Abstract:
A system and method for web-based interface design tool is provided. The design tool enables system designers to quickly and independently design a custom serial-link interface. The system provides interface selection and signal integrity analysis. An interface selection may interact with system designers to prompt for a set of selection criteria such as data-rate, supply rail, standard protocol, and intended application. An intelligent search engine screens through a large interface products database based on the selection criteria and provides designers with a list of devices that potentially meet the design criteria. The performance of the custom system with the selected device can be evaluated by using a web-based IBIS-AMI standard-compliant signal integrity simulator. A designers can have options to manually fine tune selected devices' parameters to iterate through different settings to determine the robustness of the solution.
Abstract:
A method for converting a circuit in a format of a first circuit simulation program to format of a second circuit simulation program includes identifying components in the circuit that are recognized by the second simulation program. Characteristics for components that are not recognized by the second simulation program are created. Connections in the circuit are formatted to a format that is recognized by the second simulation program. The components, characteristics, and connections are stored in a single computer-readable file.
Abstract:
A method (and related apparatus) includes receiving user input and generating at least one of schematic content for a circuit based on the received user input and a printed circuit board (PCB) layout based on the circuit. The method further includes generating a bill of material (BOM) for the circuit, and receiving a user selection of at least one of a computer-aided design (CAD) tool format and a PCB layout tool format. The method also includes receiving a user selection to include footprints for the components used in the schematic content or PCB layout and exporting at least one of the schematic content, and PCB layout as well as the PCB footprints to one or more files in accordance with the selected CAD and/or PCB layout tool format.
Abstract:
A method (and related apparatus) includes receiving user input and generating at least one of schematic content for a circuit based on the received user input and a printed circuit board (PCB) layout based on the circuit. The method further includes generating a bill of material (BOM) for the circuit, and receiving a user selection of at least one of a computer-aided design (CAD) tool format and a PCB layout tool format. The method also includes receiving a user selection to include footprints for the components used in the schematic content or PCB layout and exporting at least one of the schematic content, and PCB layout as well as the PCB footprints to one or more files in accordance with the selected CAD and/or PCB layout tool format.
Abstract:
A system and method for web-based interface design tool is provided. The design tool enables system designers to quickly and independently design a custom serial-link interface. The system provides interface selection and signal integrity analysis. An interface selection may interact with system designers to prompt for a set of selection criteria such as data-rate, supply rail, standard protocol, and intended application. An intelligent search engine screens through a large interface products database based on the selection criteria and provides designers with a list of devices that potentially meet the design criteria. The performance of the custom system with the selected device can be evaluated by using a web-based IBIS-AMI standard-compliant signal integrity simulator. A designers can have options to manually fine tune selected devices' parameters to iterate through different settings to determine the robustness of the solution.
Abstract:
A system includes a user input engine to receive input via a graphical user interface (GUI) through a first window, the input including a distance value and an input resolution value. The system also includes a sensor circuit solution generation engine to generate a plurality of sensor circuit solutions based on the received input and to cause the plurality of sensor circuit solutions to be displayed. Each sensor circuit solution specifies information about a conductive coil.
Abstract:
A method for converting a circuit in a format of a first circuit simulation program to format of a second circuit simulation program includes identifying components in the circuit that are recognized by the second simulation program. Characteristics for components that are not recognized by the second simulation program are created. Connections in the circuit are formatted to a format that is recognized by the second simulation program. The components, characteristics, and connections are stored in a single computer-readable file.
Abstract:
A method for converting a circuit in a format of a first circuit simulation program to format of a second circuit simulation program includes identifying components in the circuit that are recognized by the second simulation program. Characteristics for components that are not recognized by the second simulation program are created. Connections in the circuit are formatted to a format that is recognized by the second simulation program. The components, characteristics, and connections are stored in a single computer-readable file.
Abstract:
A computerized PCB coil circuit design system includes an input engine to receive PCB coil design parameters based on manufacturing rules including trace width and conductor thickness, to receive input parameters including LC sensor capacitance, coil shape, and number of coil layers, and to receive updates to any of the PCB coil design parameters or the input parameters. The system further includes a PCB coil solution generation engine to calculate output coil parameters including total inductance, sensor frequency, and Q factor as a function of the PCB coil design parameters and received input parameters, to graphically plot one selected output parameter as a function of one input parameter, and upon an update to one parameter selected from the parameters based on PCB manufacturing rule and input parameters, to recalculate the output coil parameters and to replot the one selected output coil parameter as a function of one input coil parameter.
Abstract:
A method for converting a circuit in a format of a first circuit simulation program to format of a second circuit simulation program includes identifying components in the circuit that are recognized by the second simulation program. Characteristics for components that are not recognized by the second simulation program are created. Connections in the circuit are formatted to a format that is recognized by the second simulation program. The components, characteristics, and connections are stored in a single computer-readable file.