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FR20DxIR
RedLink® Fiber Optic Receiver
for Direct High Voltage Switching
Datasheet
FR20DxIR Revision B
1
DESCRIPTION
This Firecomms RedLink® receiver is based on a fully
integrated photodiode with TIA, limiting amplifier
and a MOSFET open drain output to handle
switching of voltages in the range from 3 to 20 V
(e.g. 3.3, 5, 12, 15 V). The part also includes an
optional 1 kΩ Pull-Up resistor R
L
.
Housed in non-conducting plastic the RedLink®
receiver connector is blue. The housings are
compatible with the Versatile Link style of fibre plug
and are optimized for use with Plastic Optic Fibre
(POF).
The receiver operates over the industrial
temperature range of -40 ⁰C to +85 ⁰C supporting
many industrial applications where reliable
command and control response is required in
electrically harsh environments.
The receiver is typically used at low switching
speeds where 12 V and 15 V power electronic
devices are being switched at kHz speeds but can
operate up to 5 MBd if required.
AVAILABLE OPTIONS
Table 1
ORDERING INFORMATION / PART NUMBERS
5 MBd Horizontal Package
Inverting, TTL
FR20DHIR
5 MBd Vertical Package
Inverting, TTL
FR20DVIR
5 MBd Tilted Package
Inverting, TTL
FR20DWIR
FEATURES
• MOSFET output stage typically used to directly
switch 12 V and 15 V thyristor gate devices.
• Optimized for data transmission from
DC to 5 MBd
• Industrial temperature range -40 ⁰C to 85 ⁰C
• Flame retardant (UL 94 V-0) connector
housings
• Fully integrated photodiode, TIA and limiting
amplifier in a single IC
• 5 V TTL/CMOS compatible I/O for ease of
design
• Integrated 1 kΩ Pull-Up resistor to Vcc (R
L
)
• Low pulse width distortion
• Horizontal, Vertical and 30⁰ Tilted options
available
• Compatible with Versatile Link cables and
connectors
APPLICATIONS
Table 2
APPLICATIONS
Application
Switching of 20 V, 18 V, 15 V and 12 V
thyristor gate drivers. Direct switching of
SCR’s and IGBT’s
Distance
50 meters Step Index (SI) POF in typical
operating conditions
30 meters in worst case conditions
Speed
DC to 5 MBd (depending on series
resistance and load capacitance)