Rosemount 3300 Series Guided Wave Radar Level & Interface Transmitters Easy to use with proven reliability.

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Presentation transcript:

Rosemount 3300 Series Guided Wave Radar Level & Interface Transmitters Easy to use with proven reliability

Slide 2 AgendaAgenda Overview of the 3300 product line Features and Benefits of 3300 Applications

Slide 3 AgendaAgenda Overview of the 3300 product line Features and Benefits of 3300 Applications

Slide Series Guided Wave Radar: Measurement principle - Level  TDR (Time Domain Reflectometry) technology  Microwave pulses guided down a probe  Pulse reaches media with different dielectric constant, part of energy is reflected back  Distance = Speed X Time of travel /2 Click picture to run movie

Slide Series Guided Wave Radar: Measurement principle - Level & Interface  Part of pulse continues until reflected at lower product surface Click picture to run movie

Slide 6 Probe types and their Wave shapes - Different applications require different type Wave shapes - Click picture to run movie Coaxial –Not affected by disturbing objects, turbulence, low dielectrics –Clean applications Twin Leads –Better than coaxial for viscous media –Avoid product bridging between probes Single leads –Best choice for highly viscous, thick or dirty media –Avoid nearby objects

Slide 7 Full range of Probe Styles Coaxial Rigid Twin Flex. Twin Rigid SingleFlex. Single Std, in SST, Monel or Hastelloy HTHP/HP in SST Std in SST Std, in SST, Monel, Hastelloy or PTFE covered HTHP/HP in SST Std, in SST, or PTFE covered

Slide 8 2. Flexible probe load system 6. Overall length accommodates flanges up to class Moisture barrier 3. Flexible locking system compensates for thermal expansion and fastens the ceramics 4. Brazed Hermetic/ Gas-tight seal isolated from the process and outside forces on the probe 1. Temperature and pressure seal with ceramic insulators and graphite gaskets provide robust thermal and mechanical barrier as well as chemical resistance Probe HTHP process seal - Designed to meet Extreme Pressures and Temperatures

Slide 9 Protective plate design for exotic material and PTFE covered probes Exotic plate SST flange not wetted PTFE plate SST threads SST flange not wetted

Slide 10 Plant Integration Wireless w/ 753R Radar Configuration Tools Simple configuration via: AMS, 375 Field communicator or the configuration and diagnostics PC based RCT software Burst mode functionality allows integration of multi variable measurement with any control system or monitoring system Present T/H enables FF today

Slide 11 SpecificationsSpecifications Loop-powered VDC Output: HART/4-20 mA or RS485 with Modbus Approvals: Intrinsically Safe or Explosion Proof (FM, CSA, ATEX, IECEx) Housing: NEMA 4X, IP 66 Ref. accuracy: ± 0.2” (± 5 mm) for probes 16.4 ft / 5 m Repeatability: ± 0.04 inch (± 1 mm) Update time: < 1 per sec Measuring range: Up to 77’ (23.5 m) depending on probe Dielectric constant:  1.4 depending on probe

Slide 12 Specifications (continued) Temperature Limits: –Std: -40 to +302 °F (-40 to +150 °C) –HTHP: -76 to +752 °F (-60 to +400 °C) –HP: -76 to +392 °F (-60 to +200 °C) Pressure Limits: –Std: Full vacuum to 580 PSIG (40 Bar) –HP/HTHP: Full vacuum to 5000 PSIG (345 Bar) –(Final pressure rating depends on flange and o-ring selection)  Process material:  316 / 316L SST or Hastelloy or Monel or PTFE and Teflon (PTFE, PFA) and O-ring materials  All-PTFE  316/316L SST, ceramics, graphite (and PFA for HP)  Housing material:  Polyurethane-covered Aluminum or SST Grade CF8M

Slide 13 AgendaAgenda Overview of the 3300 product line Features and Benefits of 3300 Applications

Slide 14 Guided Wave Radar Advantages Top-down, direct measurement Handles changing density, dielectrics, conductivity, temperature, pressure, pH and viscosity Handles small tanks, difficult tank geometry, interfering obstacles Virtually unaffected by dust, vapor and turbulence Measures interface No moving parts, no calibration Easy swap (existing and small openings)

Slide reduces cost with Multivariable TM process outputs First 2-wire Level and Interface Guided Wave Radar

Slide series Guided Wave Radar – Robust and Modular Mechanical Design Dual compartment housing –Protects electronics from moisture and other environmetal contaminations –Increased safety Remove head without opening tank and no moving parts –Easier to repair/replace failed units or do upgrades –Reduced maintance costs Rotate housing in any direction –Safe readings and easy wiring Full range of probe styles Cut-to-fit probes –To fit individual tanks –Entire tank range, increased availability Multivariable transmitter – Level & Interface with one tank penetration

Slide 17 Radar Configuration Tools – For Easy Configuration Installation Wizard makes it simple for first-time Series 3300 users to commission an application...

Slide 18 Radar Configuration Tools – For Easy Troubleshooting and diagnostics...Tank Graphing capabilities allow more advanced users to troubleshoot difficult applications...

Slide 19 Advanced signal processing for reliable measurements in demanding applications  Series 3300 utilizes a high- capacity, low-power microprocessor  Dynamic Gain Control automatically adjusts for maximum positive amplitude of waveform prior to saturation  Automatically adjusts gain to maximize signal-to-noise ratio for each application  Increased measurement reliability OFF ON Signal strength Distance With Dynamic Gain Optimization Without Dynamic Gain Optimization Gain difference

Slide 20 Proven reliability 3300 has proven to be very reliable with a high degree of satisfied customers Field demonstrated MTBF is currently at 171 years EPM Contacting radar moved up to First place in Control Readers Choice Awards results Unit no painted in gold metallic!

Slide 21 AgendaAgenda Overview of the 3300 product line Features and Benefits of 3300 Applications

Slide Applications  Most industrial level measurements – Simple to apply – Few application rules – Wide range of probes styles  Replacement of capacitance probes – No calibration, tolerant to coating, longer life  Special applications – Ammonia – Liquified gasses  Some solid applications – Corn, Urea powder, Soya flakes, cement, calcium carbonate powder

Slide Applications - Replacement of Displacer No moving parts Not affected by density changes 1 to 1 replacement with proprietary flanges No constraints from shape of cage Applications include: –Distillation columns –Gas-oil production separators compressor tanks –Power plants and industrial utility heater vessels –Liquified gases and freons Disassemble and replace top-works and displacer

Slide Applications – Interface Measurements  Between oil-like and water-like products  Solvents and water Application includes: –Olefin and Butanediol –Oil and water separators –Turpetine and water –Toluene and water

Slide 25 Exotic material and PTFE covered probes Applications include: –Mineral acids (Hydrochloric, Sulfuric or Nitric Acid and others) –Caustic Materials such as Sodium Hydroxide –Salt solutions such as brine and seawater –Liquid halogen applications such as liquid chlorine 3300 Applications – Corrosive environments