The present invention relates generally to the field of projector mounting systems. More particularly the present invention relates to devices for mounting both a projector and a display screen to a mounting surface.
This section is intended to provide a background or context to the invention that is recited in the claims. The description herein may include concepts that could be pursued, but are not necessarily ones that have been previously conceived or pursued. Therefore, unless otherwise indicated herein, what is described in this section is not prior art to the description and claims in this application and is not admitted to be prior art by inclusion in this section.
Various systems for mounting projectors are known, with the projectors being used to display images on a screen or surface. Some such mounting systems provide for mounting or resting the projector on a table or a fixture rising above the floor in front of the screen. Other such systems are configured to suspend the projector from a ceiling in front of the screen. Still other systems mount the projector from a wall adjacent to the screen. With each of these systems, the projector is generally positioned between the user and the screen and between the viewing audience and the screen. Accordingly, the projector may interfere with the ability of at least a portion of the audience to view the projected images on the display screen. Further, light from the projector, which may be intense, may be in the line of sight of the user of the projector, causing discomfort or visual strain. Additionally, when the user stands before the display screen, the projector may cast the user's shadow onto screen, detracting from audience's attention or enjoyment of the projected images.
To overcome limitations of using conventional projectors, various “short-throw” projectors have been developed that permit a projector to be positioned relatively near to a display screen but still provide a relatively large projected image. When properly mounted, such projectors may mitigate interference effects with the audience, operator discomfort, and shadow effects associated with conventional projectors.
Various embodiments of the present invention comprise systems for mounting a projector and a display screen to a mounting surface. Embodiments of the system are selectively adjustable such that position of the projector and/or the display screen may be adjusted in relation to the mounting surface.
In one set of embodiments, the projector mount comprises a mounting bracket adapted for attachment to a mounting surface such as a wall, ceiling, floor, or fixture surface. The mounting bracket is configured to be operatively connected to a display screen and a projector. The projector mount may further comprise a carriage operatively connected to the mounting bracket and slidingly constrained in relation to the mounting bracket. The carriage is generally selectively slidable in relation to the mounting surface in a plane substantially parallel to the mounting surface. A biasing member operatively connected to mounting bracket and the carriage may further be provided to retain the position of the carriage in relation to the mounting bracket. The carriage may be adapted to operatively connect to the display screen. One or more intermediate brackets and/or adapters may be use to facilitate the connection between the carriage and the display screen. Accordingly, the display screen may be selectively slidable with the carriage in relation to the mounting surface.
The projector mount may further comprise a projector support operatively connected to the mounting bracket. The projector support may be adapted to operatively connect to the projector and is generally configured to orientate the projector relative to the display screen such that an image may be projected by the projector onto the display screen. The projector support may further be operatively connected to the carriage and thus selectively slidable with the carriage in relation to the mounting surface. The biasing member may be configured to balance the weight of the carriage, the display screen, the projector support and the projector mount, and the projector, thereby reducing the magnitude of force required to selectively maneuver the carriage. Thus, where the display screen and the projector support are operatively connected to the carriage, the orientation of the projected image remains substantially fixed in relation to the display screen regardless of the orientation of the display screen in relation to the mounting surface.
Thus, various embodiments provide a projector mount that efficiently orientates a projector in relation to a display screen, such as a projection screen or a white board. Various embodiments further provide for an adjustable mount that permits the display screen to be selectively positioned in relation to the mounting surface without requiring adjustment of the projector. For instance, a user may find that a particular display screen height is optimal for displaying projected images, while another height is better suited to marking on the display screen. Similarly, each user may have a preferred display screen position. Accordingly, embodiments provide a projector mount that permits efficient repositioning of the display screen to suit a user and/or the viewing audience but does not disrupt the orientation of the projected image in relation to the display screen.
These and other advantages and features of the invention, together with the organization and manner of operation thereof, will become apparent from the following detailed description when taken in conjunction with the accompanying drawings, wherein like elements have like numerals throughout the several drawings described below.
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The carriage 150 may further include a plurality of holes 152 adapted to mount a display screen or an intermediate display screen adapter to the carriage 150. In the embodiment depicted in
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The display screen 50 is readily attached and removed from the projector mount 10 through the above described mounting arrangement. An optional security screw 68 may be used to secure the display screen 50 to the projector mount 10. Other embodiments of the mounting bracket 100 may be constructed where the display screen 50 screen and/or an intermediate adapter or bracket is directly or operatively connected to mounting bracket 100.
A projector may be mounted to the projector mount 10 for orientation of the projector in relation to the display screen 50. The projector support 180 may be operatively connected to the mounting bracket 100. The projector support 180 generally comprises an elongated member with a substantially circular or other cross-section and may comprise a tube or other member. With reference to
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A projector is operatively connected to a second end 182 disposed substantially opposite the first end 181 of the projector support 180. With reference to
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The projector bracket 190 may comprise an adjustable mounting bracket that permits selective orientation of the projector 70 in one or more directions in relation to the projector mount 10. In an embodiment, the projector bracket 190 allows for selective orientation of the projector 70 in at least two degrees of freedom. For example, the projector bracket 190 may be configured to permit rotation of the projector 70 about a first axis substantially normal to the display screen 50 and rotation about a second axis substantially parallel to the display screen. Various other embodiments of the projector bracket 190 may be constructed permitting rotation and/or translation of the projector 70 in relation to the projector mount 10.
Use of the projector mount 10 orientates the projector 70 and its projected image in relation to the display screen 50. Where the projector mount 10 includes the carriage 150, the position of the display screen may be selectively orientated in relation to the mounting surface. Thus, in an embodiment, the position of the display screen 50 may be adjusted to move the display screen 50 to suit a user's and/or a viewing audience's preferred height or horizontal position. Similarly, the projector mount 10 may be used to move the display screen 50 between a viewing position and a storage position. The position of the display screen 50 may be moved manually by an operator. The operator grasps a portion of the display screen 50 or the horizontal handle 168 and translates the display screen 50 to a position in relation to the mounting surface. The carriage 150 slides in relation to the mounting bracket 100 in response to the operator's action, thereby simultaneously repositioning the projector 70. The one or more biasing members 120 act to retain the position of the carriage 150 in relation to the mounting bracket 100 until a user again repositions the display screen 50, eliminating the need for the user to engage an additional apparatus to fix the position of the display screen 50. The biasing force of the one or more biasing members 120 also assists in maneuvering the display screen 50 and projector 70 during repositioning, thereby reducing the force that the user must apply to reposition the display screen 50. Additionally, the projector mount 10 may further comprise a motor operatively coupled to the carriage 150 for automated movement of the display screen 50 and the projector 70. The projector mount 10 may further comprise a remote control device to control the operation of the motor.
Where the projector 70 and the display screen 50 are operatively coupled to the projector mount 10, the orientation of the projected image in relation to the display screen 50 remains substantially fixed. Thus, the display screen 50 may be selectively positioned as desired without requiring adjustment or reorientation of the projector 70 or the projected image.
The foregoing description of embodiments of the present invention have been presented for purposes of illustration and description. It is not intended to be exhaustive or to limit the present invention to the precise form disclosed, and modifications and variations are possible in light of the above teachings or may be acquired from practice of the present invention. The embodiments were chosen and described to explain the principles of the present invention and its practical application to enable one skilled in the art to utilize the present invention in various embodiments and with various modifications as are suited to the particular use contemplated. The features of the embodiments described herein may be combined in all possible combinations of methods, apparatus, modules and systems.