FTCS-1324-10DIWN 2.5Gbps SFP光收发器 1310nm DFB 10km SMF Duplex LC DDM SFF-8472 工业级

2.5Gbps SFP Transceiver, Single Mode, 10km Reach — FTCS-1324-10DIWN

The FTCS-1324-10DIWN is a high-performance, cost-effective SFP transceiver module supporting data rate of 2.5Gbps and 10km transmission distance over single-mode fiber (SMF). It features a 1310nm DFB laser transmitter and PIN photodiode integrated with a trans-impedance preamplifier (TIA) and MCU control unit, compliant with SFP MSA and SFF-8472 digital diagnostics with duplex LC receptacle.

Product Features

  • Supports up to 2.5Gbps bit rates
  • Hot-pluggable SFP footprint
  • 1310nm DFB laser and PIN photo detector, up to 10km for SMF transmission
  • Compliant with SFP MSA and SFF-8472 with duplex LC receptacle
  • Compatible with RoHS
  • Single +3.3V power supply
  • Real Time Digital Diagnostic Monitoring (DDM)
  • Operating case temperature: Standard 0~+70°C / Industrial -40~+85°C

Applications

  • 2.5Gbps Optical systems
  • Fiber Channel
  • Other Optical links

Product Description

The SFP transceivers are high performance, cost effective modules supporting data rate of 2.5Gbps and 10km transmission distance with SMF. The transceiver consists of three sections: a DFB laser transmitter, a PIN photodiode integrated with a trans-impedance preamplifier (TIA) and MCU control unit. All modules satisfy class I laser safety requirements. The transceivers are compatible with SFP Multi-Source Agreement and SFF-8472 digital diagnostics functions.

Transceiver Functional Diagram

FTCS-1324-10DIWN Functional Block Diagram

Absolute Maximum Ratings

Parameter Symbol Min Max Unit
Supply Voltage Vcc -0.5 4.5 V
Storage Temperature Ts -40 +85 °C
Operating Humidity 5 85 %

Recommended Operating Conditions

Parameter Symbol Min Typical Max Unit
Operating Case Temperature (Standard) Tc 0 +70 °C
Operating Case Temperature (Extended) Tc -20 +80 °C
Operating Case Temperature (Industrial) Tc -40 +85 °C
Power Supply Voltage Vcc 3.135 3.30 3.465 V
Power Supply Current Icc 300 mA
Data Rate 2.5 Gbps

Optical and Electrical Characteristics

Transmitter Characteristics (TA = Tcase operating)

Parameter Symbol Min Typ Max Unit Notes
Centre Wavelength λc 1260 1310 1360 nm
Spectral Width (-20dB) Δλ 1 nm
Side-Mode Suppression Ratio SMSR 30 dB
Average Output Power Pout -9 -3 dBm 1
Extinction Ratio ER 8.2 dB
Data Input Swing Differential VIN 180 1200 mV 2
Input Differential Impedance ZIN 90 100 110 Ω
TX Disable 2.0 Vcc V
TX Enable 0 0.8 V
TX Fault 2.0 Vcc V
TX Normal 0 0.8 V

Receiver Characteristics (TA = Tcase operating)

Parameter Symbol Min Typ Max Unit Notes
Centre Wavelength λc 1260 1610 nm
Receiver Sensitivity -18 dBm 3
Receiver Overload -1 dBm 3
LOS De-Assert LOSD -19 dBm
LOS Assert LOSA -35 dBm
LOS Hysteresis 0.5 4 dB
Data Output Swing Differential Vout 600 800 1000 mV 4
LOS High 2.0 Vcc V
LOS Low 0.8 V

Notes:
1. The optical power is launched into SMF.
2. PECL input, internally AC-coupled and terminated.
3. Measured with a PRBS 223-1 test pattern @2500Mbps, BER ≤1×10-12.
4. Internally AC-coupled.

Timing Parameters

Parameter Symbol Min Typ Max Unit
Tx Disable Negate Time t_on 1 ms
Tx Disable Assert Time t_off 10 µs
Time To Initialize (incl. Reset of Tx Fault) t_init 300 ms
Tx Fault Assert Time t_fault 100 µs
Tx Disable To Reset t_reset 10 µs
LOS Assert Time t_loss_on 100 µs
LOS De-assert Time t_loss_off 100 µs
Serial ID Clock Rate f_serial_clock 100 400 KHz
MOD_DEF (0:2)-High VH 2 Vcc V
MOD_DEF (0:2)-Low VL 0.8 V

Digital Diagnostic

The transceivers provide serial ID memory contents and diagnostic information about the present operating conditions by the 2-wire serial interface (SCL, SDA). The diagnostic information with internal calibration or external calibration all are implemented, including received power monitoring, transmitted power monitoring, bias current monitoring, supply voltage monitoring and temperature monitoring.

Parameter Range Unit Accuracy Calibration
Temperature (Standard) 0 to +70 °C ±3°C Internal
Temperature (Extended) -20 to +80 °C ±3°C Internal
Temperature (Industrial) -40 to +85 °C ±3°C Internal
Voltage 3.0 to 3.6 V ±3% Internal
Bias Current 0 to 100 mA ±10% Internal
TX Power -9 to -3 dBm ±3dB Internal
RX Power -20 to -1 dBm ±3dB Internal

Digital Diagnostic Memory Map

FTCS-1324-10DIWN Digital Diagnostic Memory Map

Pin Descriptions (20-Pin SFP)

Pin Signal Name Description Plug Seq. Notes
1 VEET Transmitter Ground 1
2 TX FAULT Transmitter Fault Indication 3 1
3 TX DISABLE Transmitter Disable 3 2
4 SDA SDA Serial Data Signal 3
5 SCL SCL Serial Clock Signal 3
6 MOD_ABS Module Absent 3
7 RS0 Not Connected 3
8 LOS Loss of Signal 3 3
9 VEER Receiver Ground 1
10 VEER Receiver Ground 1
11 VEER Receiver Ground 1
12 RD- Inv. Received Data Out 3 4
13 RD+ Received Data Out 3 4
14 VEER Receiver Ground 1
15 VCCR Receiver Power Supply 2
16 VCCT Transmitter Power Supply 2
17 VEET Transmitter Ground 1
18 TD+ Transmit Data In 3 5
19 TD- Inv. Transmit Data In 3 5
20 VEET Transmitter Ground 1

Pin Notes:
1) TX Fault is an open collector output, pulled up with 4.7k~10kΩ on host board to 2.0V~Vcc+0.3V. Logic 0=normal; Logic 1=laser fault.
2) Laser output disabled on TDIS >2.0V or open; enabled on TDIS <0.8V.
3) LOS is open collector output, pulled up with 4.7k~10kΩ to 2.0V~3.6V.
4) RD-/+: Internally AC-coupled 100Ω differential receiver outputs.
5) TD-/+: Internally AC-coupled differential transmitter inputs with 100Ω termination.

Recommended Interface Circuit

FTCS-1324-10DIWN Recommended Interface Circuit

Mechanical Dimensions

FTCS-1324-10DIWN Mechanical Dimensions

Ordering Information

Part Number Product Description
FTCS-1324-10DIWN SFP Transceiver, 1310nm, 2.5Gbps, LC, 10km, -40°C~+85°C, with DDM

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Important Notice
Performance figures, data and any illustrative material provided in this data sheet are typical and must be specifically confirmed in writing by F-tone Networks before they become applicable to any particular order or contract. In accordance with the F-tone Networks policy of continuous improvement specifications may change without 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.