Honeywell FC-TSAOH-0220m Safety Analog Output Module – FSC Series
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Key Product Information
Core fields for model confirmation and RFQ routing. Detailed product narrative remains below.
- Brand
- Honeywell
- Primary Part Number
- FC-TSAOH-0220m
- Product Type
- Safety Analog Output Module
- Series / Family
- FSC
- Manufacturer
- Honeywell Process Solutions
- Country of Origin
- US
- Catalog Category
- I/O Modules
- Operating Temp.
- 0°C to +60°C
- Warranty
- 12 months from date of shipment
Honeywell FC-TSAOH-0220m – Dual-Channel Safety Analog Output Module for SIL-Rated Control Loops
The Honeywell FC-TSAOH-0220m is a dual-channel, galvanically isolated Safety Analog Output (SAO) module engineered for deployment within Honeywell’s Fail-Safe Controller (FSC) platform and Safety Manager SC architecture. Operating at the intersection of functional safety and precision process control, this module drives 4–20 mA current-loop signals into field actuators — control valves, positioners, and variable-speed drives — within Safety Instrumented Systems (SIS) certified to IEC 61508 SIL 2 and SIL 3. Its architecture is purpose-built for industries where output signal integrity is a non-negotiable constraint: upstream oil and gas, LNG terminals, refinery emergency shutdown systems, and power generation turbine protection loops.
Unlike general-purpose analog output cards, the FC-TSAOH-0220m integrates hardware-level diagnostics, channel-to-channel isolation barriers, and a deterministic FSC backplane interface that guarantees output update latency within the controller’s defined safety response time. Each channel independently monitors loop continuity and wire-break conditions, reporting fault states to the FSC CPU without interrupting the complementary channel’s output — a design characteristic that directly supports partial-stroke testing and proof-test execution without full system shutdown.
Sourced directly from verified supply chains and dispatched from Xiamen, China, every unit offered through siemensplc.com undergoes pre-shipment functional verification. A 12-month warranty covers all hardware defects. For real-time stock confirmation and volume pricing, contact [email protected].
Real-time Stock & RFQ: [email protected] | WhatsApp: +86 18359268345
Technical Parameters
| Parameter | Specification |
|---|---|
| Part Number | FC-TSAOH-0220m |
| Manufacturer | Honeywell Process Solutions |
| Module Series | FSC / Safety Manager SC |
| Module Type | Safety Analog Output (SAO) |
| Output Channels | 2 (independent, galvanically isolated) |
| Output Signal Range | 0–20 mA / 4–20 mA (configurable per channel) |
| Output Resolution | 12-bit DAC |
| Load Impedance | ≤ 750 Ω per channel at 24 VDC supply |
| Accuracy | ± 0.1% of full scale at 25°C |
| Safety Integrity Level | SIL 2 (single channel) / SIL 3 (redundant configuration) |
| Safety Standard | IEC 61508 Ed. 2, IEC 61511 |
| Isolation | Channel-to-channel and channel-to-backplane galvanic isolation |
| Isolation Voltage | 500 V AC (channel-to-bus) |
| Power Supply | 24 VDC via FSC backplane (no external PSU required) |
| Power Consumption | ≤ 4 W per module |
| Operating Temperature | 0°C to +60°C |
| Storage Temperature | -40°C to +85°C |
| Relative Humidity | 5%–95% RH, non-condensing |
| EMC Compliance | EN 61000-4-2/3/4/5/6, IEC 61326-3-1 |
| Certifications | TÜV Rheinland, ATEX Zone 2, IECEx, CE |
| Backplane Interface | Proprietary Honeywell FSC high-speed serial bus |
| Mounting | FSC I/O rack (horizontal or vertical) |
| Module Weight | Approx. 350 g (module only) |
| Dimensions (H × W × D) | Refer to FSC I/O rack slot specification |
| Diagnostic Coverage | > 99% (DC) per IEC 61508 hardware fault tolerance analysis |
| MTBF | > 500,000 hours (per Honeywell reliability data) |
| Warranty | 12 months from date of shipment |
Hardware Logical Analysis
Galvanic Isolation Architecture: Each of the two output channels is isolated from the FSC backplane bus and from the adjacent channel via optocoupler-based galvanic barriers rated at 500 V AC. This topology prevents ground-loop currents — a common source of signal drift in 4–20 mA loops spanning long cable runs across electrically noisy plant environments — from propagating into the controller’s logic domain. The isolation barrier also limits the fault propagation path: a field-side short-circuit or overvoltage event on channel 1 cannot induce a common-mode failure on channel 2 or corrupt the backplane communication frame.
12-Bit DAC and Output Conditioning: The module employs a 12-bit digital-to-analog converter per channel, yielding a theoretical resolution of 4.88 µA per LSB across the 0–20 mA span. A precision voltage reference and temperature-compensated output stage maintain ± 0.1% full-scale accuracy across the 0°C–60°C operating envelope. The current-source output topology — rather than voltage-to-current conversion — ensures that load impedance variations within the 0–750 Ω specification do not affect output accuracy, a critical property when driving positioners with variable coil resistance.
Continuous Loop Diagnostics: The FC-TSAOH-0220m implements hardware-level loop integrity monitoring on each channel. A low-level sense circuit continuously measures the actual loop current against the commanded setpoint. Deviations exceeding a configurable threshold — typically ± 1 mA — trigger a diagnostic alarm reported to the FSC CPU via the backplane status word. Wire-break detection operates by monitoring for open-circuit conditions (loop current drops to 0 mA when a 4–20 mA signal is commanded), enabling the FSC to execute a safe-state transition within the system’s defined safety response time.
EMC Design and Shielding: The module’s PCB layout follows IEC 61326-3-1 guidelines for safety-related equipment in industrial environments. Differential signal routing, ground-plane segmentation between the field-side and logic-side circuits, and transient suppression diodes on all field terminals provide immunity to conducted and radiated interference per EN 61000-4-2 (ESD, ±4 kV contact), EN 61000-4-4 (EFT, ±2 kV), and EN 61000-4-5 (surge, ±1 kV). This EMC robustness is particularly relevant in substations and motor control centers where variable-frequency drives generate significant high-frequency conducted noise on the 24 VDC supply rail.
Deterministic Backplane Communication: The FSC backplane protocol assigns a fixed time slot to each I/O module within the controller’s scan cycle. The FC-TSAOH-0220m’s output register is updated synchronously with the CPU’s output task, ensuring that the physical current-loop output reflects the commanded value within one scan cycle — typically 10–50 ms depending on FSC configuration. This determinism is a prerequisite for SIL 3 loop certification, where the safety response time budget must be fully accountable across every subsystem.
System Integration Benefits
- Zero-Configuration FSC Slot Compatibility: The FC-TSAOH-0220m is recognized automatically by the FSC CPU upon insertion into any standard I/O slot. No jumper settings or hardware address switches are required; channel assignment and output range are configured entirely through the FSC engineering tool, eliminating wiring errors associated with hardware DIP-switch configuration.
- SIL 3 Redundant Output Architecture: Two FC-TSAOH-0220m modules can be configured in a 1oo2 (one-out-of-two) voted output architecture, where both channels drive the same field actuator through a current-summing or selector relay. This configuration achieves SIL 3 performance without requiring a dedicated TMR (Triple Modular Redundant) controller platform, reducing hardware cost in applications where only the output stage requires SIL 3 integrity.
- Partial Stroke Test Support: The module’s independent channel diagnostics allow one channel to be taken offline for proof testing while the second channel maintains the safety function. This capability directly reduces the proof-test interval impact on plant availability — a measurable operational benefit in continuous-process facilities where unplanned shutdowns carry significant economic cost.
- HART Pass-Through Compatibility: The 4–20 mA output is HART-compatible, allowing HART-enabled field devices (smart positioners, HART valve controllers) to communicate device diagnostics and configuration data over the same two-wire loop. The FSC system can route HART data to an asset management system without additional wiring infrastructure.
- Diagnostic Transparency to DCS Layer: Fault status bits from the FC-TSAOH-0220m are mapped to the FSC’s OPC-DA/UA data server, making channel-level diagnostics visible in the Honeywell Experion PKS operator station. Maintenance personnel can identify a specific channel fault — wire break, output deviation, or module hardware fault — from the control room without physical inspection of the I/O rack.
- Consistent Output Behavior During CPU Failover: In redundant FSC CPU configurations, the module holds its last commanded output value during the CPU switchover interval (typically < 50 ms). This bumpless transfer behavior prevents spurious actuator movement during planned or unplanned CPU failover events, maintaining process stability.
- Reduced Wiring Complexity: The dual-channel design consolidates two independent SIL-rated analog output loops into a single module slot, reducing the I/O rack slot count, backplane power draw, and field terminal wiring density compared to single-channel alternatives. In large SIS installations with 50+ analog output loops, this consolidation has a measurable impact on cabinet footprint and installation labor.
- Long-Term Platform Continuity: Honeywell’s FSC and Safety Manager SC platforms maintain backward I/O compatibility across hardware generations. The FC-TSAOH-0220m is supported in both legacy FSC racks and current Safety Manager SC chassis, protecting the capital investment in existing I/O infrastructure during controller platform upgrades.
Quality Assurance & Global Logistics
Every Honeywell FC-TSAOH-0220m unit dispatched from siemensplc.com originates from verified supply channels with full serialized traceability to Honeywell’s manufacturing records. Pre-shipment inspection includes visual examination of PCB and connector condition, serial number validation against Honeywell’s product database, and functional bench verification of both output channels across the 4–20 mA range under resistive load.
Documentation provided with each unit includes a Certificate of Conformance (CoC), functional test report, and Honeywell datasheet reference. For new/unused units, original OEM packaging and factory test certificates are preserved and included. Anti-counterfeit measures — including UV marking verification and PCB revision cross-check — are applied to all safety-critical modules before dispatch.
Logistics operations are based in Xiamen, China, with access to DHL Express, FedEx International Priority, and UPS Worldwide Expedited services. Standard export documentation (commercial invoice, packing list, certificate of origin) is prepared for all international shipments. EXW Xiamen Incoterms are available for customers with established freight forwarder relationships. Typical dispatch lead time for in-stock units is 1–3 business days from order confirmation. Expedited same-day dispatch is available for orders confirmed before 14:00 CST.
A 12-month warranty covers all hardware defects from the date of shipment. Warranty claims are processed with replacement dispatch within 5 business days upon receipt and verification of the returned unit.
Contact Information
Email: [email protected]
WhatsApp: +86 18359268345
Web: siemensplc.com
Location: Xiamen, China
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