NOKIA FOUC 473842A.101 SFP+ 9.8G SR 300m 850nm compatible transceiver

Whether you need brand new or used products, we only purchase the highest quality and environmentally friendly green market equipment. All of these are offered to you at the best possible price.


  • Payment Terms:T/T, Western Union, MoneyGram
  • Place of Origin:China
  • warranty time:six months
  • Delivery Time:3-5 days
  • Price:Negotiable
  • Min.Order Quantity:1pc

NOKIA FOUC 473842A.101 SFP+ 9.8G SR 300m 850nm compatible transceiver 

Product Description

The NOKIA FOUC 473842A.101 SFP+ transceiver is a compatible module designed for use in Nokia networking equipment. It operates at a data rate of 9.8Gbps and supports short-range SR transmission up to 300 meters. The transceiver utilizes a wavelength of 850nm and is compliant with the SFP+ Small Form-factor Pluggable standard. NOKIA FOUC is commonly used for high-speed data communication in fiber optic networks, providing reliable and efficient connectivity within short distances.

Product Details

NOKIA FOUC

Our Advantages

We have NOKIA FOUC for sale, including used and brand new, with prices usually 90% lower than the original supplier's prices. We have set up warehouses in multiple cities in China and have a large inventory.


NOKIA FOUC,like all of our hardware, comes with a comprehensive warranty as the standard. Whether you need brand new or used products, we only purchase the highest quality and environmentally friendly green market equipment. All of these are offered to you at the best possible price.


Product Tags NOKIA FOUC          NOKIA 473842A.101          NOKIA FOUC 473842A.101          NOKIA FOUC 473842A.101 SFP+ 9.8G SR          NOKIA FOUC SFP+ 9.8G SR 300m 850nm          NOKIA FOUC SFP+ 9.8G SR 300m 850nm compatible transceiver         

INQUIRY

Contact us for all information about the product


click here to leave a message

leave a message
If you are interested in our products and want to know more details,please leave a message here,we will reply you as soon as we can.