Abstract:
An electronic device includes a substrate wafer made of many layers of an insulating material and including an electrical connection network. An integrated circuit chip is mounted to a top side of the substrate wafer. The substrate wafer further includes a metal plate that is integrated into the substrate wafer and thermally coupled to the integrated circuit chip. The metal plate may have a thickness in excess of several layers of the substrate wafer. The metal plate may include a duct through which a thermally conductive fluid flows.
Abstract:
An electronic package includes a substrate wafer with an interconnect network. A first chip is fixed to a front of the substrate, connected to the interconnect network and encapsulated by a body. A second chip is placed on a back side of the substrate wafer and connected to the interconnect network by back-side connection elements interposed between the back side of the substrate and a front side of the second chip. Front-side connection elements are placed on the front side of the substrate and connected to the interconnect network. The connection elements extend beyond the frontal face of the body. The package may be mounted on a board with an interposed thermally conductive material.
Abstract:
Each of a first and second image acquisition device includes: a circuit for providing a primary clock signal and a frequency synthesizing circuit capable of generating at least one secondary clock signal from said primary clock signal. The frequency synthesizing circuit in each image acquisition device has a fractional phase-locked loop configuration. A synchronization comparison circuit in each image acquisition device functions to compare sync between an external sync signal and an internal sync signal. An adjustment of the fraction phase lock loop operation is made in response to the sync comparison.
Abstract:
An electronic device may include a substrate, and an integrated circuit over the substrate. The substrate may be provided with an electrical connection network including electrical links for linking the integrated circuit to another electrical device. Some of the electrical links may include an impedance-compensating inductor.
Abstract:
A method for performing a modification of the color saturation of at least one pixel of an image involving: determining, based on pixel values of a first pixel, at least one of a color saturation value, luminance value and hue value corresponding to said first pixel; determining, based on said at least one value, a saturation factor; and modifying the color saturation level of said first pixel based on said saturation factor.
Abstract:
A processor system is arranged to execute user selected applications. A manager module is configured to detect a user selection of an application and configured to initiate a launch process. A supervisor module is configured to intercept the launch process initiated by the manager module and detect whether the application is a trusted application or an untrusted application. Trusted applications have a privilege to access resources without authorization, and untrusted applications do not have the privilege. The supervisor module has the privilege to access the resources. When the application is untrusted, the application is launched in a container, and at least one of the resources is delivered to the untrusted application in the container.
Abstract:
An apparatus includes an output configured to output data to a communication path of an interconnect for routing to a target and a rate controller configured to control a rate of the output data. The rate controller is configured to control the rate in response to feedback information from the target.
Abstract:
A method for controlling a pixel including at least one photodiode capable of being connected to a sense node, the method including the steps of: a) at the beginning and at the end of a first integration period included within a second integration period, controlling the pixel to transfer the charges stored in the photodiode above a first threshold onto the sense node; and b) at an intermediate time between the beginning of the second period and the beginning of the first period, controlling the pixel to transfer the charges stored in the photodiode above the first threshold onto the sense node.
Abstract:
A method for testing an analog-to-digital converter (ADC) includes applying ramps to the input of the converter, and classifying the digital codes produced by the converter according to a histogram. The converter is declared operational as soon as all the classes of the histogram have reached a minimum count. The minimum count may be equal to 1 in practice. The converter is declared defective if any class does not reach the minimum count before expiry of a time interval.
Abstract:
An apparatus includes a first clock source, a second clock source and circuitry configured to supply a clock signal to a circuit. The circuitry operates to change the clock signal from one frequency to another different frequency. This change is made in a manner whereby no clock signal is supplied during a period of time when the change from the one frequency to the another different clock frequency is being made.