Model | FU-A10*1 | |||
Type | Array thrubeam model | |||
Optical axis diameter | 11 × 0.3 mm0.433" × 0.012" | |||
Fibre unit length | 2 m78.74" free-cut | |||
Fibre unit diameter | ø2.2 | |||
Minimum bend radius | R4 mm0.157"*2 | |||
Minimum detectable object | Opaque material with a diameter of 0.4 mm0.016"*3 | |||
Tightening torque | 0.3 Nm | |||
Environmental resistance | Enclosure rating | IP67 | ||
Ambient temperature | -40 to +70 °C -40 to 158 °F (No freezing) | |||
Relative humidity | 35 to 85 % RH (No condensation) | |||
Material | Main unit case : polybutylene terephthalate, case tips : liquid-crystal polymer, core fiber : acrylic, fiber sheath : polyethylene | |||
Accessories | Mounting screws (M3 × ℓ8), fiber cutter | |||
Weight | Approx. 20 g | |||
*1 For details on the detecting distance, see the fiber amplifier catalog. |
- USD
- CNY
- HKD
- EUR
- العربية
- čeština
- dansk
- Deutsch
- Ελληνικά
- English
- Español
- Français
- ic
- Italiano
- Netherlands
- norsk Språk
- język polski
- pt
- Português
- 中文


FU-A100
Subscribe to get prices
Model: FU-A100
Order No: FU-A100
SKU: 10000015742801
Size: 100.00 mm,120.00 mm,25.00 mm
Weight: 0.02kg
Brief Introduction
FU-A100
ModelFU-A10*1TypeArray thrubeam modelOptical axis diameter(Standard target to be detected)11 × 0.3 mm0.433" × 0.012"Fibre unit length2 m78.74" free-cutFibre unit diameterø2.2Minimum bend radiusR4 mm0.157"*2Minimum detectable objectOpaque material with a diameter of 0.4 mm0.016"*3Tightening torque0.3 NmEnvironmental resistanceEnclosure ratingIP67Ambient temperature-40 to +70 °C -40 to 158 °F (No freezing)Relative humidity35 to 85 % RH (No condensation)MaterialMain unit case : polybutylene terephthalate, case tips : liquid-crystal polymer, core fiber : acrylic, fiber sheath : polyethyleneAccessoriesMounting screws (M3 × ℓ8), fiber cutterWeightApprox. 20 g*1 For details on the detecting distance, see the fiber amplifier catalog.*2 The section 10 mm in length from the base of the case is R10.*3 The minimum detectable object is the value when the detecting distance and sensitivity have been set to their optimal state.
Description