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1270nm 1310nm Fiber Collimator For Laser Systems 20mm
  • 1270nm 1310nm Fiber Collimator For Laser Systems 20mm

1270nm 1310nm Fiber Collimator For Laser Systems 20mm

Lieu d'origine Shanghai
Nom de marque Honghui Guanglian
Certification ISO9001:2015/ISO14001:2015/ ISO45001:2018/ISO27001:2013
Numéro de modèle Φ1,0/1,8 mm
Document Fiber Collimator.pdf
Détails du produit
Perte d'insertion:
<0,2 dB
Le WDL:
<0,05dB
PDL:
<0,03dB
Perte de retour:
> 60 dB
Type de fibre:
Mode unique/mode multiple
Diamètre du noyau de fibre:
9 μm/125 et 50 μm/125
Angle de collimation:
0,5°
Matériau du boîtier:
Acier inoxydable
Diamètre du faisceau:
100-800um
Longueur de fibre:
0,1-4,0m
Plage de longueurs d'onde:
850nm,980nm,1270nm,1310nm,1550nm,1650nm
Matériel:
Verre/métal
Taille matérielle:
φ1,2 ~ φ3,2, 5-20 mm
Distance de travail:
0~120mm
Température de travail:
-20~75°C
Températures de stockage:
-40 ~ 85 ° C
Compte de fibre:
Fibre simple/fibre double
Diamètre de courbure des fibres:
6,0-6,5 cm
Mettre en évidence: 

1310nm fiber collimator

,

1270nm fiber collimator

,

1270nm fibre collimator

Conditions de paiement et d'expédition
Quantité de commande min
100
Prix
negotiable
Détails d'emballage
package individuel
Délai de livraison
10 jours ouvrables
Conditions de paiement
T/T
Capacité d'approvisionnement
100K
Description du produit
High Precision Fiber Collimator for Laser Systems
High precision fiber collimator: the core optimization component of optical systems

The fiber collimator converts scattered light into collimated beams through precise coupling between the lens and the fiber, significantly improving the positioning accuracy and signal stability of the optical system. The core lies in the precise alignment of the lens with the fiber end face (tilt angle<0.5 °), combined with an 8 ° tilt angle (APC type) polishing process, which can effectively suppress end face reflection, with a return loss of ≥ 50dB, ensuring that the beam maintains a low divergence angle (typical value 0.01 °) during long-distance transmission. For example, in high-precision scenarios such as laser processing and medical equipment, this design can reduce optical path offset and improve system response speed and reliability.

Product Parameter Table
Typical values of parameter categories
Parameter Value Parameter Value
Working wavelength 1310nm/1550nm Insertion loss ≤ 0.3dB
Divergence angle 0.01 ° -0.1 ° Return loss ≥ 50dB
Working distance 5mm -50mm Tensile strength ≥ 80N
Temperature range -40 ℃ to+85 ℃ Connector types FC/APC, SMA905, etc
Compact Design: Ideal for Space Constrained Scenarios

The fiber collimator adopts a tight fitting fiber package (outer diameter 0.9mm/2.0mm) integrated with a micro lens (diameter 1mm-2mm), reducing the volume by more than 50% compared to traditional structures. For example, in space limited applications such as drone obstacle avoidance systems and endoscopes, this design can be embedded with narrow optical path modules while maintaining anti vibration performance (mechanical stability up to 0.01mrad). Its compactness also simplifies the installation process, making it suitable for volume sensitive scenarios such as consumer electronics and portable medical devices.

Low loss characteristic: guarantee of signal transmission quality

By optimizing the coupling process between the lens and the fiber (such as aberration reduction design for non spherical lenses), the fiber collimator can achieve low insertion loss (≤ 0.3dB) and a transmittance of over 90%. For example, in long-distance transmission scenarios such as 5G base stations and data centers, this design can reduce optical signal attenuation and improve network throughput. Its high return loss (≥ 50dB) characteristic can also reduce reflected light interference, ensure signal integrity, and is suitable for high bandwidth, low latency optical communication networks.

Multi wavelength compatibility: a universal solution for fiber optic communication

The fiber collimator supports single-mode (1310nm/1550nm) and multi-mode (850nm/1300nm) wavelengths, and can be adapted to WDM wavelength division multiplexing systems through a wide passband AR film design (bandwidth covering the C-band). For example, in complex optical paths such as industrial automation and rail transit, this design can simultaneously process multiple signals to avoid wavelength cross interference. Its multi-core options (single fiber/dual fiber/quad fiber) further expand its application range, meeting diverse needs from home broadband to industrial grade networks.

1270nm 1310nm Fiber Collimator For Laser Systems 20mm 0

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