The present invention relates generally to computer workcenters and, more specifically, to a corner computer workcenter designed such that the CPU of a computer is positioned just below the monitor thereof and beyond a work surface of the workcenter for ease of access to the CPU and computer peripherals.
Various types of computer workcenters designed to accommodate the components of a computer, including a monitor, CPU, I/O and other peripherals, and perhaps a printer, and including a work surface are known in the art. It is typically advantageous to design such workcenters such that they may be easily positioned in the corner of a room, so as to take up as little space as possible.
Typically, such workcenters suffer from several deficiencies. In particular, the CPU is generally positioned in an inconvenient location or an inconvenient distance from the monitor and/or work surface, such that the cables provided with the computer are not of sufficient length to enable proper use or connection of the peripheral devices. Additionally, the ports are often difficult for the user to access due to the positioning of the CPU within the workcenter. Still further, when the CPU is positioned close to the floor, as is typically the case, access to media drives, as well as power switches, is inconvenient. Finally, if the CPU is enclosed in a cabinet of the workcenter, it may be difficult, if not impossible, to provide sufficient ventilation for the unit.
Moreover, because corner computer workcenters are, by definition, designed for placement in a corner of a room, it is often difficult to access the back of the computer components where many of the ports and connectors are located. Because of the size of the workcenter, in addition to the weight of the computer, it is next to impossible for one person to move the workcenter once it and the computer are in place.
Therefore, what is needed is a computer corner workcenter that addresses one or more of the above-described problems.
A corner computer workcenter is provided that includes an arrangement for positioning a CPU of a computer proximate to a monitor, keyboard, and other peripheral devices thereof and at a height with respect to the user that facilitates access to media drives and power switches.
In one example, the corner computer workcenter includes a first horizontal surface for supporting a computer monitor, a second horizontal surface comprising a work surface located in front of and beneath the first surface, and a third horizontal surface located below the work surface for supporting a computer keyboard and other input devices. A shelf is included for positioning a CPU of the computer just below the monitor and behind the work surface and keyboard support surface so that cables provided with the computer for connecting the monitor, keyboard, and other input devices to the CPU are of sufficient length to serve their intended purpose. Casters are provided at each side of the bottom, rear of the workcenter to facilitate access to the rear of the CPU and other computer components.
The workcenter may thus position the CPU in a convenient location for enabling the user to access media drives and switches and in proximity to the monitor and/or work surface, so that the cables provided with the computer are of sufficient length to enable proper use and connection of the peripheral devices. Additionally, the ports may be rendered more accessible to the user due to the positioning of the CPU within the workcenter. Moreover, because the CPU is not completely enclosed within a cabinet of the workcenter, sufficient ventilation is provided.
a is a front perspective view of the corner computer workcenter of the present invention.
b is an overhead, front view of the corner computer workcenter of the present invention.
Referring to
The second horizontal surface 20 is connected over a second pair of parallel, spaced, vertically-extending sidewalls 24, which also function as legs for the workcenter 10. An aperture 25 is defined by the surface 20 through which the CPU 18 may extend. The third horizontal surface 22 is connected below the second horizontal surface 20 between the sidewalls 24 via slide guides 26, thus enabling a user positioned in front of the workcenter 10 to slide the surface 22 out toward the user, in a direction indicated by an arrow 28a (
CD racks 32 may also be provided in one example, for holding compact disc media in a convenient and organized fashion to the left and right of the CPU 18. As best shown in
As previously indicated, because the workcenter 10 positions the CPU 18 directly below the monitor 14 and behind the work surface 20, the user has greater access to the front of the CPU, such that loading media into drives and accessing ports, switches, etc., is easy and convenient. Moreover, positioning the monitor 14, keyboard, and other input devices in close proximity to the CPU 18 helps ensure that the cables provided with the devices will reach the CPU and that special length cables will not be required, as is often the case when the CPU is situated at ground level. Additionally, the workcenter 10 is semi-mobile, due to the positioning of the casters 34 on the bottom rear thereof, thus enabling movement of the workcenter when the computer and related components thereof are installed, replaced, or serviced and eliminating the need for the person performing such tasks to crawl under or squeeze behind the workcenter. Finally, the shelf 16 on which the CPU is supported within the workcenter 10 provides improved ventilation for heat dissipation.
Accordingly, in one example of the workcenter 10, the CPU 18 is positioned in a convenient location for enabling the user to access media drives and switches (not shown) and in proximity to the monitor 14 and/or work surface 20, such that the cables provided with the computer are of sufficient length to enable proper use and connection of the peripheral devices. Additionally, computer ports are rendered more accessible to the user due to the unique positioning of the CPU 18 within the workcenter 10 and mobility of the workcenter. Moreover, because the CPU 18 is not completely enclosed within a cabinet of the workcenter 10, sufficient ventilation is provided. Finally, the casters 34 provided on the bottom rear of the workcenter facilitate movement of the workcenter 10, thereby enabling access to the rear of the CPU 18 and other components.
It is understood that variations may be made in the foregoing without departing from the scope of the present invention. For example, the shelf 16 need not be adjustable; rather, its vertical height may be fixed. It is further understood that other modifications, changes and substitutions are intended in the foregoing disclosure and in some instances some features of the invention will be employed without a corresponding use of other features. Accordingly, it is appropriate that the appended claims be construed broadly and in a manner consistent with the scope of the invention.
The present application is a continuation of, and claims priority to, U.S. patent application Ser. No. 09/952,562, entitled CORNER COMPUTER WORKCENTER, filed Sep. 12, 2001, now U.S. Pat. No. 6,824,230, the entire disclosure of which is incorporated herein.
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Number | Date | Country | |
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Parent | 09952562 | Sep 2001 | US |
Child | 10893051 | US |