| Parameter Value SKU Attributes Protective device NA Fiber head diameter M3 Fiber cable outer / core diameter Φ1.0+Φ1.3 / Φ0.5*1+Φ0.25*9 Fiber cable length 1M Conduit tube diameter Φ1.5 Conduit tube length 10mm Conduit tube required Yes Sensing distance 80MM Integrated tail bracket NA Product Description Sensing distance: 80MM / Fiber cable outer/core: Φ1.0+Φ1.3 / Φ0.5*1+Φ0.25*9 / Fiber head diameter: M3 Mechanical Parameters Protective device NA Fiber head material Stainless steel Fiber head diameter M3 Fiber type Coaxial Fiber cable outer / inner diameter Φ1.0+Φ1.3 / Φ0.5*1+Φ0.25*9 Fiber cable bending radius R15 Fiber cable length 1M Conduit tube bendable No Conduit tube diameter Φ1.5 Conduit tube length 10mm Light exit direction Front exit Tail connector material Plastic Detection method Diffuse reflective Cuttable Yes Weight 3.76g Integrated tail bracket NA Environmental Parameters Ambient temperature (max) 70°C Ambient temperature (min) -20°C Electrical Parameters Sensing distance (LONG mode) 85MM Sensing distance (SEND mode) 80MM | Value |
|---|---|
| 0mm~100mm ±10% (with FF-403 amplifier) | |
| Sensing blind zone | None |
| Minimum detectable object | φ0.25 |
| Optical axis diameter | φ0.25*2 + φ0.5*1 |
| Optical axis pitch | / |
| Fiber optic cable outer diameter | φ1.0 + φ1.3 |
| Minimum bending radius | R10 + R15 |
| Fiber optic cable length | 1000mm ±2% |
| Operating environment temperature | -40~+60°C (no freezing/ice) |
| Parameter Value SKU Attributes Protective device NA Fiber head diameter M3 Fiber cable outer / core diameter Φ1.0+Φ1.3 / Φ0.5*1+Φ0.25*9 Fiber cable length 1M Conduit tube diameter Φ1.5 Conduit tube length 10mm Conduit tube required Yes Sensing distance 80MM Integrated tail bracket NA Product Description Sensing distance: 80MM / Fiber cable outer/core: Φ1.0+Φ1.3 / Φ0.5*1+Φ0.25*9 / Fiber head diameter: M3 Mechanical Parameters Protective device NA Fiber head material Stainless steel Fiber head diameter M3 Fiber type Coaxial Fiber cable outer / inner diameter Φ1.0+Φ1.3 / Φ0.5*1+Φ0.25*9 Fiber cable bending radius R15 Fiber cable length 1M Conduit tube bendable No Conduit tube diameter Φ1.5 Conduit tube length 10mm Light exit direction Front exit Tail connector material Plastic Detection method Diffuse reflective Cuttable Yes Weight 3.76g Integrated tail bracket NA Environmental Parameters Ambient temperature (max) 70°C Ambient temperature (min) -20°C Electrical Parameters Sensing distance (LONG mode) 85MM Sensing distance (SEND mode) 80MM | |
FFRC-310-I
F&C
| Availability: | |
|---|---|
| Quantity: | |
Parameter | Value |
|---|---|
SKU Attributes | |
Protective device | NA |
Fiber head diameter | M3 |
Fiber cable outer / core diameter | Φ1.0+Φ1.3 / Φ0.5*1+Φ0.25*9 |
Fiber cable length | 1M |
Conduit tube diameter | Φ1.5 |
Conduit tube length | 10mm |
Conduit tube required | Yes |
Sensing distance | 80MM |
Integrated tail bracket | NA |
Product Description | Sensing distance: 80MM / Fiber cable outer/core: Φ1.0+Φ1.3 / Φ0.5*1+Φ0.25*9 / Fiber head diameter: M3 |
Mechanical Parameters |
The FFRC-310-I Coaxial diffuse reflection optical fiber is engineered to deliver precise detection capabilities for complex operational environments, ensuring reliable data collection across various machinery setups.
The FFRC-310-I coaxial diffuse reflection optical fiber is engineered to deliver exceptional measurement accuracy without requiring physical contact with the target object. By utilizing an advanced coaxial design, this component achieves a highly stable 80mm sensing distance, ensuring consistent detection even in fast-paced operational environments. The rapid response mechanism allows for immediate signal transmission, which is crucial for dynamic production lines where timing dictates overall efficiency. Instead of relying on mechanical triggers, the diffuse reflection method bounces light directly off the object's surface, capturing minute variations in position or presence. This non-contact approach eliminates the risk of surface contamination or physical wear on delicate targets. Operators will notice a significant reduction in false readings, as the concentrated light beam maintains its integrity over the specified range. The precise execution of these sensing capabilities directly translates to fewer operational interruptions and tighter control over automated processes.
Constructed to endure rigorous daily operations, the physical architecture of this optical fiber prioritizes longevity and mechanical resilience. The external sheathing features a specialized protective layer that feels distinctly smooth yet highly resistant to abrasive forces. Beneath this outer jacket lies a high-toughness fiber core designed to withstand substantial tensile stress and repetitive bending. When handled, the cable exhibits a firm but pliable texture, indicating its capacity to resist compression and crushing impacts from heavy machinery or accidental foot traffic. The materials selected for the outer jacket inherently resist premature aging, preventing the cracking and brittleness often encountered in standard cables after prolonged exposure to industrial lighting and atmospheric ozone. By integrating these structural safeguards, the design minimizes the frequency of cable replacements, thereby lowering long-term maintenance expenditures and ensuring continuous operational readiness.
Industrial settings frequently present challenging atmospheric conditions, and this optical fiber is specifically constructed to remain unaffected by such extremes. Operating entirely without electromagnetic radiation, the unit is inherently immune to interference from nearby heavy machinery, variable frequency drives, or high-voltage power lines. The protective outer casing is meticulously sealed to provide comprehensive resistance against water ingress and ambient moisture, ensuring that internal light transmission remains unobstructed even in highly humid facilities. Furthermore, the non-conductive nature of the fiber materials offers natural lightning protection and insulates the sensing network against unexpected voltage fluctuations. Whether deployed in a damp processing plant or a facility experiencing frequent thermal cycling, the component maintains a consistent operational baseline. This inherent environmental stability prevents signal degradation, ensuring that your data collection remains accurate regardless of external atmospheric or electrical shifts.
Integrating new components into existing machinery often presents spatial challenges, which this unit addresses through a highly adaptable form factor. The sensing head is equipped with a standard M3 thread, allowing for immediate, secure attachment to standard mounting brackets without the need for complex welding or specialized adhesives. The flexible nature of the one-meter fiber cable permits routing through incredibly confined spaces, navigating sharp corners and dense internal machine architectures with ease. Because the fiber can be cleanly cut to the exact required length, installers can eliminate excess slack that might otherwise tangle or snag on moving mechanical parts. This solder-free, customizable installation process significantly reduces setup time. Technicians can achieve a precise, tailored fit that perfectly aligns with the unique geometric constraints of any given equipment layout, streamlining the deployment phase.
By fulfilling these diverse roles, the component directly enhances the operational throughput and error-detection capabilities of sophisticated mechanical systems.
Recognizing that standard specifications may not fulfill every unique project requirement, extensive customization options are available directly from the manufacturing source. Clients can specify exact modifications, including alternative fiber cable lengths, distinct core diameter configurations, and specialized sensing head geometries to match proprietary equipment. This direct-from-factory approach ensures that any tailored modifications maintain the exact structural integrity and sensing accuracy of the baseline model. For larger deployment strategies, comprehensive manufacturing services are provided, allowing for bulk production runs that adhere to strict, client-defined tolerances. Every unit undergoes rigorous pre-shipment evaluation, supported by a 12-month comprehensive warranty to guarantee sustained performance. With substantial inventory reserves, standard configurations are dispatched rapidly, while custom orders benefit from streamlined production cycles, ensuring global delivery timelines are met with efficiency and precision.