2
HFBR-0507ETZ Series
125 MBd Data Link
Data link operating conditions and performance are speci ed for the HFBR-1527ETZ transmitter and HFBR-2526ETZ
receiver in the recommended applications circuits shown in Figure 1. This circuit has been optimized for 125 MBd
operation. For other data rate application, please refer to application notes: AN1121, AN1122 and AN1123.
Recommended Operating Conditions for the Circuits in Figures 1 and 2
Parameter Symbol Min. Max. Unit Reference
Ambient Temperature TA-40 85 °C
Supply Voltage VCC +4.75 +5.25 V
Data Input Voltage – Low VIL VCC -1.89 VCC -1.62 V
Data Input Voltage – High VIH VCC -1.06 VCC -0.70 V
Data Output Load RL45 55 Note 1
Signaling Rate fS1 125 MBd
Duty Cycle D.C. 40 60 % Note 2
Link Performance
1-125 MBd, BER ≤ 10-9, under recommended operating conditions with recommended transmit and receive application
circuits.
Parameter Symbol Min.[3] Typ.[4] Max. Unit Condition Reference
Optical Power Budget, 1 m POF OPBPOF 11 16 dB Note 5,6,7
Optical Power Margin, 20 m Standard POF OPMPOF,20 3 6 dB Note 5,6,7
Link Distance with Standard 1 mm POF l 20 27 m
Optical Power Margin, 25 m Low Loss POF OPMPOF,25 3 6 dB Note 5,6,7
Link Distance with Extra Low Loss 1 mm POF l 25 32 m
Optical Power Budget, 1 m HCS OPBHCS 7 12 dB Note 5,6,7
Optical Power Margin, 100 m HCS OPMHCS,100 3 6 dB Note 5,6,7
Link Distance with HCS Cable l 100 125 m
Notes:
1. If the output of U4C in Figure 1, page 4 is transmitted via coaxial cable, terminate with a 50 resistor to V
CC - 2 V.
2. Run length limited code with maximum run length of 10 s.
3. Minimum link performance is projected based on the worst case speci cations of the HFBR-1527ETZ transmitter, HFBR-2526ETZ receiver, and POF
cable, and the typical performance of other components (e.g. logic gates, transistors, resistors, capacitors, quantizer, HCS cable).
4. Typical performance is at 25° C, 125 MBd, and is measured with typical values of all circuit components.
5. Standard cable is HFBR-RXXYYYZ plastic optical ber, with a maximum attenuation of 0.24 dB/m at 650 nm and NA = 0.5.
Extra low loss cable is plastic optical ber, with a maximum attenuation of 0.19 dB/m at 650 nm and NA = 0.5.
HCS cable is glass optical ber, with a maximum attenuation of 10 dB/km at 650 nm and NA = 0.37.
6. Optical Power Budget is the di erence between the transmitter output power and the receiver sensitivity, measured after 1 m of ber. The minimum
OPB is based on the limits of optical component performance over temperature, process, and recommended power supply variation.
7. The Optical Power Margin is the available OPB after including the e ects of attenuation and modal dispersion for the minimum link distance:
OPM = OPB – (attenuation power loss + modal dispersion power penalty). The minimum OPM is the margin available for long term LED LOP
degradation and additional xed passive losses (such as in-line connectors) in addition to the minimum speci ed distance.