Référence fabricant
NPH-8-002.5DH
NPH Series 10" Differential Pressure Novasensor with Hybrid Calibration TO-8
Amphenol Advanced Sensors NPH-8-002.5DH - Spécifications du produit
Informations de livraison:
ECCN:
Informations PCN:
Statut du produit:
Amphenol Advanced Sensors NPH-8-002.5DH - Caractéristiques techniques
Pressure Range: | 2.5kPa |
Sensor Type: | Differential |
Output Type: | Voltage |
Pressure Accuracy (%): | ±0.5% |
Méthode de montage : | Through Hole |
Fonctionnalités et applications
The NPH-8-002.5DH is a part of NPH Series of integrated circuit silicon sensor chip is housed in a standard TO-8 electrical package that is printed circuit board mountable. The latest techniques in micromachining have been used to ion-implant piezoresistive strain gauges into a wheatstone bridge configuration that is integrally formed on a micromachined silicon diaphragm.
The NPH Series employs SenStable® processing technology, providing excellent output stability. Constant current excitation to the sensor produces a voltage output that is linearly proportional to the input pressure. The user can provide standard signal conditioning circuitry to amplify the 100 mV output signal. The sensor is compatible with most non-corrosive gases and dry air
Features:
- Solid state, high reliability
- Standard TO-8 package suitable for PC board mount
- Low cost, small size
- Available in gauge, absolute, and differential pressure versions
- Media compatible with non-corrosive gases and dry air
- Typical FSO 100 mV @ 1.5 mA
- Thermal accuracy FSO 0.4% typical
- Overpressure capability to five times maximum rated pressure
- Three standard ranges: 15, 30 and 100 psi (1, 2 and 7 bar)
- Nonlinearity 0.05% FSO typical
- Standard 3/16 in OD pressure port
- Ceramic substrate with temperature compensation resistors
Applications:
- Process control, P-to-I converters
- Pneumatic control systems
- HVAC controls
- Biomedical
- Aerospace
- Computer peripherals
Emballages disponibles
Qté d'emballage(s) :
48 par Tube
Méthode de montage :
Through Hole