Abstract:
Embodiments of the present disclosure describe methods, apparatus, and system configurations for cyclic redundancy check circuits using Galois-field arithmetic.
Abstract:
An apparatus comprising a first stage and a second stage. The first stage may be configured to generate an intermediate signal having a first voltage in response to an input signal having a second voltage received from a pad. The second stage may be configured to generate a core voltage in response to the first voltage. The voltage received from the pad may operate at a voltage compliant with one or more published interface specifications.
Abstract:
A container having a finish, a sidewall portion extending from the finish, a base portion extending from the sidewall portion and enclosing the sidewall portion to form a volume therein for retaining a commodity, and a panel area disposed in the sidewall portion. The panel area includes a belt land portion and a pair of inset portions in mirrored arrangement relative to the belt land portion, and a generally oval boundary area surrounding and containing the belt land portion and inset portions.
Abstract:
A method, device and non-transitory computer-readable storage medium transferring information using a network. The information transferred by connecting a destination device operatively to a storage device using the network. The storage device storing information to be transmitted to the destination device. The network providing a point-to-multipoint connection between an origin device and a plurality of destination devices. The plurality of destination devices including the destination device. Also, the information being transferred by receiving the information stored in the storage device by the destination device in response to the destination device being operatively connected to the storage device. The information received by the destination device having been transmitted from the origin device to the network prior to the destination device being operatively connected to the storage device.
Abstract:
Embodiments for predicting catalyst function are disclosed. One example embodiment includes applying a set of parameter readings for a given sample to a support vector machine to generate a classification output, recording a plurality of classification outputs for a plurality of successive samples over a first duration, and indicating catalyst degradation if a threshold percentage of the classification outputs indicates degraded catalyst performance. In this way, catalyst degradation may be indicated using a simplified model that does not require extensive calibration.
Abstract:
A differential buffer circuit having increased output voltage swing includes a differential input stage including at least first and second transistors, the first and second transistors being operative to receive first and second signals, respectively. The buffer circuit further includes a bias stage connected between the differential input stage and a first voltage source. The bias stage is operative to generate a quiescent current as a function of a third signal supplied to the bias stage. A load circuit is connected between a second voltage source and the differential input stage, first and second differential outputs of the buffer circuit being generated at a junction between the load circuit and the differential input stage. The load circuit includes first and second switching elements coupled with the first and second transistors, respectively. The first switching element is operative to electrically connect the first differential output to the second voltage source when the first transistor is turned off. The second switching element is operative to electrically connect the second differential output to the second voltage source when the second transistor is turned off.
Abstract:
An enclosure (10) contains an APU (12) and an electrical distribution system (14) to form a self-contained module that can be mounted at any suitable location on a truck's exterior, eliminating significant portions of the wire/cable routing that would otherwise typically be required.
Abstract:
The present invention provides a technique for achieving reliable delivery of bulk data from a single origin to multiple destinations such that the origin only sends the data once to the network, without waiting for the destinations to be connected to the network. The data is delivered from the network to each destination, thereby creating a point-to-multipoint connection between the origin and the destination. To achieve such data delivery, both the origin and each delivery site execute site connection-manager software that allows the origin and the intended destinations to create the needed connections to facilitate data delivery and the network switches execute a network connection manager. Once the origin transmits the data and receives an acknowledgement from the network, the origin disconnects and does not wait for actual receipt by each destination. The destinations are referred to as “late” on two instances. One instance occurs when the destination connects to the network after the origin has already begun sending data to the network. The other instance occurs when the destination connects to the network after the origin has sent all the data to the network and the origin is disconnected from the network.
Abstract:
The present invention provides a technique for achieving reliable delivery of bulk data from a single origin to multiple destinations such that the origin only sends the data once to the network, without waiting for the destinations to be connected to the network. The data is delivered from the network to each destination, thereby creating a point-to-multipoint connection between the origin and the destination. To achieve such data delivery, both the origin and each delivery site execute site connection-manager software that allows the origin and the intended destinations to create the needed connections to facilitate data delivery and the network switches execute a network connection manager. Once the origin transmits the data and receives an acknowledgement from the network, the origin disconnects and does not wait for actual receipt by each destination. The destinations are referred to as “late” on two instances. One instance occurs when the destination connects to the network after the origin has already begun sending data to the network. The other instance occurs when the destination connects to the network after the origin has sent all the data to the network and the origin is disconnected from the network.