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Seismic
earthquaking event with a wave velocity 3-8 km/s.
See Also: Seismometers, Seismic Arrays, Seismic Accelerometers, Earthquake, Geophones, Shear Wave, Wave
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Seismic interpretation Software
GeoTomCG
GeoTomCG can process crosshole or VSP seismic or radar data. The display shows calculated radar velocities. High velocity zone at depth of 27 m is caused by an abandoned mine. Other zones of contrasting velocities are geological features. S and R indicate source and receiver positions, respectively.
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Security and Traffic Monitoring System
Information System Technologies Inc.
ISTI’s versatile sensor nodes can support multiple sensing types including acoustic, seismic, visible/IR, and scanning laser. Several eye-safe scanning lasers form a distributed wireless sensor network and can continuously and accurately track as well as monitor ground vehicles and personnel in a surveillance area. This system provides super-fine angular and range resolution to precisely locate moving targets. Among other key benefits are: day/night operational capability, continuous monitoring and surveillance without blind spots, 360 degrees field-of-view, large coverage area, multiple closely spaced target tracking, threat classification, and automatic alarm generation. The system can be used in applications such as traffic monitoring, intrusion detection, border control, airport runway collision and incursion avoidance, and perimeter security.
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Seismic Sensors & Transducers
Displacement Pickups are vibration transducers that incorporate a spring-mass system with eddy-current damping using a frictionless pivot. This pivot is a spring flexure that serves as the ‘spring’ and a moment arm attached to the pivot serves as the ‘mass’, which allows resolutions down to the micro inch range. At frequencies above 50Hz, the mass remains fixed in space and becomes an inertial reference. A transducer within the pickup senses the motion of the mounting base relative to the inertial reference and converts it into a proportional signal. Appropriate damping results in a frequency response flat down to 10 Hz. Note that the pickup senses in only one plane, which is perpendicular to the mounting base.
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Loop-Powered Transmitters and Drivers
4-20mA
Loop-Powered Transmitters convert the output from proximity probes, seismic sensors, into a 4-20mA DC current, which is proportional to the input being measured. The transmitter converts the displacement or vibration signal to DC voltage and/or current for a DCS or PLC system. They control a 4-20mA current loop for a specified vibration range (ex. 0-5 mils peak-to-peak). The transmitters have a two-wire hook-up, powered solely by the loop current and have a power supply range of 15 to 36 volts.
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Affinity Digitiser
The Güralp Affinity is a high-fidelity integrated digitiser and network communications unit that provides a convenient and expandable way of connecting analogue and digital seismic instruments to your network.
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The Monitoring & Slimhole Access Tools
SlimWave®
SlimWave is a small diameter digital multi-level downhole seismic array for up to 24 levels. Technologically advanced, it excels in very small diameter wells or any completion restriction.
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COM Express Type 6 Basic Module With 5th Gen Intel® Core™ I7 & 4th Intel® Core™ I7/i5/i3 & Celeron® Processor And Intel® QM87
CEM880
The CEM880 COM Express Type 6 basic module features 5th generation Intel® Core™ processor (H-processor line), one onboard 4 GB extended temperature DDR3L chip, and one 204-pin SO-DIMM DDR3L socket supporting up to 8 GB. With outstanding computing performance, low power consumption, wide temperature range, and seismic design, the rugged basic-size SoM (system on module) drives Internet of Things innovation and is ideal for graphics-intensive and rich I/O applications such as telecommunication, medical imaging, digital signage, gaming machines, military, and networking.
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Seismograph
Geode DZ
The Geode DZ 3D seismic system from Geometrics is the result of over 30 years of experience in building seismographs that have been used all over the world for an amazingly broad range of survey types. The knowledge we have gained over the years has allowed us to provide you with the Geode DZ - a reliable, low entry cost, easy to use 3D seismic system.
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Horizontal Vibration Test Systems
G-3 Series
This series was used for the special structure of airbearing guide of inspection for Seismic Detectors andcharacterized is large displacement and high-accuracywaveform. In addition, the use of the Windows seismicdetector controller is easy to operate it.
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Vibrators Electronics
VE464
The VE464 benefits from the latest developments in integration, radio transmission and servocontrol, allowing easier implementation of vibroseis seismic than ever before, even for advanced types of acquisition. Used in conjunction with the 428XL or 508XT acquisition system, the VE464 is a key component in achieving very high level of productivity.
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Software Package for ZET 048 Seismic Station
ZETLAB SEISMO —
ZETLAB SEISMO Software is included into the delivery scope of ZET 048 seismic recorders. The software and hardware package allows to perform measurements immediately upon measuring instruments connection and drivers installation completion.
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Software
Discovery
A single unified interface to a range of powerful tools for managing your seismic network.
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Broadband Marine Source
TPS™
TPS™ (Tuned Pulsed Source) is a new marine seismic source that provides geophysical clarity by improving low frequency (content while) also supporting important environmental benefits.
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Radio Trigger Module
RTM3
The Remote Trigger Module 3, or RTM3 3, is a new generation of impact trigger device. It is designed to time synchronize a single seismic source unit with multiple seismic recorders. It can also be used to synchronize multiple seismic recorders. The RTM3 units use an internal high accuracy oscillator that is synchronized to GPS timing information. Each RTM3 unit requires an external GPS receiver with valid satellite information to synchronize the internal clock. Once the internal clock is synchronized the RTM3 can be used without any GPS signal for up to 10 minutes.
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Seabed Nodal Solution
GPR
GPRNT is an innovative seabed nodal solution based on Sercel’s leading-edge QuietSeis® technology meeting the very latest seismic industry expectations for performance. The unrivalled digital fidelity and ultra-quiet performance provided by the QuietSeis MEMS sensor ensure a step change in seismic data quality.
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Piezoelectric
Columbia Research Laboratories
The Columbia product line of piezoelectric accelerometers is widely known for reliable performance, quality and ruggedness and is always expanding to meet the unique challenging and ever changing requirements of our customers. The selection of specifications, sizes and configurations is large and diverse and suitable for use on many applications requiring features such as, high performance, high accuracy, high temperature, seismic event, 4-20mA output, airborne, miniature size and general purpose use.
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Seismic Acquistion QC Serivices
Overall data quality / cost monitoring / safety / daily reporting to client. Verif-i provides technical and operational programme assurances for seismic surveys conducted for the company. The lead acquisition QC on-board/on-crew the seismic vessel/block accepts or rejects data on behalf of the company. Our representative will assist the contractor in fulfilling the technical and operational requirements of the seismic programme and report on crew activities.
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Environmental Simulation Testing
MET's Environmental Simulation Labs, on both coasts, employ numerous environmental chambers, including several large walk-in chambers. Hydraulic and electro-dynamic shakers are used for a wide range of vibration testing, from ISTA packaging to seismic compliance testing. MET's hydraulic vibration systems are capable of full level (Zone 4) seismic simulation.
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NAM (Network Acquisition Module)
The NAM is a stable, robust data hub with unrivalled configurability, ideal for large or complex regional and national seismic arrays and other multi station monitoring solutions.
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Electrodynamic Velocity Pickup
The principle of Reciprocal Pendulum type Pickup is to induce voltage by reciprocal motion of the seismic mass with a coil in the magnetic field being suspended by a diaphragm or coil spring.. Because of its High Sensitivity and Advanced Linearity, it is suitable for detection of malfunction or deterioration of rotational machineries. Due to its structure, mounting should be done carefully for its direction or angle.
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Premier Industrial Shakers
The Hardy Shaker ensures that the Seismic Sensors and Transmitters that you have installed are working properly and giving you the results you need. Just like the pressure and flow instruments in your facility need calibration checks every year, so do your Seismic Sensors and Transmitters. This system puts the calibration check of those Seismic Sensors and Transmitters within your control, and within your budget.
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Seismic Impact Control System
ZET 048
Seismic impact control system is used to control ground surface shifts caused by earthquakes, explosions and other natural or technology-related factors. Seismic control system is used to obtain actual information of the seismic environment as well as for process facilities state monitoring (in particular, for petroleum industry pipelines systems control).
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Seismic Detection System
For the purpose of increased reliability and unification, the seismic detection system is delivered as a standard kit placed inside of the compact leak-proof casing.
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Seismic Signal Conditioners
Seismic signal conditioners are designed to accept an input from (and provide power to) a seismic sensor. They convert the signal to a proportional 4-20mA DC signal that can be used as an input to process control instrumentation such as a PLC or DCS. They provide additional convenience features such as optional displays, BNC connectors for access to the dynamic sensor signal, and bandpass filtering. Metrix offers seismic signal conditioners that can accept either acceleration or velocity sensors, and are available with or without an integral display.
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Seismic Vibration
Seismic vibration instrumentation is used to measure structural vibration on bearing housings, piping, machinery housings, and machine support structures. It is particularly suitable for machinery with rolling-element bearings. These types of bearings will generally transmit both shaft-and bearing-related vibration to the outside of the machine where it can be detected by seismic measurements.
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Seismic Transducers Calibration System
Calibration of the seismic sensors should be conducted in the low-frequency domain, which means, that the relative method used for calibration of the vibration transducers is not applicable since it does not guarantee the required accuracy level. The problem is that the reference accelerometers have uneven AFR characteristic in the low-frequency domain. Thus, calibration of seismic transducers requires implementation of a different approach.
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High Sensitivity Accelerometers
Metra Mess- und Frequenztechnik in Radebeul e.K.
The piezoelectric accelerometers on this page are intended for the measurement of lowest vibrations. Typical fields of application include the monitoring of buildings, dams, bridges, oil platforms and pipelines. These sensors are often called seismic accelerometers because they are used to monitor construction activity, volcanoes and earthquakes. Their high sensitivity is achieved -unlike other high sensitivity accelerometers- by the sensing element itself and not by internal amplification. From this results highest resolution and lowest noise.
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Seismic Triggers
Offers a powerhouse of strong features for shutdown of industrial devices at the onset of a strong earthquake.
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Signal Analysis
Modal Analysis
Modal Analysis is used for analyzing pulse and transition characteristics of signals coming from the input channels of FFT spectrum analyzers and seismic stations in real time or recorded time realization view mode.