摘要:
A capacitor includes at least two electrode layers opposite to each other and a dielectric layer positioned between the at least two electrode layers. The at least two electrode layers have opposite polarities. Each electrode layer includes a positive electrode and a negative electrode. The positive electrode includes a plurality of first coupling portions spaced substantially evenly and arranged in parallel. The negative electrode includes a plurality of second coupling portions spaced substantially evenly and arranged in parallel. The positive electrode and the negative electrode of each electrode layer are coplanar, and the plurality of first coupling portions interlace with the plurality of second coupling portions.
摘要:
A method for setting a signal-equalizing system for use in an electronic device includes the following steps. Outputting a connection status of each channel and a number of misconnect options respectively associated with each channel to a display unit of the electronic device. Then, detecting whether at least one misconnect option is selected. If yes, determining a misconnected channel and adjusting the receiving setting for the receiving port of the misconnected channel to match with the transmitting setting for the transmitting port of the misconnected channel according to settings for each channel stored in the electronic device. The stored settings for each channel include a transmitting setting for the transmitting port of the channel and a receiving setting for the receiving port of the channel that matches the transmitting setting.
摘要:
In a method of optimizing parameters of electronic components on printed circuit boards (PCBs), a first experiment table for m variables of one type of parameter of P electronic components on a PCB is designed using n values of each variable and the RSM. P EHs of each first experiment are obtained by simulating, and P EH empirical formulas are computed according to the P EHs. A second experiment table for the m variables is designed using n′ values of each variable and the full factorial design, and P EHs of each second experiment are computed using the P EH empirical formulas. Experiments, all the P EHs of which are greater than 1, are filtered from the second experiment tables, and an average EH of each filtered experiment is computed to pick an experiment the average EH of which is the greatest. The values of the m variables in the picked experiment are considered as optimized.