Payment Terms | T/T, Western Union, L/C |
Supply Ability | 10000pcs/day |
Delivery Time | 1~2 days for samples |
Packaging Details | 10pcs/plastic try, 500pcs per standard export carton |
Product Name | Compatible Dell QSFP+ 40GE LR4 1310nm Duplex LC |
Data Rate | 40Gb/s |
Form Factor | QSFP+ |
Wavelength | CWDMx4 |
Max Reach | 10KM |
Connector | Duplex LC connector |
Temperature | 0~70℃ |
Brand Name | Mray |
Model Number | QSFP-40G-LR4 |
Certification | CE, FCC, RoHs, ISO9001 |
Place of Origin | Shenzhen, China |
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Product Specification
Payment Terms | T/T, Western Union, L/C | Supply Ability | 10000pcs/day |
Delivery Time | 1~2 days for samples | Packaging Details | 10pcs/plastic try, 500pcs per standard export carton |
Product Name | Compatible Dell QSFP+ 40GE LR4 1310nm Duplex LC | Data Rate | 40Gb/s |
Form Factor | QSFP+ | Wavelength | CWDMx4 |
Max Reach | 10KM | Connector | Duplex LC connector |
Temperature | 0~70℃ | Brand Name | Mray |
Model Number | QSFP-40G-LR4 | Certification | CE, FCC, RoHs, ISO9001 |
Place of Origin | Shenzhen, China | ||
High Light | Lr4 40G QSFP+ Transceiver ,10km QSFP Transceiver Module ,Duplex LC Connector QSFP Transceiver Module |
This Dell® QSFP-40G-LR4 compatible QSFP+ transceiver provides 40GBase-LR4 throughput up to 10km over single-mode fiber (SMF) using a wavelength of 1270nm to 1330nm via an LC connector. It is guaranteed to be 100% compatible with the equivalent Dell® transceiver. This easy to install, hot swappable transceiver has been programmed, uniquely serialized and data-traffic and application tested to ensure that it will initialize and perform identically. Digital optical monitoring (DOM) support is also present to allow access to real-time operating parameters. This transceiver is Trade Agreements Act (TAA) compliant. We stand behind the quality of our products and proudly offer a limited lifetime warranty.
Parameters | Symbol | Min. | Typ. | Max. | Unit |
Case Operating Temperature | TOP | 0 | - | +70 | °C |
Supply Voltage | VCC | +3.13 | +3.3 | +3.47 | V |
Data Rate, per lane | DR |
| 10.3125 | 11.2 | Gb/s |
Data Rate Accuracy | ΔDR | -100 |
| +100 | ppm |
Bit Error Rate | BER |
|
| 10-12 |
|
Supply Current | ICC |
|
| 1000 | mA |
Power Consumption | P |
| 2.5 | 3.5 | W |
Transceiver Power-on Initialization Time |
|
|
| 2000 | ms |
Control Input Voltage High | VIH | 2.0 |
| Vcc | V |
Control Input Voltage Low | VIL | GND |
| 0.7 | V |
Control Output Voltage High | VOH | 2.0 |
| Vcc | V |
Control Output Voltage Low | VOL | GND |
| 0.7 | V |
Parameters | Symbol | Min. | Typ. | Max. | Unit | Note |
Operating Date Rate, per Lane | DR |
| 10.3125 | 11.2 | Gb/s |
|
Total Average Launch Power | TPAVG |
|
| +8.3 | dBm |
|
Average Launch Power, per Lane | PAVG | -7.0 |
| +2.3 | dBm |
|
Optical Modulation Amplitude (OMA), per lane | POMA | -5.0 |
| +3.5 | dBm | 1 |
Difference in Launch Power between any two Lanes (OMA) | PTX-DIFF |
|
| 6.5 | dB |
|
Transmitter Dispersion Penalty, per Lane | TDP |
|
| 2.3 | dB |
|
Launch Power in OMA minus Transmitter and Dispersion Penalty (TDP), per Lane | OMA- TDP | -4.8 |
|
| dB |
|
Optical Wavelength, each Lane | λL0 | 1264.5 | 1271 | 1277.5 | nm |
|
λL1 | 1284.5 | 1291 | 1297.5 | nm |
| |
λL2 | 1304.5 | 1311 | 1317.5 | nm |
| |
λL3 | 1324.5 | 1331 | 1337.5 | nm |
| |
Spectral Width (-20dB) | Δλ |
|
| 1 | nm |
|
Side Mode Suppression Ratio | SMSR | 30 |
|
| dB |
|
Optical Extinction Ratio | ER | 3.5 |
|
| dB |
|
Optical 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, per Lane | POFF |
|
| -30 | dBm |
|
Relative Intensity Noise (OMA) | RIN |
|
| -128 | dB/Hz |
|
Optical Return Loss Tolerance | ORLT |
|
| 12 | dB |
|
Transmitter Reflectance | RTX |
|
| -12 | dB |
|
Input Differential Impedance | ZIN | 85 | 100 | 115 | Ω |
|
Differential Data Input Voltage | VIN-PP | 150 |
| 1200 | mVpp |
Parameters | Symbol | Min. | Typ. | Max. | Unit | Note |
Operating Date Rate, per Lane | DR |
| 10.3125 | 11.2 | Gb/s |
|
Damage Threshold, per Lane | DTH | +3.3 |
|
| dBm | 1 |
Average Receive Power, per Lane | PRX-AVG | -13.7 |
| +2.3 | dBm |
|
Receiver Power (OMA), per Lane | PRX-OMA |
|
| +3.5 | dBm |
|
Receiver Sensitivity (OMA), per Lane | SENAVG |
|
| -11.5 | dBm | 2 |
Stressed Receiver Sensitivity (OMA), per Lane | SENSOMA |
|
| -9.9 | dBm | 3 |
Receiver Reflectance | RRX |
|
| -26 | dB |
|
LOS De-Assert | LOSD |
|
| -15 | dBm |
|
LOS Assert | LOSA | -30 |
|
| dBm |
|
LOS Hysteresis | LOSHY | 0.5 |
|
| dB |
|
Receiver Electrical 3dB upper Cutoff Frequency, per Lane | FCUT |
|
| 12.3 | GHz |
|
Output Differential Impedance | ZOUT | 85 | 100 | 115 | Ω |
|
Differential Data Output Voltage | VOUT-PP | 370 | 600 | 950 | mVpp |
Company Details
Business Type:
Manufacturer,Exporter,Seller
Year Established:
2009
Total Annual:
15million-20million
Employee Number:
100~150
Ecer Certification:
Active Member
Shenzhen Miray Communication Technology Co., Ltd., established in 2009 with the headquarter in Shenzhen, China, is a professional optical fiber transmission equipment manufacturer which included in R&D, manufacture, sales and service. Our company devotes to provide high-speed data transmission s... Shenzhen Miray Communication Technology Co., Ltd., established in 2009 with the headquarter in Shenzhen, China, is a professional optical fiber transmission equipment manufacturer which included in R&D, manufacture, sales and service. Our company devotes to provide high-speed data transmission s...
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