IP Library Patent Application 12983168
Patent Application
App. No. 12/983,168

Large, Ultra-Thin And Ultra-Light Connectable Display For A Computing Device

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Quick Facts
Patent No.
US None
App. No.
12/983,168
Abstract

Methods and apparatus to create and display screen stereoscopic and panoramic images are disclosed. Methods and apparatus are provided to generate multiple images that are combined into a stereoscopic or a panoramic image. An image may be a static image. It may also be a video image. A controller provides correct camera settings for different conditions. An image processor creates a stereoscopic or a panoramic image from the correct settings provided by the controller. A plurality of lens/sensor units is placed on a carrier. Lens/sensor units are rotationally aligned. A controller rotationally aligns images of lens/sensor units that are rotationally misaligned. The camera is enabled to communicate via a wired or via a wireless connection, with a separate, mobile, ultrathin, ultralight, display with a large display screen not smaller than 25 by 20 cm in a first embodiment of the present invention and not smaller than 20 by 15 cm in a second embodiment of the present invention to provide color images including video images in real-time. A compact controllable platform to hold and rotate a device with a lens/sensor unit is also provided.

Claims (40)

1 . A large, thin, portable and mobile display communicatively connectable to a portable and mobile computing device, comprising:

a housing, having a thickness not greater than 7 mm;

a receiver to receive a signal generated by the computing device;

a processor authorized to process the signal generated by the computing device;

a screen in the housing enabled to display a video image in real-time in response to the signal generated by the portable computing device received by the display, the screen having a size not smaller in area than 300 cm 2 ; and

the display having a weight that does not exceed 12 ounces.

2 . The display of claim 1 , wherein the housing has a thickness not greater than 5 mm.

3 . The display of claim 1 , wherein the housing has a thickness not greater than 4 mm.

4 . The display of claim 1 , wherein the screen has a size not smaller in area than 500 cm2.

5 . The display of claim 1 , wherein a communication connection with the portable computing device is a wireless connection.

6 . The display of claim 1 , wherein a communication connection with the portable computing device is a wired connection.

7 . The display of claim 6 , wherein the portable computing device powers the display through the wired connection.

8 . The display of claim 1 , wherein the computing device has a volume that is not larger in volume than 50 cm 3 .

9 . The display of claim 1 , wherein the computing device is a stand alone camera.

10 . The display of claim 1 , wherein the computing device is a mobile camera phone.

11 . The display of claim 1 , further comprising:

a positional sensor to generate a signal corresponding to a change of position of the display;

a portable and mobile platform that is enabled to be removably attached to a structure or an object, the platform containing:

a holder to hold the computing device; and

at least one actuator that is controlled by a signal corresponding to the signal generated by the positional sensor.

12 . A computing system, comprising:

a mobile computing device containing a processor, data memory, at least one lens/sensor unit, and a communication interface;

a mobile computer display separate from the mobile computing device with a screen size that is not smaller in area than 300 cm 2 enabled to display a video image in color in real-time generated by the at least one lens/sensor unit, the computer display having a body with a thickness not exceeding 7 mm and a communication interface; and wherein

the communication interface of the mobile computing device is enabled to communicate directly and uniquely with the communication interface of the mobile computer display.

13 . The computing system of claim 12 , wherein the communication interface of the mobile computing device is enabled to communicate wirelessly with the communication interface of the mobile computer display.

14 . The computing system of claim 12 , wherein the communication interface of the mobile computing device is enabled to communicate via a wired connection with the communication interface of the mobile computer display to provide power from the mobile computing device to the mobile computing display.

15 . The computing system of claim 12 , wherein the mobile computing device is a stand alone camera.

16 . The computing system of claim 12 , wherein the mobile computing device is a mobile camera phone.

17 . The computing system of claim 12 , wherein the mobile computing device contains at least two lens/sensor units enabled to generate a single image composed from at least two images.

18 . The computing system of claim 12 , further comprising:

a mobile platform rotatable in at least one plane of rotation that is separate from the mobile computer display, that is enabled to hold the mobile computing device and that is attachable to an object or structure and; and

an actuator in the mobile platform that is controlled by a positional sensor attached to the mobile computer display.

19 . The computing system of claim 18 , further comprising:

a processor programmed to track an image recorded by the mobile computing device of a moving object and programmed to control the actuator in the mobile platform to maintain an image of the object on the screen of the mobile computer display.

20 . A mobile platform, comprising:

a fixture enabled to be removably attached to an object or a structure;

a housing containing circuitry to process a signal associated with a signal generated by a positional sensor attached to a remote computer display with a screen;

at least one remotely controlled actuator;

an arm that is enabled to be rotatably moved by the at least one remotely controlled actuator based on the signal associated with the signal generated by the positional sensor attached to the remote computer display; and

a device holder attached to the arm enabled to hold a computing device that includes at least one lens/sensor unit that is enabled to provide a video image to be displayed in real-time on the screen of the remote display.