Abstract:
Described herein is an IR camera that can prepare a report on-board the camera in a standard file format that is substantially universally readable by a number of receiving devices, including but not limited to computers. The report preferably includes at least one IR image, at least one visual image and a table that can be populated with the output of any of the camera's measurement functions or any parametric information (time, date, emissivity, background temperature, GPS location, etc.). The report may also include text, voice, and/or visual/graphical comments and recommendations. The comments may be added directly to the report or hyperlinked to the report.
Abstract:
This invention relates to creating a narrative description of media content. In an embodiment, a computer-implemented method describes content of a group of images. The group of images includes a first image and a second image. A first object in the first image is recognized to determine a first content data. A second object in the second image is recognized to determine a second content data. Finally, a narrative description of the group of images is determined according to a parameterized template and the first and second content data.
Abstract:
A handheld imaging device includes an image sensor for sensing an image; a processor for processing the sensed image; a plurality of processing units provided in the processor, the plurality of processing units connected in parallel by a crossbar switch to form a multi-core processing unit for the processor; and an image sensor interface for converting signals from the image sensor to a format readable by the plurality of processing units, the image sensor interface sharing a wafer substrate with the processor. A transfer of data from the image sensor interface to the plurality of processing units is conducted entirely on the shared wafer substrate.
Abstract:
A portable handheld device includes an image sensor for capturing an image; an image sensor interface for receiving data from the image sensor; a DRAM for storing the data received by the image sensor interface; an image processor for storing the image the DRAM, the image processor including a plurality of micro-coded processing units; a central processor for instructing the image processor; and an orientation sensor for sensing a rotation of the protable handheld device at a time of sensing the image. The central processor is configured to load the plurality of micro-coded processing units of the image processor with micro-code for performing an affine transform of the data in the DRAM to rotate the data in the DRAM by a rotation corresponding to the rotation sensed by the orientation sensor.
Abstract:
An information conveying method is implemented by an information conveying system coupled to a first electronic device associated with a service provider and a second electronic device associated with a user. The system is programmed tor receive a reference image; create a data packet based, on to-be-conveyed information associated with the service provider, and link the data packet to the reference image; upon receiving a captured image from the second electronic device, generate a characteristic code of the captured image; determine whether the captured image matches the reference image; and when the determination made is affirmative, transmit the data packet to the second electronic device.
Abstract:
A portable hand-held device is provided having a network interface for sharing images between the device and a network, an image display for displaying the shared images, an orientation sensor for sensing an orientation of the device, and a processor for processing the displayed images based on the sensed device orientation and outputting the processed images to the image display.
Abstract:
A method includes defining a surface within a first captured image of an environment. The defined surface is identified in a second captured image of the environment. A graphic is overlaid on the surface identified in the second captured image. The second captured image is caused to be displayed to preview the graphic in the environment.
Abstract:
An image capture device that has an image sensor for capturing a scene, a multi-core processor with plurality of linked, identical processing units and an image sensor interface, all incorporated onto a single chip. The device also has an orientation sensor for sensing the device orientation. The processing units are configured for receiving data from the image sensor interface and an output from the orientation sensor, to simultaneously process the data.
Abstract:
A hand held electronic device that has a CMOS image sensor for capturing image data, a wireless device port for wireless connection to a user input device and, a central processor. The central processor has multiple processing units, an image sensor interface and a wireless device interface integrated onto a single chip. The image sensor interface receives the image data from the CMOS image sensor, and the wireless device interface being configured to receive user inputs from the wireless device port. The multiple processing units are configured to process the image data in parallel together with the user inputs from the wireless device interface.
Abstract:
A portable hand-held device is provided having a digital camera and a processor. The digital camera has two image sensors respectively arranged to capture corresponding images of the same scene. The processor image processes the images captured by the image sensors so as to output three dimensional stereoscopic images. The processor has two interfaces for respectively receiving the images captured by the image sensors.