Cryogenic ICP® accelerometers from IMI Sensors are designed for exceptional performance in harsh, low-temperature environments down to -320 °F.
Cryogenic cables and connectors
PCB accelerometers and pressure cryogenic sensors are designed and tested to promote survivability in demanding environments.
l is -320°F (-196°C). It can be exposed to much lower temperatures to -420°F (-251°C), indicated as a storage temperature specification. To survive at these lower temperatures, specially selected amplifier components are used along with each unit being hermetically sealed and i
Armored cables and connectors for industrial sensors
Endevco cryogenic charge output piezoelectric accelerometers are built specifically to measure vibration under conditions down to -452° F (-269° C).
PCB® manufactures pressure sensors for a variety of dynamic pressure measurements.
PTFE cables slide easily through cable trays and will survive in acidic environments when paired with the right connector.
Measure high pressure, repetitive pulses in hydraulic & pneumatic applications
n to -320°F (-196°C). It is the first triaxial accelerometer to complement PCB's 351 family of single axis cryogenic accelerometers.
Model 354A14 features:
Wide frequency range up to 10k Hz at 10%
High resonant frequency of ≥ 25 kHz
Small size and low
Rugged industrial cables and connectors for vibration monitoring. IMI Sensors offers cables for harsh environments, from high-temp to cryogenic, plus bulk spool options.
PCB® manufactures a wide variety of cables that will mate to different sensor types, signal conditioners and data acquisition systems.
Adhesive and magnetic bases for mounting PCB accelerometers.
PCB cryogenic pressure sensors ensure reliable operation and accurate measurements in extremely cold environments.
Cryogenic ICP® accelerometers operate at temperatures below the temperature limit of most voltage mode sensors.
PCB's force washer transducer provides accurate force measurements in fastener testing, ensuring quality control and reliability in assembly processes.