Key Features
Direct drive technology eliminates wear, increasing product life
Silicone-dampened coil (option) resists vibration effects
Easy installation using wrench flats
Sealed case provides dust-proof, weather / corrosion-resistant product
Markets & Applications
Machine Automation
Hydrogen and Technical Gases
Dampening
Silicone dampened tube
Process Connection Style
Threaded
Accuracy
2% of span at setpoint
Case Style
Crimped compact case
Dial Size
1 1/2"
1 1/4"
Pressure Type
Gauge pressure
Ranges
4 ... 275 bar / 60 ... 4000 psi
Wetted Parts Material
Coil Beryllium copper, socket brass
Ingress Protection
IP65
Case or Body Material
Stainless steel 304 (1.4301)
Process Connection Location
Centre back
Mounting
Stem
Equipped with a highly reliable and accurate sensing element, featuring the patented Ashcroft® Si-Glass™ sensor, Ashcroft offers a range of differential pressure transmitters specifically designed and developed for use in the cleanroom industry. Using an ultra-thin single crystal diaphragm, Ashcroft differential pressure transmitters offer inherent sensor repeatability and stability, making them stand out as highly accurate, long-term stable and reliable measurement instruments for cleanroom pressure monitoring.
The silicon diaphragm sensor is free of adhesives or other organic materials that are commonly used in differential pressure measurement technology and contribute to a drift in the measured value acquisition or a mechanical reduction in the measurement accuracy.
Ashcroft differential pressure transmitters incorporate the TruAccuracy™ specification. Ashcroft’s accuracy claim is based solely on terminal endpoint methodology and not on statistically derived accuracy claims’.
TruAccuracy™ means that Ashcroft differential pressure transmitters include zero offset, non-linearity, hysteresis, non-repeatability, zero offset and span adjustment error in their accuracy statement.
The user thus has a ready-to-install device at his disposal that does not require any initial calibration after installation. This considerably reduces the time and costs involved.
Other commercially available measuring devices usually do not include information on zero point deviation and span error in their accuracy specifications, so that these measurement errors (up to ±1.00%) must be added to the accuracy in order to achieve reliable performance characteristics.