MT AMT CSAMT Geophysical Magnetotelluric Survey Equipment For Underground Well Exploration

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December 21, 2023
Category Connection: Magnetic Survey Instruments
Brief: Discover the MT AMT CSAMT Magnetotelluric Electromagnetic Underground Geophysical Exploration Instrument, designed for deep geological surveys. This advanced equipment combines natural and artificial sources for precise underground exploration, offering real-time imaging and high-efficiency data collection. Ideal for mineral, oil, gas, and geothermal resource exploration.
Related Product Features:
  • Combines natural (MT, AMT) and artificial (CSAMT, IP, TEM) electromagnetic sources for versatile exploration.
  • Supports tensor and scalar measurements for 2D and 3D geological feature analysis.
  • Features portable on-site real-time imaging with embedded real-time operating system.
  • Achieves full-band acquisition while recording optical and electromagnetic field power spectrums.
  • Enables efficient real-time parallel collection with multiple sampling rates (24kHz, 2400Hz, 150Hz, 15Hz).
  • High-precision 32-bit ADC with a maximum sampling rate of 240ksps and dynamic range of 160dB.
  • IP67 waterproof rating and lightweight design (3.5kg) for rugged field conditions.
  • Wide application in mineral, oil, gas, geothermal, and hydrogeological exploration.
FAQs:
  • What depth range can the MT AMT CSAMT equipment explore?
    The equipment can explore depths from a few meters to a thousand meters using high-frequency magnetotelluric sounding (100 kHz-10 kHz) and deeper with long-period or broadband electromagnetic sounding.
  • What power supply options are available for this instrument?
    The instrument can be powered by external lead-acid batteries or lithium batteries, with a power consumption of less than 5W at 12VDC.
  • What certifications does the MT AMT CSAMT equipment have?
    The equipment meets IP67 waterproof standards and features high-precision components like a 32-bit ADC and satellite synchronization for reliable performance in field conditions.
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