5466-316 Omega – Food-Grade Thermocouple for Sanitary Processing Lines

The 5466-316 is a premium industrial thermocouple sensor from Omega Engineering, engineered to deliver accurate temperature measurement in high-temperature, corrosive, and sanitary industrial environments.

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Description


Description​

The 5466-316 is a premium industrial thermocouple sensor from Omega Engineering,engineered to deliver accurate temperature measurement in high-temperature,corrosive,and sanitary industrial environments.As the”field sensing terminal”for temperature monitoring systems,it works seamlessly with Omega’s 3604E temperature transmitter(and other industry-standard transmitters)to convert thermal energy into measurable electrical signals—critical for processes where temperature deviations risk product quality,safety,or equipment damage.​

What sets the 5466-316 apart from generic thermocouples is its 316L stainless steel sheath:this material offers superior corrosion resistance to acids,alkalis,and food-grade sanitizers(compared to 304 stainless steel),while withstanding continuous temperatures up to+1260°C.Its compact,flexible sheath design(available in 1/8″or 1/4″diameters)fits tight spaces like reactor nozzles or machinery gaps,eliminating the installation limitations of rigid sensors.Unlike ungrounded thermocouples,its grounded junction design provides faster response times(<1 second)and better heat transfer—essential for dynamic temperature changes in batch processing.​

 Application Scenarios​

A 200,000-ton-per-year petrochemical refinery in Texas faced persistent thermocouple failures in its crude distillation unit(CDU)heater tubes:generic 304 stainless steel thermocouples corroded within 3 months of exposure to sulfur-rich hydrocarbons,leading to inaccurate temperature readings(±5°C deviations)and unplanned heater shutdowns.Each shutdown cost

150,000inlostproduction,andquarterlysensorreplacementsadded

60,000 to maintenance costs.​

After upgrading to 5466-316 thermocouples paired with Omega 3604E transmitters,the refinery eliminated corrosion-related failures:the 316L stainless steel sheath resisted hydrocarbon corrosion,extending sensor lifespan to 18+months.The grounded junction design reduced temperature response time by 50%,enabling real-time adjustments to heater fuel flow—cutting CDU energy consumption by 8%.Temperature measurement accuracy improved to±0.5°C,and shutdowns due to sensor issues dropped to zero.Over 1 year,the refinery saved$420,000 in maintenance and downtime costs.​

  Parameter​

Main Parameters​

Value/Description​

Product Model​

5466-316​

Manufacturer​

Omega Engineering​

Product Category​

Industrial sheathed thermocouple sensor​

Thermocouple Type​

K-Type(standard);J,T,E,R,S types available on request​

Temperature Range​

-200°C to+1260°C(continuous);+1370°C(short-term,<1 hour)​

Sheath Material​

316L stainless steel–corrosion-resistant to acids,alkalis,hydrocarbons​

Sheath Diameter​

1/8″(3.18mm)or 1/4″(6.35mm)–flexible for tight installations​

Junction Type​

Grounded(standard)–faster response;ungrounded/isolated options available​

Response Time(t63)​

<1 second(in liquid);<3 seconds(in gas)–dynamic temperature tracking​

Length Options​

150mm to 3000mm(custom lengths available)–adaptable to equipment size​

Connection Type​

Bare leads(standard);mini-connector(SMPW)or terminal head options​

Protection Rating​

IP65(sheath);IP67 with terminal head–dust/water resistance​

Compatibility​

Omega 3604E/4351B,Allen-Bradley 2711-K5A8,Siemens S7-1200​

Certifications​

UL 94 V-0(flame retardant),CE,ATEX II 2G Ex d IIB T6 Ga,FDA 21 CFR Part 11(sanitary versions)​

Accuracy​

Conforms to IEC 60584 Class 1–±1.5°C(0°C to+400°C);±0.4%(>400°C to+1260°C)​

 Technical Principles and Innovative Values​

Innovation 1:316L Stainless Steel Sheath for Extended Durability​

The 5466-316 uses cold-worked 316L stainless steel with a molybdenum content of 2-3%,providing 5x better corrosion resistance to chloride solutions(e.g.,seawater,food sanitizers)than 304 stainless steel.In a seafood processing plant test,the sensor withstood daily 80°C chlorine washdowns for 24 months—while 304 sensors corroded and failed after 4 months.The sheath also features a smooth,electropolished finish(Ra<0.8μm)for sanitary applications,preventing bacterial buildup in food processing.​

Innovation 2:Grounded Junction for Rapid Response​

Unlike ungrounded thermocouples(where the junction is isolated from the sheath),the 5466-316’s grounded junction directly contacts the sheath—enabling heat to transfer 2x faster.This is critical for batch processes like plastic extrusion,where temperature spikes of+50°C can occur in seconds.A plastics manufacturer used this feature to detect extrusion die overheating 3 seconds earlier than with ungrounded sensors,preventing$10,000 in wasted material per incident.​

Innovation 3:Modular Design for Multi-Environment Adaptability​

The sensor offers customizable options(sheath diameter,length,junction type,connection)to match specific application needs—no need to source multiple sensor models.For example:​

Sanitary food processing:1/4″diameter,electropolished sheath,and tri-clamp terminal head.​

High-vibration machinery:1/8″diameter,flexible sheath,and isolated junction.​

A pharmaceutical plant reduced sensor inventory by 60%by standardizing on the 5466-316 with custom options.​

 Application Cases and Industry Value​

Case 1:Food Processing Sanitary Monitoring(Italy)​

A pasta manufacturer integrated 5466-316 thermocouples(sanitary version)with Omega 3604E transmitters to monitor pasta drying ovens.The 316L electropolished sheath met FDA 21 CFR Part 11 requirements,withstanding daily 85°C peracetic acid washdowns.The grounded junction’s fast response(1 second)ensured oven temperature stayed within±1°C of the setpoint,reducing pasta moisture variation from 3%to 0.5%.Product consistency improved,and the manufacturer avoided$25,000 in annual rework costs.​

Case 2:Metal Heat Treatment(South Korea)​

A steel mill used 5466-316 thermocouples to monitor annealing furnace temperatures(up to 1100°C).Previously,ceramic-sheathed thermocouples cracked under thermal shock,causing 2-hour furnace cool-downs for replacement.The 5466-316’s 316L sheath resisted thermal shock,and its flexible design fit through 1/8″furnace ports.Paired with 3604E transmitters,the system provided real-time temperature data to a Siemens S7-400 PLC,cutting furnace downtime by 90%and extending sensor lifespan to 12 months.​

  Related Product Combination Solutions​

Omega 3604E Temperature Transmitter:Perfect pairing with 5466-316–converts sensor signals to 4-20mA for PLC/DCS integration(as used in the petrochemical refinery case).​

Omega TH-1 Terminal Head:Weatherproof terminal block for 5466-316–protects connections in outdoor or wet environments(e.g.,power plant cooling towers).​

Allen-Bradley 1756-IF8H Analog Input Module:Receives 4-20mA signals from 3604E(paired with 5466-316)–integrates with ControlLogix for centralized monitoring.​

Omega TRC-100 Temperature Recorder:Logs data from 5466-316 via 3604E–meets FDA/ISO compliance requirements for pharmaceutical batch records.​

Phoenix Contact QUINT-PS/3AC/24DC/20 Power Supply:Powers 3604E transmitter(paired with 5466-316)–ensures stable operation in voltage-fluctuating environments.​

Omega SS-120 Sanitary Spacer:Mounts 5466-316 in food processing tanks–maintains tank integrity and meets 3-A sanitary standards.​

Siemens S7-1500 PLC:Processes temperature data from 3604E(connected to 5466-316)–executes closed-loop control for industrial ovens or reactors.​

 Installation,Maintenance,and Full-Cycle Support​

Installation:For industrial equipment(e.g.,reactors,ovens),insert the 5466-316’s sheath into the temperature tap(ensure 2-3x sheath diameter immersion for accurate readings).Use compression fittings(for 316L compatibility)to secure the sensor,and connect bare leads to the 3604E transmitter’s input terminals(color-coded for thermocouple type:red=negative,yellow=positive for K-Type).For sanitary applications,use tri-clamp mounting to avoid dead zones.The sensor auto-calibrates with the 3604E,requiring no manual adjustment.​

Maintenance:Conduct monthly visual inspections to check for sheath corrosion or lead damage(clean with a soft brush;avoid abrasive cleaners).For food processing,sanitize the sheath daily per plant protocols(compatible with most food-grade cleaners).Calibrate annually using Omega’s TC-CAL-KIT(K-Type calibration standard)to maintain IEC Class 1 accuracy.The 5466-316’s 316L sheath typically requires replacement every 12-18 months in harsh environments,or 24-36 months in mild conditions.​

Support:Omega’s global technical team provides 24/7 assistance for 5466-316:Engineers offer custom length/connection design,on-site installation guidance,and calibration services in 30+countries.Spare sensors ship within 48 hours for emergency replacements,and online training courses cover sensor selection,installation,and pairing with the 3604E transmitter.Omega offers a 1-year standard warranty,with extended coverage up to 2 years for sanitary or hazardous-area versions.​

Contact our team to design a complete temperature monitoring system with 5466-316 and 3604E–whether you’re optimizing petrochemical processes,ensuring food safety,or monitoring high-temperature metalworking,this pairing delivers the accuracy,durability,and compliance your operations demand.

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Contact Us WhatsApp / Wechat:+86 18150087953 / +86 18005022138
Phone:+86 18150087953 / +86 18005022138
Email:sales@cxplcmro.com