| Parameter | Value |
|---|---|
| External dimensions | 10×10×3 mm |
| Fiber head diameter | NA |
| Fiber head material | Aluminum silver |
| Fiber cable outer/core | Φ1.0 / Φ0.5 |
| Cable length | 1M |
| Bending radius | R10 |
| Conduit tube | Not required |
| Sensing distance | 140MM (LONG: 150MM) |
| Fiber type | Mounting type, through-beam |
| Head material | Aluminum silver |
| Light exit | Front exit |
| Tail connector | Plastic |
| Cuttable | Yes |
| Weight | 3.63g |
| Temp. range | -20°C ~ +70°C |
FFTS-51TZ 1M
F&C
| Availability: | |
|---|---|
| Quantity: | |
Parameter | Value |
|---|---|
External dimensions | 10×10×3 mm |
Fiber head diameter | NA |
Fiber head material | Aluminum silver |
Fiber cable outer/core | Φ1.0 / Φ0.5 |
Cable length | 1M |
Bending radius | R10 |
Conduit tube | Not required |
Sensing distance | 140MM (LONG: 150MM) |
Fiber type | Mounting type, through-beam |
Head material | Aluminum silver |
Light exit | Front exit |
Tail connector | Plastic |
Cuttable | Yes |
Weight | 3.63g |
Temp. range | -20°C ~ +70°C |
The FFTS-51TZ 1M mounting bracket through-beam fiber optic cable is engineered to deliver precise object detection in highly constrained mechanical environments. By bridging the gap between severe spatial limitations and the demand for unerring sensor accuracy, this component supports continuous, high-speed automated production. Its structural design prioritizes rapid deployment, long-term environmental resilience, and immediate integration into existing control architectures, providing procurement teams and facility engineers with a dependable sensing solution.
Industrial machinery frequently presents severe spatial limitations, requiring sensing components that adapt without compromising structural integrity. Designed with external dimensions of just 10×10×3 mm, the integrated mounting bracket allows engineers to deploy the sensor securely within cramped mechanical assemblies. The physical construction includes a highly flexible fiber cable featuring an R10 bending radius. When handling the cable, technicians experience a pliable yet resilient exterior jacket that permits free cutting to exact lengths. This structural flexibility ensures the cable routes easily through intricate mechanical pathways, around sharp corners, and inside robotic arms without the need for additional protective conduit tubes. The tactile feedback during installation confirms its physical durability, reducing setup time and preventing micro-fractures in the Φ0.5 core and Φ1.0 outer jacket.
In fast-paced automated production lines, the margin for error is virtually non-existent. The through-beam optical path design of this fiber optic cable guarantees absolute accuracy in object detection. Operating with a standard sensing distance of 140mm and an extended range of up to 150mm, it creates a focused, uninterrupted light barrier. This configuration proves exceptionally effective for identifying minute components passing at high velocities. The front-exit light mechanism ensures a concentrated beam, eliminating false triggers or missed detections caused by ambient light interference or reflective background surfaces. Plant managers rely on this consistent optical performance to maintain continuous workflow in sorting, counting, and positioning tasks, directly translating to improved throughput and reduced operational downtime.
The physical environment of manufacturing facilities exposes equipment to fluctuating temperatures, constant vibrations, and mechanical stress. The sensing head of the FFTS-51TZ is machined from aluminum silver, providing a cool, metallic rigidity that resists physical impacts and prolonged exposure to industrial wear. Weighing a mere 3.63 grams, the ultra-lightweight profile minimizes inertial load when mounted on moving parts. Furthermore, the unit is rated for a broad functional temperature range of -20°C to +70°C. Whether deployed in cold storage packaging facilities or near heat-generating processing equipment, the optical transmission remains stable. Rigorous optical attenuation testing and industrial lifecycle validation ensure this cable meets strict RoHS environmental and safety compliance standards, offering a reliable, long-term component solution.
Integrating new sensing components into existing automation architectures must be a straightforward process to minimize facility downtime. To facilitate this, the cable is equipped with a standard plastic tail connector. This standardized interface guarantees immediate compatibility with a vast array of mainstream fiber amplifiers and automated control systems currently active in the market. Maintenance teams can execute swift replacements or system upgrades without the need for proprietary adapters or complex rewiring procedures. The secure fit of the plastic connector provides a reassuring mechanical click upon insertion, ensuring the optical alignment is locked firmly in place and protected against operational vibrations.
The specific engineering attributes of this through-beam fiber optic cable make it an indispensable asset across several demanding industrial sectors: