BFR Digital launched the VOTXD and VORXD models at IFSEC Johannesburg 2010. These models feature the transmission of 8 video channels and 2 bi-directional data channels over a single fibre. This range is available for both multimode and single mode fibre optic applications. All video channels are digitally encoded using 8-Bit A to D encoders but is not compressed; delivering 8 high resolution images in real-time.
Thursday, November 4, 2010
VOTXD and VORXD
BFR Digital launched the VOTXD and VORXD models at IFSEC Johannesburg 2010. These models feature the transmission of 8 video channels and 2 bi-directional data channels over a single fibre. This range is available for both multimode and single mode fibre optic applications. All video channels are digitally encoded using 8-Bit A to D encoders but is not compressed; delivering 8 high resolution images in real-time.
Saturday, July 3, 2010
Fibre PRO VQTXD and VQRXD

BFR Digital launched the VQTXD and VQRXD models earlier this year. These models feature the transmission of 4 video channels and 2 bi-directional data channels over a single fibre. This range is available for both multimode and single mode fibre optic applications. All video channels are digitally encoded using 8-Bit A to D encoders but is not compressed; delivering 4 high resolution images in real-time. The data and video is transmitted simultaneously on a single fibre with the use of WDM technology. The data channels are available in RS422/485 and RS232.
Tuesday, April 21, 2009
Laser Emitters
What I do want to talk about is safety precautions that need to be taken when working with fibre optic transmission equipment that use Laser Emitters. Both our Fibre Pro and DTX Series use laser emitters. These Lasers provide stimulated emission, i.e. they are on all the time.
The Fibre Pro and DTX Series products emit intense infrared light at 1310nm and 1550nm which is invisible to the human eye. This radiation can permanently damage the retina of the human eye. The diagram below shows the visible and invisible light spectrum.

All Fibre Pro and DTX Series products are packaged in antistatic bags that are sealed with a cautionary notice. Please read the notice before tearing the seal. The notice is there for your safety.
Please take the following precautions:
- Never look into the source or the fibre cable.
- Never power-up the source useless the fibre optic cable is connected to it.
- Always keep the protector cap on the source if no fibre optic cable is connected.
- Be cautious!!!
Fibre Pro

DTX Series
www.BFRDigital.co.za
Sunday, April 19, 2009
Calculating - Fibre Optic Power Budget
Let’s look at the following example:
1. Calculate the Cable Loss
Cable loss = Cable Distance x Cable Loss per km
Cable loss = 2km x -2.5dB/km
Cable loss = -5dB
2. Calculate the Connector Loss
Connector Loss = Connector Quantity x Connector Loss
Connector Loss = 2 x -0.5dB
Connector Loss = -1dB
3. Calculate the Splice Loss
Splice Loss = Splice Quantity x Loss per Splice
Splice Loss = 2 x -0.2dB
Splice Loss = -0.4dB
4. Calculate the Total Link Losses
Total Link Losses = Cable Loss + Connector Loss + Splice Loss
Total Link Losses = -5dB + -1dB + -0.4dB
Total Link Losses = -6.4dB
Transmitter Output Power (LVTXD-010-SMM Fibre Lite) = -14dBm (quoted by the manufacturer)
Receiver Sensitivity (LVRXD-010-SMM Fibre Lite) = -26dBm (quoted by the manufacturer)
Optical Power Budget = Output Power - Receiver Sensitivity
Optical Power Budget = -14dBm - (-26dBm)
Optical Power Budget = 12dB
Power Margin = Optical Power Budget – Total Link Losses
Power Margin = 12dB + (-6.4dB)
Power Margin = 5.6dB
www.BFRDigital.co.za