Intelligent mutual inductor capable of carrying out wireless communication
A technology of wireless communication and transformer, which is applied in the field of transformer, can solve the problem that the transformer cannot transmit signal data wirelessly, and achieve the effect of wide application range and convenient use
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Embodiment 1
[0016] like figure 1 As shown, the present invention proposes a smart transformer capable of wireless communication, including a sensing unit, a circuit unit and a housing assembly, the sensing unit is a magnetic ring coil 1; the circuit unit includes a sampling circuit 2, a metering circuit 3, a central processing unit device 4, communication module 5, storage module 6 and power module, the sampling circuit 2 is connected to the magnetic ring coil 1, and the collected signal data is transmitted to the metering circuit 3, and the metering circuit 3 transmits the corresponding signal data to the central processing unit 4 , the central processing unit 4 transmits the signal data to the storage module 6 and the communication module 5, the central processing unit 4 can exchange information with the storage module 6 and the communication module 5 respectively, and the power supply modules are respectively the sampling circuit 2, the metering circuit 3, and the central processing uni...
Embodiment 2
[0024] In this embodiment, different from Embodiment 1, the number of sampling circuits 2 is N, and N is an integer. The sampling circuit 2 is connected to a single-chip microcomputer, and all sampled values are sent to the single-chip microcomputer, and the single-chip microcomputer will N sampling circuits 2 The N sampled values obtained are divided into multiple intervals, and the N sampled values will fall into the interval, and the number of sampled values in each interval is calculated, and the interval with the largest number of sampled values is obtained, and the multiple intervals in this interval are calculated. The average value of the sampled values is then sent to the metering circuit 3. In this way, the accuracy of the signal data collected by the sampling circuit 2 can be improved.
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