Fibre Channel کا جائزہ
ہماری ٹیم ترجمے پر کام کر رہی ہے۔ یہ مضمون عارضی طور پر اردو میں دستیاب نہیں ہے، اس لیے اسے انگریزی میں دکھایا جا رہا ہے۔
Fibre Channel (FC) is the high-reliability transport built for storage area networks (SANs) — connecting servers to storage arrays with low latency and lossless delivery.
Why it is different from Ethernet
- Lossless by design — a buffer-credit flow-control scheme means frames are not dropped under congestion, which storage traffic depends on.
- Purpose-built fabric — hosts use HBAs (Host Bus Adapters) and connect through FC switches into a switched fabric.
Topologies
- Point-to-point — two devices directly.
- Switched fabric — the usual case: many hosts and storage ports through FC switches.
Transceivers
FC links use the same optical module families as Ethernet — SFP+ for up to 16GFC, SFP28 for 32GFC, and QSFP for the multi-lane 128GFC — but with FC-specific optics designated SW (short wave, 850 nm MMF) or LW (long wave, 1310 nm SMF). Rates are covered in Fibre Channel speeds.
A module built for Fibre Channel reports FC rates in its memory; CodingBox decodes those capability fields like any other.
Further reading
- FC protocol basics — FC-0 to FC-4, port types, WWN/FCID, FLOGI/PLOGI/PRLI, classes of service, zoning.
- FC port diagnostics — porterrshow and MDS counters mapped to causes, slow drain, sfpshow, D_Port.