Abstract:
An egg identification system for determining egg viability is provided. Such a system includes an emitter assembly for emitting electromagnetic radiation toward a plurality of eggs positioned proximate thereto. A detector assembly is positioned proximate to the emitter assembly. The detector assembly has a plurality of detectors fixedly positioned with respect to the emitter assembly and configured to detect electromagnetic radiation transmitted through the eggs. An optical shielding assembly is configured to move with respect to the detectors. A processor is in communication with detector assembly and is configured to determine viability of the eggs using the detected electromagnetic radiation. An associated method is also provided.
Abstract:
A method for generating spread spectrum spreading sequences in communicating devices. A first device receives a first sequence of one or more radio frequency (RF) signals from a second device, sends a second sequence of one or more RF signals to the second device, samples the first sequence of one or more RF signals, generates sampling results, and generates a spreading sequence based on the sampling results. The second device receives the second sequence and creates an identical spreading sequence using an identical process to create sampling results and generate the sequence. The spreading sequence may be used by the first and second devices for spread spectrum communications with each other. Gain for spread spectrum communications may be dynamically varied based on available bandwidth by varying the number of RF signals and sampling rate.
Abstract:
Methods of cleaning an electroplating device may include processing a substrate coupled with the electroplating device. The substrate may be coupled with a substrate holder of the electroplating device. The substrate holder may include an annular component disposed about the substrate. A surface of the annular component may be exposed to an electroplating solution with the substrate. The processing may form a metal-containing material on the annular component. The methods may include removing the substrate from the substrate holder of the electroplating device. The methods may also include exposing the annular component of the substrate holder of the electroplating device to UV light. The UV light may be configured to modify the metal-containing material.
Abstract:
A card dispenser and display apparatus for securely loading, maintaining, removing and displaying game cards during the playing of a game. The apparatus includes a housing and a generally planar base. The inner space of the housing is configured to contain a plurality of cards having a uniform height and width. The inner space of the housing has a width that is substantially equal to the uniform width of the plurality of cards, at least a portion of which housing has a height that is lower than the uniform height of the plurality of cards, thereby enabling a user to manually lift a card from the front of the housing to move the card to the back of the housing, as well as enabling the removal of a deck of playing cards from the housing.
Abstract:
Methods, apparatuses, and systems that compensate for communication excursions in multipath communication systems (e.g. MIMO communication systems) while satisfying performance requirements parameters of the communication system. A plurality of communication signals may be received in a transmitter. The plurality of communication signals may be precoded (e.g. mixed) into a plurality of precoded communication signals. Excursions in the precoded communication signals may be scaled to generate a plurality of excursion compensated precoded communication signals. The scaling may be based on performance requirements parameters of a communication system and based on parameters of the precoding the plurality of communication signals. The plurality of excursion compensated precoded communication signals may then be amplified by a plurality of amplifiers.
Abstract:
To decompress encoded data, a Huffman code tree stored in a data header may need to be decompressed and rebuilt. A bit length histogram table is used in a hardware design to more efficiently decompress the Huffman code tree. The bit length histogram table relates each bit length used by the Canonical Huffman Code (CHC) symbols to a corresponding number of symbols in the encoding that have that bit length. Performing decompression using bit length histogram table allows part of the Huffman tree decompression to be performed in a single pass.
Abstract:
The present techniques generally relate to correlated electron switch devices, and may relate more particularly to digital to analog conversion using correlated electron switch devices.
Abstract:
Methods, apparatuses, and systems that receive a communication signal. The communication signal may be split into a first communication signal and a second communication signal. The first communication signal may be zero padded. The zero padded first communication signal may be excursion compensated to generate an excursion compensated signal. The excursion compensating may be performed by fast Fourier transform logic. Zero padding may allow for efficient fast Fourier transform process by ensuring that the length of data frames processed is an integer power of two.
Abstract:
Novel tools and techniques might provide for implementing virtual platform media access control ("MAC") address-based layer 2 and layer 3 network switching. In some embodiments, a method might comprise receiving, at a network node in a network, a data packet having a header comprising a MAC destination address, and routing, with the network node, the data packet over open systems interconnection ("OSI") model layer 3 or network layer of the network, based at least in part on the MAC destination address in the header of the data packet. The MAC destination address comprises a first portion comprising an organizationally unique identifier ("OUI") and a second portion comprising an identifier for a destination network interface controller ("NIC") and/or virtual NIC ("VNIC"), which might be associated either with the same service provider associated with the network node or the network or with a different service provider, content provider, and/or application provider.