Shallow earthquake exploration device
A seismic exploration and shallow layer technology, applied in seismology, measurement device, geophysical measurement, etc., can solve the problems of small exploration range, troublesome wiring, poor anti-interference ability, etc., to improve flexibility, simplify work, reduce system The effect of power consumption
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Embodiment 1
[0015] Such as figure 1 It is a connection schematic diagram of a shallow seismic exploration device of the present invention, mainly including a seismic source substation 1, an acquisition substation 2, and a central main station 3; wherein, the seismic source substation 1 is composed of a power supply circuit, a CPU control circuit, a radio frequency transceiver circuit, and an instruction lamp circuit, and there is an electrical connection between each part; the acquisition sub-station 2 is composed of a power supply circuit, a CPU control circuit, a detection circuit, an A / D conversion circuit, and a radio frequency transceiver circuit, and each part is also electrically connected. The central master station 3 is composed of a CPU control circuit, a power supply circuit, a radio frequency transceiver circuit and a PC, and the power supply circuit, the radio frequency transceiver circuit and the PC are all electrically connected to the CPU control circuit.
Embodiment 2
[0017] On the basis of Embodiment 1, the above-mentioned shallow seismic prospecting device is characterized in that: the power circuits in the source sub-station, acquisition sub-station, and central master station are all composed of storage batteries and voltage stabilizing circuits. The voltage circuit includes a transformer and a voltage stabilizing chip; the transformer is used to step down the 7V voltage of the storage battery, and the voltage stabilizing chip converts the signal output by the rectifier into a 5V power supply for the single-chip microcomputer to work on.
Embodiment 3
[0019] On the basis of Embodiment 1, the above-mentioned shallow seismic prospecting device is characterized in that: the indicator light in the said seismic source substation has three states of extinguishing, highlighting and flashing, when the seismic source substation is connected with the central main station When interrupted, the indicator light is off, when the connection is good, the indicator light is bright, and when the substation sends a trigger signal, the indicator light flashes.
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