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High Voltage Measurement
High Voltage Pulse Attenuator is used to attenuate high voltage pulse signals in a 50 system. It is consist of highly surge robust components with great voltage linearity. The device is symmetrical, Input and output can be exchanged.
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Flow Meters
900 Series
The Blancett Series 900 flow meters are rugged, low-priced and specifically designed to measure floodwater line flow in secondary oil recovery operations. Using time-proven rotary vane and multi-jet impeller mechanisms, the Series 900 flow meters will provide reliable long-term measurement and totalization with minimum attention and maintenance.
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Electrical Networks Control System
Electrical networks control system is intended for measurements of network electrical resistance and insulation electrical resistance of the tested specimen. The measurement process takes a couple of minutes.
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Digital Pressure Meter
ZET 7012-A-VER.3
Digital pressure meter ZET 7012-A-VER.3 is used for fast and simple absolute pressure measurements and measured values data transfer in digital format via RS-485 or 4-20 mA interface.
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Torque Measurement System
Torque measurement system is intended for periodical control and endurance testing of various moving structural elements, e.g. turbine blades, etc.
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Kit for Seismic Research Performance
The kit for seismic research performance is used for performing measurements in various climatic zones. Splash-proof connections GSC-4H (Herma-4) are used for establishing a reliable connection between the geophones within the seismic system.
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Mobile Measuring System
For the purpose of oscillations period determination, there is used an indirect measuring method, which registers oscillation processes in three mutually transverse axes. As a result of measurements, one can obtain oscillations period values and corresponding decrement values for each of the axes.
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Torque Transducer
T12HP
One torque sensor, multiple functions only T12HP can do this. Its superior basic accuracy guarantees precise values over the entire measurement range. This results in the FlexRange capability that only T12HP can provide without the need to switch the measuring range like so called dual range sensors do.
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Radar solution for width measurement of steel & metal
The OndoSense radar sensor solution determines the width of steel plates, steel strips or steel slabs (up to 1600 °C hot) with an accuracy of up to ±300 µm. Thanks to robust radar technology, sophisticated signal processing and smart radar algorithms, our radar sensors offer this high precision in width measurement even in the extreme production environments of the metal and steel industry.
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High-Precision Radar Sensors for Distance Measurement & Collision Avoidance
With our OndoSense apex and OndoSense reach radar sensors for distance measurements, you will benefit from the highest accuracy and measurement speed combined with an extremely robust radar technology for harsh industrial environments. The smart distance radar sensors provide great configuration features, a unique range of industrial applications and a wide measuring range.
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Radar solution for molten metal filling level measurement
With the OndoSense radar sensors, the fill level of liquid steel or aluminum can be measured contact-free with sub-millimeter accuracy, even at metal temperatures of up to 1600 degrees Celsius. Dust, steam, smoke, vibrations and strong heat radiation have no influence on the high precision and reliability of the radar-based molten metal level monitoring. Active cooling of the level radar is usually not necessary.
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Radar solutions for the metal & steel industry
Our reliable radar sensors enable the high-precision width measurement and thickness measurement of semi-finished metal, the contactless level monitoring of molten metal and the steel strip positioning in the coating line.
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Power Meters
As the extensive measurement capabilities and unique features required to test today's sophisticated communications systems faster and more accurately.
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Single Channel Universal Power Meter
8651A
The Spanawave/Giga-tronics 8651A Single Channel Universal Power Meter has the extensive measurement capabilities and features you need to test today's sophisticated communications systems faster, easier and more accurately.
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Dual Channel Peak Power Meter
8502A
The Spanawave/Giga-tronics 8502A Dual Channel Peak Power combine CW power measurement with the ability to make precise peak power measurements at any point on a pulsed waveform. This dual, built-in capability lets you make CW measurements and analyze pulsed waveforms with a single instrument.
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Single Channel Universal Power Meter
8651B
The Spanawave/Giga-tronics 8651B Single Channel Universal Power Meter has the extensive measurement capabilities and unique features required to test today's sophisticated communications systems faster and more accurately.
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Single Channel Peak Power Meter
8501A
The Spanawave/Giga-tronics 8501A Single Channel Peak Power Meter combine CW power measurement with the ability to make precise peak power measurements at any point on a pulsed waveform. This dual, built-in capability lets you make CW measurements and analyze pulsed waveforms with a single instrument.
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VXIbus Universal Power Meter
58542
The Model 58542 provides faster CW measurements than any other VXIbus power meter, with readings over the GPIB exceeding 150 readings per second and an exclusive Burst Mode capturing more than 5000 readings per second.
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Single Channel Universal Power Meter
8541C
The Spanawave/Giga-tronics 8541C Single Channel Universal Power Meter combines accuracy, speed, range and measurement capability.
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Power Measurement
Has the extensive measurement capabilities and unique features required to test today's sophisticated communications systems faster and more accurately.
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Dual Channel Universal Power Meter
8652B
The Spanawave/Giga-tronics 8652B Dual Channel Universal Power Meter has the extensive measurement capabilities and unique features required to test today's sophisticated communications systems faster and more accurately.
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Modulated Average Power Measurement
The Spanawave/Giga-tronics 80400A Series Modulated Power Sensors let you measure the average power of amplitude modulated, burst modulated and other complex modulated signals, such as TDMA signals - at bandwidths up to 40 kHz. This sensor works with the 8540B, 8540C, 8650A, 8650B series power meters.
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CW Power Measurement
Measure CW power from 10 MHz to 50 GHz at more than 17,500 readings per second over GPIB. Measure up to 90 dB with a single sensor, and select from a variety of high power sensors up to 50 W.
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Dual Input Universal Power Meter
8542C
The Spanawave/Giga-tronics 8542C Dual Channel Universal Power Meter combines accuracy, speed, range and measurement capability.
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Power Sensors
Measure CW power from 10 MHz to 50 GHz. Modulated Average Power Measurement. Peak Power Measurement.
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Dual Channel Universal Power Meter
8652A
The Spanawave/Giga-tronics 8652A Dual Channel Universal Power Meter has the extensive measurement capabilities and features you need to test today's sophisticated communications systems faster, easier and more accurately.
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Computer simulators
There are three computer simulators offered by INFRAMET:*SIMTERM - computer simulator of thermal imagers,*VIRTEST - computer simulator of test proces thermal imagers ( MRTD measurement)*NIGHTMET - computer simulator of image intensifier tubes
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IR FPA sensors
IR FPA sensors are the most important modules of thermal imagers. Design of sensor electronics (camera core) is a crucial part of designing of new thermal imager. Knowledge of precise parameters of IR FPA sensor is needed by both professionals involved in both IR FPA technology/thermal imagers technology because parameters of IR FPA sensors determine performance limits of thermal imagers. Therefore test equipment that enable measurement of IR FPA sensors is a vital tool for development of both IR FPA technology/thermal imagers technology. It is commonly known that data sheets provided by manufacturers of IR FPA sensors (both cooled or non-cooled) provide too little details for electronics designers. Sometimes the provided data is not accurate enough and better sensor performance can be achieved using modified control signals. Therefore design teams loose sometimes years to develop electronic camera core optimized for a specific IR FPA sensor. When the type of the IR FPA sensor is changed the whole process is to be repeated. In this situation an universal, flexible camera core that would accept IR FPA sensors from different manufacturers and to carry out semi-automatic determination of optimal signal controls for a specific IR FPA sensor would be highly desirable.
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Optical tables
The primary goal of a well designed optical table is to eliminate relative motion between components of test system located on the surface of the optical table because such motion can generate measurement errors.