The Rosemount 8721 Hygienic Magnetic Sensor is specifically designed for food, beverage and pharmaceutical applications that require a reliable, safe, and hygienic design.
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All-welded sensor designed for food, beverage and pharmaceutical applications
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Contact surfaces constructed of FDA-approved materials that comply with 3-A and EHEDG standards
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Lightweight compact design makes installation easy
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Sizes range from 0.5 to 4 inch (15 to 100 mm)
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Benefits
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Product contact surfaces constructed of FDA approved materials designed in accordance with 3A and EHEDG standards.
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Sensor is CIP ⁄ SIP cleanable, and the sensor I.D. matches the process piping to eliminate hard-to-clean step changes.
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Available with a variety of sanitary process connections with easily accessed process gaskets to facilitate inspection and maintenance.
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Compact, all stainless steel meter body is fully-welded, and critical junctures are potted to provide a hermetic seal, protecting the internal components and wiring from pressurized steam, water and sanitation chemicals
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Applications
The 8721 hygienic sensor is specifically designed for the demanding applications in food, beverage, and life sciences. The robust, all-welded, full diameter sensor is constructed of FDA approved materials that are fit for purpose, and is authorized to display the 3-A Symbol (Authorization #1222), is certified by EHEDG (#C03-5229) and is approved for use in FDA Grade A milk meter based timing loops (M-b 350). Sizes range from ½” (15mm) to 4” (100mm) and are available in a variety of industry standard process connections.
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Availability
With a wide range of liner and electrode materials available, the Rosemount 8700 Series Magnetic Flowmeter family is suitable for virtually any conductive liquid application. Rosemount Magnetic Flowmeters offer the benefit of measuring flow in a package unaffected by density, temperature, pressure, and viscosity change.
Step 1: Flow Sensor Type
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Type
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Application Notes
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Accuracy Option
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Line Sizes
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Coil Drive Power
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8705
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Standard process design
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0.25% Standard
0.15% High
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15 - 900 mm
0.5 - 36 inch
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Pulsed DC
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8711
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Compact light-weight
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0.25% Standard
0.15% High
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4 - 200 mm
0.15 - 8 inch
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Pulsed DC
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8721
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Designed for food & beverage and life science, 3-A and EHEDG
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0.5% Standard
0.25% High
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15-100 mm
0.5 - 4 inch
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Pulsed DC
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8707
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Best in P&P, M&M slurry flows, and noisy applications
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0.5% Standard
0.25% High
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80 - 900 mm
3 - 36 inch
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High-Signal
Pulsed DC
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Step 2: Liner Material Selection
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Liner
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Notes
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Temp Limits
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Type and Line Sizes
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PFA
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BEST FLUOROPOLYMER
Excellent resistance to chemicals and abrasion. Suitable for any application.
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-20 to 350°F (-29 to 177°C
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Flange
15 - 350 mm
0.5 - 14 inch
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Wafer
4 - 8 mm
0.15 - 0.3 inch
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PTFE
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BETTER FLUOROPOLYMER
More cost effective than PFA. Excellent chemical resistance, but less abrasion resistance than PFA.
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-20 to 350°F (-29 to 177°C
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Flanged
15 - 900 mm
0.5 - 36 inch
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Wafer
15 - 200 mm
0.5 - 8 inch
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ETFE
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GOOD FLUOROPOLYMER
Similar chemical and abrasion resistance to PTFE, but a lower maxium temperature an more expensive.
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-20 to 300°F (-29 to 149°C)
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Flanged
15 - 400 mm
0.5 - 16 inch
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Wafer
15 - 200 mm
0.5 - 8 inch
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Polyurethane
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Typically applied to clean water (no chemicals). Abrasion resistant to slurries with small particles.
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0 to 140°F (-18 to 60°C)
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Flanged
15 - 900 mm
0.5 - 36 inch
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Neoprene
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Typically applied to water and sea water. Abrasion resistant to slurries with small particles.
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0 to 185°F (-18 to 85°C)
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Flanged
80 - 1800 mm*
1.5 - 72 inch
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Linatex
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Typically applied to mining slurries, abrasion resistant to larger debris.
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0 to 158°F (-18 to 70°C)
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Flanged
80 - 900 mm
1.5 - 36 inch
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Step 3: Electrode Type and Material Selection
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Electrode Type
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Application Notes
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Button
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Standard electrode design. Use for most applications, especially where abrasion is a concern. Has fair resistance to coating which can be improved by properly sizing sensor.
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Bullet-nose
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Use where coating is a concern and no solids are present. Bullet-nose electrode should not be used in abrasive or slurry applications as the particles will result in increased process noise on the electrodes.
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Electrode Material
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Application Notes
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316L SST
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Standard electrode material. Compatible with most low concentration water based applications. Avoid using stainless in higher concentration acid applications.
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Nickel Alloy 276
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Use in medium to high concentration acids where SST is not acceptable. Use in applications with high chloride concentrations, such as sea water.
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Platinum
(80% Platinum, 20% Iridium)
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Ideal for liquor applications found in pulp and paper industry. Also ideal as a spare electrode option to cover nearly every application in a plant. Compatible with nearly every process fluid.
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Tantalum
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Ideal for high concentration acid flows such as hydrochloric and hydrofluoric acids.
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Titanium
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Ideal for high concentration caustic (base) applications such as sodium and potassium hydroxides.
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Step 4: Transmitter Selection
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Type
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Notes
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Accuracy Option
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Power Supply
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User Interface Output Protocol LOI
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8732
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Integral or remote mounting
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0.25% Std
0.15% High
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Global AC ⁄ DC
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HART®, Foundation™ fieldbus optical switch LOI or display only
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8712
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Remote wall
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0.25% Std
0.15% High
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Global AC ⁄ DC
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HART Dedicated button LOI
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8712 High Signal
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Remote wall. Compatible only with 8707 flowtube
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0.5% Std
0.25%
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115V AC
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HART
Dedicated button LOI
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Step 5: Diagnostics and Enhanced Features
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Type
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Notes
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Availability
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Standard Diagnostics
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Transmitter hardware fault; transmitter software fault; sensor coil fault; empty pipe
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With every E-Series transmitter
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D1
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High accuracy option (0.15%)
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8732 and 8712
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AX
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Enhanced DI ⁄ DO capability
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8732 and 8712
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HART/FF
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DA1 ⁄ D01
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Diagnostics suite includes: ground and wiring fault detection, high process noise detection.
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8732 and 8712
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DA2 ⁄ D02
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Diagnostic suite includes: 8714i internal meter verification
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8732 and 8712
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