Honeywell 51304736-375 16‑Channel Non-Isolated Non-HART 4–20mA Analog Input FTA
June 10, 2026

Honeywell 51304736-375 16‑Channel Non-Isolated Non-HART 4–20mA Analog Input FTA

1. Product Overview 51304736-375 is the top-tier extreme heavy-duty non-isolated non-HART analog input Field Termination Assembly, exclusively matched with Honeywell non-isolated non-HART AI UCN IOP for Experion PKS DCS. It adopts shared common-ground architecture without per-channel galvanic isolation, collecting pure 4–20mA analog measurement signals from critical heavy-duty two-wire non-HART transmitters; no HART signal coupling circuit is integrated. -375 is the highest protection grade of the entire 51304736 product series, outperforming -100/-125/-175/-200/-325. It adopts multi-layer marine-grade reinforced conformal PCB coating, three-stage fully symmetrical zero-distortion differential EMI filter, multi-tier composite surge absorption stack, designed for cabinets with continuous extreme high humidity, conductive heavy dust, severe corrosive acid/alkaline vapors, frequent violent switching surges, and permanent coastal salt fog. The full 51304736 series features identical core circuit topology with full pin-to-pin electrical interchangeability for emergency field replacement of all lower suffix variants.

Description

2. Model Definition

51304736: Base model for 16-channel non-isolated non-HART analog input FTA

-375: Extreme heavy-duty top-level reinforced PCB protection grade

Multi-layer marine-grade full-board conformal coating with industry-leading resistance to extreme humidity, conductive heavy dust, severe corrosive chemical vapors and continuous salt fog

Multi-tier composite ultra-high-energy bidirectional surge absorption stack (TVS+fast transient absorber+gas discharge auxiliary), far higher transient withstand energy than -325 and all lower grades, global shared ground structure without independent channel isolation

Three-stage fully symmetrical cascaded RC differential EMI filter, precision calibrated for ultra-high-noise heavy industrial zones with massive VFD clusters, full MCC banks and medium-voltage switchgear, zero distortion to 4–20mA analog measurement waveform

Global unified common ground bus for all 16 input channels; no electrical isolation between individual loops

Oversized high-power reinforced loop short-circuit current limiting resistor arrays to fully protect critical heavy-duty transmitters and ultra-delicate high-impedance IOP input circuits

Ultra-precision ultra-tight tolerance matched input impedance resistors for perfectly uniform full-range 4–20mA measurement accuracy across all 16 channels

Extra-wide ultra-thick flame-retardant reinforced plastic channel partition baffles to completely eliminate inter-channel analog leakage and cross-loop signal crosstalk

3. Technical Specifications

Channel Count: 16 fully shared-ground input loops, no per-channel galvanic isolation

Compatible Field Devices

Two-wire critical heavy-duty non-HART 4–20mA transmitters: ultra-high-load pressure, differential pressure, flow, level, temperature, pH, dissolved oxygen, conductivity heavy industrial transmitters for offshore/coastal/severe corrosion sites

FTA Structure: Passive non-isolated termination board with no internal power supply; integrated three-stage symmetrical differential filtering, multi-tier ultra-high-energy surge protection and extreme heavy short-circuit overload limiting, no HART coupling circuit

PCB Protection: Multi-layer marine reinforced conformal coating; flammability UL94 V0

Terminal Type: Compression screw terminals compatible with solid/stranded copper wire up to 14 AWG; each channel has Ch+ / Loop– field terminals tied to unified global ground bus

Form Factor: Standard B-size footprint, snap-on DIN rail installation for 35 mm standard rails

Operating Ambient: 0℃ ~ +60℃ indoor control cabinet; best-in-class tolerance for extreme humidity, conductive heavy dust, severe corrosion and continuous coastal salt fog within the series; only applicable to single-ground plant systems (multi-ground sites require isolated FTA models)

Circuit Architecture Parameters

Three-stage symmetrical low-pass differential filtering suppresses extreme industrial EMI without distorting 4–20mA analog measurement amplitude

Multi-tier composite bidirectional surge stack clamps positive/negative extreme transient high voltage on every shared-ground input loop

Shared common ground design: ground potential discrepancies between field and DCS will induce minor measurement drift; complex multi-ground process plants must select isolated FTA types

Ultra-tight precision input impedance guarantees stable full-span 4–20mA conversion precision with minimal channel-to-channel deviation

Oversized high-power current-limit resistors prevent transmitter burnout and permanent IOP input damage under sustained field short-circuit faults

Ultra-thick flame-retardant baffles fully block inter-channel analog bleed and cross-loop measurement interference

Redundancy Support: Fully compatible with primary/standby redundant non-isolated non-HART AI IOP; hot-swap FTA replacement allowed without process shutdown

Approximate Unit Weight: 0.365 kg

4. Interface & Communication Configuration

Inner IOP Connection: Locking heavy-duty flat ribbon cable directly mates to non-isolated non-HART AI IOP pin headers. Reinforced multi-point heavy-duty cable strain relief prevents pin header deformation or fracture under long-term sustained tension of lengthy multi-core field control wiring harnesses.

Field Outer Terminals: Independent Ch+ / Loop– terminals for each two-wire transmitter loop; all input loops reference one unified ground bus aligned with DCS control ground potential.

Signal Mechanism: Pure 4–20mA DC analog measurement signals; no HART circuit integrated.

No auxiliary communication ports; only analog measurement signal transmission supported.

5. Core Functions

Common-ground extreme heavy-duty signal acquisition: Cost-effective solution for large single-ground industrial plants collecting signals from critical heavy-duty non-HART field transmitters in harsh coastal/offshore environments.

Three-stage symmetrical ultra-heavy EMI noise rejection: Suppresses extreme intense electromagnetic interference from large VFD systems, MCC banks and medium-voltage switchgear to eliminate severe measurement fluctuation and unstable readings.

Multi-tier ultra-high-energy surge & short-circuit overload protection: Withstands lightning-induced line transients, high-magnitude equipment startup surges and sustained field short-circuit high voltage to protect expensive sensitive IOP high-impedance input circuits and critical heavy-duty field transmitters.

Extreme heavy-duty uniform loop overload protection: Oversized current-limiting resistor arrays evenly safeguard all channels from short-circuit burnout for uninterrupted long-term critical process monitoring.

Consistent channel measurement precision: Ultra-precision matched passive components deliver identical conversion accuracy across all 16 channels to reduce bulk calibration workload.

Redundant hot-swappable operation: Seamlessly synchronizes with primary/standby IOP switching logic; single-channel disconnection and troubleshooting do not impact operation of remaining 15 critical measurement loops.

6. Application Scenarios

Applicable Industries

Offshore platforms, coastal refineries, large integrated petrochemical complexes, heavy-duty chemical synthesis plants, combined heat & power generation stations, massive oil & gas refineries, pulp & paper mills, high-humidity industrial wastewater treatment, heavy-batch pharmaceutical manufacturing lines, coastal chemical storage facilities, large single-ground harsh-environment process plants

Typical Measurement Loops

Critical emergency safety shutoff system heavy-duty non-HART pressure/differential pressure transmitters

High-volume process flow ultra-heavy industrial conventional transmitters

Oversized vertical storage tank level measurement transmitters for coastal sites

Furnace/reactor high-temperature heavy-duty transmitters

Severe-corrosion medium pH/DO/conductivity analytical transmitters

Ideal for single-ground plant layouts, ultra-dense VFD heavy-noise process areas, cabinets with persistent extreme high humidity and heavy conductive dust accumulation, atmospheres containing severe acidic/alkaline volatile vapors, offshore platforms and coastal sites with continuous heavy salt fog exposure. Not suitable for complex multi-ground process plants (must adopt isolated FTA models for multi-ground systems).

7. Wiring Standards

Two-wire transmitter wiring: Transmitter positive → FTA Ch+, transmitter negative → FTA Loop– (shared ground bus); reversed polarity generates measurable measurement offset and impairs surge protection performance.

Cable specification: Marine-grade heavy-duty shielded twisted-pair instrument cable for all field wiring runs; cable shield grounded solely at DCS cabinet FTA side with field transmitter end ungrounded to fully suppress residual ground loop noise.

Power cable segregation: Physically separate analog measurement cables from high-voltage AC power, MCC and VFD output wiring to minimize capacitive and inductive EMI coupling interference.

8. Incompatible Hardware

All isolated AI/AO FTAs (51304644, 51304640, 51304728, 51304730), non-isolated HART AI (51304685), non-isolated AO FTAs (51304690, 51304718), discrete DI/DO termination boards, TC/RTD dedicated FTAs, pulse counter termination blocks and serial communication terminal assemblies cannot be paired with this non-isolated non-HART AI IOP card.


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