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• Series ANT
• Series V12
• Series V15
• Series V20
• Series V22
• Series V24
• Series V25
• Series V26
• Series V28
• Series V30
• Series V32
• Series V36
• Series VFX
• Series VRA
• Series VRB

projektowanie osłonek spawów światłowodowych
Designing sleeve
Fiber optic fusion splice protector sleeves can make according to your requirements.

ALUMINIUM, CRIMP FIBER OPTIC PROTECTORS

Series ANT

(fast installation)
Download PDF file
  Code: ANT-L-XX
Series ANT

Aluminium, crimp fiber optic protectors

Series ANT Fiber size 250
Part No. W H L θ Stock
ANT-30-00 1,2 3,2 30 60°
All dimensions in mm. In accordance with the standard EN 50411-3-3:2011
W - width of the protector after crimping
H - high of the protector after crimping
L - lenght of the protector after crimping
θ - angle of the protector before crimping
- Stock
- Production

Product description
Aluminiowe, zaciskane osłonki spawów ¶wiatłowodowych     Fiber optic splice ANT protectors series are applied in nearly all branches optic fibers engineering. They are used to protect fiber welds in fiber optic splice closures as well as 19" rack fiber optical distribution panels, stand and wall boxes. Small size, tightness of connection and speed of installation are the main advantages of this solution. Excellent climatic and thermal properties make it ideal to use in closed and open spaces. The main goals during design phase were: full protection of the fiber optic splices, small size after crimping and short installation time. The final products are checked for fiber optic splices protectors V-PROTECT compliance with the requirements set out in TS 0338/96 Deutsche Telekom and EN 50411-3-3 European Standard. The sleeves we produce offer full protections the fiber optic splices. They do not cause additional insert losses, and they offer protection against mechanical damage, pollution and weather conditions.

    ANT series has a small external dimensions (L = 30mm, H = 3.2 mm, W = 1.2 mm). The protector consists of a 0.3mm thick aluminum body and 0.3mm thick butyl strips (PIB mass). This solution allows the use of the protector to fibers with a coating of 250um or smaller. The mass strips are made of butyl mass with very good adhesion to many materials and low solubility in water. Aluminum body reinforcing stiffener connection is made from high quality aluminum strip. When crimping the protector, the optical fiber is tightly immersed in the mass filling the space between the fiber and the aluminum body. This casing design eliminates air bubbles. It also prevents transverse and longitudinal stresses in the weld splice during the clamping process. Stresses significantly increase the insertion and reflection loss of the connection. In extreme cases, they can lead to breaking the connection, which means repeating the welding procedure. The protector guarantees durability and resistance to crushing, stretching and puncture.
Product properties
  • Outer dimension after crimping: H=3,2 mm +/- 0,1mm; W=1,2mm +/-0,1; L=30mm +/-0,5mm
  • Outer dimension befor crimping: θ=60° +0/-5°
  • Mechanical protection of fiber optic splice,
  • Flexible laying of fiber optic splice,
  • Waterproof and hermetic protection of fiber optic splice,
  • Very short installation time
  • RoHS compliant RoHS
  • Packing: 150pcs to one carton
Packing
Kolorowe termokurczliwe osłonki spawów ¶wiatłowodowych     Packing: 150 pcs in one paper carton. Carton including five blisters of 30 protectors. One blister is made of five columns that can be separated. Each column contains 6 protectors and is closed with a reusable tape

How to order:
ANT-30-00(150) - 150pcs packed to one carton (Standard packing)
Other packing method available on request. Packing aluminium, crimp fiber optic protectors
References:
   EN 50411-3-3 European standard
  • Criterion 8.3.1: EN 61300-3-3; Change in attenuation: 1310&1550nm δIL ≤ ±0,1dB per circuit of 5 protected fusion splices
  • Criterion 8.3.3: EN 61300-1-1; Vibration: 10-50Hz, amplitude 0,75mm, 15 cycles, 1550nm δIL ≤ ±0,2dB durin -, δIL ≤ ±0,1dB after - per circuit of 5 protected fusion splices
  • Criterion 8.3.8: EN 61300-2-17, Cold: -40°C, 96h, 1310&1550nm δIL ≤ ±0,2dB durin -, δIL ≤ ±0,1dB after - per circuit of 5 protected fusion splices
  • Criterion 8.3.9: EN 61300-2-18, Dry heat: +80°C 96h, 1310&1550nm δIL ≤ ±0,2dB durin -, δIL ≤ ±0,1dB after - per circuit of 5 protected fusion splices
  • Criterion 8.3.10: EN 61300-2-19, Damp heat: from +25°C to +55°C, 93%Rh, 4 cycles, 96h 1310&1550nm δIL ≤ ±0,2dB durin -, δIL ≤ ±0,1dB after - per circuit of 5 protected fusion splices
  • Criterion 8.3.11: EN 61300-2-22, Change of temperature: from -40°C to +70°C, 12 cycles, 68h, 1310&1550nm δIL ≤ ±0,2dB durin -, δIL ≤ ±0,1dB after - per circuit of 5 protected fusion splices
   TS 0338/96 Deutsche Telekom standard:
  • Criterion 5.8: Transport simulation: from -40°C to +85°C, 20 cycles, 183h
  • Criterion 5.9.2: DIN EN 61300-2-18, Dry heat: +85°C 96h, 1550nm IL ≤ 0,1 for 5 crimp protectors
  • Criterion 5.9.3: DIN EN 61300-2-17, Cold: -45°C, 96h, 1550nm IL ≤ 0,1 for 5 crimp protectors
  • Criterion 5.9.4: DIN EN 61300-2-19, Damp heat: +40°C, 93%Rh, 96h, 1550nm IL ≤ 0,1 for 5 crimp protectors
  • Criterion 5.9.5: DIN EN 61300-2-22, Change of temperature: from -40°C to +70°C, 12 cycles, 68h, 1550nm IL ≤ 0,1 for 5 crimp protectors
  • Criterion 5.9.6: EN 60068-2-6 , Vibration: 10-500Hz, 10 cycles, 1550nm IL ≤ 0,1 for 12 crimp protectors
  • Criterion 5.9.7: EN 60068-2-27, Shock: 11ms, half sine 15G, 1550nm IL ≤ 0,1 for 12 crimp protectors
  • Criterion 5.10.2: TS 0338/96, Vertical bending: 6N
  • Criterion 5.10.3: TS 0338/96, Horizontal bending: 2N
 

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