84Mbps/1.25Gbps Bi-DiAsymmetry Transceiver Module
F-tone’sFTTR-BxxBE-20xx/FTTR-BxxEB-20xx series of transceiver modules are the perfect solution for High-speed communication networks.The transceiver modules may use different data rates (or data level)between transmitter and receiver, support data rates up to 1250 Mbps. These modules are fully compliant with the Multi-sourced 1x9 protocol.The FTTR-BxxBE-20xx/FTTR-BxxEB-20xxseries is high performance module forsingle fiber communications by using 1310nm/1550nm transmitterand 1550nm/1310nm receiver. The transmitter section uses a FP laser diode and is a class1 lasercompliant according to International Safety StandardIEC-825. The receiver section uses an integrated 1310nmdetector preamplifier (IDP) mounted in an optical headerand a limiting post-amplifier IC. A PECL logic interfacesimplifies interface to external circuitry.
Standard : 0 to +70°C
Industrial : -40 to +85°C
Operating of the transceiver beyond the Absolute Conditions Listed in Table 1 will degrade or damage the product. It’s not implied that the product would function above the recommended operating environment, it’s possible to reduce the reliability and lifetime of device if Recommended Operating Environment is exceeded (Refer to table 2)
Table 1-- Absolute Maximum Conditions
Parameter |
Symbol |
Min |
Max |
Units |
Storage Temperature |
TST |
-40 |
+85 |
℃ |
Operating Temperature |
TOP |
0 |
+70 |
℃ |
Supply Voltage |
VCC |
0 |
+6 |
V |
Output Current |
IO |
0 |
30 |
mA |
Relative Humidity |
RH |
5 |
95 |
% |
Input voltage |
VIN |
0 |
VCC |
V |
Lead Soldering Temperature & Time |
- |
- |
260/10 |
℃/S |
Table 2-- Recommended Operating Environment
Parameter |
Symbol |
Min |
Typ |
Max |
Units |
|
Supply Voltage |
5.5V power |
VCC |
4.75 |
5.0 |
5.25 |
V |
Ambient operating Temperature(CASE) |
TOP |
0 |
- |
+70 |
℃ |
|
Supply Current |
ITX+IRX |
- |
150 |
200 |
mA |
Table 3 FTTR-B13EB-20xx Asymmetry Transceiver Optical and Electrical Characteristics
(Ambient Operating Temperature Ta=0°C to +70°C, V CC = 4.75 to 5.25V)
Parameter |
Symbol |
Min |
Typ |
Max |
Units |
Transmitter |
|||||
Data rate |
B |
- |
1250 |
- |
Mb/s |
Output Center Wavelength |
λc |
1260 |
1310 |
1360 |
nm |
Output Spectral width (RMS) |
λ |
- |
- |
3.0 |
nm |
Average Optical Output Power |
Po |
-10 |
- |
-3 |
dBm |
Extinction Ratio |
EXT |
9 |
- |
- |
dB |
Optic Output Eye: Compliant withIEEE802.3z eye masks when filtered |
|||||
Receiver |
|||||
Data rate |
B |
- |
84 |
- |
Mb/s |
Receiver Sensitivity |
PMIN |
- |
- |
-35 |
dBm |
Maximum Input Power |
PMAX |
-3 |
- |
- |
dBm |
Signal Detect -- Asserted |
PA |
- |
- |
-35 |
dBm |
Signal Detect -- Deasserted |
PD |
-47 |
- |
- |
dBm |
Signal Detect - Hysteresis |
PHYS |
1.0 |
- |
4.0 |
dB |
Table 4 FTTR-B15BE-20xx Asymmetry Transceiver Optical and Electrical Characteristics
(Ambient Operating Temperature Ta=0°C to +70°C, V CC = 4.75 to 5.25V)
Parameter |
Symbol |
Min |
Typ |
Max |
Units |
Transmitter |
|||||
Data rate |
B |
- |
84 |
- |
Mb/s |
Output Center Wavelength |
λc |
1480 |
1550 |
1580 |
nm |
Output Spectral width (RMS) |
λ |
- |
- |
4.0 |
nm |
Average Optical Output Power |
Po |
-12 |
- |
-1 |
dBm |
Extinction Ratio |
EXT |
10 |
- |
- |
dB |
Optic Output Eye: Compliant with Bellcore TR-NWT-000253 and ITU recommendation G.957 |
|||||
Receiver |
|||||
Data rate |
B |
- |
1250 |
- |
Mb/s |
Receiver Sensitivity |
PMIN |
- |
- |
-23 |
dBm |
Maximum Input Power |
PMAX |
-3 |
- |
- |
dBm |
Signal Detect -- Asserted |
PA |
- |
- |
-23 |
dBm |
Signal Detect -- Deasserted |
PD |
-33 |
- |
- |
dBm |
Signal Detect - Hysteresis |
PHYS |
1.0 |
- |
4.0 |
dB |
Table 5 (Ambient Operating Temperature Ta=0°C to +70°C, VCC= 3.1 to 3.5V) PECL
Parameter |
Symbol |
Min |
Typ |
Max |
Units |
Transmitter |
|||||
Power Supply Current |
ICC |
- |
- |
100 |
mA |
Data Input Current - Low |
IIL |
-350 |
- |
- |
μA |
Data Input Current - High |
IIH |
- |
- |
350 |
μA |
Data Input Voltage - Low |
VIL |
VCC-1.810 |
- |
VCC-1.475 |
V |
Data Input Voltage - High |
VIH |
VCC-1.616 |
- |
VCC-0.880 |
V |
Receiver |
|||||
Power Supply Current |
ICC |
- |
- |
100 |
mA |
Data Output Voltage – Low |
VOL |
VCC-1.840 |
- |
VCC-1.620 |
V |
Data Output Voltage – High |
VOH |
VCC-1.045 |
- |
VCC-0.880 |
V |
Signal Detect Output Voltage-Low |
VOL |
VCC-1.840 |
- |
VCC-1.620 |
V |
Signal Detect Output Voltage-High |
VOH |
VCC-1.045 |
- |
VCC-0.880 |
V |
Table 6 (Ambient Operating Temperature Ta=0°C to +70°C, VCC = 4.75 to 5.25V) TTL
Parameter |
Symbol |
Min |
Typ |
Max |
Units |
Transmitter |
|||||
Power Supply Current |
ICC |
- |
- |
50 |
mA |
Data Input Current - Low |
IIL |
-350 |
- |
- |
μA |
Data Input Current - High |
IIL |
- |
- |
350 |
μA |
Data Input Voltage - Low |
VIL |
- |
0.7 |
V |
|
Data Input Voltage - High |
VIH |
2.0 |
- |
V |
|
Receiver |
|||||
Power Supply Current |
ICC |
- |
- |
100 |
mA |
Data Output Voltage – Low |
VOL |
- |
0.7 |
V |
|
Data Output Voltage – High |
VOH |
2.0 |
- |
V |
|
Signal Detect Output Voltage-Low |
VOL |
- |
0.7 |
V |
|
Signal Detect Output Voltage-High |
VOH |
2.0 |
- |
V |
Table 7—Connector pin assignment PECL/TTL
Pin # |
Pin Name |
Description |
1 |
Rx VEE |
Receiver Signal Ground |
2 |
RD+ |
Receiver Data Out |
3 |
NC |
NC |
4 |
SD |
Signal Detect |
5 |
Rx VCC |
Receiver Power Supply |
6 |
Tx VCC |
Transmitter Power Supply |
7 |
TD- |
Transmitter Data In Bar |
8 |
TD+ |
Transmitter Data In |
9 |
Tx VEE |
Transmitter Ground |
Table 8—Connector pin assignment TTL/PECL
Pin # |
Pin Name |
Description |
1 |
Rx VEE |
Receiver Signal Ground |
2 |
RD+ |
Receiver Data Out |
3 |
RD- |
Receiver Data Out Bar |
4 |
SD |
Signal Detect |
5 |
Rx VCC |
Receiver Power Supply |
6 |
Tx VCC |
Transmitter Power Supply |
7 |
NC |
NC |
8 |
TD+ |
Transmitter Data In |
9 |
Tx VEE |
Transmitter Ground |
F-tone NetworksOptical transceiver is designed to be Class I Laser safety compliant and is certified per the following standards:
Feature |
Agency |
Standard |
Laser Safety |
FDA |
CDRH 21 CFR 1040 annd Laser Notice No. 50 |
Product Safety |
BST |
EN 60825-1:2007 EN 60825-2:2004 EN 60950-1:2006 |
Environmental protection |
SGS |
RoHS Directive 2002/95/EC |
EMC |
WALTEK |
EN 55022:2006+A1:2007 EN 55024:1998+A1+A2:2003 - |
Ordering information
Part Number |
Product Description |
FTTR-B13EBH-20 |
1x9-BIDI-T1310/R1550-T1.25G/R84M-5V-PECL-SD:PECL-20KM-SC;0 to +70°C |
FTTR-B15BEH-20 |
1x9-BIDI-R1310/T1550-R1.25G/T84M-5V-PECL-SD:PECL-20KM-SC;0 to +70°C |
FTTR-B13EBH-20F |
1x9-BIDI-T1310/R1550-T1.25G/R84M-5V-PECL-SD:PECL-20KM-FC;0 to +70°C |
FTTR-B15BEH-20F |
1x9-BIDI-R1310/T1550-R1.25G/T84M-5V-PECL-SD:PECL-20KM-FC;0 to +70°C |
FTTR-B13EBH-20T |
1x9-BIDI-T1310/R1550-T1.25G/R84M-5V-PECL-SD:PECL-20KM-ST;0 to +70°C |
FTTR-B15BEH-20T |
1x9-BIDI-R1310/T1550-R1.25G/T84M-5V-PECL-SD:PECL-20KM-ST;0 to +70°C |
FTTR-B13EBH-20I |
1x9-BIDI-T1310/R1550-T1.25G/R84M-5V-PECL-SD:PECL-20KM-SC;-40 to +85°C |
FTTR-B15BEH-20I |
1x9-BIDI-R1310/T1550-R1.25G/T84M-5V-PECL-SD:PECL-20KM-SC;-40 to +85°C |
FTTR-B13EBH-20FI |
1x9-BIDI-T1310/R1550-T1.25G/R84M-5V-PECL-SD:PECL-20KM-FC;-40 to +85°C |
FTTR-B15BEH-20FI |
1x9-BIDI-R1310/T1550-R1.25G/T84M-5V-PECL-SD:PECL-20KM-FC;-40 to +85°C |
FTTR-B13EBH-20TI |
1x9-BIDI-T1310/R1550-T1.25G/R84M-5V-PECL-SD:PECL-20KM-ST;-40 to +85°C |
FTTR-B15BEH-20TI |
1x9-BIDI-R1310/T1550-R1.25G/T84M-5V-PECL-SD:PECL-20KM-ST;-40 to +85°C |
40KM/80KM/120KM Customized Transceivers,Please contact our sales |
|
SD:TTL Customized Transceivers,Please contact our sales |
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3.3V Customized Transceivers,Please contact our sales |
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AsymmetryRate Note:
A:DC0~2M
B:2~84M
C:155M
D:622M
E:1.25G
F:2.5G
G:3G
Important Notice
Performance figures, data and any illustrative material provided in this data sheet are typical and must bespecifically confirmed in writing by F-TONE NETWORKS before they become applicable to any particular order orcontract. In accordance with the F-TONE NETWORKS policy of continuous improvement specifications may changewithout notice. The publication of information in this data sheet does not imply freedom from patent or other protective rights of F-TONE NETWORKS or others. Further details are available from any F-TONE NETWORKS sales representative.