A passive device intelligent equivalent circuit model and parameter measurement device and working method
An equivalent circuit model, passive device technology, applied in measurement devices, capacitance measurement, measurement of electrical variables, etc., can solve problems such as limited types of applicable passive devices, insufficient efficiency and accuracy, and fixed broadband fitting structure. Achieve the effect of improving the measurement frequency range is smaller, improving the measurement and calculation accuracy, and broadening the range of types
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Embodiment 1
[0049] Such as figure 1 As shown, it is a schematic structural diagram of an intelligent equivalent circuit model of a passive device and a parameter measurement device disclosed in this embodiment. It consists of five modules: a human-computer interaction display and data processing module 101 , a signal sending module 102 , an intelligent equivalent test circuit module 103 , a signal receiving module 104 , and a power supply module 105 .
[0050]In this embodiment, to measure the equivalent circuit model and parameters of the passive device to be tested, the passive device to be measured is first connected in series to the intelligent equivalent test circuit module 103 through the leads, and the power supply module 105 performs the test for each module. Power supply and fully start each module, then the human-computer interaction display and data processing module 101 generates a specific digital signal, transmits it to the signal sending module 102 and converts it into an a...
Embodiment 2
[0055] Combine below Figure 5 and Figure 6 , an example is given to describe the working method of an intelligent equivalent circuit model of a passive device and a parameter measurement device. Such as Figure 6 As shown, the working steps of the device include:
[0056] S1. Test preparation work. The first step is to connect a certain passive device to be tested to the intelligent equivalent test circuit module, and then supply power to each module through the power module and fully start each module.
[0057] S2. Carry out signal transmission, set the sending sampling rate, start and cut-off frequency, amplitude, duration and other information through the human-computer interaction display and data processing module, generate specific sending signals according to these parameters, send and save the set numbers The signal is sent to the signal sending module, and the sending module converts the digital signal from the human-computer interaction display and data processi...
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