Features of the Trainer
Built in Regulated Power Supply
DC +5V,-5V/500 mA.
Power supply
Voltage range : AC 100V – 230 V
Frequency range : 50 – 60Hz
Electrical: Modulation Scheme
Direct Intensity
Modulation Bandwidthtr
8 MHz
Input /Output Impedance
50 or 75 ohms
Vin / Vout Levels
1 Vp-p
Optical:Wavelength
850 nm.
Micron PMMA Fiber
-15 dBm (min)
Cable Length
2 meters
Connector Type
SMA (Sub Miniature Assembly) Power Coupled into 960/1000
Fiber Optics Video Transmitter
The fiber optics video transmitter employs the direct intensity modulation method. The LED optical output is fairly linear over a region of the LED forward current. By employing a current feedback operational amplifier, a large bandwidth linear current driver for the LED is realized, covering the full range of the video signal.
Fiber Optics Video Receiver
The optical demodulator comprises a low-noise trans-impedance amplifier followed by a Wide band RF amplifier
Housing
It is mounted in an elegant ABS Plastic cabinet for better viewing and portability
Dimension
29cm x 20cm x 11cm (each)
Weight
1.5kgs (each)
This trainer is a glass-epoxy printed circuit board and all the symbols screen-printed on the front panel so that it enables the student to conduct the experiments easily
Accessories:
• 2mm multi coloured moulded patch cords with daisying facility.
• Step-By-Step detailed instructions are provided with the instruction manual.
• Fiber optic cable terminated with SMA connectors – 2 meter.
FO-6 FO VIDEO TRANSCEIVER TRAINER
DESCRIPTION
• This trainer comes with three components, namely, an SMA connectorised 850nm FO LED, a matching PIN photodiode and an SMA-connectorised two-meter optical fiber GI/multimode fiber patchcord, is well described in the instruction manual.
• Instruction manual describes the use of FO cable and the Video Transceiver Module (VTM) (supplied as an optional necessary to Kit) to transmit and receive video signals via the optical fiber medium.
• This trainer is supplied as a fully assembled and tested, single-sided glass epoxy printed circuit board.
• To make the system operational, an internal regulated dual power supply +5 Vdc to -5 Vdc is provided.
• VCR and an oscilloscope will be required to study the signals.
• Some components have been mounted to facilitate easy change, by the user, to achieve desired performances.
• A bandwidth of 8 MHz is provided.
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