Fibre Optic Transceivers

Fibre optic transceivers are devices that uses fibre optic technology to receive and send data. Unlike fibre optic receivers or fibre optic transmitters, fibre optic transceivers include both transmission and receiver in the same component. However, both the transmitter and receiver have their own circuitry so they can handle transmissions in both directions.

How do fibre optic transceivers work?

Fibre optic transceivers work by facilitating photoelectric conversion. The transmitter end takes in and converts electrical signals into optical signals before passing them on through the module channel into the receiver end. The receiver then converts optical signals back into electrical signals for the computer to understand.

Types and uses of fibre optic transceivers

Fibre optic transceivers are critical building blocks in a fibre optic network, which conveys information across communication channels for optical systems. There are many kinds of models of transceivers available, which range in performance, size and price. Common features for transceivers include clock recovery, stand alone, pigtail, and input and output choices. 

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Description Price Maximum Data Rate Connector Shape Transmitter Typical Rise Time Transmitter Typical Fall Time Receiver Jitter at Maximum Data Rate Transmitter Jitter at Maximum Data Rate Number of Pins Mounting Type Dimensions Connector Type Peak Transmitter Wavelength Wavelength of Peak Sensitivity Height Length
RS Stock No. 896-2603
Mfr. Part No.TOTX1960(F)
10Mbit/s Rectangular - - - - 6 Through Hole 13 x 15.5 x 8.5mm F05 770nm - 8.5mm 13mm