Three application scenarios of POE optical fiber media converter

 POE optical fiber media converter is one of the common equipment to build enterprise POE network architecture. It can use the existing unshielded twisted pair wiring to power the network equipment. In this article, ETU-LINK will introduce you the application scenarios of POE optical fiber media converter?

Poe optical media converter is a photoelectric converter with power over Ethernet (POE) function. It can supply power to remote IP cameras, wireless devices and VOIP phones through network cables, eliminating the trouble of installing power cables separately. Common POE optical fiber media converter in the market are usually configured with one RJ45 interface and one SFP interface. Other POE optical fiber media converter will be configured with duplex RJ45 interface and duplex optical fiber interface to support the use of fixed optical fiber connectors or SFP optical modules.

POE optical fiber media converter can be applied to wireless access points, IP cameras and VOIP phones. The application of POE optical fiber media converter in the above scenarios will be illustrated with schematic diagrams below.

1. Application of POE optical fiber media converter in wireless access point

2. Application of POE optical fiber media converter in IP camera

3. Application of POE optical fiber media converter in VOIP telephone

POE optical fiber media converter can meet the needs of long-distance, high-speed and high broadband gigabit Ethernet and fast Ethernet working group users. It can be widely used in various data communication fields such as security monitoring, conference system, intelligent building engineering and so on.

Three application scenarios of POE optical fiber media converter

 POE optical fiber media converter is one of the common equipment to build enterprise POE network architecture. It can use the existing unshielded twisted pair wiring to power the network equipment. In this article, ETU-LINK will introduce you the application scenarios of POE optical fiber media converter?

Poe optical media converter is a photoelectric converter with power over Ethernet (POE) function. It can supply power to remote IP cameras, wireless devices and VOIP phones through network cables, eliminating the trouble of installing power cables separately. Common POE optical fiber media converter in the market are usually configured with one RJ45 interface and one SFP interface. Other POE optical fiber media converter will be configured with duplex RJ45 interface and duplex optical fiber interface to support the use of fixed optical fiber connectors or SFP optical modules.

POE optical fiber media converter can be applied to wireless access points, IP cameras and VOIP phones. The application of POE optical fiber media converter in the above scenarios will be illustrated with schematic diagrams below.

1. Application of POE optical fiber media converter in wireless access point

2. Application of POE optical fiber media converter in IP camera

3. Application of POE optical fiber media converter in VOIP telephone

POE optical fiber media converter can meet the needs of long-distance, high-speed and high broadband gigabit Ethernet and fast Ethernet working group users. It can be widely used in various data communication fields such as security monitoring, conference system, intelligent building engineering and so on.

QSFP28 SR4 optical module connection solution and application field

 As a member of the new QSFP28 family, the 100G QSFP28 SR4 optical module is a very ideal solution in the short distance transmission of 100g network. The application of 100G will be more and more put into the actual environment. So what is the connection solution of 100G QSFP28 SR4 and what fields are it applied in? ETU-Link will unveil it for you.

Technology development of 100G optical module

Compared with 2.5G, 10G or 40G WDM systems, 100G optical transmission uses digital coherent receiver to map all optical attributes of optical signal to the electric domain through phase diversity and polarization state diversity. Using mature digital signal processing technology, polarization demultiplexing, channel damage equalization compensation, timing recovery, carrier phase estimation, symbol estimation and linear decoding are realized in the electric domain. While realizing 100G optical transmission, a series of significant technical changes have taken place in 100G optical module, including polarization multiplexing phase modulation technology, digital coherent reception technology, the third generation of super strong error correction coding technology, etc., which meets the needs of users with the times.

Functional characteristics of 100G QSFP28 SR4 optical modules

v It can transmit 70m in OM3 multimode fiber and 100m in OM4 multimode fiber

v Comply with QSFP28 MSA standard

v Comply with IEEE 802.3bm* 100Gbase-SR4

v The transmitter adopts 4x 25Gbps 850nm VCSEL

v The connector adopts 4x 25Gbps Electrical I/O

v Working temperature 0°C~70°C。

v Optical connector adopts Male MPO(MTP) receptacle。

v Support DDM function

100G optical module connection solution

100G is composed of four 25G channels, using MPO / MTP backbone jumper to realize direct data transmission of 100G QSFP28 SR4 optical module.

Application field of 100G QSFP28 SR4 optical module

The 100G QSFP28 SR4 optical module provided by ETU-Link mainly applies the high-speed optical module of data center. IEEE 802.3bm 100GBASE SR4 and 40GBASE SR4 and 40GBASE SR4 and Infiniband FDR / EDR 14x speed / enhanced speed. It can provide customers with high-efficient optical modules through proprietary design.

With the wide application of 100G network technology, the use of 100G optical module has become more and more common and cost-effective.

光ファイバ減衰器のガイド

 光ファイバ減衰器は、ファイバリンクの光パワーを固定または調整可能な量だけ正確に減少させるデバイスです。これらは、光信号の電力レベルを制御できるだけでなく、光センサーと光検出器の線形性とダイナミックレンジをテストするためにも使用されます。光ファイバ減衰器にはいくつかの異なる形式があり、通常、固定減衰器または可変減衰器に分けられます。さらに、コネクタの種類に応じて、LC、SC、ST、FC、MU、E2000などに分類できます。この記事では、ファイバー減衰器について簡単に紹介し、理解を深めます。

なぜ光ファイバー減衰器が必要なのですか?

すべての人に知られているように、受信機の光パワーは、データを送信する光ファイバーシステムの能力を最終的に決定します。しかし、信号電力レベルが大きいほど良いという事実ではありません。真実は、電力が少なすぎるか多すぎると、ビットエラー率が高くなるということです。電力が多すぎるとレシーバアンプが飽和する可能性があり、少なすぎると信号に干渉するためノイズの問題が発生します。

通常、受信機の電力は2つの基本的な要因に依存します。つまり、ファイバに投入される電力と、光ファイバケーブルプラントでの減衰によって失われる電力です。電力が高すぎる場合、光ファイバー減衰器は受信電力を減らしてパフォーマンスを向上させるのに役立ちます。一般に、マルチモードシステムは、受信機を飽和させるのに十分な電力出力がほとんどないため、光減衰器を必要としません。シングルモードシステム、特に短いリンクの場合、電力が多すぎることが多いため、必死に減衰が必要です。しかし、今日では、電気通信の複雑さにより、シングルモードシステムとマルチモードシステムの両方で減衰が必要になります。

光ファイバ減衰器の動作原理

電力減衰には、吸収、反射、拡散、散乱、偏向、回折、分散など、さまざまな方法があります。光減衰器は通常、中性密度の薄膜フィルターのように、光を吸収することによって動作します。または、エアギャップなどの光を散乱させることで機能します。別のタイプの減衰器は、高損失光ファイバの長さを使用します。これは、出力信号電力レベルが入力レベルよりも小さくなるように、入力光信号電力レベルで動作します。

固定光減衰器VS可変光減衰器

光ファイバ減衰器は、固定光減衰器と可変減衰器の2つのカテゴリに分類できます。どちらも独特の特徴があります。

固定光ファイバー減衰器

固定光減衰器は、信号を特定の量だけ減らすことができるコンパクトなアダプタスタイルです。信号が通信リンク内のデバイスまたはノードに近づくと、電力はそのアプリケーションに適したレベルに減少します。それらは信号反射の問題を少なくすることができ、したがってデータのより正確な送信を可能にします。固定減衰器は、シングルモード、マルチモード、および偏光維持ファイバで利用できます。また、LAN(ローカルエリアネットワーク)、CATV(コミュニティアクセステレビ)、通信ネットワークなど、さまざまなアプリケーションでシングルモードファイバーコネクタを減衰させるのに理想的です。

可変光ファイバ減衰器

可変光ファイバー減衰器は、テストと測定、または異なる信号間の電力​​の均等化に使用される頑丈なハンドヘルドデバイスです。柔軟な調整でさまざまな減衰値を提供できます。可変減衰器はビームを直接遮断することで機能するため、偏光の影響を受けません。固定減衰器と同様に、可変光減衰器もシングルモード、マルチモード、または偏光維持ファイバで提供されます。

結論

光ファイバ減衰器は、光通信システムの重要なコンポーネントです。光信号レベルを調整して、ネットワークの柔軟性を高め、光パワーの管理を提供できます。固定光ファイバー減衰器と可変減衰器の他に、ループバック減衰器、内蔵可変減衰器など、他の多くのタイプの減衰器があります。

Guide to Fiber Optic Attenuator

Fiber optic attenuators are devices that precisely decrease the optical power in fiber links by a fixed or adjustable amount. They can not only control the power level of optical signals, but also are used to test the linearity and dynamic range of photo sensors and photo detectors. Fiber optic attenuator has a number of different forms and is typically divided into fixed or variable attenuators. What’s more, they can be classified as LC, SC, ST, FC, MU, E2000 etc. according to the different types of connectors. This article will make a brief introduction of fiber attenuator to help you better understand it.

Why We Need Fiber Optic Attenuator?

As is known to all, the optical power at the receiver ultimately decides the ability of any fiber optic system to transmit data. But it isn’t the fact that the bigger signal power level is better. The truth is that either too little or too much power will cause high bit error rates. Too much power can make the receiver amplifier saturates, while too little will cause noise problems as it interferes with the signal.

Typically, the receiver power depends on two basic factors: the power launched into the fiber and the lost power by attenuation in the optical fiber cable plant. When the power is too high, fiber optic attenuator can help by reducing receive power for better performance. Generally, multimode systems do not need optical attenuators because they barely have enough power output to saturate receivers. While single mode systems, especially for short links, desperately need attenuation because they often have too much power. But nowadays, the complexity of telecommunications requires attenuation both in single mode and multimode systems.

Operating Principles of Fiber Optic Attenuator

There are many methods of power attenuation, including absorption, reflection, diffusion, scattering, deflection, diffraction, and dispersion, etc. Optical attenuators usually operate by absorbing the light, like a neutral density thin film filter. Or they work by scattering the light such as an air gap. Another type of attenuators uses the length of high-loss optical fiber, that operates upon its input optical signal power level in such a way that its output signal power level is less than the input level.

Fixed Fiber Optic Attenuators VS Variable Optical Attenuators

Fiber optic attenuators can be divided into two categories: fixed optical attenuator and variable attenuator. Both of them have unique characteristics.

Fixed Fiber Optical Attenuators

Fixed optical attenuators are compact adapter styles that can reduce signals by a specific amount. As the signal approaches a device or node in a communication link, the power is reduced to a level that is suitable for its application. They can make signal reflection less of an issue and therefore make for more accurate transmissions of data. Fixed attenuators are available with single mode, multimode and polarization maintaining fiber. And they are ideal for attenuating single mode fiber connectors in various application, such as LAN (Local Area Network), CATV (Community Access Television) and telecommunication networks.

Variable Fiber Optical Attenuators

Variable fiber optic attenuators are rugged, hand-held devices that are used for testing and measurement, or equalizing the power between different signals. They can offer a range of attenuation values with flexible adjustment. Because variable attenuators work by directly blocking the beam, they are polarization insensitive. Like fixed attenuators, variable optic attenuators are also offered with single mode, multimode, or polarization maintaining fibers.

Conclusion

Fiber optical attenuators are key components in optical telecommunication systems. They can adjust optical signal levels to increase network flexibility and providing management of optical power. Besides fixed fiber optical atternuators and variable attenuators, there are many other types atternuators, such as loopback attenuators, built-in variable attenuators and so on.

100G QSFP28 Transceivers Introduction

The 100G QSFP28 modules are the most popular 100G transceivers on the market today. Among many factors, this is primarily due to their low production cost, efficient size, and high output. This article is going to go over the specs, versions and details that make the QSFP28 market giant that it is today.

fiber-mart.com currently manufactures mainly 4 modules of the 100GB QSFP28: SR4, LR4, CWDM4, and IR4 PSM. Let’s look at what each one provides.

The runt of the 100GB transceivers is the the SR4. While SR stands for “short range” the transceiver still outputs the same 100GB/s speeds as the other drives. QSFP28 SR4 transceiver uses an MTP/MPO interface, using a multi-mode cable for short distances. Both the IR4 PSM and the SR4 use a 12-fiber MTP/MPO patch cable. The advantage of the SR4 is its economical price point. While it doesn’t have the longest distance, it does provide the same top quality speed, only for a fraction of the cost of the higher-end modules. And like all fiber-mart.com modules, it is fully tested on Cisco & Accton devices for application. fiber-mart.com has SR4s in-stock and ready for delivery.

QSFP28 LR4

The top end of the QSFP28 product line is the LR4. The LR4 is a full duplex LC module that provides everything you could want in a transceiver. The duplex function allows the LR4 to work as both a transmit and receive path in one module. On the transmit side, 4 lanes of high-end optical signals push out over a staggering 25GBps per lane. On the receive side, the 4 lanes can de-multiplex data streams with a fully integrated de-multiplexer, transforming that data into CAUI-4 electric output. The module has a maximum link length of 10km and operates on 1 single-mode fiber cable with duplex LC connector. All fiber-mart.com LR4 modules have been fully tested on Cisco & Accton devices to make sure they work on your system. This is the best of the line in 100GB transceivers from fiber-mart.com. We always have them in-stock and provide lightning fast delivery.

QSFP28 CWDM4

Along with the LR4, the CWDM4 is another full duplex LC module. Along with the LR4, it pushes out over 100GB from its 4 lanes of high-end optical transmitters and de-multiplexes with the same fully integrated de-multiplexer. The advantage of both the LR4 and CWDM4 modules is the easy of which upgrading can be done. Both modules run on common single-mode duplex LC patch cable requiring no need to replace all of those fiber patch cables. That saves money, headaches and downtime with trying to replace all of that cable. You can also save space with removable “push-pull” tabs. Like all fiber-mart.com modules, it is fully tested on Cisco & Accton devices. The main difference between the CWDM4 to the LR4 is the maximum link length with the CWDM4 having a max length of 2km, suitable for most common demands.

QSFP28 IR4 PSM

Moving from our duplex LC modules, we get the IR4 Parallel Single Mode Transceiver. The IR4 is an MTP/MPO interface transceiver with 4 independent full-duplex lanes. Along with its LC brothers, it puts out at over 25GB/s per transmit lane and converts input signals with its parallel optical receiver lanes. The transceiver accepts input signals compatible with Common Mode Logic (CML) levels. You also don’t need to sacrifice distance with a 2km range. The IR4 PSM uses single-mode cable meaning it can work over long distances. Like all fiber-mart.com modules, it is fully tested on Cisco & Accton devices. The IR4 PSM is a great choice for customers that don’t want to upgrade to the more expensive LC modules but still high quality speed and distance.