Shanghai Honghui Guanglian Communication Technology Co.,Ltd.
Email: liuy@chinahonghui.net TéLéGRAMME: 86--59515002
Maison > produits > Composants MT FA >
4 Channel Micro Connect Mt Fiber Connector Glass For High Speed Data Transmission
  • 4 Channel Micro Connect Mt Fiber Connector Glass For High Speed Data Transmission

4 Channel Micro Connect Mt Fiber Connector Glass For High Speed Data Transmission

Lieu d'origine Shanghai
Nom de marque Honghui
Certification ISO9001:2015
Numéro de modèle Connecteur de virole MT vers réseau de fibres
Document Customerized MT-FA Drawing.pdf
Détails du produit
Matériel:
Verre/Silicium
Canal:
4CH/8CH
L'IL:
≤0.5dB
Isolement:
≥30dB
Mettre en évidence: 

mt fiber connector glass

,

4 channel micro connect

,

glass micro connect

Conditions de paiement et d'expédition
Quantité de commande min
10
Prix
negotiated
Détails d'emballage
plastique
Délai de livraison
14 jours ouvrables
Conditions de paiement
T/T
Capacité d'approvisionnement
100K
Description du produit
Micro-Connect MT Ferrule for High-Speed Data Transmission
Fiber Array Microconnect Technology Supports High-Performance MT Connectivity

Fiber arrays utilize a V-groove structure to precisely arrange multiple optical fibers. Its core components, including a plug, slot, and fiber docking mechanism, ensure submicron alignment with the pinholes of the MT ferrule. This design enables parallel transmission of 12, 16, or 24 optical fibers within a single interface, significantly improving connection density and stability. Combined with high-precision polishing, this technology minimizes insertion loss to less than 0.3dB, providing reliable physical layer support for 400G optical modules.

Microconnect Application Scenarios for High-Bandwidth Networks

In AI data centers and 5G fronthaul networks, MT connectors utilize a multi-channel parallel transmission architecture to boost single-channel speeds to over 100G. Its rectangular ferrule structure accommodates 12-24 optical fibers, while an elastic sleeve maintains connection stability, meeting the low latency and high throughput requirements of 800G active cables. For example, fiber arrays utilizing Lambda Splitting technology can increase bandwidth efficiency by 50%, effectively optimizing data center interconnect performance.

Connectivity Solutions for Large-Scale Fiber Array Systems

For hyperscale data centers, MT connector micro-connection technology enables mass deployment through automated assembly processes. Pre-terminated MT patch cords replace traditional single-core cable bundles, increasing cabinet space utilization by over 80%. Zirconia ceramic ferrules, combined with a slotted sleeve clamping mechanism, ensure a mating and unmating lifespan exceeding 1,000 cycles, significantly reducing maintenance costs.

High-Precision, Low-Loss Micro-Connection Technology

Using an active alignment system to compensate for mechanical tolerances, the micro-connection of MT connectors to fiber arrays achieves a breakthrough insertion loss of less than 0.15dB. The 8° bevel polish (APC) design delivers return loss exceeding 60dB, while the three-dimensional position adjustment system controls fiber center offset to within 0.1μm. This technology is particularly suitable for long-distance transmission scenarios, significantly reducing the impact of signal reflections on transmission quality.

4 Channel Micro Connect Mt Fiber Connector Glass For High Speed Data Transmission 0

High-Efficiency Micro-Connection System Reduces Insertion Loss

The optimized micro-connection system utilizes a press-lock mechanism and keyed design to prevent mis-mating, maintaining a stable insertion and removal force below 4.9N. The integrated software package, compatible with the CMIS 5.2 specification, simplifies the development process for QSFP-DD and OSFP cable products. Working in tandem with wavelength division multiplexing and parallel transmission, the system supports 32 channels of simultaneous transmission, providing underlying support for AI computing networks.

CONTACT USA À TOUT MOMENT

+86-19821859215
Ajouter: n° 398 rue Fengdeng, district de Jiading, Shanghai 201822, Chine
Envoyez-votre enquête directement nous