Abstract:
A handheld digital camera device including: a digital camera unit having a first image sensor for capturing images and a color display for displaying captured images to a user; an integral processor configured for: controlling operation of the first image sensor and color display; decoding an imaged coding pattern printed on a substrate, the printed coding pattern employing Reed-Solomon encoding; and performing an action in the handheld digital camera device based on the decoded coding pattern. The decoding includes the steps of: detecting target structures defining an extent of a data area; determining the data area using the detected target structures; and Reed-Solomon decoding the coding pattern contained in the determined data area.
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 portable hand-held device is provided having an image sensor for capturing images, and a processor chip for image processing the images captured by the image sensor. The processor chip has an on-chip interface for receiving the captured images and four interconnected processing units configured to process the received images.
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 quad-core processor for use in a hand-held device with a CMOS image sensor. The quad-core processor has an image sensor interface for receiving data from the CMOS image sensor and four processing units interconnected with each other for parallel processing of data from the image sensor interface. The four processing units and the image sensor interface are integrated onto a single chip.
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. The image sensor interface provides communication between the micro-controller and the image sensor. The bus interface provides communication between the micro-controller and devices external to the micro-controller other than the image sensor. Communication between the image sensor interface and the micro-controller is conducted entirely on the shared wafer substrate.
Abstract:
A quad-core processor for a hand-held device with a color display, has an image sensor interface for receiving data from an image sensor, four interconnected processing units for color converting the data from the image sensor interface into a color space for the color display and, a color display interface for outputting color converted data to the color display. The four processing units, the image sensor interface and the color display interface are integrated onto a single chip.
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 multi-core processor is used in a portable device that has first and second image sensors spaced from each other for capturing images of a scene from slightly different perspectives. The multi-core processor has a first image sensor interface for receiving data from the image sensor, a second image sensor interface for receiving data from the second image sensor, multiple processing units and, the four processing units and the first and second sensor interfaces being integrated onto a single chip. The processing units are configured to simultaneously process the data from the first and second image interfaces to generate stereoscopic image data.
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.