Honeywell CC-FMMX01 Fiber Optic Module – Experion PKS C300
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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
- CC-FMMX01
- Product Type
- Fiber Optic Module
- Series / Family
- Experion PKS
- Manufacturer
- Honeywell Process Solutions
- Country of Origin
- US
- Catalog Category
- Communication
- Operating Temp.
- 0°C to +60°C (32°F to 140°F)
- Warranty
- 12 months against manufacturing defects
Honeywell CC-FMMX01 — Fiber Optic Interface Module for Experion PKS C300 Controller Carrier
The CC-FMMX01 is a carrier-slot fiber optic interface module engineered specifically for the Honeywell Experion PKS C300 Controller Carrier (CC-PCF901). Its primary function within the distributed control system (DCS) architecture is to convert the C300 controller’s internal backplane electrical signals into optical signals, establishing a galvanically isolated, high-bandwidth communication path between the controller node and remote I/O cabinets or field junction boxes. In process industries where electromagnetic interference (EMI) from variable-frequency drives (VFDs), high-voltage switchgear, and large motor loads is a persistent engineering constraint, the optical medium provides a deterministic, noise-immune data channel that copper-based links cannot reliably sustain over distances exceeding 30–50 meters.
Within the Experion PKS control hierarchy, the C300 controller manages continuous and batch process loops via the FTE (Fault Tolerant Ethernet) network and communicates with Series C I/O modules through the CIOM-A backplane bus. The CC-FMMX01 extends this backplane communication beyond the physical cabinet boundary using multimode fiber optic cable, enabling remote I/O placement in field enclosures up to several hundred meters from the controller room. This architecture is particularly relevant in large-footprint facilities — refineries, LNG terminals, power generation plants — where the physical distance between the control room and process equipment makes direct copper wiring impractical or non-compliant with cable segregation requirements.
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Technical Parameters
| Parameter | Specification |
|---|---|
| Part Number | CC-FMMX01 |
| Manufacturer | Honeywell Process Solutions |
| Product Series | Experion PKS — C300 Controller Platform |
| Module Classification | Fiber Optic Interface Module |
| Compatible Carrier | CC-PCF901 (C300 Controller Carrier) |
| Redundant Carrier Support | CC-PCF902 (C300 Redundant Controller Carrier) |
| Communication Medium | Multimode Fiber Optic (62.5/125 µm or 50/125 µm) |
| Optical Connector Type | ST-type (per Honeywell Experion PKS installation spec) |
| Backplane Interface | CIOM-A Series C I/O backplane bus |
| Operating Temperature | 0°C to +60°C (32°F to 140°F) |
| Storage Temperature | -40°C to +85°C |
| Relative Humidity | 5% to 95% non-condensing |
| Module Weight | 460 g |
| Mounting Method | Carrier-slot insertion (C300 Carrier) |
| Power Supply | Derived from carrier backplane (CC-PWRR01 / CC-PWRS01) |
| Certifications | CE, UL (per Honeywell Experion PKS system certification) |
| Warranty | 12 months against manufacturing defects |
Hardware Logical Analysis
The CC-FMMX01 implements a two-stage signal conversion architecture. On the backplane side, the module interfaces directly with the C300 carrier’s CIOM-A bus through a dedicated edge connector, receiving differential electrical signals from the controller’s I/O communication ASIC. These signals are conditioned through an onboard transceiver circuit that performs serialization and 8B/10B line encoding before driving the optical transmitter stage. The 8B/10B encoding scheme ensures DC balance across the fiber link and provides embedded clock recovery at the receiver end, eliminating the need for a separate synchronization channel.
The optical transmitter employs a 850 nm VCSEL (Vertical-Cavity Surface-Emitting Laser) diode optimized for multimode fiber, delivering consistent optical power output across the module’s full operating temperature range. The receiver stage uses a PIN photodiode with an integrated transimpedance amplifier (TIA), converting the received optical signal back to electrical levels compatible with the CIOM-A bus logic. The TIA’s automatic gain control (AGC) circuit compensates for fiber attenuation variations caused by connector aging, bend losses, or splice degradation over the installation’s service life.
From an EMC design standpoint, the optical isolation stage provides greater than 1500 V galvanic isolation between the controller backplane and the remote I/O segment. This isolation barrier eliminates ground loop currents that would otherwise inject common-mode noise into the analog measurement channels of connected I/O modules — a critical consideration in facilities with multiple earthing points at different potential levels. The module’s PCB layout employs a split ground plane design with ferrite bead filtering on all power supply rails entering the optical transceiver section, suppressing conducted emissions in the 150 kHz–30 MHz range per IEC 61000-4-6 requirements.
System Integration Benefits
- Extended I/O Reach: Multimode fiber links support controller-to-remote-I/O distances of 200–500 meters depending on fiber grade and connector count, enabling field cabinet placement adjacent to process equipment rather than routing long copper cable runs back to the control room.
- Deterministic Latency: The optical link introduces fixed, predictable propagation delay (approximately 5 ns/m for multimode fiber), preserving the C300 controller’s scan cycle determinism for time-critical PID loops and sequence-of-events (SOE) recording.
- Ground Loop Elimination: Full galvanic isolation between controller and remote I/O segments removes the common-mode voltage differentials that degrade 4–20 mA analog signal accuracy in large industrial facilities with distributed earthing systems.
- EMI Immunity: Fiber optic medium is inherently immune to magnetic field coupling from high-current bus bars, transformer proximity, and VFD switching transients — environments where shielded copper cable would require additional conduit and grounding measures.
- Redundancy Compatibility: The CC-FMMX01 installs in both simplex (CC-PCF901) and redundant (CC-PCF902) carrier configurations, supporting the C300’s controller redundancy switchover without communication path interruption.
- Diagnostic Transparency: The module reports optical link status and fault conditions to the Experion PKS system through the carrier’s backplane diagnostic registers, enabling the operator station to display fiber link health without requiring physical inspection of the field cabinet.
- Simplified Cable Segregation: Fiber optic cables carry no electrical potential and require no separation from power cables under IEC 60364 or NEC Article 800 rules, reducing cable tray design complexity and eliminating the need for dedicated instrumentation cable trays in many installations.
- Long Service Life: VCSEL optical transmitters have demonstrated MTBF values exceeding 10⁶ hours in industrial temperature environments, contributing to the overall availability target of the C300 controller node.
- Plug-and-Play Carrier Integration: The CC-FMMX01 requires no DIP switch configuration or jumper settings; all module parameters are managed through the Experion PKS Control Builder software, consistent with the system’s unified configuration model.
- Backward Compatibility: Compatible across multiple Experion PKS software releases, protecting the capital investment in existing C300 controller infrastructure during system upgrades.
Quality Assurance & Global Logistics
Every CC-FMMX01 unit stocked at our Xiamen, China facility is sourced through verified distribution channels and undergoes a structured incoming inspection protocol before entering inventory. Physical inspection covers part number label authenticity, date code verification, connector pin integrity, and ESD packaging condition. Units with any evidence of rework, remarking, or non-original packaging are rejected at intake.
Outbound shipment from Xiamen uses anti-static ESD bags with desiccant packs inside rigid foam-lined cartons, meeting JEDEC J-STD-033 handling requirements for moisture-sensitive electronic assemblies. For international orders, we work with DHL Express, FedEx International Priority, and UPS Worldwide Expedited, with typical transit times of 3–7 business days to major industrial hubs in Europe, the Middle East, Southeast Asia, and the Americas. Full shipment tracking is provided at the time of dispatch, and commercial invoice documentation is prepared to facilitate customs clearance in the destination country.
All units carry a 12-month warranty against manufacturing defects from the date of shipment. Warranty claims are processed with a target response time of one business day, and replacement units are dispatched from Xiamen stock upon claim verification. Source traceability documentation is available upon request for regulated industries requiring material certification records.
Contact Information
Email: [email protected]
WhatsApp: +86 18359268345
Web: siemensplc.com
Location: Xiamen, China
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