




1.25G SFP PX20+++ EPON OLT Transceiver for 20km SMF Links, 1490/1310nm Simplex SC
SFP-EPON-PX20+++8dBm-1.25-1413-20-SCS
- Broad Multi-Brand Compatibility
- Flexible Customization Support
- Tested for Reliable Performance
- Fast Response & Delivery
- Professional Technical Support
The FC-LINK EPON OLT PX20+++ 8dBm Transceiver is a premium-grade 1.25G SFP module engineered for Optical Line Terminal (OLT) deployments, delivering 1490nm downstream transmission and 1310nm upstream reception over single-mode fiber (SMF) with a 20km reach. Featuring an SC connector interface and compliant with the highest-performance PX20+++ class offering an 8dBm optical budget, it incorporates 100 Ohm differential impedance for both transmitter inputs and receiver outputs. The module utilizes internal AC coupling on data lines, provides optimized differential termination, and significantly reduces differential-to-common mode conversion to ensure exceptional signal integrity, reliable termination quality, and minimized electromagnetic interference (EMI).
| SPECIFICATIONS | |||
|---|---|---|---|
| Product Model | SFP-EPON-PX20+++8dBm-1.25-1413-20-SCS | Manufacturer brand | FC-LINK |
| Package Type | SFP | Optical connector | SC |
| Max Data Rate | 1.25Gbps | Class | PX20+++ |
| Effective transmission distance | 20KM | ||
| Wavelength | 1310nm/1490nm 1490nm/1310nm | Operating voltage | 3.3V |
| Fiber Type | SMF | Core Size | 9/125µm |
| Transmitter Type | DFB | Receiver Type | APD |
| TX Power | 7~11dBm | Receiver Sensitivity | -32dBm |
| Digital Diagnostic Monitoring(DDM) | YES | Receiver Overload | -8dBm |
| Power Consumption | <1W | Protocols | SFP MSA SFF-8472 |
| Operating temperature(Commercial) | 0℃~+70℃ | Storage Temperature(Commercial) | -40℃~+85℃ |
| Operating temperature(Industrial) | -40℃~+85℃ | Storage Temperature(Industrial) | -40℃~+85℃ |

Server-to-Switch Data Center Links
Used for 10G/25G/100G optical uplinks between servers and top-of-rack switches in high-density data center deployments.

Building-to-Building Campus Backbone
Suitable for 1G/10G fiber links between office buildings, campus distribution rooms, and backbone aggregation points.

Access-to-Core Enterprise Uplinks
Designed for switch uplinks from access to aggregation or core layers in enterprise and campus network architectures.

Industrial Switching in Harsh Environments
Applied in industrial Ethernet, automation systems, and outdoor cabinets where wider temperature tolerance and stable fiber communication are required.
| Absolute Maximum Ratings | |||||||||
| Parameter | Symbol | Min. | Max. | Unit | |||||
| Power Supply Voltage | VCC | 0 | 3.6 | V | |||||
| Storage Temperature | Tc | -40 | 85 | ℃ | |||||
| Operating Case Temperature | Tc | 0 | 70 | ℃ | |||||
| TI | -40 | 85 | |||||||
| Relative Humidity | RH | 5 | 95 | % | |||||
| RX Input Average Power | Pmax | - | -7 | dBm | |||||
| These values represent the damage threshold of the module. Stress in excess of any of the individual Absolute maximum ratings can cause immediate catastrophic damage to the module even if all other parameters are within recommended operating conditions. | |||||||||
| Recommended Operating Environment | |||||||||
| Parameter | Symbol | Min. | Typical | Max. | Unit | ||||
| Power Supply Voltage | VCC | 3.135 | 3.3 | 3.465 | V | ||||
| Power Supply Current | Icc | - | - | 350 | mA | ||||
| Operating Case Temperature | TC | 0 | 25 | 70 | ℃ | ||||
| TI | -40 | 25 | 85 | ||||||
| Recommended operating environment specifies parameters for which the electrical and optical characteristics hold unless otherwise noted. | |||||||||
| Optical Characteristics | |||||||||
| Parameters | Unit | Values | |||||||
| Operating Reach | m | 2 - 20K | |||||||
| Transmitter | |||||||||
| Center Wavelength | nm | 1490 | |||||||
| Side Mode Suppression Ratio (min) | dB | 30 | |||||||
| Launched power | |||||||||
| – maximum (Average) | dBm | 11 | |||||||
| – typical (Average) | dBm | 8 | |||||||
| – minimum (Average) | dBm | 7 | |||||||
| Average Launch Power of OFF Transmitter (max) | dBm | -30 | |||||||
| Extinction Ratio (min) | dB | 9 | |||||||
| Optical Return Loss Tolerance (min) | dB | 12 | |||||||
| Receiver | |||||||||
| Center Wavelength (range) | nm | 1310 | |||||||
| Receive Overload (max) in Average Power(note 1) | dBm | -8 | |||||||
| Receive Sensitivity (min) in A Power(note 1) | dBm | -32 | |||||||
| Receiver Reflectance (max) | dB | -12 | |||||||
| Los Assert(min) | dBm | -33 | |||||||
| Los Dessert(max) | dBm | -30 | |||||||
| Los Hysteresis(min) | dB | 0.5 | |||||||
| Receiver power (damage, Max) | dBm | -7 | |||||||
| Notes: 1. Average optical power shall be measured using the methods specified in TIA/EIA-455-95. 2. Power budget is defined as the different between the Rx sensitivity andthe Tx output power of the interface. | |||||||||
| Electrical Characteristics | |||||||||
| Parameter | Symbol | Min. | Typical | Max | Unit | Notes | |||
| Data Rate | - | - | 1.25 | - | Gbps | - | |||
| Power Consumption | - | - | 800 | 1000 | mW | - | |||
| Transmitter | |||||||||
| Single Ended Output Voltage Tolerance | - | -0.3 | - | 4 | V | - | |||
| Common Mode Voltage Tolerance | - | 15 | - | - | mV | - | |||
| Tx Input Diff Voltage | VI | 180 | - | 1200 | mV | - | |||
| Tx Fault | VoL | -0.3 | - | 0.4 | V | At 0.7mA | |||
| Data Dependent Input Jitter | DDJ | - | - | 0.1 | UI | - | |||
| Data Input Total Jitter | TJ | - | - | 0.28 | UI | - | |||
| Receiver | |||||||||
| Single Ended Output Voltage Tolerance | - | -0.3 | - | 4 | V | - | |||
| Rx Output Diff Voltage | Vo | 400 | ‐ | 2400 | mV | LOS Assert Time LOS De‐assert Time | |||
| LOS Assert Time | TAssert | ‐ | ‐ | 500 | ns | ||||
| LOS De‐assert Time | TDeassert | ‐ | ‐ | 500 | ns | ||||
| Receiver Threshold Settling Time | TSETTLING | ‐ | ‐ | 250 | ns | ||||
| Ditital Diagnostic Functions | |||||||||
| Parameter | Symbol | Min. | Max | Unit | Notes | ||||
| Temperature Monitor Absolute Error | DMI_Temp | -3 | 3 | degC | Over Operating Temp | ||||
| Laser Power Monitor Absolute Error | DMI_TX | -3 | 3 | dB | - | ||||
| Supply Voltage Monitor Absolute Error | DMI_VCC | -0.08 | 0.08 | V | Full Operating Range | ||||
| Bias Current Monitor | DMI_Ibias | -0.1 | 0.1 | mA | - | ||||
| OLT SFP Module Pin Definition |
| OLT SFP Module Pin Definition | |||||||||
| PIN | Logic | Symbol | Name / Description | Note | |||||
| 1 | - | VeeT | Module Transmitter Ground | 1 | |||||
| 2 | LVTTL-O | TX_Fault | Module Transmitter Fault | - | |||||
| 3 | LVTTL-I | TX_Dis | Transmitter Disable; Turns off Transmitter Laser Output | - | |||||
| 4 | LVTTL-I/O | SDA | 2-Wire Serial Interface Data Line | 2 | |||||
| 5 | LVTTL-I | SCL | 2-Wire Serial Interface Clock | 2 | |||||
| 6 | - | MOD_DEF0 | Module Definition, Grounded in the Module | - | |||||
| 7 | - | NC | Not Connect | - | |||||
| 8 | LVTTL-O | RX_LOS | Receiver Loss of Signal Indication Active LOW | - | |||||
| 9 | - | VeeR | Module Receiver Ground | - | |||||
| 10 | - | VeeR | Module Receiver Ground | 1 | |||||
| 11 | - | VeeR | Module Receiver Ground | 1 | |||||
| 12 | LVPECL-O | RD- | Receiver Inverted Data Output | - | |||||
| 13 | LVPECL-O | RD+ | Receiver Data Output | - | |||||
| 14 | - | VeeR | Module Receiver Ground | 1 | |||||
| 15 | - | VccR | Module Receiver 3.3 V Supply | - | |||||
| 16 | - | VccT | Module Receiver 3.3 V Supply | - | |||||
| 17 | - | VeeT | Module Transmitter Ground | 1 | |||||
| 18 | CML-I | TD+ | Transmitter Non-Inverted Data Input | - | |||||
| 19 | CML-I | TD- | Transmitter Inverted Data Input | - | |||||
| 20 | - | VeeT | Module Transmitter Ground | 1 | |||||
| Note: 1. Module ground pins GND are isolated from the module case. 2. Shall be pulled up with 4.7K-10Kohms to a voltage between 3.15V and 3.45V on the host board. | |||||||||

Performance Testing
Each module is tested before shipment to help ensure stable optical and electrical performance.

Compatibility Verification
Compatibility validation is available for major switch and router platforms.

Reliability Screening
Selected products support aging, temperature cycle, and stability testing for demanding applications.

Traceable Quality Control
Inspection and production records support more consistent quality control and batch traceability.
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