

XGSPON STICK ONU SFP+ Transceiver,XGPON ONU, LL-XS1010
Ursprünglicher Preis war: USD $200.00.$ USD160.00Der aktuelle Preis ist: USD $160.00.
- XGSPON STICK ONU SFP+ Transceiver unterstützen 20 km Übertragungsstrecke mit SMF
- SFP-Gehäuse mit SC APC/UPC-Buchse
- Unterstützung von XGPON/XGS-PON
- XGSPON STICK Unterstützt symmetrische und asymmetrische Protokolle
Garantiert sicherer Checkout

Model: LL-XS1010
Produktmerkmale
- Single Fiber XGS-PON ONU Transceiver
- 1270nm burst-mode 9.953 Gb/s transmitter with DFB laser
- 1577nm continuous-mode 9.953Gb/s APD-TIA receiver
- SFP+ package with SC UPC receptacle connector
- Digital diagnostic monitoring (DDM)with internal calibration
- 0 to 70°C operating case temperature
- +3.3V separated power supply, low power dissipation
- Compliant with SFF-8431/SFF-8472/ GR-468
- MIL-STD-883 compliant
- FCC Part 15 Class B/EN55022 Class B (CISPR 22B)/ VCCI Class B compliant
- Class I laser safety standard IEC-60825 compliant
- RoHS-6-Konformität
Software Features
- Compliant with ITU-T G.988 OMCI Management
- Support 4K MAC entries
- Support IGMPv3/MLDv2 and 512 IP multicast address entries
- Support advanced data features such as VLAN tag manipulation, classification and filtering
- Support“Plug-and-play”via auto-discovery and Configuration
- Support Rogue ONU Detecting
- Data transferring at wire-speed for all packet size
- Support Jumbo frames up to 9840 Bytes
General Description
The XGS-PON ONU stick transceiver is an Optical Network Terminal (ONT) with Small Form-factor Pluggable (SFP+) packaging. The XGS-PON ONU stick integrates a bi-directional (max 10Gbit/s) optical transceiver function and 2nd layer function. By being plugged into the customer premise equipment (CPE) with standard SFP port directly, the XGS-PON ONU stick provides multi-protocol link to the CPE without requiring separate power Supply.
The transmitter designed for single mode fiber and operates at wavelength of 1270nm. The transmitter uses a DFB laser diode and fully compliant with IEC-60825 and CDRH class 1 eye safety. It contains APC functions, a temperature compensation circuit to ensure compliance with ITU-T G.9807 requirements at operating temperature.
The receiver section uses a hermetic packaged APD-TIA (APD with trans-impedance amplifier) and a limiting amplifier. The APD converts optical power into electrical current and the current is transformed to voltage by the trans-impedance amplifier. The differential signals are produced by the limiting amplifier. The APD-TIA is AC coupled to the limiting amplifier through a low pass filter.
The XGS-PON ONU stick supports a sophisticated ONT management system, including alarms, provisioning, DHCP and IGMP functions for a stand-alone IPTV solution at the ONT. It can be managed from the OLT using G.988 OMCI.

Figure 1 Block Diagram
Absolute Maximum Ratings
Parameter | Symbol | Min | Max | Einheit | Notiz |
Lagerung Umgebungstemperatur | TSTG | -40 | 85 | °C | |
Betriebstemperatur des Gehäuses | Tc | 0 | 70 | °C | C-Temp |
Relative Humidity | RH | 5 | 85 | % | |
Stromversorgungsspannung | VCC | 0 | 3.63 | V |
Empfohlene Betriebsbedingungen
Parameter | Symbol | Min | Typical | Max | Einheit | Notiz |
Betriebsspannung | VCC | 3.14 | 3.3 | 3.46 | V | |
Power Dissipation | PD | 3 | W | |||
Betriebstemperatur des Gehäuses | Tc | 0 | 70 | °C | C-Temp | |
Operating Humidity Range | OH | 5 | 85 | % | ||
Bit Rate(TX) | 9.953 | Gbit/s | ||||
Bit Rate(TX) | 9.953 | Gbit/s | ||||
Übertragungsentfernung | – | – | 20 | KM |
Optical Characteristics
Transmitter 10G | ||||||
Parameter | Symbol | Min | Typical | Max | Einheit | Notiz |
Center Wavelength Range | λC | 1260 | 1270 | 1280 | nm | |
Side Mode Suppression Ratio | SMSR | 30 | dB | |||
Spectral Width (-20dB) | ∆λ | 1 | nm | |||
Durchschnittliche optische Startleistung | POUT | +5 | +9 | dBm | 1 | |
Power-OFF Transmitter Optical Power | PAUS | -45 | dBm | |||
Extinktionskoeffizient | ER | 6 | dB | |||
Optical Waveform Diagram | Compliant With ITU-T G.9807.1 | |||||
Receiver 10G | ||||||
Center Wavelength Range | 1570 | 1577 | 1580 | nm | ||
Overload | PSAT | -8 | – | – | dBm | |
Sensitivity(BOL Full temp) | Sen | – | – | -28.5 | dBm | 2 |
Bit Error Ratio | 10E-3 | |||||
Loss of Signal Assert Level | PLOSA | -45 | – | – | dBm | |
Loss of Signal Deassert Level | PLOSD | – | – | -30 | dBm | |
LOS-Hysterese | 1 | – | 5 | dBm | ||
Receiver Reflectance | – | – | -20 | dB | ||
Isolation (1400~1560nm) | 35 | dB | ||||
Isolation(1600~1675nm) | 35 | dB | ||||
Isolation(1575~1580nm) | 34.5 | dB |
Note 1: Launched into 9/125um Single Mode Fiber.
Note 2: Measured with a PRBS 2^31-1 test pattern @9.9532Gbps and ER=6dB, BER ≤10-3.
Electrical Characteristics
Transmitter | ||||||
Parameter | Symbol | Min | Typical | Max | Einheit | Anmerkungen |
Data Input Differential Swing | VIN | 100 | 1000 | mVp-p | ||
Differentiale Eingangsimpedanz | ZIN | 90 | 100 | 110 | Ω | |
Transmitter Disable Voltage – Low | VL | 0 | – | 0.8 | V | |
Transmitter Disable Voltage – High | VH | 2.0 | – | VCC | V | |
Burst Turn On Time | TBURST_ON | – | – | 512 | ns | |
Burst Turn Off Time | TBURST_OFF | – | – | 512 | ns | |
TX Fault Assert Time | TFAULT_ON | – | – | 50 | ms | |
TX Fault Reset Time | TFAULT_RESET | 10 | – | – | us | |
Receiver | ||||||
Data Output Differential Swing | 900 | 1000 | 1100 | mV | ||
Output Differentia Impedance | ROUT | 90 | 100 | 110 | Ω | |
Loss of Signal (LOS) Assert Time | TLOSA | 100 | us | |||
Loss of Signal(LOS) Deassert Time | TLOSD | 100 | us | |||
LOS low voltage | VOL | 0 | 0.4 | V | ||
LOS high voltage | VOH | 2.4 | VCC | V |
Note 1: Measured with a PRBS 223-1 test pattern @2.488Gbit/s and ER=9dB, BER =10-12.
Note 2: A decrease in optical power above the specified level will cause Los output to switch from a low state to a high state;
An increase in optical power below the specified level will cause Los output to switch from a high state to a low state.
Note 3: CML output, AC coupled internally, guaranteed in the full range of input optical power (-8dBm to -28dBm).
Recommended Host Board Power Supply Circuit

Figure 2 Recommended Host Board Power Supply Circuit
EEPROM Information

Figure 3 EEPROM Information
Mechanical Dimensions

Figure 4 Package Outline (unit: mm)
Pin Out Drawing

Figure 5 Pin Out Drawing
Pin Beschreibung
PIN | Name | Beschreibung | Anmerkungen |
1 | VeeT | Modul Sendererde | |
2 | Tx-Fault/ToD | Tx Fault/Time of Day | 1 |
3 | Tx-Sperre | Transmitter Disable; turns off transmitter laser output | |
4 | SDA | SDA I2C Data line(MOD-DEF2) | 2 |
5 | SCL | SCL I2C Clock line(MOD-DEF1) | 2 |
6 | MOD_ABS | Module Absent, connected to VeeR or VeeT in the module | |
7 | DYING GASP | Dying Gasp message indicator | 3 |
8 | LOS | Verlust des Signals | |
9 | VeeR/1PPS | Module Receiver Ground/1 Pulse per second | 4 1 |
10 | VeeR | Modul-Empfänger-Masse | |
11 | VeeR | Modul-Empfänger-Masse | |
12 | RD- | Received Inverted Data Output | |
13 | RD+ | Received Data Output | |
14 | VeeR | Modul-Empfänger-Masse | |
15 | VccR | Module Receiver 3.3V Supply | |
16 | VccT | Module Transmitter 3.3V Supply | |
17 | VeeT | Modul Sendererde | |
18 | TD+ | Transmitter Data Input | |
19 | TD- | Transmitter Inverted Data Input | |
20 | VeeT | Modul Sendererde |
Notes:
1. Default Factory Mode is Tx Fault. For Small Cell type of applications, during Activation/ provisioning, it will be
software configured to ToD.
2. This PIN is an open collector/drain output pin and shall be pulled up with 4.7K-10K ohms to a Host_Vcc on the
host board.
3. PIN7 can support Dying Gasp function. Dying Gasp function is managed by software. If software turn off the dying
gasp function,no influence to the module if logical “0” or “1”. If software turn on the function,no influence to the
module if logical “1”; if logical “0”, the module will report dying gasp to OLT and the module will repeating restart.
4. Default Factory Mode is Veer. For Small Cell type of applications, during Activation/ provisioning, it will be software
configured to 1PPS.
Gewicht | 0,15 kg |
---|---|
Abmessungen | 10 × 10 × 10 cm |
Anschluss einfügen |
SC APC ,SC UPC |
OS |
Gemeinschaftsversion ,ssh version |
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