How to Choose the Right Fiber Optic Transceiver
With the rapid development of optical communication, there are more and more fiber optic transceivers appearing in the market to meet users’ demand to achieve various transmission rates. With so many options available, maybe you are wondering what you should pay attention to during the purchase process. This post will concentrate on the things you should know before choosing an optical transceiver, including form factors, fiber mode, etc. and I hope it can be helpful.
Basics of Fiber Optic Transceiver
Fiber optic transceiver, also called optical module, is a device that uses fiber optical technology to send and receive data. It uses electronic components to condition and encodes/decode data into light pulses and then sends them to the other end as electrical signals. As a core component in optical communication, fiber optic transceiver is widely applied in LAN, FTTH, SDH/SONET, etc. With 5th Generation wireless systems (5G) being deployed these days, the demand for high-rate optical transceivers will be increasing, especially for 100G, 200G or even 400G optical transceiver. Anyway, it’s necessary for you, who are about to choose an optical transceiver, to consider the following points.
Eight Points for Choosing Transceiver
Form Factors
Since the first optical transceiver comes on the scene, it has been constantly updated to be smaller and supports a higher data rate. Some types such as GBIC and X2 have been superseded by the newer ones. The common types that are widely used currently are 1G SFP, 10G SFP+, 40GQSFP+, 100G QSFP28, and so on. As the multi-source agreement (MSA) defines the operating characteristics of different kinds of fiber optic transceivers, it’s necessary to make a comparison among them and then choose the right one.
Fiber Mode
There are two types of fiber transceivers—Single mode fiber transceivers and multimode fiber transceivers, which are required to work with single mode fiber/multimode fiber. Most single mode fiber transceivers can work with both single mode and multimode fibers. Single mode optical fibers have a small core and the single light push virtually eliminates any distortion, thus extending the transmission distance farther than multimode optical fibers. While multimode transceivers only receive and transmit data using multimode fiber cables. It’s possible to use single mode transceiver over multimode fibers for a short distance but the signal loss is not acceptable. In a word, it is feasible but not advisable.
Transmission Distance
Generally, different fiber optic transceivers support different transmission distances. The major difference lies in the type of transceivers and fiber type. For instance, 10GBASE-LR SFP+ optical transceiver can reach up to 10km on OS2 while 10GBASE-SR SFP+ optical transceiver can only reach up to 300m when connecting with OM3. What’s more, as for multimode fiber, the transmission distance is influenced by fiber type. For example, when 100GBASE-SR is connected with OM4, up to 400m link lengths are possible, which is longer than OM3 for 300m. Besides, due to the attenuation and dispersion in the transmission, the exact distance that optical fiber can reach is limited. Therefore, you are recommended to choose transceivers that support slightly longer transmission distance than the distance you actually need.
Data Transmission Rate
The data rate largely depends on the bandwidth. There are six commonly used date rate: 155Mbps, 1.25Gbps, 2.5Gbps, 10Gbps, 40Gbps, and 100Gbps. Among them, a 155M fiber optic transceiver is referred to as FE, and 1.25G fiber optic transceiver is also called GE. Though nowadays data centers are based on 10G Ethernet architectures, the demand for higher speed and performance keeps increasing. 40G and 100G are expected to hold a larger fraction of the market share. Meanwhile, higher-speed 200G and 400G, though not mature yet, proves promising, indicating that demand for higher speed will never end in the data center.
Wavelength
Common wavelength usually comes from the range of 850 nm to 1610 nm. Following are the three common wavelengths:
850nm: Multimode, low cost but short transmission distances, generally from 300-500m.
1310nm: Single mode, high fiber attenuation loss but little dispersion, generally for distances within 40km.
1550nm: Single mode, low fiber attenuation loss but great dispersion, generally for distances above 80km.
Compatibility
Compatibility is a crucial part to consider before purchasing a fiber optic transceiver. According to MSA (Multi-source agreement), most third-party transceivers are assembled the same specifications as first-party equipment, except for the vendor label and the price you would pay. If you search the price of transceivers by Google, you would find that third-party transceivers cost less than OEM brands. As you can match optics from various third-party vendors with OEM switches as long as they are compatible, making sure the transceiver you want is compatible with switches becomes necessary. Now there are many mature third-party suppliers in the market that provides long time warranty and technical support. FS, as one of them, provides optical transceiver tested in original brand switches to ensure the compatibility and performance of every product.
Operating Temperature
Operating temperature is also a vital part that you need to confirm before choosing a fiber optic transceiver. Optical transceiver itself will produce heat while being in use. Meanwhile, if the optical transceiver is used in a harsh environment, the temperature of the optical transceiver will inevitably change with the ambient temperature. There are three optical module temperatures: Commercial, industrial and extended, corresponding with a different temperature range. Make sure your choice is acceptable for the environment.
Price
Perhaps you’ve been aware that the price of fiber optic transceivers varies among different vendors or brands. As mentioned above, it is feasible to use a third-party transceiver instead of the first-party one. Third-party transceivers can not only work as well as first-party transceivers but also save a large amount of money. So take your budget into consideration and check how much you would like to pay. If you are considering to choose a third-party product, authentic suppliers and high-quality products are recommended for long running.
Conclusion
In sum, it’s better to contrast and think twice before purchasing an optical transceiver for there are plenty of elements to be considered as mentioned above. If you are looking for a reliable fiber optic transceiver, FS.COM may be your ideal choice. As a professional manufacturer and supplier of compatible optical transceiver, we provide high-value products and services. For more details, visit www.fs.com.











