Payment Terms | T/T, L/C, Western Union |
Supply Ability | 5,000pcs/month |
Delivery Time | 1-5 work days |
Packaging Details | Static bag, Plastic PVC Pack, Retail box |
Product Name | QSFP 40GBASE-LR4L |
Bit-Rate | 40Gbps |
Wavelength | 1310nm CWDM (1270nm-1330nm) |
Fiber Type | SMF |
LD/PD Type | DFB/PIN |
Transmission | 2km |
Connector | Duplex LC |
Warranty | 36-month |
Highlight | QSFP+ 40GbE LR4L for 2km LC Receptacle DOM |
Brand Name | Gigaopto |
Model Number | GTQ-L13A4-02DC |
Certification | CE, FCC, ROHS, ISO9001, ISO14000, MSDS, REACH, CP65, TUV, UL |
Place of Origin | Shenzhen, China |
View Detail Information
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Product Specification
Payment Terms | T/T, L/C, Western Union | Supply Ability | 5,000pcs/month |
Delivery Time | 1-5 work days | Packaging Details | Static bag, Plastic PVC Pack, Retail box |
Product Name | QSFP 40GBASE-LR4L | Bit-Rate | 40Gbps |
Wavelength | 1310nm CWDM (1270nm-1330nm) | Fiber Type | SMF |
LD/PD Type | DFB/PIN | Transmission | 2km |
Connector | Duplex LC | Warranty | 36-month |
Highlight | QSFP+ 40GbE LR4L for 2km LC Receptacle DOM | Brand Name | Gigaopto |
Model Number | GTQ-L13A4-02DC | Certification | CE, FCC, ROHS, ISO9001, ISO14000, MSDS, REACH, CP65, TUV, UL |
Place of Origin | Shenzhen, China | ||
High Light | QSFP+ Optical Fiber Transceiver ,DOM Optical Fiber Transceiver ,LC Fiber Transceiver |
QSFP+ 40GBASE-LR4L 1310nm 2km DOM Duplex LC SMF Optical Transceiver Module For Ethernet and Data Center
Description
Gigaopto’s GTQ-L13A4-02DC QSFP LR4 Lite transceiver is a module designed for 2km optical communication applications. The design is compliant to 40GBASE-LR4 of the IEEE P802.3ba standard.
The module converts 4 inputs channels of 10.3125Gb/s electrical data to 4 CWDM optical signals, and multiplexes them into a single channel for 40Gb/s optical transmission. Reversely, on the receiver side, the module optically demultiplexes a 40Gb/s input into 4 CWDM channels signals, and converts them to 4 channel output electrical data.
The central wavelengths of the 4 CWDM channels are 1271, 1291, 1311 and 1331nm as members of the CWDM wavelength grid defined in ITU-T G.694.2. It contains a duplex LC connector for the optical interface and a 38-pin connector for the electrical interface. To minimize the optical dispersion in the long-haul system, single-mode fiber (SMF) has to be applied in this module.
The product is designed with form factor, optical/electrical connection and digital diagnostic interface according to the QSFP+ Multi-Source Agreement (MSA). It has been designed to meet the harshest external operating conditions including temperature, humidity and EMI interference.
Specification
Package | QSFP | Data Speed | 41.2Gbps (4×10.3Gbps) |
Center Wavelength | 1310nm CWDM | Max Reach | 2km |
Interface | LC Duplex | Fiber Type | SMF |
Transmitter Type | DFB | Receiver Type | PIN |
TX Power per Lane | -7~2.3dBm | RX Sensitivity per Lane | <-11.5dBm |
Power-budget | 4.5dB | RX Overload | >2.3dBm |
Power Dissipation | ≤3.5W | Extinction Ratio | >3.5dB |
Host FEC | Supported | Bit Error Ratio (BER) | 1E-12 |
DOM | Supported | Operating Temperature | 0 to 70°C (32 to 158°F) |
OEM/ODM | Supported | BTMF | 5,000,000Hours |
Protocols | 40G Ethernet, Infiniband Fibre Channel, SATA/SAS3, MSA Compliant |
Features
Application
Standard
Electrical Specifications
Parameter | Symbol | Min | Typical | Max | Unit | Notes |
Power Consumption | 3.5 | W | ||||
Supply Current | Icc | 1.1 | A | |||
Transceiver Power-on Initialization Time | 2000 | ms | 1 | |||
Transmitter (Each Lane) | ||||||
Single-ended Input Voltage Tolerance (Note 2) | -0.3 | 4.0 | V | Referred to TP1 signal | ||
AC Common Mode Input Voltage Tolerance | 15 | mV | RMS | |||
Differential Input Voltage | 50 | mVpp | LOSA | |||
Swing Threshold | Threshold | |||||
Differential Input Voltage Swing | Zin, pp | 190 | - | 700 | mVpp | - |
Differential Input Impedance | Zin | 90 | 100 | 110 | ohm | - |
Receiver (Each Lane) | ||||||
Single-ended Output Voltage | -0.3 | 4.0 | V | Referred to signal common | ||
AC Common Mode Output Voltage | 7.5 | mV | RMS | |||
Differential Output Voltage Swing | Zout, pp | 300 | 850 | mVpp | ||
Differential Output Impedance | Zout | 90 | 100 | 110 | ohm |
Optical Characteristics
Parameter | Symbol | Min | Typical | Max | Unit | Notes |
Lane Wavelength | L0 | 1264.5 | 1271 | 1277.5 | nm | |
L1 | 1284.5 | 1291 | 1297.5 | nm | ||
L2 | 1304.5 | 1311 | 1317.5 | nm | ||
L3 | 1324.5 | 1331 | 1337.5 | nm | ||
Transmitter | ||||||
SMSR | SMSR | 30 | dB | |||
Total Average Launch Power | PT | 8.3 | dBm | |||
Average Launch Power,each Lane | PAVG | -7.0 | 2.3 | dBm | ||
OMA, each Lane | POMA | -6.0 | 3.5 | dBm | 1 | |
Difference in Launch Power between any Two Lanes (OMA) | Ptx,diff | 6.5 | dB | |||
Launch Power in OMA minus Transmitter and Dispersion Penalty (TDP), each Lane | -6.8 |
dBm | ||||
TDP, each Lane | TDP | 2.6 | dB | |||
Extinction Ratio | ER | 3.5 | dB | |||
RIN20OMA | RIN | -128 | dB/Hz | |||
Optical Return Loss Tolerance | TOL | 20 | dB | |||
Transmitter Reflectance | RT | -12 | dB | |||
Eye Mask{X1, X2, X3, Y1, Y2, Y3} | {0.25, 0.4, 0.45, 0.25, 0.28, 0.4} | 2 | ||||
Average Launch Power OFF Transmitter, each Lane | Poff | -30 | dBm | |||
Receiver | ||||||
Damage Threshold, each Lane | THd | 4.5 | dBm | 3 | ||
Total Average Receive Power | 8.3 | dBm | ||||
Average Receive Power, each Lane | -11.6 | 2.3 | dBm | |||
Receive Power (OMA), each Lane | 3.5 | dBm | ||||
Receiver Sensitivity (OMA), each Lane | SEN | -11.5 | dBm | |||
LOS Assert | LOSA | -28 | dBm | |||
LOS Deassert | LOSD | -15 | dBm | |||
LOS Hysteresis | LOSH | 0.5 | dB | |||
Receiver Electrical 3 dB upper Cutoff Frequency, each Lane | Fc | 12.3 | GHz |
Note:
1. Even if the TDP < 1 dB, the OMA min must exceed the minimum value specified here.
2. See Figure 2 below.
3. The receiver shall be able to tolerate, without damage, continuous exposure to a modulated optical input signal having this power level on one lane. The receiver does not have to operate correctly at this input power.
4. Measured with conformance test signal at receiver input for BER = 1x10-12.
5. Vertical eye closure penalty and stressed eye jitter are test conditions for measuring stressed receiver sensitivity. They are not characteristics of the receiver.
Compatibility
Gigaopto's optical transceivers are 100% compatible with all major switch brands and will not cause damage to OEM devices.
In order to ensure the quality and compatibility of our products, each product is carefully tested on the corresponding equipment before delivery to customers.
For this GTQ-L13A4-02DC compatibility, please refer to the P/N correspondence table. If the brand and part number you are looking for is not listed below, please let us know and we will be delighted to provide you with more details.
Corresponding Compatible Brand/Part Number | |||
Brand | Part Number | Brand | Part Number |
Gigaopto | GTQ-L13A4-02DC | Arista | QSFP-40G-LRL4 |
Cisco | WSP-Q40GLR4L | HW | 02311YVB |
Extreme | 10334 | Juniper | JNP-QSFP-40GE-IR4 |
HPE H3C | JL286A | Brocade | 40G-QSFP-LR4L |
D-Link | DEM-QX02Q-IR4 | Mellanox | MC2210511-IR4 |
F5 Networks | F5-UPG-QSFP+IR4 | Fortinet | FG-TRAN-QSFP+IR |
Avago | QSFP-40GE-IR4 | Palo Alto Networks | PAN-40G-QSFP-LX4 |
H3C | QSFP-40G-LR4L-WDM1300 | MikroTik | Q+31DLC2D |
Allied Telesis | QSFPIR4 | Chelsio | SM40G-IR |
Edge-Core | ET6401-IR4 | MRV | QSFP-40G-IR |
Intel | QSFP-IR4-40G | Ciena | QSFP-40GE-IR4 |
Check Point | CPAC-TR-40IR-SSM160-QSFP-C | AvayA | AA1404001-E6 |
Package Dimensions
The module is designed to be complaint with QSFP+ MSA specification. Package dimensions are specified in SFF-8436.
For More of our QSFP+ 40GBASE Transceiver Series, please refer to the following form
P/N | Description | Wave Length | Reach | TX/RX | TX Power (dBm) | Rx Sens. (dBm) | Connector |
GTQ-M85A4-02DC | 40G SR4 | 850nm | 150m | VCSEL/PIN | -7.6~2.4 | <-9.5 | MTP/MPO-12 |
GTQ-B08A4-02DC | 40G SR BiDi | 850/900nm | 150m | VCSEL/PIN | -4~5 | <-11 | LC |
GTQ-B08A4-04DC | 40G eSR4 | 850nm | 300m | VCSEL/PIN | -7.5~0 | <-11 | MTP/MPO-12 |
GTQ-M13A4-02DC | 40G PSM IR4 | 1310nm | 1.4km | DFB/PIN | -5.5~+1.5 | <-11.5 | MTP/MPO-12 |
GTQ-L13A4-M2DC | 40GBASE-UNIV | 1310nm | 150m/2km | DFB/PIN | -7~4.3/-10~2.3 | <-10/<-13.7 | LC |
GTQ-L13A4-02DC | 40G LR4 Lite | 1310nm CWDM | 2km | DFB/PIN | -7~2.3 | <-11.5 | LC |
GTQ-M13A4-10DC | 40G LR4 | 1310nm CWDM | 10km | DFB/PIN | -7~2.3 | <-11.5 | LC |
GTQ-M13A4-10DC | 40G PSM4 | 1310nm | 10km | DFB/PIN | -6~-1 | <-14.4 | MTP/MPO-12 |
GTQ-M13A4-20DC | 40G eLR4 | 1310nm CWDM | 20km | DFB/PIN | -4.5~2.3 | <-12.5 | LC |
GTQ-B13A4-40DC | 40G ER4 | 1310nm CWDM | 40km | DFB/APD | -2.7~4.5 | <-21.2 | LC |
GTQ-M13A4-02DC | 40G PSM4 Lite | 1310nm | 2km | DFB/PIN | -6~-1 | <-14.4 | MTP/MPO-12 |
GTQ-B13A4-30DC | 40G ER4 Lite | 1310nm CWDM | 30km | DFB/APD | -3.7~4.5 | <-18 | LC |
Company Details
Business Type:
Manufacturer,Exporter,Seller
Year Established:
2014
Total Annual:
78,000,000-12,000,000
Employee Number:
100~150
Ecer Certification:
Verified Supplier
Shenzhen Gigaopto Technology Co., Ltd., established in 2014, is a high-tech enterprise specializing in research & development, production and sales of optical transceiver modules and providing optical transmission solutions. We can provide optical transceivers from 155Mbps to 100Gbps, covering P... Shenzhen Gigaopto Technology Co., Ltd., established in 2014, is a high-tech enterprise specializing in research & development, production and sales of optical transceiver modules and providing optical transmission solutions. We can provide optical transceivers from 155Mbps to 100Gbps, covering P...
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