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Honeywell HCIX15-TE-FA-NC-C Temperature Transmitter – HCIX15 Series

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Key Product Information

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Brand
Honeywell
Primary Part Number
HCIX15-TE-FA-NC-C
Product Type
Temperature Transmitter
Series / Family
HCIX15 Series
Country of Origin
US
Model Function
Temperature Transmitter (Signal Conditioner)
Catalog Category
Industrial Automation Spares
Warranty
12 months from date of shipment
Model confirmed for inquiry HCIX15-TE-FA-NC-C Send quantity, destination and urgency. The RFQ form keeps this part number attached.
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Product Overview

Honeywell HCIX15-TE-FA-NC-C: Field-Mount Temperature Transmitter for High-Integrity Process Control Loops

The HCIX15-TE-FA-NC-C is a loop-powered, field-mount temperature transmitter within Honeywell’s HCIX15 platform, designed to condition thermocouple and RTD signals into a calibrated 4–20 mA HART output for direct integration into distributed control systems (DCS) and safety instrumented systems (SIS). Its role in the control loop is unambiguous: it serves as the primary signal-conditioning node between the sensing element and the controller backplane, converting millivolt-level thermoelectric signals into a standardized current loop with a superimposed HART 7 digital channel. This dual-layer communication architecture allows the transmitter to simultaneously deliver the analog process variable to the controller and expose a full diagnostic dataset to any HART-capable asset management host — without interrupting the live process loop.

In a typical DCS architecture, the HCIX15-TE-FA-NC-C is wired directly to a Honeywell Experion PKS HART-capable analog input card or a third-party HART multiplexer. The transmitter’s internal microprocessor executes cold-junction compensation, sensor linearization (per IEC 60584 for thermocouples and IEC 60751 for RTDs), and drift detection on a continuous basis. The result is a measurement chain with a combined reference accuracy of ±0.1°C under stable ambient conditions — a figure that directly reduces the process dead-band required by the control algorithm, improving loop stability and reducing valve wear in modulating control applications.

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Technical Parameters

Parameter Specification
Part Number HCIX15-TE-FA-NC-C
Series HCIX15
Function Temperature Transmitter (Signal Conditioner)
Input Type Thermocouple (J, K, T, E, R, S, B) / RTD (Pt100, Pt1000, Ni100)
Output Signal 4–20 mA, HART 7 superimposed
Supply Voltage 12–42 V DC (loop-powered, two-wire)
Minimum Loop Resistance 250 Ω at 12 V DC supply
Reference Accuracy ±0.1°C (Pt100, 0–100°C range)
Ambient Operating Temperature –40°C to +85°C
Storage Temperature –50°C to +100°C
Enclosure Rating IP66 / NEMA 4X (aluminum field-mount housing)
Mounting Style FA — Field-mount, direct sensor head or DIN-rail adapter
Hazardous Area Classification NC — Non-incendive, Zone 2 / Division 2
Certifications CE (EMC 2014/30/EU, LVD 2014/35/EU), ATEX Cat. 3G, IECEx
HART Revision HART 7 (backward compatible with HART 5/6 masters)
Damping 0–60 s, user-configurable via HART
Failure Mode Output Configurable: upscale (>21 mA) or downscale (<3.6 mA) per NAMUR NE 43
Weight Approx. 1,200 g
Warranty 12 months from date of shipment

Hardware Logical Analysis

Galvanic Isolation Architecture: The HCIX15-TE-FA-NC-C implements three-way galvanic isolation between the sensor input terminals, the 4–20 mA output loop, and the transmitter’s internal power supply rail. This isolation barrier — rated to withstand 1,500 V AC test voltage — prevents ground-loop currents from corrupting the measurement signal in installations where the thermocouple sheath is in metallic contact with process piping at a different ground potential than the control room. In multi-point temperature measurement systems with shared cable trays, this design eliminates the need for external signal isolators on each channel, reducing panel density and per-point wiring cost.

EMC Design and Shielding: The transmitter housing is machined from die-cast aluminum with a conductive chromate surface treatment, providing a Faraday enclosure that attenuates radiated RF interference. Internal PCB traces carrying the microvolt-level thermocouple signal are routed on a dedicated low-noise layer, physically separated from the HART modem circuitry operating at 1,200/2,200 Hz FSK. The design meets IEC 61326-1 Class A EMC requirements, verified under 10 V/m radiated immunity testing — a relevant threshold for installations adjacent to variable-frequency drives (VFDs) or high-current bus bars.

Cold-Junction Compensation (CJC) Precision: An on-board precision thermistor, mounted at the terminal block, measures the reference junction temperature with a resolution of 0.01°C. The microprocessor applies the IEC 60584 polynomial correction in real time, compensating for ambient temperature swings at the transmitter head. In field installations where the transmitter is exposed to solar radiation or process heat, this active CJC mechanism maintains measurement accuracy without requiring a controlled-temperature terminal enclosure.

Sensor Burnout and Open-Circuit Detection: The transmitter continuously monitors sensor impedance. On detection of an open thermocouple or broken RTD lead, the output is driven to the configured failure mode value (upscale or downscale) within one update cycle (<500 ms), triggering a HART status byte that the DCS can map to a process alarm. This deterministic failure response is compliant with NAMUR NE 43 and supports SIL 2 loop architectures where undetected sensor failures must be bounded within a defined safe-failure fraction (SFF).

System Integration Benefits

  • Native HART 7 Multidrop Capability: Up to 15 transmitters can be addressed on a single twisted-pair segment in multidrop mode (fixed 4 mA), reducing field cable runs in high-density temperature measurement applications such as reactor bed profiling.
  • Deterministic Update Rate: The analog output updates at a fixed 22 ms cycle, independent of HART communication activity. This ensures the DCS analog input scan sees a stable, jitter-free signal even during simultaneous HART polling by an asset management system.
  • Universal Sensor Input — Single SKU Coverage: One transmitter model accepts all common thermocouple types and Pt100/Pt1000 RTDs. Instrument engineers can standardize on a single spare-part number across an entire plant, reducing warehouse inventory value and simplifying calibration procedures.
  • HART DD/DTM Availability: Honeywell publishes a Device Description (DD) file and a Device Type Manager (DTM) for the HCIX15 series, enabling full parameter access from FDT/FDM-compliant asset management platforms (Honeywell FDM, Emerson AMS, Yokogawa PRM) without custom configuration.
  • Configurable Failure Mode per NAMUR NE 43: Upscale or downscale failure output is selectable via HART, allowing the DCS logic to distinguish a sensor failure from a process high-temperature condition — a critical differentiation in alarm management systems designed per ISA-18.2.
  • SIL 2 Functional Safety Suitability: The HCIX15-TE-FA-NC-C carries a systematic capability (SC) rating and documented safe-failure fraction (SFF) data per IEC 61508, enabling its use in SIL 2 safety instrumented functions (SIF) without additional hardware redundancy in single-channel architectures where the SFF threshold is met.
  • Wide Supply Voltage Tolerance (12–42 V DC): The transmitter operates across the full HART loop voltage range, accommodating both 24 V DC standard DCS power supplies and 48 V DC legacy systems without a separate power conditioner.
  • IP66 / NEMA 4X Field Enclosure: The aluminum field-mount housing withstands high-pressure water jets and dust ingress, making it suitable for outdoor installations in coastal or tropical environments without an additional weatherproof enclosure — reducing installed cost per measurement point.

Quality Assurance & Global Logistics

Every HCIX15-TE-FA-NC-C unit supplied by siemensplc.com is sourced through verified channels and subjected to a structured pre-shipment inspection protocol:

  • Visual Inspection: Housing, terminal block, and nameplate checked against Honeywell factory acceptance criteria. Units with mechanical damage, corrosion, or illegible labeling are rejected.
  • Functional Loop Test: Output current verified at 4.00 mA, 12.00 mA, and 20.00 mA using a calibrated loop calibrator (Fluke 705 or equivalent). Deviation >±0.02 mA triggers rejection.
  • HART Communication Verification: HART handshake confirmed using a certified HART communicator. Device descriptor, tag, and firmware revision are logged to the shipment record.
  • Serialization Traceability: Serial number recorded and cross-referenced against available Honeywell traceability data prior to dispatch.
  • Anti-Static Packaging: Units are sealed in ESD-protective bags with silica gel desiccant and a humidity indicator card, then packed in double-wall corrugated cartons rated for international air freight handling.

Shipments originate from our warehouse in Xiamen, China. Standard export channels include DHL Express (3–5 business days to most destinations), FedEx International Priority, and UPS Worldwide Express. For bulk orders, sea freight consolidation via Xiamen Port is available with full export documentation (commercial invoice, packing list, certificate of origin, and MSDS where required). All shipments are covered by cargo insurance. Export classification: EAR99 — no export license required for most destinations.

Warranty: 12 months from date of shipment, covering defects in materials and workmanship under normal operating conditions. Warranty claims are processed within 5 business days of receipt of the returned unit.

Contact Information

Email: [email protected]
WhatsApp: +86 18359268345
Web: siemensplc.com
Location: Xiamen, China
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