Lantech 10GBase Small Form Factor Pluggable SFP+ transceivers are compliant with the current SFP+ Multi-Source Agreement (MSA) Specification. The high performance 1270nm/1330nm DFB transmitter and high sensitive PIN receiver provide superior performance for 10GBase Ethernet applications up to 40km optical links.
Parameter |
Symbol |
Min. |
Max. |
Unit |
Note |
Storage Temperature |
TST |
-40 |
+85 |
°C |
|
Supply Voltage |
Vcc |
-0.5 |
+4.0 |
V |
|
Storage Relative Humidity |
RH |
5 |
95 |
% |
|
Parameter |
Symbol |
Min. |
Typ. |
Max. |
Unit |
Note |
Case Operating Temperature |
TOP |
0 |
|
+70 |
°C |
Standard model |
Case Operating Temperature |
TOP |
-40 |
|
+85 |
°C |
-E model |
Supply Voltage |
Vcc |
+3.1 |
+3.3 |
+3.5 |
V |
|
Supply Current |
ICC |
|
|
300 |
mA |
10KM, 20KM |
Supply Current |
ICC |
|
|
320 |
mA |
40KM |
VCC=3.1V to 3.5V, TOP= 0°C to 70°C (Standard model); TOP= -40°C to 85°C (-E model)
Parameter |
Symbol |
Min. |
Typ. |
Max. |
Unit |
Note |
||
Operating Data Rate |
DR |
9.953 |
10.3125 |
11.3 |
Gb/s |
|
||
Bit Error Rate |
BER |
|
|
10-12 |
|
|
||
Optical Launch Power |
1270nm |
10km |
PO |
-6 |
|
+1 |
dBm |
1 |
1330nm |
10km |
-6 |
|
+1 |
||||
1270nm |
20km |
-2 |
|
+3 |
||||
1330nm |
20km |
-2 |
|
+3 |
||||
1270nm |
40km |
+0.5 |
|
+5 |
||||
1330nm |
40km |
+0.5 |
|
+5 |
||||
Center Wavelength |
1270nm |
10km |
|
1260 |
1270 |
1280 |
nm |
|
1330nm |
10km |
1320 |
1330 |
1340 |
||||
1270nm |
20km |
1260 |
1270 |
1280 |
||||
1330nm |
20km |
1320 |
1330 |
1340 |
||||
1270nm |
40km |
1260 |
1270 |
1280 |
||||
1330nm |
40km |
1320 |
1330 |
1340 |
||||
Spectral Width (-20dB) |
Δλ |
|
|
1 |
nm |
|
||
Side Mode Suppression Ratio |
SMSR |
30 |
|
|
dB |
|
||
Optical Extinction Ratio |
ER |
3.5 |
|
|
dB |
|
||
Dispersion Penalty |
DP |
|
|
3.2 |
dB |
|
||
Average Launch Power of OFF Transmitter |
POFF |
|
|
-30 |
dBm |
|
||
Optical Eye Mask |
|
IEEE802.3ae |
|
|||||
Relative Intensity Noise |
RIN |
|
|
-128 |
dB/Hz |
|
||
Differential Data Input Swing |
VIN |
180 |
|
850 |
mV |
|
||
Transmit Disable Input Voltage-Low (TX ON) |
TDISVL |
GND |
|
0.8 |
V |
|
||
Transmit Disable Input Voltage-Low (TX OFF) |
TDISVH |
2.0 |
|
Vcc |
V |
|
||
Transmit Fault Output Voltage-Low (TX Normal) |
TFLTVL |
GND |
|
0.8 |
V |
|
||
Transmit Fault Output Voltage-Low (TX Fault) |
TFLTVH |
2.0 |
|
Vcc |
V |
|
||
Notes: 1. The optical power is launched into a 9/125μm single-mode fiber. |
VCC=3.15V to 3.46V, TOP= 0°C to 70°C (Standard model); TOP= -40°C to 85°C (-E model)
Parameter |
Symbol |
Min. |
Typ. |
Max. |
Unit |
Note |
||
Operating Date Rate |
DR |
9.953 |
10.3125 |
11.3 |
Gb/s |
|
||
Receiver Sensitivity |
1270nm |
10km |
PIN_min |
|
|
-14.4 |
dBm |
1 |
1330nm |
10km |
|
|
-14.4 |
||||
1270nm |
20km |
|
|
-14.5 |
||||
1330nm |
20km |
|
|
-14.5 |
||||
1270nm |
40km |
|
|
-15.5 |
||||
1330nm |
40km |
|
|
-15.5 |
||||
Maximum Input Power |
PIN_max |
|
|
+0.5 |
dBm |
1 |
||
Operating Center Wavelength |
1270nm |
10km |
λC |
1320 |
1330 |
1340 |
nm |
|
1330nm |
10km |
1260 |
1270 |
1280 |
||||
1270nm |
20km |
1320 |
1330 |
1340 |
||||
1330nm |
20km |
1260 |
1270 |
1280 |
||||
1270nm |
40km |
1320 |
1330 |
1340 |
||||
1330nm |
40km |
1260 |
1270 |
1280 |
||||
Receiver Reflectance |
RR |
|
|
-14 |
dB |
|
||
LOS De-Assert |
1270nm |
10km |
LOSD |
|
|
-15.5 |
dBm |
|
1330nm |
10km |
|
|
-15.5 |
||||
1270nm |
20km |
|
|
-15.5 |
||||
1330nm |
20km |
|
|
-15.5 |
||||
1270nm |
40km |
|
|
-16.5 |
||||
1330nm |
40km |
|
|
-16.5 |
||||
LOS Assert |
LOSA |
-30 |
|
|
dBm |
|
||
LOS Hysteresis |
LOSVHY |
0.5 |
|
|
dB |
|
||
Differential Data Output Swing |
VOUT |
300 |
|
900 |
mV |
|
||
Receiver LOS Signal Output Voltage-Low |
LOSVL |
Vee |
|
0.5 |
V |
|
||
Receiver LOS Signal Output Voltage-High |
LOSVH |
2.4 |
|
Vcc |
V |
|
||
Notes: 1. Measured with a PRBS 231-1 test pattern @ 10.3125Gbps BER <10-12 |
Pin |
Name |
Function / Description |
1 |
VeeT |
Transmitter Ground |
2 |
TX_Fault |
Transmitter Fault Indication (1) |
3 |
TX_Disable |
Transmission Disable – Module disables on high or open (2) |
4 |
SDA |
2-wire Serial Interface Data Line (SDA: Serial Data Signal) (3) |
5 |
SCL |
2-wire Serial Interface Clock (SCL: Serial Clock Signal) (3) |
6 |
Mod_ABS |
Module Absent, connected to VeeT or VeeR in the module (3) |
7 |
RS0 |
Rate Select 0, optionally controls SFP+ module receiver (5) |
8 |
Rx_LOS |
Receiver Loss of Signal Indication (4) |
9 |
RS1 |
Rate Select 1, optionally controls SFP+ module transmitter (5) |
10 |
VeeR |
Receiver Ground |
11 |
VeeR |
Receiver Ground |
12 |
RD- |
Inverse Received Data output, Differential LVPECL, AC coupled |
13 |
RD+ |
Receiver Non-Inverted Data output, Differential LVPECL, AC coupled |
14 |
VeeR |
Receiver Ground |
15 |
VccR |
Receiver 3.3V Power Supply |
16 |
VccT |
Transmitter 3.3V Power Supply |
17 |
VeeT |
Transmitter Ground |
18 |
TD+ |
Transmitter Non-Inverted Data Input, Differential LVPECL, AC coupled |
19 |
TD- |
Transmitter Inverted Data Input, Differential LVPECL, AC coupled |
20 |
Veet |
Transmitter Ground |
Note1: TX Fault is open collector/drain output which should be pulled up externally with a 4.7K~ 10KΩ resistor on the host board to supply <VccT+0.3V or VccR+0.3V. When high, this output indicates a laser fault of some kind. Low indicates normal operation. In the low state, the output will be pulled to <0.8V. |
As defined by the SFP MSA (SFF-8472) Lantech’s SFP transceivers provide digital diagnostic functions via a 2-wire serial interface, which allows real-time access to the following operating parameters:
It also provides a sophisticated system of alarm and warning flags, which may be used to alert end-users when particular operating parameters are outside of a factory-set normal range.
The operating and diagnostics information is monitored and reported by a Digital Diagnostics Controller (DDC) inside the transceiver, which is accessed through the 2-wire serial interface. When the serial protocol is activated, the serial clock signal (SCL pin) is generated by the host. The positive edge clocks data into the SFP transceiver into those segments of its memory map that are not write-protected. The negative edge clocks data from the SFP transceiver. The serial data signal (SDA pin) is bi-directional for serial data transfer. The host uses SDA in conjunction with SCL to mark the start and end of serial protocol activation. The memories are organized as a series of 8-bit data words that can be addressed individually or sequentially.
Parameter |
Accuracy |
Unit |
Note |
Temperature |
±3 |
℃ |
|
Supply Voltage |
±0.1 |
V |
|
TX Bias Current |
±5 |
mA |
|
TX Output Power |
±3 |
dB |
|
RX Received Optical Power |
±3 |
dB |
|
*All dimensions are ±0.2mm unless otherwise specified
Part Number |
TX |
RX |
Link |
DDM |
Mode |
Temp. |
8330-209D-V1 |
1270nm |
1330nm |
10km |
Yes |
Single-mode |
0~70°C |
8330-209DE-V1 |
1270nm |
1330nm |
10km |
Yes |
Single-mode |
-40~85°C |
8330-210D-V1 |
1330nm |
1270nm |
10km |
Yes |
Single-mode |
0~70°C |
8330-210DE-V1 |
1330nm |
1270nm |
10km |
Yes |
Single-mode |
-40~85°C |
8330-200D-V1 |
1270nm |
1330nm |
20km |
Yes |
Single-mode |
0~70°C |
8330-200DE-V1 |
1270nm |
1330nm |
20km |
Yes |
Single-mode |
-40~85°C |
8330-201D-V1 |
1330nm |
1270nm |
20km |
Yes |
Single-mode |
0~70°C |
8330-201DE-V1 |
1330nm |
1270nm |
20km |
Yes |
Single-mode |
-40~85°C |
8330-202D-V1 |
1270nm |
1330nm |
40km |
Yes |
Single-mode |
0~70°C |
8330-202DE-V1 |
1270nm |
1330nm |
40km |
Yes |
Single-mode |
-40~85°C |
8330-203D-V1 |
1330nm |
1270nm |
40km |
Yes |
Single-mode |
0~70°C |
8330-203DE-V1 |
1330nm |
1270nm |
40km |
Yes |
Single-mode |
-40~85°C |
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