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Eclipse® 760 Guided Wave Radar Transmitter

Brand: Magnetrol

The Eclipse® Model 706 high performance transmitter is a loop-powered, 24 VDC level transmitter that is based upon the proven technology of guided wave radar (GWR).

Encompassing a number of significant engineering accomplishments, this leading-edge level transmitter is designed to provide measurement performance well beyond that of many of the more traditional technologies.

Utlilizing "diode switching" technology, along with the most comprehensive probe offering on the market, this single transmitter can be used in a wide variety of applications ranging from very light hydrocarbons to water-based media.

The innovative angled, dual compartment enclosure is now a common sight in the industry.

This enclosure, first brought to the industry by Magnetrol® in 1998, is angled to maximize ease of wiring, configuration, and viewing of the versatile graphic LCD display.

One universal ECLIPSE Model 706 transmitter can be used and interchanged with all probe types, and offers enhanced reliability as it is suitable for use in critical SIL 2/3 Certified  safety loops.

The ECLIPSE Model 706 transmitter supports both the FDT/DTM and enhanced DD standards, which allows viewing of valuable configuration and diagnostic information such as the echo curve in tools such as PACTware™, AMS Device Manager, and various HART® Field Communicators.

Technology - Guided Wave Radar

Micropower impulse radar combines time domain reflectometry, equivalent time sampling, and modern low power circuitry.

This synthesis of technologies creates a high-speed Guided Wave Radar transmitter.

The electromagnetic pulses are propagated via a waveguide that focuses the energy and yields a system many times more efficient than Non-Contact Radar.

Guided Wave Radar Probes

Choosing the proper guided wave radar (GWR) probe is the most important decision in the application process. The probe configuration establishes fundamental performance characteristics.

Coaxial, twin element (rod or cable) and single element (rod or cable) are the three basic configurations used today, each with specific strengths and weaknesses.

Single element GWR probes act quite differently from coaxial and twin element designs.

The pulses of energy develop between the center rod and the mounting nut or flange; the pulse propagates down the rod as it references its ground at the top of the tank.

The efficiency of the pulse "launch" is directly related to how much metallic surface exists around it at the top of the vessel.

Signal transmission can be significantly improved by placing a single rod inside of a bridle or chamber.

Operating Principle

The ECLIPSE guided wave radar transmitter is based upon the technology of TDR (time domain reflectometry). TDR utilizes pulses of electromagnetic energy transmitted down a wave guide (probe).

When a pulse reaches a liquid surface that has a higher dielectric constant than the air (εr = 1) in which it is traveling, a portion of the pulse is reflected.

The transit time of the pulse is then measured via ultra speed timing circuitry that provides an accurate measure of the liquid level.

The transit time of the pulse is then measured via high speed timing circuitry that provides an accurate measure of the liquid (or solids) level.
Features
  • Low dielectric measurement capability (εr ≥ 1.4)
  • Volumetric output
  • Quick connect/disconnect probe coupling
  • Operates in visible vapors and ignores most foams
  • IS, XP, and Non-Incendive approvals
  • Ignores coating buildup
  • Options:
    • Foundation fieldbus™ or PROFIBUS PA digital outputs
    • Display/keypad
    • Local remote mounting
    • Interface measurement

Specifications

Brand

Approvals

  • ATEX
  • IEC
  • FM
  • SIL
  • CCOE
  • CSA
  • EAC (GOST)
  • INMETRO
  • Marine
  • Steam Drum
  • TÜV / DIBt

System Design

  • Measurement Principle: Guided Wave Radar based on Time Domain Reflectometry (TDR)

Input

  • Measured Variable: Level, as determined by GWR time of flight
  • Span: 6 inches to 100 feet (15 cm to 30 m), Model 7yS Probe 20 feet (610 cm) Max.

Output

  • Type: 4-20 mA with HART: 3.8 mA to 20.5 mA useable (per NAMUR NE43) | FOUNDATION Fieldbus™: H1 (ITK Version 6.2.0) | PROFIBUS PA | Modbus
  • Resolution: Analog - 0.003 mA | Digital Display: 1 mm
  • Loop Resistance: 591 ohms @ 24 Vdc and 22 mA
  • Diagnostic Alarm - Selectable: 3.6 mA, 22 mA (meets requirements of NAMURNE43), or HOLD last output
  • Diagnostic Indication: Meets requirements of NAMUR NE107
  • Damping: Adjustable 0-10 seconds

User Interface

  • Keypad: 4-button Menu-driven Data Entry
  • Display: Graphic Liquid Crystal Display
  • Digital Communication/Systems: HART Version 7—with Field Communicator, AMS, or FDT | DTM (PACTware™), EDDL | FOUNDATION Fieldbus, PROFIBUS PA or Modbus
  • Menu Languages - Transmitter LCD: English, French, German, Spanish, Russian | HART DD: English, French, German, Spanish, Russian, Chinese, Portuguese, Polish
  • FOUNDATION Fieldbus, PROFIBUS PA and Modbus Host System: English

Power (At Transmitter Terminals)

  • HART: General Purpose (Weatherproof)/Intrinsically Safe/Explosion-proof: 16 to 36 Vdc
  • FOUNDATION Fieldbus and PROFIBUS PA: 9 to 17.5 Vdc
  • FISCO ia / FNICO ic, Explosion Proof, General Purpose and Weatherproof
  • Modbus: 8 to 30 Vdc
  • Explosion Proof, General Purpose, and Weatherproof
  • 11 Vdc Min. under Certain Conditions (Refer to I&O Manual 57-660)

Housing

  • Material: IP67/Die-Cast Aluminum A413 (< 0.6 % Copper), optional Stainless Steel
  • Net/Gross Weight - Aluminum: 4 lbs (1.8 kg) | Stainless Steel: 10.0 lbs (4.50 kg)
  • Overall Dimensions: H 8.34” (212 mm) x W 4.03” (102 mm) x D 7.56” (192 mm)
  • Cable Entry: 1/2” NPT or M20 x 1.5
  • SIL 2/3 Capable (Certified): Safe Failure Fraction = 93 % (HART only) | Functional Safety to SIL 2/3 in accordance with IEC 61508

Environment

  • Operating Temperature: -40 to +175° F (-40 to +80° C), LCD Viewable -5 to +160° F (-20 to +70° C)
  • Storage Temperature: -50 to +185° F (-45 to +85° C)
  • Humidity: 0 to 99 %, Non-Condensing
  • Electromagnetic Compatibility: Meets CE Requirement (EN 61326) and NAMUR NE 21*
  • *Single rod probes must be used in metallic vessel or still well to maintain CE noise immunity
  • Surge Protection: Meets CE EN 61326 (1000 V)
  • Shock/Vibration: ANSI/ISA-S71.03 Class SA1 (Shock), ANSI/ISA-S71.03 Class VC2 (Vibration)

Performance

  • Reference Conditions: Reflection from Liquid, with Dielectric Constant in Center of Selected range, with a 72” (1.8 m) Coaxial Probe at +70° F (+20° C), in Auto Largest Threshold Mode➀
  • Linearity: Coaxial, Single Rod Rigid/Cable: < 0.1 % of Probe Length or 0.1 inch (2.5 mm), whichever is greater➁
  • Accuracy - Coaxial, Single Rod Rigid/Cable: ± 0.1 % of Probe Length or ± 0.1 inch (2.5 mm), whichever is greater | Interface Operation: Coaxial: ± 1 inch (25 mm) for an Interface Thickness greater than 2 inches (50 mm)
  • Resolution: ± 0.1 inch or 1 mm
  • Repeatability: < 0.1 inch (2.5 mm)
  • Hysteresis: < 0.1 inch (2.5 mm)
  • Response Time: Approximately 1 second
  • Initialization Time: Less than 10 seconds
  • Ambient Temperature Effect: Approx. ± 0.02 % of Probe Length/degree C (for probes greater than 8 feet (2.5 m))
  • Process Dielectric: < 0.3 inch (7.5 mm) within Selected Range
  • ➀Specifications will degrade in Fixed Threshold mode
  • ➁Linearity in top 18 inches (46 cm) of single rod probes will be application dependent.

FOUNDATION Fieldbus™

  • ITK Version: 6.2.0
  • H1 Device Class: Link Master (LAS) — Selectable ON/OFF
  • Function Blocks: (8) Al, (3) Transducer, (1) Resource, (1) Arithmetic, (1) Input Selector,(1) Signal Characterizer, (2) PID, (1) Integrator
  • Quiescent Current: 15 mA
  • Execution Time: 15 ms (40 ms PID Block)
  • Device Revision: 02
  • DD Version: 0x01

PROFIBUS PA

  • Device Revision: 0x101A
  • Digital Communication Protocol: Version 3.02 MBP (31.25 kbits/sec)
  • Function Blocks: (1) xPhysical Block, (8) xAI Blocks, (3) xTransducer Block
  • Quiescent Current: 15 mA
  • Execution Time: 15 ms

MODBUS

  • Power Consumption: < 0.5 W
  • Signal Wiring: Two-Wire Half Duplex RS-485 Modbus
  • Ground (Common Mode) Voltage: ± 7 V
  • Bus Termination: Per EIA-485

  • Ammonia Storage
  • Biofuel & Biogas
  • Blending Operations
  • Catalysis Vessels
  • Chemical Injection
  • Chemical Injection Skids
  • Chemical Reactors
  • Chlor-Alkali Process
  • Condenser
  • Deionization Tanks
  • Distillation Columns
  • Distillation Towers
  • Fermentation Vessels
  • Heat Recovery Steam Generator (HRSG) - Power/Utilities
  • Lime Slurry Level
  • Liquid-Liquid Extraction
  • Mixing & Blending Systems
  • Neutralization
  • Quench Tower/Settler
  • Reboiler
  • Reflux Drum
  • Scrubber Vessels
  • Seal Pots - Liquid Level Measurement
  • Steam Drums for Chemical Industry
  • Surge Drums
  • Tank Blanketing
  • Tank Blanketing in Oil & Gas Field Processing
  • Vapor and Liquid Separation
  • Water Services
  • Water Storage Tanks

Documentation

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