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Description
Overview of pin module 10Gbp/s LC TOSA 1310nm DFB laser diode transmission with InGaAsP monitor photodiode with FPCB
Diode modules are assemblies consisting of multiple diodes that are packaged together to form a single, easy-to-install unit. They are widely used in power electronics for rectification (converting AC to DC), protecting circuits from overvoltage and reverse current, and many other applications. Diode modules typically contain different types of diodes, such as fast recovery diodes, Schottky diodes, etc., to suit specific application requirements.
Features of pin module 10Gbp/s LC TOSA 1310nm DFB laser diode transmission with InGaAsP monitor photodiode with FPCB
High reliability: By integrating multiple diodes, the risk of single component failure is reduced.
Simplified design: Using modules can reduce PCB space requirements and simplify circuit design.
High efficiency: Some diode modules use advanced materials and technologies to provide lower forward voltage drop and higher efficiency.
Good heat dissipation: Many modules are designed with efficient heat dissipation paths to ensure stable operation under high power conditions.
Easy to install and maintain: Standardized packaging makes installation and replacement easier and faster.
(pin module 10Gbp/s LC TOSA 1310nm DFB laser diode transmission with InGaAsP monitor photodiode with FPCB)
Specification of pin module 10Gbp/s LC TOSA 1310nm DFB laser diode transmission with InGaAsP monitor photodiode with FPCB
The pin module 10Gbp/s LC TOSA 1310nm DFB laser diode transmission integrates advanced components for high-speed optical communication. It uses a 1310nm distributed feedback (DFB) laser diode. The design ensures stable performance in single-mode fiber applications. The module supports data rates up to 10Gbp/s. It suits telecom and data center networks requiring reliable signal transmission.
The DFB laser diode provides narrow spectral width. This reduces dispersion in long-distance communication. The InGaAsP monitor photodiode tracks laser output power. It enables real-time feedback control. This maintains consistent performance over time. The module includes a flexible printed circuit board (FPCB). The FPCB simplifies assembly. It improves durability in high-vibration environments.
Operating wavelengths cover the 1310nm range. This aligns with standard single-mode fiber specifications. The LC connector ensures easy integration with existing optical systems. It offers low insertion loss. The module operates at temperatures from -40°C to +85°C. It meets industry standards for thermal stability.
Electrical interfaces use industry-standard pin layouts. This ensures compatibility with common transceiver designs. Power consumption remains low. It supports energy-efficient network setups. The module includes electrostatic discharge (ESD) protection. This minimizes damage risks during handling.
The hermetic sealing protects internal components. It prevents moisture and contaminant ingress. This extends the product’s lifespan. The compact design saves space in high-density installations. It suits applications like Ethernet, fiber channel, and passive optical networks.
Testing protocols validate performance under extreme conditions. The module undergoes rigorous quality checks. This guarantees compliance with Telcordia GR-468-CORE standards. Reliability metrics include high mean time between failures (MTBF).
The FPCB enhances signal integrity. It reduces electromagnetic interference (EMI). Customization options are available for specific system requirements. The module supports both digital and analog monitoring. This allows precise control over transmission parameters.
Applications include backbone networks, metropolitan area networks (MANs), and enterprise infrastructure. The design prioritizes ease of maintenance. It allows quick replacement in field deployments. Technical support covers integration and troubleshooting. The product is backward-compatible with older 1Gbp/s and 2.5Gbp/s systems.
The 1310nm DFB laser ensures minimal chromatic dispersion. This improves signal clarity over distances up to 40km. The monitor photodiode operates at wavelengths between 1200nm and 1600nm. It maintains accuracy across varying environmental conditions.
(pin module 10Gbp/s LC TOSA 1310nm DFB laser diode transmission with InGaAsP monitor photodiode with FPCB)
Applications of pin module 10Gbp/s LC TOSA 1310nm DFB laser diode transmission with InGaAsP monitor photodiode with FPCB
Company Profile
PDDN Photoelectron Technology Co., Ltd.(sales@pddn.com) is one of the leading enterprises in power electronics technology and power products, which is fully involved in developing solar inverters, transformers, voltage regulators, distribution cabinets, thyristors, modules, diodes, heaters, and other electronic devices or semiconductors. We will be committed to providing users with high-quality, efficient products and considerate service.
It accepts payment via Credit Card, T/T, West Union, and Paypal. PDDN will ship the goods to customers overseas through FedEx, DHL, by sea, or by air. If you want high-quality pin module 10Gbp/s LC TOSA 1310nm DFB laser diode transmission with InGaAsP monitor photodiode with FPCB, please send us inquiries; we will be here to help you.
Payment Methods
L/C, T/T, Western Union, Paypal, Credit Card etc.
Shipment
By sea, by air, by express, as customers request.
Storage Conditions
1) Store in a dry environment at room temperature.
2) Avoid damp and high temperature.
3) Use immediately after opening the inner packing bag.
5 FAQs of pin module 10Gbp/s LC TOSA 1310nm DFB laser diode transmission with InGaAsP monitor photodiode with FPCB
This pin module integrates a 10Gbps LC TOSA with a 1310nm DFB laser diode and InGaAsP monitor photodiode on an FPCB. Below are answers to common questions. What is the primary function of this module? It enables high-speed optical data transmission over single-mode fiber. The 1310nm wavelength minimizes signal loss in long-distance communication. The DFB laser ensures stable output for reliable performance. The monitor photodiode tracks laser power to maintain safety and accuracy. How fast is the data transfer rate? The module supports 10Gbps Ethernet and similar high-speed protocols. It meets industry standards for telecom and data center applications. It works with SFP+ transceivers and compatible interfaces. What components ensure signal quality? The DFB laser provides narrow spectral width for reduced dispersion. The InGaAsP photodiode offers high responsivity to monitor light levels precisely. The FPCB design reduces electrical interference. Flexible circuit boards simplify integration into compact devices. What are the key advantages of this design? The DFB laser delivers consistent output under temperature changes. The photodiode enables real-time feedback for system control. The FPCB allows easy routing in tight spaces. The LC connector ensures quick connections with standard fiber cables. Reliability tests confirm stable operation over extended periods. Where is this module typically used? It suits telecom networks, data centers, and enterprise systems. It supports backbone links, server interconnects, and metro-area networks. Industrial settings use it for high-speed machine-to-machine communication. The design handles high temperatures and vibrations in harsh environments.
(pin module 10Gbp/s LC TOSA 1310nm DFB laser diode transmission with InGaAsP monitor photodiode with FPCB)
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