Micro Motion 4" Class 150 Coriolis Flow Meter
Rp123000.00
Micro Motion 4" Class 150 Coriolis Flow Meter
The Emerson Micro Motion 4" Class 150 Coriolis Flow Meter is a premium mass flow measurement instrument engineered for precise measurement of mass flow, density, and temperature in demanding industrial environments. Utilizing advanced Coriolis technology, this flow meter provides exceptional accuracy, repeatability, and reliability for liquid, gas, and slurry applications.
Designed with a robust stainless steel sensor body and intelligent transmitter system, the Micro Motion ELITE™ CMF400 Series is widely used in oil & gas, petrochemical, refinery, LNG, chemical processing, and custody transfer applications where measurement performance is critical.
Main Features
Direct mass flow measurement without compensation
Simultaneous measurement of flow, density, and temperature
High accuracy and repeatability
Suitable for liquid, gas, and slurry service
No moving mechanical parts for reduced maintenance
Smart Meter Verification diagnostics
Advanced digital communication capabilities
Rugged industrial construction for harsh environments
Technical Specifications
Parameter | Specification |
|---|---|
Brand | Emerson Micro Motion |
Model | ELITE CMF400 |
Meter Type | Coriolis Mass Flow Meter |
Line Size | 4 Inch (DN100) |
Pressure Rating | ANSI / ASME Class 150 |
Process Connection | RF Flanged |
Wetted Material | 316L Stainless Steel |
Accuracy | Up to ±0.10% of rate |
Density Accuracy | ±0.0005 g/cm³ |
Temperature Range | -240°C to 350°C |
Communication | HART / Modbus / FOUNDATION Fieldbus |
Protection Rating | IP66 / IP67 |
Power Supply | 18–100 VAC or 12–28 VDC |
Applications
Custody transfer systems
Crude oil and refined product measurement
LNG and natural gas processing
Chemical and petrochemical plants
Refinery process control
Batch and blending systems
Offshore and FPSO facilities
Advantages
Superior measurement stability
Minimal pressure drop
Excellent long-term reliability
Reduced operational maintenance
High resistance to vibration and process disturbances
Accurate measurement independent of fluid properties




