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ABB TTF300 temperature transmitter

ABB TTF300 temperature transmitter

ABB TTF300 temperature transmitter

  • Item NO.:

    TTF300
  • Payment:

    T/T
  • Price:

    $900
  • Product Origin:

    Sweden
  • Color:

    NEW
  • Lead Time:

    In stock

We will arrange delivery within 3-5 days after receiving the payment.

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ABB TTF300 Temperature Transmitter 

The ABB TTF300 is a high-precision industrial temperature transmitter engineered for reliable temperature measurement and signal conversion in process control systems—primarily compatible with ABB 800xA DCS, AC500 PLCs, and third-party automation platforms. It functions as a core process sensing component, converting temperature signals from RTD (Resistance Temperature Detector) or thermocouple sensors into standardized electrical outputs (e.g., 4~20mA DC + HART) for remote monitoring, control, and data logging. Designed for industrial ruggedness, long-term stability, and seamless integration with harsh process environments, it operates reliably in scenarios such as chemical reactors, power plant turbines, food processing lines, and pharmaceutical batch systems—where extreme temperatures, corrosive media, or electromagnetic interference (EMI) could disrupt measurement accuracy. Below is its detailed specification:

1. Key Parameters

  • Product Model: TTF300
  • Order Code Reference: Configurable with sensor compatibility kits (e.g., 3BSE038451R1 for PT100 RTD, 3BSE038452R1 for K-type thermocouple)
  • Product Series: ABB TTF Series Industrial Temperature Transmitters (Universal Input, 2-Wire Loop-Powered)
  • Core Function: Accepts temperature signals from RTD/thermocouple sensors; linearizes and converts signals to standardized 4~20mA DC + HART; provides real-time temperature data; supports remote calibration and diagnostics via HART protocol; ensures accurate temperature control in process systems
  • Measurement & Electrical Specifications:
    Parameter Details Performance Metrics
    Input Compatibility - RTD: PT100 (IEC 60751, Class A/B), PT1000, Cu50, Cu100
    - Thermocouple: K, J, T, E, R, S, B (per IEC 60584)
    - Resistance Input: 0~400Ω (for custom sensors)
    Covers 95% of industrial temperature sensing needs
    Measurement Range - RTD (PT100): -200℃~+850℃
    - Thermocouple (K-type): -270℃~+1372℃
    - Thermocouple (S-type): 0℃~+1768℃
    Wide range for low-temperature (cold storage) to high-temperature (furnace) applications
    Accuracy Class - RTD Input: ±0.1% of measured value + 0.1℃ (at 25℃)
    - Thermocouple Input: ±0.2% of measured value + 0.5℃
    - Temperature Drift: ≤±0.01% FS/℃
    Ensures precise process control (e.g., ±0.2℃ accuracy for pharmaceutical batch heating)
    Output Signal 4~20mA DC (2-wire loop-powered) + HART 7 protocol (superimposed for configuration/diagnostics) Compatible with standard process control systems; HART enables remote parameter adjustment
    Power Supply 12~30V DC (loop power); Typical current consumption: ≤3.5mA (at 4mA output) Low power draw for energy efficiency; works with existing 2-wire loops
    Response Time ≤100ms (90% step response, with PT100 sensor); Dependent on sensor mass (faster for thin-film RTDs) Captures rapid temperature changes (e.g., reactor exothermic reactions)
  • Mechanical & Process Compatibility:
    • Process Connection: G 1/2" male (standard); Optional: NPT 1/2", M20×1.5, or flange-mounted (per order)
    • Wetted Material: Sensor well: 316L stainless steel (corrosion-resistant); Housing: Aluminum alloy (epoxy coating) or 316L stainless steel (optional for harsh chemicals)
    • Protection Rating: IP67 (standard, dust-tight/waterproof against temporary immersion); IP68 (optional, submersible up to 1m depth)
    • Dimensions (W×H×D): 65mm × 100mm × 45mm (excluding process connection/sensor); Compact design for tight installations (e.g., turbine bearings)
    • Weight: Approximately 280g (aluminum housing); 420g (316L stainless steel housing)
    • Display (Optional): 2-line backlit LCD (shows temperature value, unit, and status); 3 pushbuttons for local calibration
  • Environmental Ratings:
    • Operating Temperature Range: -40℃~+85℃ (electronics); Sensor-dependent range (see "Measurement Range") | Electronics tolerate extreme ambient conditions (e.g., desert power plants) |
    • Storage Temperature Range: -50℃~+100℃
    • Humidity Tolerance: 0~100% RH (including condensing; suitable for damp process areas like distillation columns)
    • Vibration Resistance: 10~2000Hz, 2g acceleration (IEC 60068-2-6; no measurement drift)
    • Shock Resistance: 50g acceleration (11ms duration, IEC 60068-2-27; maintains structural integrity)
    • Corrosion Resistance: ISO 9227: 500 hours salt spray test (316L material); Resists mild acids, alkalis, and industrial oils | Suitable for offshore/marine applications |
  • Compliance Standards: IEC 61298-2 (industrial temperature transmitters), EN 61000-6-2 (EMC immunity), ATEX Ex d IIC T6 (hazardous area, optional), IEC 61508 (SIL 2 capable), CE, RoHS, FDA 21 CFR Part 177 (for food/pharmaceutical contact)

2. Key Features

  • Universal Sensor Compatibility: Supports RTDs (PT100/PT1000/Cu50) and thermocouples (K/J/T/E/R/S/B) without hardware modifications—eliminates the need for multiple transmitter models, reducing inventory costs by 30% for plants with diverse temperature sensing needs.
  • High Measurement Precision: ±0.1% accuracy for RTD inputs and ±0.2% for thermocouples ensures reliable temperature control in critical processes (e.g., ±0.3℃ accuracy for semiconductor wafer annealing, ±0.5℃ for chemical reactor temperature maintenance).
  • HART 7 Communication: Integrated HART 7 protocol enables remote calibration, parameter adjustment, and diagnostics via ABB FieldCare software or HART communicators (e.g., ABB 475 Field Communicator)—cuts on-site maintenance time by 50% compared to non-smart transmitters.
  • Rugged Environmental Design: IP67/IP68 protection, 316L stainless steel wetted parts, and -40℃~+85℃ electronics temperature range withstand harsh conditions (e.g., offshore oil platforms, high-temperature furnaces)—ensures 99.9% uptime in industrial environments.
  • Low Power Consumption: 2-wire loop-powered design (12~30V DC, ≤3.5mA at 4mA output) simplifies wiring and reduces energy costs—compatible with existing 4~20mA process loops without additional power supplies.
  • SIL 2 Safety Compliance: Meets IEC 61508 SIL 2 requirements, making it suitable for safety-instrumented systems (SIS) in critical processes (e.g., emergency shutdown of high-temperature reactors)—ensures low dangerous failure rates (<100 FIT) for risk mitigation.
  • Optional LCD Display: Backlit LCD with pushbuttons allows local temperature monitoring and basic calibration—ideal for applications where remote DCS access is limited (e.g., small-scale batch plants).

3. Application Fields

  • Process Industry Temperature Monitoring: Primary application—real-time temperature control in industrial processes:
    • Chemical & Petrochemical Plants: Measures reactor temperature (0℃~+500℃ via K-type thermocouple) and distillation column tray temperatures (-20℃~+300℃ via PT100); 316L material resists corrosive media (e.g., sulfuric acid, ethylene), while HART diagnostics alert to sensor drift—prevents product degradation from temperature deviations.
    • Oil & Gas Production: Monitors wellhead temperature (-50℃~+200℃ via PT100) and pipeline fluid temperature (-20℃~+150℃); IP68 protection withstands offshore rain/saltwater, and vibration resistance (2g) ensures stability on drilling rigs.
  • Power Generation & Energy Systems: Optimizes temperature control in energy infrastructure:
    • Thermal Power Plants: Measures turbine bearing temperature (-30℃~+150℃ via PT100) and boiler flue gas temperature (0℃~+800℃ via K-type thermocouple); high accuracy ensures turbine efficiency (e.g., ±1℃ bearing temperature control reduces wear by 20%).
    • Renewable Energy (Biomass/Solar): Monitors biomass boiler temperature (0℃~+1000℃ via S-type thermocouple) and solar thermal collector temperature (-10℃~+400℃ via PT100); wide measurement range adapts to variable energy production conditions.
  • Food & Pharmaceutical Manufacturing: Complies with hygiene and regulatory standards:
    • Pharmaceutical Production: Measures bioreactor temperature (20℃~+40℃ via PT100) and lyophilizer (freeze-dryer) temperature (-50℃~+50℃); FDA 21 CFR Part 177 compliance ensures no product contamination, while HART data logging supports batch traceability (GMP requirements).
    • Food Processing: Monitors pasteurization temperature (60℃~+100℃ via PT100) and oven baking temperature (100℃~+300℃ via K-type thermocouple); IP67 protection withstands washdowns with food-safe cleaners, ensuring compliance with HACCP standards.
  • Manufacturing & Automation: Controls temperature in production equipment:
    • Automotive Manufacturing: Measures engine block casting temperature (200℃~+800℃ via K-type thermocouple) and paint curing oven temperature (50℃~+200℃ via PT100); fast response time (<100ms) captures rapid temperature changes, ensuring consistent part quality.
    • Electronics Production: Monitors semiconductor wafer annealing temperature (500℃~+1200℃ via S-type thermocouple) and PCB soldering temperature (150℃~+300℃ via PT100); high accuracy (±0.1%) ensures precise component performance.

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