Huis > producten > Differentiële druktransmitter >
Endress Hauser FMD77-ABB7LE1BAAA E+H Differential Pressure Transmitter Deltabar S

Endress Hauser FMD77-ABB7LE1BAAA E+H Differential Pressure Transmitter Deltabar S

Endress Hauser differential pressure transmitter

Deltabar S pressure transmitter

FMD77-ABB7LE1BAAA pressure sensor

Plaats van herkomst:

China

Merknaam:

E+H

Modelnummer:

FMD77

Praatje Nu
Vraag een offerte
Productgegevens
Montage:
Direct of afgelegen
Span -aanpassing:
± 10% van spanwijdte
Garantie:
1 jaar
Meetmedium:
Druk, niveau en stroming
Nauwkeurigheid:
± 0,1% FS
Het meten van principe:
Absolute en meter druk
Bevochtigd materiaal:
Roestvrij staal
Voedingsspanning:
10-30 VDC
Spanning:
1-5 (V)
Referentie -nauwkeurigheid:
Standaard: 0,05% platina: tot 0,025%
Certificeringen:
CE, ATEX, FM, CSA
Vacuümweerstand:
10 mbar (0,15 psi)
Meetbereik:
0-1000 Bar
Bevochtigde onderdelen materiaal:
316L roestvrij staal
Markeren:

Endress Hauser differential pressure transmitter

,

Deltabar S pressure transmitter

,

FMD77-ABB7LE1BAAA pressure sensor

Betalings- en verzendvoorwaarden
Min. bestelaantal
1 st
Prijs
USD 230
Levertijd
7-14 dagen
Betalingscondities
T/T
Levering vermogen
100 pc
Productbeschrijving

Deltabar FMD77 — Introduction

The Deltabar FMD77 from Endress+Hauser is a high-performance differential pressure (DP) transmitter specifically designed for level measurement in pressurized and vacuum tanks. It uses electronic differential pressure technology, which replaces traditional capillary-based systems and eliminates many of their limitations.

Unlike classic DP systems with long oil-filled capillaries, the FMD77 uses two separate sensor modules connected electronically, resulting in higher accuracy, faster response, and dramatically reduced temperature influence.

 

Key Features

1. Electronic Differential Pressure (eDP) Technology

  • No oil-filled capillaries
  • No temperature-induced measurement drift
  • Faster and more stable signal transmission
  • Highly accurate over long distances

2. Designed for Pressurized & Vacuum Tanks

  • Ideal for applications requiring reliable level measurement under varying pressure conditions
  • High overload resistance

3. Robust & Maintenance-Friendly

  • Fewer mechanical parts → minimal drift
  • No mechanical wear points
  • Easy installation and commissioning

4. Excellent Temperature Performance

  • Electronic signal = minimal temperature effect
  • Suitable for outdoor installations and large tanks

5. HART, Profibus, Foundation Fieldbus Options

  • Smart transmitter diagnostics
  • Integration with DCS/PLC systems
  • Part of the Endress+Hauser Memosens / Heartbeat family (diagnostics vary by model)

 

Typical Applications

The Deltabar FMD77 is optimized for:

Level Measurement in:

  • Pressurized tanks
  • Vacuum tanks
  • Evaporators
  • Distillation towers
  • Chemical reactors
  • Food & beverage storage vessels Ideal Industries:
  • Chemical & petrochemical
  • Oil & gas
  • Power generation
  • Food & beverage
  • Pharmaceutical
  • Water & wastewater

 

Technical Highlights (At a Glance)

Parameter

Typical Range

Measuring principle

Electronic differential pressure

Applications

Level, volume, density

Measuring range

Depending on sensor module (often up to ±40 mbar to 40 bar differential)

Process temperature

Wide range depending on diaphragm seal

Process pressure

Up to several hundred bar (with proper seal)

Accuracy

High (often ≤ 0.075% of span or better)

Communication

HART, PROFIBUS PA, FOUNDATION Fieldbus

Safety

SIL2/SIL3 capable (depending on configuration)

 

Why Choose the Deltabar FMD77?

  • Exceptional accuracy even in harsh environments
  • No capillary-related problems (blockage, leakage, long settling times)
  • Faster startup and response
  • Lower total cost of ownership
  • Highly reliable in high-temperature or outdoor installations

 

Stuur uw vraag rechtstreeks naar ons

Privacybeleid China Goed Kwaliteit Industriële druktransmitters Auteursrecht © 2024-2025 Xi'an Xiyi Central Control Technology Co., Ltd. Allemaal. Alle rechten voorbehouden.