will now be described. The following description provides specific details for a thorough understanding and enabling description of these examples. One skilled in the relevant art will understand, however, that the invention may be practiced without many of these details. Likewise, one skilled in the relevant art will also understand that the invention can include many other features not described in detail herein. Additionally, some well-known structures or functions may not be shown or described in detail below, so as to avoid unnecessarily obscuring the relevant description. The terminology used below is to be interpreted in its broadest reasonable manner, even though it is being used in conjunction with a detailed description of certain specific examples of the invention. Indeed, certain terms may even be emphasized below; however, any terminology intended to be interpreted in any restricted manner will be overtly and specifically defined as such in this Detailed Description section.
[0017] The invention is comprised of two computer display screen components, (101, 102) which may be comprised of LCD flat screens (or similar technology) with foldable stands (103, 104) affixed thereto. The first of the screen components has a computer module within it that is in communication with a keyboard (105) or other input device component, a mouse (106) or other pointing input device component, and also in communication with the second display screen component. The computer module may be comprised of a microprocessor, a local random access data memory device, a mass data storage device, an input and output interface device and a communication portal device. The computer module may be comprised of a printed circuit card that is mounted within the housing of either the first or the second display component. The invention is configured to be usable in two states. In a preferred embodiment, the invention is comprised of two flat display screens that, in a first state have two separate stands that preferably unfold from the housing of the display screen components in order that the two display screens stand upright on a flat surface (
[0018] The communication between the system components may be accomplished by wires, for example, USB cables that run between the first display screen component housing and the other components. In this configuration, the first display component (102) is comprised of a computer module housed within the display component housing (202) that can transmit data to the second display screen (101) for display on that screen. Further, the keyboard component (105) and mouse component (106) can transmit cursor position data, keying data and relative motion or scrolling data into the computer for use by computer programs being executed by the computer.
[0019] Alternatively, each component may be comprised of a wireless bi-directional communication circuit, for example, a Bluetooth circuit. The keyboard and mouse input components may be comprised of a battery holder and power circuitry so that in use, a battery may be inserted into the component that powers the component. The data communications between the components may be accomplished using a communication protocol between the components. The first display unit comprised of a computer may also be comprised of a power input connection (201) that is part of a circuit to deliver power to the computer as well as the display and a wired data network connection, in one embodiment, an Ethernet™ jack. (601). The second display component may also be comprised of a power connection and further be comprised of a circuit that delivers power to the flat panel display.
[0020] In the second, stowed state, the two screens face each other (
[0021] In the stowed state, the attached display components (101, 102) have the overall appearance of a case that protects both screens comprising the first and second display components.
[0022] In another embodiment, the first and second display components may be held together in the stowed state by at least one hinged locking flaps.
[0023] In yet another embodiment (
[0024] In a preferred embodiment, the first and second display components, when mated in the stowed state, do not shove the two surfaces of their respective display flat screens against each other, or otherwise permit substantial touching and rubbing between the surfaces of the flat screens. To prevent this condition, a spacing mechanism is utilized that maintains a separation or otherwise minimizes the stress between the two display flat screen surfaces in the stowed state. In one embodiment (
[0025] In another embodiment, the locking mechanism performs the function of the spacing mechanism. In one embodiment, the tongue and slot mechanism may be used to keep the display flat screens surfaces separated when the system is in the stowed state.
[0026] In embodiments where the locking mechanism performs the function of the spacing mechanism, there is a fender that surrounds the four edges of the mated display components. The fender blocks dust and moisture from entering the space between the two flat screens. In this embodiment, the fender may be comprised of flexible material, like rubber or plastic foam that forms a perimeter around the flat screens that comprise the first and second display components. In one embodiment, the attachment locking mechanism is within the perimeter of the fender. In another embodiment, the locking mechanism is outside that perimeter. In yet another embodiment, the first display component housing is comprised of a shape that forms a first interlocking edge that protrudes along all four edges of the housing perpendicular to the plane of the first flat screen, and the second display component housing is comprised of a shape that forms a second interlocking edge that protrudes along all four edges of the housing perpendicular to the plane of the second flat screen such that when the system is in the stowed state, the first interlocking edge mates with the second interlocking edge. This can both maintain separation between the flat screen surfaces and prevent dust or moisture entering the space between them. In one embodiment, the housing of a first of the display components can be shaped to form an interlocking lip that protrudes along all four edges of the housing perpendicular to the plane of the flat screen comprising the first display component, and configured so that in the stowed state, the four outer edges of a second of the two display components slides into place within interior side of the four edges of protruding lip that is proud of the first display component surface. In this embodiment, the protruding lip along the bottom of the first display component may further function as the groove shelf described above.
[0027] In yet another embodiment, the first or second display component housing may be shaped to hold one or two compartments configured to stow the mouse (106) or any cabling.
[0028] The foregoing description discloses only exemplary embodiments of the invention. Modifications of the above disclosed apparatus and methods which fall within the scope of the invention will be readily apparent to those of ordinary skill in the art. Accordingly, while the present invention has been disclosed in connection with exemplary embodiments thereof, it should be understood that other embodiments may fall within the spirit and scope of the invention as defined by the following claims.