Endress Hauser Minicap FTC262-AA14I1 Capacitance Point Level Detection OEM
Endress Hauser Minicap FTC262-AA14I1 Capacitance Point Level Detection OEM
Place of Origin
DE
Brand Name
Endress Hauser
Certification
Rohs
Model Number
FTC262-AA14I1
Product Details
Process Temperaturerange:
-40°C...+80°C
Process Pressure:
-1 ... 6 Bar
Ambient Temperature:
-40°C...+70 °C
Max. Tensile Strength:
3000 N
Sensor Length:
Min. 500 Mm
Highlight:
Endress Hauser Minicap FTC262
,
Point Level Detection Minicap FTC262
,
OEM endress hauser ftc262
Payment & Shipping Terms
Minimum Order Quantity
1pcs
Price
Negotiable
Packaging Details
Original packing
Delivery Time
On request
Payment Terms
T/T
Supply Ability
5000pcs/month
Product Description
Endress Hauser Minicap FTC262-AA14I1 Capacitance Point Level Detection OEM
Capacitance Point Level Detection Minicap FTC262 FTC262-AA14I1
Options
Aluminium Housing
Application limits
Solids
Communication
PNP transistor output
Specs at a glance
Process temperature: -40°C...+80°C (-40°F ...+176°F)
Process pressure / max. overpressure limit: -1 ... 6 bar (-14.5 ... 90 psi)
Field of application
Minicap FTC262 is a simple and cost-effective rope probe for point level detection in bulk solids, particularly suited to applications involving aggressive media and heavy build-up. It is designed for point level detection of light bulk solids, e.g. grain products, flour, milk powder, animal feed, cement, chalk or gypsum.
For point level detection of light bulk solids, with a grain size up to max. 30mm and a dielectric constant εr ≥ 1.6. Typical applications: Grain products, flour, milk powder, animal feed, cement, chalk or gypsum.
Process connection: Threads
Temperature: -40 to +80°C (-40 to +176°F)
Pressure: -1 to +6bar (-14.5 to +90psi)
Sensor length: 500mm (20") to 6,000mm (236")
International explosion protection certificates, overfill prevention WHG
Benefits
Simple mounting and commissioning without calibration
Mechanical safety, cost-efficiency and long operating life due to no wearing parts
High operational safety and reliability due to active build-up compensation
Optimized storage by simply shortening the rope probe on site