| Parameter | Value |
|---|---|
| SKU Attributes | |
| Protective device | NA |
| Fiber head diameter | Φ3 |
| 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 | 40mm |
| 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: Φ3 |
| Mechanical Parameters | |
| Protective device | NA |
| Fiber head material | Stainless steel |
| Fiber head diameter | Φ3 |
| 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 | 40mm |
| Light exit direction | Front exit |
| Tail connector material | Plastic |
| Detection method | Diffuse reflective |
| Cuttable | Yes |
| Weight | 3.26g |
| 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-MQ
F&C
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The FFRC-310-MQ Coaxial Diffuse Reflection Optical Fiber is engineered specifically to address the rigorous demands of modern industrial automation, where equipment miniaturization frequently limits installation space. By integrating a highly sensitive detection mechanism into an ultra-compact form factor, this sensing component provides reliable object recognition in environments where traditional sensors simply cannot fit. Designed for integration into complex machinery, robotic assemblies, and tight production lines, it delivers consistent optical feedback without compromising on structural integrity. The combination of its specialized coaxial architecture and robust physical construction ensures that operational efficiency remains uninterrupted, even under continuous mechanical stress and fluctuating environmental conditions.
The following table details the exact mechanical, environmental, and electrical parameters of the FFRC-310-MQ, providing engineers and procurement specialists with the precise data required for system integration.
| Parameter | Value |
|---|---|
| SKU Attributes | |
| Protective device | NA |
| Fiber head diameter | Φ3 |
| 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 | 40mm |
| 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: Φ3 |
| Mechanical Parameters | |
| Protective device | NA |
| Fiber head material | Stainless steel |
| Fiber head diameter | Φ3 |
| 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 | 40mm |
| Light exit direction | Front exit |
| Tail connector material | Plastic |
| Detection method | Diffuse reflective |
| Cuttable | Yes |
| Weight | 3.26g |
| 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 |
At the core of the FFRC-310-MQ lies its sophisticated coaxial diffuse reflection technology. Unlike standard side-by-side emitter and receiver configurations, the coaxial architecture aligns the light beams precisely, entirely eliminating near-field blind spots. This structural advantage allows the sensor to accurately identify micro-components even when they pass within millimeters of the stainless steel probe.
Furthermore, this unit features exceptional background suppression capabilities. It focuses strictly on the target object within its designated sensing range—achieving a standard distance of 80mm and extending up to 85mm in LONG mode—while ignoring reflective backgrounds or moving machine parts behind the target. This targeted sensing prevents false triggers, drastically reducing machine downtime and improving overall production yield in fast-paced manufacturing setups.
When handling the FFRC-310-MQ, technicians immediately notice the deliberate contrast in materials designed for longevity. The sensing head is machined from industrial-grade stainless steel, presenting a smooth, rigid exterior that resists physical impact, chemical exposure, and corrosive elements commonly found in factory settings.
Protecting the delicate internal optics is a non-bendable, 40mm long conduit tube with a compact Φ1.5 diameter. This rigid conduit ensures that mechanical stress from nearby moving parts never reaches the critical fiber junction. Transitioning from the rigid head is the highly adaptable 1-meter fiber optic cable. Built with a specialized multi-core structure (Φ0.5*1+Φ0.25*9 inner core), the cable boasts a remarkable R15 bending radius. It maintains excellent light transmission even when routed through tight corners, operating flawlessly across a broad thermal range from -20°C to 70°C.
Procurement managers and engineering leads require components that mitigate project risk. The FFRC-310-MQ is backed by multiple structural patents and holds comprehensive national-level safety certifications. Before leaving the manufacturing facility, every single unit undergoes rigorous optical transmission and thermal stress testing to guarantee absolute consistency across large-volume orders.
To ensure this component perfectly aligns with your operational requirements, we offer a streamlined evaluation process. Enterprise clients can request free samples for hands-on laboratory testing or arrange for on-site demonstration integrations. Coupled with our optimized inventory management and rapid delivery protocols, we ensure that your automation upgrades or new machine builds proceed exactly on schedule without supply chain interruptions.