Abstract:
PROBLEM TO BE SOLVED: To provide a programmable logic device enabling reduction in the time taken for testing a storage device by automatically creating a test circuit for a built-in storage device and automatically performing a test of the storage device using the test circuit.SOLUTION: A programmable logic device comprises: a storage part 1 for storing data; a logic circuit storage part 2 for storing an internal circuit that is a logic circuit for performing data processing including writing to and reading from the storage part 1; a component circuit storage part 5 for storing in advance a component circuit for testing the storage part 1; a pin information storage part 3 for obtaining pin information for the storage part 1; and a test part 4 for generating a memory test circuit on the basis of the pin information and the component circuit, storing it in the logic circuit storage part 2, and testing the storage part 1 using a memory test circuit.
Abstract:
PROBLEM TO BE SOLVED: To provide a circuit design support device which designs pin layout in consideration of external timing.SOLUTION: A pin layout table and a pin list are stored in a storage unit 1. A temporary layout unit 41 temporarily lays out each terminal on the basis of the pin layout table and the pin list. A timing determination unit 5 obtains a delay amount of a data signal from each terminal or a clock signal and determines whether the delay amount of the data signal is within an allowable range relative to a delay amount of the clock signal. In the case of the presence of a data signal of which the delay amount is determined to be not within the allowable range by the timing determination unit 5, a layout position change unit 42 changes the position of a terminal which receives input of the data signal which is not within the allowable range, on the basis of the pin layout table and the pin list. A control unit 6 repeats changes in position of terminals by the layout position change unit 42 and determination by the timing determination unit 5 until delay amounts of data signals from respective terminals are determined to be within the allowable range.
Abstract:
PROBLEM TO BE SOLVED: To efficiently and sufficiently achieve low power consumption.SOLUTION: A circuit design device is configured to extract a non-operating FF among FF included in a circuit, and to retrieve a non-operation originating terminal as the output source of a control signal with respect to the extracted FF. Also, the circuit design device is configured to integrate the FF whose non-operation originating terminals are the same as one domain, and to execute back-trace about each of the FF integrated as a domain. Also, the circuit design device is configured to extract combinational circuits existing until the FF are reached in the back trace. Also, the circuit design device is configured to execute forward trace about each of the FF which are not the same domain among the reached FF, and to, when the reached FF are the same domain, integrate the combinational circuits as the same domain.
Abstract:
Methods and systems facilitate collaboration between users at an oil well site and users at a remote location. Multiple types of oil well data are collected at the oil well site to form aggregated data. The aggregated data is stored in a data aggregation server at the oil well site. Users at the oil well site and users at the remote location are allowed to access the aggregated data on the data aggregation server using a standard data format.
Abstract:
Methods and systems facilitate collaboration between users at an oil well site and users at a remote location. Multiple types of oil well data are collected at the oil well site to form aggregated data. The aggregated data is stored in a data aggregation server at the oil well site. Users at the oil well site and users at the remote location are allowed to access the aggregated data on the data aggregation server using a standard data format.
Abstract:
Methods and systems facilitate collaboration between users at an oil well site (710) and users at a remote location (712). Multiple types of oil well data (714) are collected (1010) at the oil well site (710) to form aggregated data. The aggregated data is stored (1020) in a data aggregation server (716) at the oil well site (710). Users at the oil well site (710) and users at the remote location (712) are allowed to access (1040) the aggregated data on the data aggregation server (716) using a standard data format.
Abstract:
A system for client authentication using a one time password (OTP) including a client configured to request access to an application executing on an internal corporate network, and transmit the OTP and a user name associated with a user to an OTP keys distribution center (KDC), wherein the OTP is used to authenticate the user to the internal corporate network, and the OTP KDC configured to receive the OTP from the client, and issue an inter-domain key and a ticket-granting-ticket (TGT) to the client upon validation of the OTP, wherein the inter-domain key and the TGT are used to authenticate the client and grant access to the application.
Abstract:
Un método para administrar datos del campo petrolífero con base en uno o más elementos de suscripción. El método incluye recibir los elementos de suscripción que tienen un área de interés, uno o más tipos de datos y uno o más requerimientos del conjunto de datos. El área de interés incluye una o más propiedades geográficas que corresponden a los datos del campo petrolífero, y los requerimientos del conjunto de datos definen cómo se deben presentar los datos del campo petrolífero. Después de recibir los elementos de suscripción, el método envía los elementos de suscripción a un motor de la base de datos. El método posteriormente recibe los datos del campo petrolífero a partir del motor de la base de datos tal que los datos del campo petrolífero corresponden a los elementos de suscripción.
Abstract:
Methods and systems facilitate collaboration between users at an oil well site (710) and users at a remote location (712). Multiple types of oil well data (714) are collected (1010) at the oil well site (710) to form aggregated data. The aggregated data is stored (1020) in a data aggregation server (716) at the oil well site (710). Users at the oil well site (710) and users at the remote location (712) are allowed to access (1040) the aggregated data on the data aggregation server (716) using a standard data format.