Product Details
HPE Aruba Compatible 10G SFP+ LC LR 20km SMF Transceiver - J9151E
Description
This Miray SFP+ LR transceiver is specifically designed for the
high performance integrated duplex data transmission over single
mode optical fiber. This transceiver module is compliant with
Enhanced Small Form Factor Pluggable Module SFP+ Multisource
Agreement (SFF-8431).This transceiver type is specifically
optimized for transport of serial data at 10.3125Gbps.
Features
- Operating data rate up to 10.3Gbps
- 1310nm DFB Transmitter
- Distance up to 10km
- Single 3. 3V Power supply and TTL Logic Interface
- Duplex LC Connector Interface, Hot Pluggable
- Compliant with MSA SFP+ Specification SFF-8431
- Compliant with 10G 1200-M5-SN-I and 1200-M6-SN-I FC standard
- Compliant with 8.5G 800-M5-SN-I and 800-M6-SN-I FC standard
- Compliant with IEEE 802.3ae 10GBASE-LR/LW
- Operating Case Temperature Standard:-10°C~+70°C
Application
Data Networking
Optical Network
Interfaces/Ports
Interfaces/Ports Details: 1 x LC 10GBase-LR Network
Media & Performance
Media Type Supported: Optical Fiber
Fiber Mode Supported: Single-mode
Ethernet Technology: 10 Gigabit Ethernet
Network Technology: 10GBase-LR
Miscellaneous
Compatibility: Aruba 8325 Switch Series
Optical Parameters(TOP = -40 to 85°C, VCC = 3.135 to 3.465 Volts)
Parameter | Symbol | Min | Typ | Max | Note | Unit |
Optical Transmitter Characteristics |
Nominal Wavelength | λ |
| 1310 |
|
| nm |
Optical Output Power | Pav | -6 |
| 2 |
| dBm |
Extinction Ratio | ER | 3.5 |
|
|
| dB |
Average Launch Power of OFF Transmitter | POFF |
|
| -35 |
| dBm |
Relative Intensity Noise | RIN |
|
| -128 |
| dB/Hz |
Optical Receiver Characteristics |
Center Wavelength | λC | 1260 |
| 1620 |
| nm |
Receiver Sensitivity@10.3Gb/s | RSENSE |
|
| -14.4 | 1 | dBm |
Receiver Overload |
| 0.5 |
|
|
| dBm |
Optical Return Loss |
| 27 |
| - |
| dB |
LOS Assert | LOSA | -30 |
|
|
| dBm |
LOS De-Assert LOS | LOSD |
|
| -17 |
| dBm |
LOS Hysteresis |
| 0.5 |
|
|
| dB |
Dimension
Product Packing
Compatibility Test
Compatible Brands
Production Flow
For more details, welcome to inquire us freely.
Company Profile
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 solutions for data centers,
cloud computing, transmission and other fields. The active device
product line of Miray mainly includes 1G SFP optical module, 10G SFP+ optical module, 10G XFP optical
module, 25G SFP28 optical module, 40G QSFP optical module, 100G
QSFP28 optical module, high-speed copper cable (DAC) components,
high-speed Active Optical Cable (AOC) components.
Miray always regards technological innovation as the core
competitiveness of the company, we have established a high-speed
optical module R&D center, equipped with a professional modern
industrial plant of over 2000 square meters, passed the ISO9001
quality system certification, and has a complete set of test aging
equipment and perfect production technology and strict inspection
process, and invested in a full set of advanced automated
inspection equipment, greatly improved the inspection efficiency
and ensured product quality.
Based on the goal of quickly responding to customers’ requirements,
and product innovation and quality assurance as the foundation,
Miray has gathered a strong and professional technical R&D
team. Over the years, Miray has closely followed the development of
communication technology of the times, pays close attention to
industry trends, and continuously launched new products for
mainstream applications in the industry. Miray insists on providing
customers not only products but also services. All these enable us
to create maximum profits for customers to realize a win-win
development.
Our mission is committing to providing first-class fiber network communication products and services and becoming the best partner in the field of optical communication.