Exploration Product List and Ranking from 17 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

Exploration Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. ソナス Tokyo//Building materials, supplies and fixtures manufacturers
  2. ジオフィール Tokyo//others
  3. 東京ソイルリサーチ Tokyo//Construction Consultant
  4. 4 日本物理探鑛 企画本部 Tokyo//others
  5. 5 JFEシビル 社会基盤事業部 Tokyo//General contractors and subcontractors

Exploration Product ranking

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. For sound source exploration! Wireless sound pressure measurement system (NETIS) ソナス
  2. Elastic wave exploration (refraction method) 東京ソイルリサーチ
  3. Compared to resisting two-dimensional exploration ジオフィール
  4. "Acoustic Tomography Ground Exploration" [Visualizing the Underground Cross-Section!] JFEシビル 社会基盤事業部
  5. 4 Ground-penetrating radar survey (subsurface cavities and buried objects) 日本物理探鑛 企画本部

Exploration Product List

31~36 item / All 36 items

Displayed results

Electromagnetic induction method exploration

Convert the change in impedance to the distance between the probe and the magnetic material! It measures the position of rebar and the cover thickness.

The electromagnetic induction method for rebar detection generates a magnetic flux by passing an alternating current through an excitation coil wound in a circular shape with copper wire inside the probe. When a magnetic material such as rebar is present within the generated magnetic flux of the excitation coil, a current flows through the magnetic material, creating a magnetic flux in the material as well. As the distance between the probe and the magnetic material changes, the magnetic flux of the material also changes, causing a current to flow in the detection coil within the probe, which results in a change in the voltage of the detection coil. This change in impedance is converted into the distance between the probe and the magnetic material, allowing for the measurement of the position and cover thickness of the rebar. 【Conditions for Accurate Measurement of Rebar Situations】 ■ One rebar nearby ■ One rebar within a wide pitch in the magnetic flux ■ One rebar within the range of the magnetic flux *For more details, please refer to the related link page or feel free to contact us.

  • Structural Survey

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Elastic wave exploration (refraction method)

Geological surveys are conducted for civil engineering structures such as tunnels, dams, railways, and roads!

"Elastic wave exploration (refraction method)" is a method that observes the propagation of elastic waves, artificially generated by explosions on the surface or underground, as they travel through geological layers, either directly or refracted, using measurement devices installed on the surface. The results are then analyzed to elucidate the underground structure. In Japan, a survey regarding the thickness of riverbed gravel layers for dam construction was conducted in Yamagata Prefecture in 1931, marking the first implementation of refraction seismic exploration in the domestic civil engineering field. This method is almost invariably conducted in geological surveys for civil engineering structures such as tunnels, dams, railways, roads, and land development. 【Implementation Procedure】 ■ Formulation of the survey plan ■ Approval from the client, application for explosives transfer and consumption permit, local negotiations, etc. ■ Surveying and setting measurement lines ■ On-site measurement work *For more details, please refer to the PDF materials or feel free to contact us.

  • Site and ground investigation
  • Geological Survey

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For microtremor array exploration! Wireless microtremor meter (NETIS registered)

Realizing vibration measurement and remote monitoring with multi-point, wide-range, and high-precision time synchronization.

Equipped with a high-precision accelerometer sensor M-A352 from Seiko Epson! 【Features】 ■ Time synchronization between sensors in microsecond units ■ Sensor unit is palm-sized. ■ No need for power supply preparation or wiring work at measurement locations, making installation easy. ■ Easy to move the sensor unit ■ Battery operation available ■ Monitoring and remote surveillance possible via computer ■ Can also record on the built-in SD card *For more details, please refer to the PDF document or feel free to contact us.

  • Other measuring instruments

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For elastic wave exploration! Wireless vibration measurement system (NETIS)

For concrete structures and the ground!

【Features】 ■ Synchronization between sensors with microsecond precision ■ Compact sensor body the size of a palm ■ No need for power preparation or wiring at the measurement location, allowing for easy installation ■ Sensors can be easily moved ■ Supports battery operation ■ Compatible with monitoring and remote surveillance via computer ■ Data can also be saved to the built-in SD card *For more details, please refer to the PDF document or feel free to contact us. #2

  • Other measuring instruments

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Wireless micro-displacement meter for exploration of soft ground (NETIS)

Achieving wireless multi-point, wide-range, and high-precision time synchronization measurements.

Equipped with the high-precision accelerometer "M-A352" manufactured by Seiko Epson! 【Features】 - Synchronizes the time between sensors in microsecond units - The sensor body is compact and palm-sized - No need for power supply or wiring work at the measurement location, easy to install - Designed for easy movement of the sensor - Can operate on battery power - Supports monitoring and remote surveillance using a PC - Data can also be recorded on the built-in SD card *For more details, please refer to the PDF document or feel free to contact us. #1

  • Other measuring instruments

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