CC-PFE221 | Honeywell | Experion PKS Fiber Optic Extender Module
Specifications
Manufacturer: Honeywell
Product No.: CC-PFE221
Condition: 10 Items in Stock
Product Type: Communication Modules
Product Origin: USA
Payment:T/T, Western Union
Weight: 300g
Shipping port: Xiamen
Warranty: 12 months
Product details
Description
The Honeywell CC-PFE221, also cataloged as the CC-PFE221 Fiber Optic Extender Module, operates as a dedicated hardware component for long-distance optical network coupling within Experion PKS and C300 process control system platforms.
Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | CC-PFE221 |
| Brand | Honeywell |
| Origin | USA |
| Weight | approx. 0.3 kg |
| Dimensions | 63.5 mm x 124.46 mm x 307.34 mm |
| Operating Temp | -40 to +85 deg C |
| Power Consumption | Redundant backplane bus power execution |
| Functional Type | Fiber Optic Extender Module |
| Subsystem Compatibility | Experion PKS and C300 controllers |
| Response Time | less than 1 ms |
| Communication Protocols | RS-485, CANopen (configuration dependent) |
| Noise Immunity | Total immunity to electromagnetic interference (EMI) |
FOUNDATION Fieldbus / Profibus PA Connectivity and Optical Network Coupling
The Honeywell CC-PFE221 converts electrical signaling structures into optical pulses to enable long-range backplane extensions between distributed C300 controller nodes and remote field I/O stations. By converting electrical networks into optical transmission paths, the module eliminates ground loop potentials and protects upstream processing channels from severe electrical transients. The high-speed optic transceiver execution supports deterministic data throughput alongside FOUNDATION Fieldbus / Profibus PA connectivity networks, maintaining real-time telemetry updates across distributed plant topologies.
Frequently Asked Questions
Q: Does replacing the CC-PFE221 optical extender require powering down the C300 controller node?
A: No, the module supports live online insertion and removal (hot-swapping) on the C300 carrier base, provided that redundant optic extension links are active to preserve data flow.
Q: How does the CC-PFE221 handle electromagnetic interference in high-noise environments?
A: The module converts electrical signals to optical pulses over glass fiber media, achieving complete physical isolation and immune signal transmission across electromagnetic noise fields.
Q: What communication latency is introduced when routing signals through this extender?
A: The optical transceiver conversion execution introduces a propagation delay of less than 1 ms, ensuring deterministic loop timing for real-time control routines.
Field Installation Guidelines
- Mount the module chassis securely into the C300 I/O carrier slot, pushing firmly until mechanical latch mechanisms engage with the backplane connectors.
- Clean all fiber optic LC/ST connector end-faces using optical grade wipes before insertion into the transceiver ports to prevent attenuation loss.
- Observe specified minimum bend radii for optical fiber patch cables during trunk routing inside cabinet wireways to avoid micro-bending signal losses.
- Verify optical signal loss (dB) using an optical power meter prior to commissioning to ensure line attenuation falls within transceiver power budgets.
- Maintain a minimum vertical clearance of 100 mm above and below the carrier assembly to support convective thermal airflow across the module body.
How to Get a Quote
Order Tracking
Shipping Carriers
Refund Policy and Conditions
Warranty Conditions
Related Products
- Choosing a selection results in a full page refresh.