BLVR Series Low Voltage Pressure Sensors

Amphenol All Sensors' BLVR series sensors for use with non-corrosive, non-ionic working fluids

Image of Amphenol All Sensors' BLVR Series Low Voltage Pressure SensorsAmphenol All Sensors’ BLVR series basic sensor is based on a dual die reference technology to reduce all output offset or common mode errors. It also incorporates All Sensors CoBeam2™ technology to reduce the overall supply voltage while maintaining comparable output levels to traditional equivalent basic sensing elements. This lower supply voltage gives rise to improved warm-up shift while the CoBeam2™ technology itself reduces package stress susceptibility resulting in improved overall long-term stability. The technology also vastly improves position sensitivity to nearly unmeasurable levels. This series is intended for use with non-corrosive, non-ionic working fluids such as air, dry gases, and more. The output is also ratiometric to the supply voltage and is operable from 1.8 VDC to 3.3 VDC.

Features and Benefits
  • 1 in. to 30 in. H2O
  • 1.8 VDC to 3.3 VDC supply voltage
  • 0.3% linearity
  • Offset compensated
  • Superior position sensitivity
  • Improved warm-up shift distribution
Applications
  • Medical instrumentations
  • Environmental controls
  • HVAC
  • Portable/handheld devices

BLVR Series Low Voltage Pressure Sensors

ImageManufacturer Part NumberDescriptionAccuracyVoltage - SupplyAvailable QuantityPriceView Details
SENSOR 0.04PSID 0.08" .008V 4SIPBLVR-L01D-B1NS-NSENSOR 0.04PSID 0.08" .008V 4SIP±2%6V77 - Immediate$32.60View Details
SENSOR 0.18PSID 0.08" .024V 4SIPBLVR-L05D-B1NS-NSENSOR 0.18PSID 0.08" .024V 4SIP±2%6V436 - Immediate$32.60View Details
SENSOR 0.36PSID 0.08" .032V 4SIPBLVR-L10D-B1NS-NSENSOR 0.36PSID 0.08" .032V 4SIP±2%6V13 - Immediate$32.60View Details
SENSOR 0.72PSID 0.08" .038V 4SIPBLVR-L20D-B1NS-NSENSOR 0.72PSID 0.08" .038V 4SIP±2%6V0 - Immediate$32.59View Details
SENSOR 1.08PSID 0.08" .042V 4SIPBLVR-L30D-B1NS-NSENSOR 1.08PSID 0.08" .042V 4SIP±2%6V0 - Immediate$32.59View Details
Published: 2019-05-20