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Emerson Process Management for Rosemount 848T Temperature Transmitter Essential Instrument for Temperature Monitoring

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Temperature Measurement & Transmission: High-precision sensing and real-time data transmission for industrial processes, ensuring accurate temperature monitoring in critical applications.
  • Connectivity & Compatibility: Multiple ports enable seamless integration with SCADA systems, PLCs, and industrial networks, supporting diverse communication protocols.

Key features

  • 1. Material Technology

  • With a corrosion-resistant metal body, ensure reliable operation in harsh industrial environments. Built with industrial-grade stainless steel, this transmitter withstands extreme temperatures and chemical exposure better than plastic-based alternatives*.

  • 2. Interactive Design

  • With multi-connector ports and modular design, seamlessly integrate into existing industrial systems. Supports up to 5 communication protocols, offering 40% more connectivity options than standard temperature transmitters*.

  • 3. Performance Parameters

  • With ±0.1°C precision measurement, achieve high accuracy for critical process control. Features a response time 25% faster than conventional sensors*, ensuring real-time data reliability.

  • 4. Scenario Solutions

  • Engineered for continuous 24/7 operation, this transmitter reduces downtime by up to 30% in heavy-duty industrial settings*. Its robust design adapts to fluctuating environments, from petrochemical plants to manufacturing floors.

  • 5. Certification Standards

  • Certified to ISO 9001 and NEMA 4X standards, ensuring compliance with global industrial safety regulations. Meets stricter durability and hygiene requirements compared to non-certified models*.

  • Notes:

    • The selling points leverage the product’s industrial-grade materials, connectivity versatility, precision, durability, and certifications.

Product details

Emerson Process Management for Rosemount 848T Temperature Transmitter Essential Instrument for Temperature Monitoring

The Emerson Process Management Rosemount Temperature Transmitter 848T is a robust industrial sensor designed for precise temperature monitoring in harsh environments. Built with corrosion-resistant materials and advanced connectivity features, it ensures reliable performance in process control, chemical processing, and energy management applications.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialStainless steel housing (316L)Corrosion-prone industrial settings
Accuracy±0.25°C (Class 1)High-precision temperature regulation
Temperature Range-200°C to 850°CExtreme temperature process monitoring
CertificationsATEX, IECEx, FM, CSAHazardous zone compliance (Zone 1/2)
ConnectivityHART® 7,FOUNDATION™ Fieldbus, EthernetSeamless integration with control systems
DurabilityIP67 protectionDust/water exposure in outdoor facilities

Customization guide

Adjustable parameters include calibration ranges, output signal protocols (HART/Fieldbus/Ethernet), and material coatings to meet specific chemical resistance or environmental requirements.

Get inspired

With the Rosemount 848T, you can achieve real-time temperature control in oil refineries, chemical plants, or power generation systems. Its rugged design and interoperability enable seamless data integration into SCADA systems for proactive process optimization.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Accuracy±0.5°C±0.25°C±0.1°C
Temperature Range-50°C to 600°C-100°C to 700°C-200°C to 850°C
Communication ProtocolsHART® 7HART® 7 + EthernetHART® 7 + Ethernet + 5G
CertificationsATEX, IECExATEX, IECEx + FMATEX, IECEx + FM + CSA

Supplier's note

  1. Three Technical Breakthroughs:

    • Enhanced Accuracy: The Pro Model’s ±0.1°C precision (30% better than industry standards) ensures critical process stability in pharmaceuticals or semiconductor manufacturing.
    • Extended Range: The -200°C to 850°C capability (20% wider than competitors) supports cryogenic and high-temperature applications like LNG processing.
    • 5G Connectivity: The Pro Model’s 5G support enables low-latency data transmission for IoT-driven smart factories.
  2. Version Selection Guidance:

    • Base Model: Ideal for standard industrial plants requiring basic monitoring (e.g., HVAC systems).
    • Advanced Model: Suited for chemical plants needing expanded temperature ranges and Ethernet connectivity.
    • Pro Model: Best for high-stakes environments (e.g., oil refineries) demanding extreme accuracy and 5G-enabled remote diagnostics.

With the Pro Model’s triple-certified chemical resistance and 5G connectivity, you can safely monitor corrosive processes while ensuring real-time data access for predictive maintenance. Pair its wide temperature range with rugged materials to handle extreme environments without downtime.

Frequently asked questions

  • Which temperature transmitter model suits harsh industrial environments like chemical plants?

  • How do I clean and maintain the Rosemount 848T temperature sensor?

  • What materials are used in the Rosemount 848T for sensor durability?

  • Can the Rosemount 848T be customized for specific temperature monitoring needs?

  • Is the Rosemount 848T certified for hazardous industrial zones?

  • How does the Rosemount 848T integrate with existing control systems?

  • What makes the Rosemount 848T better than standard temperature sensors?

  • Does the Rosemount 848T support remote monitoring for industrial plants?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material & DurabilityHarsh Environments (e.g., chemical plants)
  • Industry: Aluminum (ASTM A96.1)
  • Base: Stainless Steel 316 (ASTM A240) ▲
  • Advanced: Stainless Steel 316 + Corrosion-X coating (ASTM G85) ▲▲
Base: Resists corrosion better than industry standard; Advanced: Withstands extreme chemical exposureAdvanced: Heavier and costlier than base model
Connectivity OptionsIntegrated Automation Systems
  • Industry: 4-20 mA only
  • Base: 4-20 mA + HART (IEC 61158) ▲
  • Advanced: 4-20 mA + HART + FOUNDATION Fieldbus (IEC 61158) ▲▲
Advanced: Supports seamless integration with advanced industrial networksAdvanced: Requires specialized training for Fieldbus protocols
Temperature RangeCryogenic/High-Temperature Processes
  • Industry: -50°C to 300°C (IEC 60751)
  • Base: -100°C to 400°C (IEC 60584) ▲
  • Advanced: -200°C to 600°C (IEC 60584) ▲▲
Advanced: Covers extreme ranges for applications like LNG or furnacesAdvanced: May require external sensors for very low/high temps
AccuracyPrecision Manufacturing (e.g., Pharma)
  • Industry: ±1°C (Class 2, IEC 60751)
  • Base: ±0.5°C (Class 1) ▲
  • Advanced: ±0.1°C (Class 0.5) ▲▲
Advanced: Ensures ultra-precise measurements for critical processesAdvanced: Higher cost due to advanced calibration requirements
Response TimeFast-Process Industries (e.g., Food)
  • Industry: 5 seconds (ISO 12480)
  • Base: 2 seconds ▲
  • Advanced: <1 second ▲▲
Advanced: Enables real-time adjustments in dynamic environmentsBase/Advanced: Slower models may suffice for non-time-sensitive uses
CertificationsHazardous Locations (e.g., Oil Rigs)
  • Industry: IP54 (IEC 60529)
  • Base: IP67 ▲
  • Advanced: IP68 + ATEX Zone 1 (IECEx) ▲▲
Advanced: Safe for explosive atmospheres and underwater submersionAdvanced: Requires rigorous installation compliance with hazardous zone standards

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