Abstract:
An electromagnetic interference (EMI) shielding device includes first and second housing portions assembled along an assembly direction, at least two spaced-apart female fasteners fixed to one of the first and second housing portions, a plurality of male fasteners corresponding in number to the female fasteners and spacedly fixed to the other one of the first and second housing portions, and at least one grip member connected to one of the first and second housing portions. The grip member is applied with a force along the assembly direction or along a direction opposite to the assembly direction to engage or disengage the male and female fasteners.
Abstract:
Ligand functionalized substrates, methods of making ligand functionalized substrates, and methods of using functionalized substrates are disclosed. The ligand functionalized substrate may be described as the grafted reaction product of a substrate and a ligand monomer of Formula I:
Abstract:
Polypeptides which can be activated to cause the formation of pores in a lipid membrane are disclosed. Also disclosed are polypeptide compositions for the detection of target microorganisms and methods of using said compositions.
Abstract:
Displaying a web page on a display device is accomplished by receiving resolution information corresponding to a resolution of the display device, receiving a resolution threshold for displaying a widget element on the web page, and determining whether the resolution of the display device is less than the resolution threshold for displaying the widget element. If the resolution of the display device is not less than the resolution threshold for displaying the widget element, the widget element is displayed on the web page, wherein the web page is displayed on the display device. If the resolution of the display device is smaller than the resolution threshold for displaying the widget element, the widget element is not displayed on the web page.
Abstract:
An embodiment of the invention relates to a power converter including a resistor divider with an internal node to sense an input line voltage. The internal node is operable as a multifunctional pin. A controller compares a feedback voltage dependent on a power converter output characteristic to a current-sense signal including an offset dependent on a voltage of the internal node to control entry and exit of the power converter from burst mode operation. The node may be employed to manage power converter operation by sensing or controlling its voltage to signal operation in a standby or burst mode, to sense the input line voltage, to enable an external system to signal shutdown to the power converter, and to enable the power converter to signal a delayed restart condition to the external system.
Abstract:
Ligand functionalized substrates, methods of making ligand functionalized substrates, and methods of using functionalized substrates are disclosed.
Abstract:
A modulation domain trigger generator demodulates a modulated input signal to extract information content, and a trigger is generated from the extracted information content in response to specified trigger criteria. The modulation domain trigger generator may be combined with a plurality of different types of trigger generators, including frequency domain and time domain trigger generators, to process the input signal in response to different trigger criteria to produce more than one trigger. The different trigger outputs may be combined to produce an acquisition trigger to acquire data surrounding an anomalous or identifiable event within the input signal.
Abstract:
Some embodiments of the invention include an integrated circuit having a node or pin to detect a first information during a first a detection period and to detect a second information during a second detection period. In some embodiments, the information at the pin may allow the integrated circuit to operate in a quasi-resonant operation. Other embodiments are described and claimed.
Abstract:
A device includes a memory device and an NPN or PNP diode coupled to a word-line of the memory device. The NPN diode includes a p-type substrate connected to ground, a well of n-type material formed in the p-type substrate in direct physical contact with the p-type substrate and electrically connected to the p-type substrate via a first metal line, a well of p-type material formed in the first well of n-type material, a first n-type region formed in the well of p-type material in direct physical contact with the well of p-type material and connected to the word line of the memory device, and a first p-type region formed in the well of n-type material in direct physical contact with the well of n-type material and electrically connected to the well of p-type material via a second metal line. The PNP diode includes a n-type substrate connected to ground, a well of p-type material formed in the n-type substrate in direct physical contact with the n-type substrate and electrically connected to the n-type substrate via a first metal line, a well of n-type material formed in the first well of p-type material, a first p-type region formed in the well of n-type material in direct physical contact with the well of n-type material and connected to the word line of the memory device, and a first n-type region formed in the well of p-type material in direct physical contact with the well of p-type material and electrically connected to the well of n-type material via a second metal line.
Abstract:
A baseband measurement system includes a host and a Digital Immediate Frequency (DIF) subsystem. The DIF subsystem includes both hardware and software components, such as, for example, a microprocessor and its associated software, a FPGA, one or more ASICs, and memory. The baseband measurements are processed using the FPGA, ASICs, and the microprocessor and its software. The microprocessor controls the flow of the data in and out of the memory and distributes the processing tasks to both the hardware and software components in a cooperative manner. The microprocessor orchestrates the measurements and processing by operating as a measurement state machine. Selection of the proper component is based on the type of measurement and its processing requirements, as well as the current state of the hardware and software components. The host receives the processed data and performs post-processing operations if needed. The host also displays the processed data.