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FTM50 Adjustable Sac Sensor Vibrating Fuel Level Switch Instrument Plastic Tuning Fork Scoop Switch for Fuel Level Measurement

FTM50 Adjustable Sac Sensor Vibrating Fuel Level Switch Instrument Plastic Tuning Fork Scoop Switch for Fuel Level Measurement

adjustable fuel level sensor

plastic tuning fork switch

vibrating fuel level instrument

Τόπος καταγωγής:

ΚΙΝΑ

Μάρκα:

E+H

Αριθμό μοντέλου:

FTM50

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Λεπτομέρειες για το προϊόν
Υλικό ανταλλακτικών Wetted:
Από ανοξείδωτο χάλυβα
Δυναμικό:
1-5 (V)
Υλικό:
Από ανοξείδωτο χάλυβα
Αρχή μέτρησης:
Απόλυτη πίεση και πίεση μετρητή
Υλικό διάφραγμα:
316L από ανοξείδωτο χάλυβα
Πρωτόκολλο Hart:
Διαθέσιμος
Ηλεκτρική σύνδεση:
1/2
Ακρίβεια:
± 0,1% του εύρους
Βρέθηκαν υλικά:
316L από ανοξείδωτο χάλυβα
Αντίσταση κενού:
10 Mbar (0,15 psi)
Κλίμακα θερμοκρασίας:
-40 έως 85 ° C
Κλάση προστασίας:
IP67
Πρωτόκολλο επικοινωνίας:
HART, Modbus
Υλικό στέγασης:
Από ανοξείδωτο χάλυβα
πιστοποιήσεις:
CE, ATEX, SIL
Επισημαίνω:

adjustable fuel level sensor

,

plastic tuning fork switch

,

vibrating fuel level instrument

Όροι πληρωμής και αποστολής
Ποσότητα παραγγελίας min
1 υπολογιστή
Τιμή
USD 1300
Χρόνος παράδοσης
7-14 ημέρες
Όροι πληρωμής
T/t
Δυνατότητα προσφοράς
100 υπολογιστές
Περιγραφή του προϊόντος

What is Soliphant FTM50

The Soliphant FTM50 is a point level switch (or point level detector) designed for detecting the presence (or absence) of bulk solids (especially finegrained or powdery solids) in silos, hoppers, or similar vessels. It is part of the Vibronic family of Endress+Hauser devices.

“Point level” means it detects at a specific location (e.g. the “fork”) rather than measuring the level continuously. So it might be used to detect “high level”, “low level”, “overflow” or “material arrived at this point”, etc.

 

How it works (Measuring Principle)

  • It uses a vibrating fork (vibronic) as the sensing element. The fork is excited (by piezoelectric drive) at its natural resonance frequency.
  • When the fork is covered by the bulk solid material (powder or granules), the vibration behaviour changes (for example, damping, frequency shift or amplitude change). The electronics detect that change and generate a switching signal.
  • Because there are no mechanically moving parts (just the vibrating element), wear and maintenance are minimized.

 

Key Features & Advantages

Here are its strong points:

Feature

Description / Benefit

Low bulk density capability

It can detect very light (fine, powdery) materials — standard fork works down to ~10 g/L, short fork version (~50 g/L) for higher densities.

Wide temperature & pressure ranges

Operates from about 50 °C up to +280 °C; pressure from vacuum to +25 bar.

Robust design

Stainless steel or aluminium housings; for harsh conditions; options for coatings (PTFE, ETFE) etc.

Certifications & Safety

Has international explosion-protection certificates for use in hazardous (dust/gas) zones; supports Safety Integrity Level SIL2 under IEC 61508.

Flexible mounting & connections

Fork length options, different process connections (threads, flanges, hygienic / Tri-Clamp etc.).

Diagnostics & settings

It has options for detecting build-up / abrasion, switching delays, density settings; also self-test behaviour.


Typical Applications

Where you’d use it:

  • Silos, hoppers storing fine powders or granules: cereals, flour, sugar, animal feed, dyes, chalk, cocoa etc.
  • Overfill protection or empty detection (for example, to prevent a silo from running totally empty, or to detect when product has reached a certain height) in powder handling systems.
  • Hazardous environments (dust explosion risk, etc.), where reliable detection and safety certification are required.

 Electronic Vibration Type Limit Detection Soliphant FTM50 Limit Detection Switch Tuning Fork Limit Level Switch


Important Specifications (Typical Values)

Some of the key figures to keep in mind:

Parameter

Typical / Range

Minimum bulk density (standard fork)

~10 g/L

Minimum bulk density (short fork)

~50 g/L

Process temperature

50 °C to +280 °C

Process pressure

Vacuum up to +25 bar

Sensor lengths / fork sizes

around 145 mm, 200 mm; various fork types (standard, short)

Outputs / Electronics options

NAMUR, relay, thyristor, PFM etc.

 

Limitations & Considerations

  • It’s a point level device, so it only tells you “yes/no” at the location of the fork; you don’t get continuous level profiling between this and other points.
  • Coating or build-up on the fork can affect performance — though diagnostics help detect build-up, certain materials may adhere. Choosing the proper surface finish/coating helps mitigate.
  • Selection of fork length, material, housing etc. must match the particular medium (abrasiveness, corrosiveness, particle size, humidity etc.).
  • Installation orientation and mounting must ensure the fork is properly exposed to the bulk material, avoiding false positives or failures (e.g. avoid being blocked or shielded).

 

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