ABB NLWC-10 Fiber Optic Cable – AC800M Series
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Key Product Information
Core fields for model confirmation and RFQ routing. Detailed product narrative remains below.
- Brand
- ABB
- Primary Part Number
- NLWC-10
- Product Type
- Fiber Optic Cable
- Series / Family
- AC800M
- Manufacturer
- ABB Ltd.
- Country of Origin
- SE
- Catalog Category
- DCS & Safety Modules
- Operating Temp.
- 0 °C to +60 °C
- Warranty
- 12 months from date of shipment
ABB NLWC-10: Plastic Optical Fiber Link for AC800M Distributed Control Architecture
The ABB NLWC-10 is a 10-meter plastic optical fiber (POF) cable assembly engineered specifically for inter-module optical communication within ABB’s AC800M Distributed Control System platform. Unlike copper-based signal cables, the NLWC-10 transmits data via 660 nm visible-red light through a polymethyl methacrylate (PMMA) core, achieving galvanic isolation between nodes by design — not as an afterthought. In high-density process automation environments where ground loops, variable-frequency drive (VFD) switching transients, and high-voltage bus noise are endemic, this physical layer characteristic is not a convenience; it is a system reliability requirement.
The cable terminates at both ends with HFBR-style snap-in connectors, which mate directly to the optical transceivers embedded in ABB S800 I/O modules, PM8xx controller backplane ports, and Advant OCS inter-rack communication interfaces. No field termination, polishing, or optical power measurement is required during installation. The factory-assembled and factory-tested construction ensures that insertion loss remains within the optical power budget defined in ABB’s AC800M Hardware Manual (3BSE020924R4), eliminating the variability introduced by field-assembled alternatives.
In a typical AC800M topology, the NLWC-10 forms the physical segment of the ModuleBus optical ring — the proprietary high-speed backplane extension bus that connects the PM8xx CPU module to distributed S800 I/O clusters. The ModuleBus operates at 5 Mbit/s with a deterministic cycle time that directly governs controller scan performance. Any optical link degradation — caused by excessive bend radius, contaminated connectors, or mismatched wavelength — introduces bit errors that the ModuleBus protocol reports as communication faults, triggering I/O module fallback states. The NLWC-10, as the original factory cable, is the only assembly guaranteed to maintain the optical power margin required for error-free operation across the full industrial temperature range.
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Technical Parameters
| Parameter | Value |
|---|---|
| Part Number | NLWC-10 |
| Manufacturer | ABB Ltd. |
| Product Series | AC800M / Advant OCS |
| Cable Technology | Plastic Optical Fiber (POF) — PMMA core |
| Optical Wavelength | 660 nm (visible red) |
| Connector Type | HFBR-style snap-in (both ends) |
| Nominal Cable Length | 10 m ± 2% |
| Core Diameter | 980 µm (standard POF) |
| Numerical Aperture (NA) | 0.47 (typical for PMMA POF) |
| Attenuation | ≤ 0.19 dB/m @ 660 nm |
| Maximum Bend Radius | ≥ 25 mm (static); ≥ 50 mm (dynamic) |
| Operating Temperature | 0 °C to +60 °C |
| Storage Temperature | −20 °C to +70 °C |
| Jacket Material | PVC (flame-retardant grade) |
| Outer Diameter | 2.2 mm (nominal) |
| Weight | ~310 g |
| Galvanic Isolation | Complete (optical medium — no electrical path) |
| EMI Immunity | Inherent — immune to conducted and radiated interference |
| RoHS Compliance | Yes — RoHS 2011/65/EU |
| Compatible Bus | ABB ModuleBus (5 Mbit/s optical ring) |
| Warranty | 12 months from date of shipment |
Hardware Logical Analysis
The NLWC-10 operates within the ModuleBus optical ring, which ABB implements as a unidirectional token-passing loop. Each node — whether a PM8xx CPU or an S800 I/O cluster — receives the optical signal, regenerates it electrically, processes the data frame, and retransmits the optical signal to the next node. This regenerative architecture means that signal quality does not degrade cumulatively across multiple hops; each node resets the optical power level. However, the physical link between any two adjacent nodes must still satisfy the minimum received optical power threshold (typically −21 dBm for HFBR-class receivers) to trigger correct data recovery.
The PMMA core of the NLWC-10 has a refractive index of approximately 1.49, producing a critical angle that supports the 0.47 NA specification. At 660 nm, PMMA exhibits its lowest attenuation window for visible-red POF, which is why ABB standardized on this wavelength rather than the 850 nm or 1300 nm bands used in glass multimode fiber. The trade-off is a shorter maximum link distance — approximately 50 m for PMMA POF versus kilometers for glass — but for intra-cabinet and inter-rack DCS applications, 10–30 m is the practical operating range, making PMMA POF the correct engineering choice on cost, weight, and connector simplicity grounds.
The HFBR-style connector uses a precision-molded plastic ferrule that self-centers the fiber core against the transceiver’s LED emitter or PIN photodiode. The snap-in retention mechanism provides a defined mating force that ensures repeatable optical alignment without requiring torque tools. This is significant in maintenance scenarios: technicians replacing cables in live panels can complete the swap without optical power meters or alignment jigs, reducing mean time to repair (MTTR) in fault conditions.
From an EMC perspective, the NLWC-10 provides complete galvanic isolation between the transmitting and receiving nodes. In AC800M installations co-located with high-power motor drives, transformer banks, or arc furnace controls, the optical link eliminates the common-mode voltage coupling that would otherwise appear on copper signal cables as noise superimposed on the data signal. The optical medium is also immune to magnetic field induction — a relevant consideration in installations near large transformers or bus bars carrying kiloampere-class currents.
System Integration Benefits
- Deterministic scan cycle preservation: The NLWC-10 maintains the ModuleBus optical ring integrity required for the PM8xx controller to achieve its rated scan cycle time (as low as 5 ms for fast I/O configurations), ensuring that process control loops receive fresh I/O data within the designed latency budget.
- Zero ground-loop contribution: Because the optical medium carries no electrical current, the NLWC-10 introduces no ground potential difference between connected nodes — a critical property in multi-cabinet installations where cabinet ground references may differ by several volts.
- Plug-and-play replacement: Factory-terminated connectors eliminate field assembly variables. Replacement requires no optical power measurement, no polishing, and no specialized tooling — reducing maintenance labor to a connector swap.
- Full ModuleBus protocol compatibility: The NLWC-10 is validated against ABB’s ModuleBus timing and optical power specifications, ensuring that the bus arbitration logic in the PM8xx CPU does not generate spurious communication fault alarms after cable replacement.
- Diagnostic transparency: A degraded NLWC-10 (due to excessive bending or connector contamination) produces a measurable increase in ModuleBus communication error counters visible in ABB’s Control Builder engineering tool, enabling predictive maintenance before a hard fault occurs.
- Broad controller compatibility: A single NLWC-10 part number serves PM851, PM856, PM860, PM861, PM864, and PM866 controller variants, as well as S800 I/O clusters (AI810, AO810, DI810, DO810, and related modules), reducing spare parts inventory complexity.
- High-EMI environment suitability: Validated for use in environments classified up to IEC 61000-4-3 (radiated immunity) and IEC 61000-4-4 (electrical fast transient), covering the majority of heavy industrial process automation sites.
- Lifecycle alignment: ABB’s AC800M platform carries an extended lifecycle commitment. Stocking NLWC-10 cables as consumable spares aligns with ABB’s recommended spare parts strategy for long-term plant operation without forced system upgrades.
Quality Assurance & Global Logistics
Every NLWC-10 unit supplied by siemensplc.com is sourced as genuine ABB original equipment. Units are not remanufactured, relabeled, or assembled from third-party POF stock. Each cable carries ABB’s factory serialization and is traceable to its production batch, supporting documentation requirements in regulated industries including pharmaceutical manufacturing, nuclear power, and offshore oil and gas.
Prior to dispatch, each unit undergoes a visual inspection of connector ferrule condition, jacket integrity, and label legibility. Optical continuity is verified using a 660 nm source and power meter to confirm that insertion loss falls within the specification window. Units that do not pass inspection are quarantined and not shipped.
Shipments originate from our warehouse in Xiamen, China — a major logistics hub with direct access to international express carriers including DHL, FedEx, and UPS, as well as consolidated freight services for bulk orders. Standard express delivery reaches most destinations in Southeast Asia within 2–3 business days, Europe within 4–6 business days, and North America within 5–7 business days. Expedited same-day dispatch is available for orders confirmed before 14:00 CST. All shipments include commercial invoice, packing list, and certificate of origin. Certificates of conformance and test reports are available upon request at no additional charge.
A 12-month warranty covers manufacturing defects in materials and workmanship from the date of shipment. Warranty claims are processed with a target response time of one business day, and replacement units are dispatched by express courier at no cost to the customer.
Contact Information
Email: [email protected]
WhatsApp: +86 18359268345
Web: siemensplc.com
Location: Xiamen, China
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