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Proline Promass I100 8I1B Ultra-Compact Transmitter 100% New Original for Inline Viscosity Flow Measurement OEM for Liquid

Proline Promass I100 8I1B Ultra-Compact Transmitter 100% New Original for Inline Viscosity Flow Measurement OEM for Liquid

Proline Promass I100 flow transmitter

inline viscosity flow meter

OEM liquid flow transmitter

Lieu d'origine:

CHINE

Nom de marque:

E+H

Numéro de modèle:

8i1b

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Détails du produit
Tension d'alimentation:
10-30 VDC
Principe de mesure:
Pression absolue et jauge
Connexion de traitement:
1/2 "NPT
Type de montage:
Enfilé
Connexion électrique:
M12x1
Précision de référence:
Norme: 0,05% Platine: jusqu'à 0,025%
Signal de sortie:
4-20 mA
Méthode de montage:
Rail à vacarme ou support mural
Protocole:
Hart / rs485
Plage de température:
-40 à 185°F
Gamme:
0 à 10 000 psi
Pièces mouillées Matériau:
Acier inoxydable
Matériel:
Acier inoxydable
Protocole de communication:
CERF
Température de fonctionnement:
- 20 à 85 degrés Celsius
Mettre en évidence:

Proline Promass I100 flow transmitter

,

inline viscosity flow meter

,

OEM liquid flow transmitter

Conditions de paiement et d'expédition
Quantité de commande min
1 pc
Prix
USD 600
Délai de livraison
7-14 jours
Conditions de paiement
T / t
Capacité d'approvisionnement
100 pc
Description du produit

What is the Promass I 100

The Promass I 100 is a high-performance Coriolis mass flowmeter designed for industrial applications, offering measurements of mass flow, density, and temperature, with optional viscosity measurement.

It is part of the Endress+Hauser “Promass I” line, featuring a straight single-tube sensor design and very compact transmitter housing.

 

Measuring principle

  • The fundamental principle is Coriolis force measurement: the flow tube is vibrated and the fluid flowing through causes a phase shift in oscillations between inlet & outlet positions. This phase shift is proportional to mass flow.
  • The tube is excited at its resonance; changes in oscillation frequency due to changes in mass (tube + fluid) are used to compute density.
  • Temperature of the measuring tube is also measured, both for fluid temperature and to compensate temperature effects.

 

Key Technical Features & Specifications

Here are some of its important characteristics:

Feature

Details

Flow variables measured

Mass flow, density, temperature; optional viscosity.

Sensor design

Straight single-tube design; “easy cleanable”.

Tube material / wetted parts

Titanium for measuring tube; other parts in stainless steel or coating depending on version.

Size range (nominal diameter)

DN 8 to DN 80 (≈ 3/8″ to 3″).

Accuracy

• Liquids: about ±0.1 % for mass & volume flow; <-- density accuracy in liquid ~ ±0.0005 g/cm³.
• Gases: larger error, e.g. approx ±0.5 % mass flow.

Temperature / Pressure ranges

Medium temperature: from 50 °C up to approx +150 °C.
Process pressure: up to PN100 (or equivalent), specifics depending on DN, material etc.

Environmental / Protection

High ingress protection (IP69K in many versions). Robust transmitter housing.

Installation

“Full-bore” design to minimize pressure drop. As its straight tube, less demanding for inlet/outlet runs compared to bent-tube designs.

Outputs / Communication

Multiple typical industrial outputs: analog (4-20 mA with HART), digital protocols (Modbus RS-485, PROFIBUS, PROFINET, etc.), pulse/frequency/switch outputs.

Additional features

Integrated web server for local configuration, diagnostics. “Heartbeat Technology” for verification and monitoring.

 

Advantages

  • High accuracy and stability: Since the measurement is mass‐based and not strongly influenced by fluid viscosity, density, or flow profile, it gives very reliable readings.
  • Multi-variable measurement: Flow, density, temperature (and viscosity optionally) reduce need for multiple sensors.
  • Compact & robust: Small footprint transmitter, full-bore, straight tube helps in installations where space is limited and/or cleaning is needed.
  • Low pressure loss: Full bore and straight single tube help minimizing pressure drop. Good for sensitive fluids.
  • Good for hygiene and cleaning: Because of the easy-clean straight tube. Also options exist for hygienic/stainless housing.

 

Limitations / Considerations

  • Cost tends to be relatively high vs simpler flowmeters. More sophisticated construction, more electronics.
  • For very low flow or very small diameters, sensitivity and signal-to-noise becomes more challenging need to check minimum flow (cut-off) for your application.
  • The wetted materials (Titanium, stainless) have to be compatible with the fluid (chemically, abrasive, etc.). If the fluid is aggressive or contains solids, consider wear or corrosion.
  • Temperature and pressure limits: depending on the exact model; ensure your process operating envelope fits within them.
  • Maintenance might require more care (cleaning, calibration) due to the precision of the instrument.

 

Typical Applications

The Promass I 100 is suitable for many industrial sectors, especially where accurate mass flow + density + temperature are needed, such as:

  • Chemical process lines
  • Food & beverage where hygiene / cleaning is required
  • Pharmaceuticals
  • Oil & gas (for certain liquids/gases)
  • Skid / module builders (because of compact size)
  • Any application where pressure drop must be minimized or full-bore is preferable.

 

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