The 1053V is a general purpose IEPE force sensor measuring up to 5000 lbf, 1–500 mV/lbf sensitivity, quartz compression, rugged stainless steel, suitable for modal analysis and process control.
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The 1217C is a high-performance ring-style charge mode force sensor, high pC/lbf sensitivity, rugged quartz design for accurate dynamic force measurement in harsh environments, suitable for press monitoring and high temp applications.
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The 2310A is a charge mode rugged pressure sensor for high intensity and high temp applications.
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The 1060V is a high range IEPE force sensor up to 50,000 lbf, low sensitivity 0.1–10 mV/lbf, quartz compression, heavy duty stainless steel 460 g, suitable for large force industrial applications.
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The 3010M is a primary transfer standard single-axis accelerometer for calibrating other sensors against NIST standards, 10 mV/g sensitivity, back-to-back design for high accuracy calibration. Ideal for laboratory and quality control with wide frequency range.
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The 2180C is a charge mode high intensity acoustics pressure sensor, high sensitivity 600 pC/psi, tolerant to +500°F, measuring sound pressure levels up to 191 dB.
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The 3006A is a moisture-resistant single-axis accelerometer with high sensitivity 500 mV/g, designed for vibration measurement in humid or short-term immersion environments like structural monitoring or stress testing. Protected housing, high accuracy for long-term use in moist conditions. Suitable for food industry, marine, or high-humidity applications.
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The 2006V is an IEPE probe-style pressure sensor, high sensitivity, suitable for general purpose dynamic pressure measurements with fast rise time and wide frequency range for hydraulic/pneumatic systems.
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The 3003B is a high performance triaxial accelerometer designed for down-hole drill head vibration monitoring, low sensitivity 2 mV/g to handle wide measurement range. Titanium housing, high shock resistance, low voltage operation, suitable for oil & gas and harsh environments. Ideal for applications requiring reliable data with minimal mass loading.
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