Showing posts with label NIC. Show all posts
Showing posts with label NIC. Show all posts

Thursday, March 22, 2012

Bandwidth Management Gets Easier With Ethernet

Bandwidth demand can be all over the map. It goes up, it comes down. It’s fine now but could go parabolic in 6 months to a year. Or not. How can an IT manager ensure that adequate resources are in place when needed without paying through the nose for idle resources?

Bandwdith management gets easier with Ethernet...Exacerbating this problem is the procurement and provisioning process that worked better in less volatile times. Typically a need is identified, a budget is created, approved and released, requests for quotes go out, vendors are narrowed down, a purchase order is cut, it winds its way through the carrier’s front office, eventually resulting in an installation, turn-up and the start of billing. If something happens and you need more, the whole process starts all over.

In a way, the whole system is tuned to match the technical characteristics of circuit switched line services. Take a T1 line, for instance. You order the line and you get 1.5 Mbps. No more, no less. If you only need 500 Kbps right now, the other 1000 Kbps goes to waste. You have to pay for the entire 1,500 Kbps because the day is coming soon when you’ll fill that pipe and you need to be ready.

The same is true for DS3, OC3, OC12, OC48 and other traditional telecom services. Moving from one of these to the other, up or down, is a major deal. DS3 is nothing like T1. If you need DS3, you’ll have a completely different demarcation connection from the carrier and you’ll need a completely different interface card for your edge router. It’s a major bandwidth jump, too. You’re moving from 1.5 Mbps up to 45 Mbps.

Not enough? The next jump is to OC3 SONET fiber at 155 Mbps. Once again, there is a long procurement and installation process with unique equipment for a particular service level. If you failed to order enough bandwidth, you’ll be dealing with network congestion for some time. If you way over-order, you’ll be paying a pretty price for a largely empty pipe.

Is there anything that can take some of the risk out of bandwidth management? You bet there is. It’s called Carrier Ethernet.

Carrier Ethernet services are fairly new compared to T-Carrier or SONET. They are available for metro, long haul and access networks. Carrier Ethernet is often touted as a technology that can link company LANs at two or more locations. It has an easy interface which is the same Ethernet connection used on your LAN, copper or fiber.

If that wasn’t enough, Carrier Ethernet costs are generally less than equivalent bandwidth levels for T-Carrier or SONET. It is not unusual to get twice the Mbps for the same money as you are currently paying for legacy telecom services. This cost savings is compelling, but may not even be THE important reason to embrace Ethernet in the MAN and WAN.

What Ethernet offers that other protocols don’t is easy scalability. Ethernet MAN and WAN networks are being designed for rapid remote management so that no truck rolls are needed when a customer wants more or less bandwidth. It’s all done at a computer screen so that you can pick up a phone can request a move from, say, 10 to 15 Mbps or 100 to 150 Mbps and you’ll have the extra resources available in as little as a few hours.

Carrier Ethernet is set up something like your LAN in that there are standard port speeds. You know that your switches, routers and PCs all have NICs (Network Interface Cards) with specs of 10 Mbps, 100 Mbps, 1000 Mbps or 10 Gbps. Usually, its some combination like 10/100/1000. The Ethernet port that you order installed will generally be 100 Mbps or 1000 Mbps, although it could be 10 Gbps if you really need that much. As long as you stay below the maximum capacity of the port, you can have just about any bandwidth level you want.

Very low bandwidths may have increments of 1 Mbps to 10 Mbps. Higher bandwidths might go up in jumps of 100 Mbps. Carrier Ethernet gives you a lot more choices so that you can more closely match the bandwidth you are paying for to the bandwidth you need. The ability to rapidly scale up that bandwidth means that you don’t have to order too much in anticipation of need. Get a port that will handle what you can reasonably expect to require but only order the bandwidth level you need to handle current business activity. If you suddenly enjoy a flood of customers or need to support a new video distribution, you can make that call and get the extra resources when you need them.

The result, clearly, is a major cost savings in not be over-provisioned for bandwidth plus less stress in worrying about what you have to do to be ready for tomorrow’s needs. Could your operation benefit from having this capability? If so, get prices, features and availability of Carrier Ethernet bandwidth services for your business locations.

Click to check pricing and features or get support from a Telarus product specialist.




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Wednesday, November 16, 2011

Gigabit Ethernet Port Scales WAN Bandwidth

When you are ready to make the move from copper to fiber bandwidth levels or upgrading an OC-3 SONET service, you are faced with a choice. What level of bandwidth do you install?

Plan ahead for your bandwidth growth needs.Why not give yourself flexibility for the future and the opportunity to pay only for what you need right now? This is what a Ethernet port strategy can do for you.

Scalability is a new idea in business telecom services. When you install a T1 line, it requires a very specific T1 interface that include a CSU/DSU circuit unique to the T1 line specifications. Upgrade to a T3 line (DS3 bandwidth) and you’ll find that you can’t just plug that T3 into your T1 router. The interface is completely different. Even the connecting cable is different. With DS3 you are looking at a pair of coaxial BNC connectors that don’t support any other service. Now, make yet another move on up to OC-3 service. Your router interfaces for T1 and T3 are no good. You need a fiber input to your router.

It doesn’t get any better when you start moving up the fiber optic hierarchy. You can’t just plug OC-12 or OC-48 into an OC-3 port and have everything spring to life. They are different services requiring modifications. You’ll likely need a new interface card and programming changes to your router. If you have a managed router, that probably means a truck roll to your premises to swap out the CPE (Customer Premises Equipment).

In the back of your mind, you must suspect it doesn’t have to be this way. Those new PCs have NICs (Network Interface Cards) labeled 10/100/1000 Mbps. That means that you can plug them into any LAN running at up to 1 Gbps and they’ll work just find. Even the connector takes the same RJ-45 patch cord. Wouldn’t that approach be far superior for WAN connections too?

This is the beauty of Carrier Ethernet, which includes Metro Ethernet, MPLS network access and long haul point to point connections. Ethernet beyond the LAN has been designed to be as flexible as Ethernet on the LAN.

One of Ethernet’s best features as a bandwidth service is ease of scaling. If you are running 50 Mbps service and find your needs have increased so that you now need 100 Mbps, you can just call up your service provider and request an upgrade. In a matter of hours or a day or two at the most, your WAN network speed will double. In that time, no one has knocked on the door with a new router under their arm. In fact, you haven’t seen anyone from the service provider. It was all done over the phone.

There is a trick to making this work. The magic is all in the installed Ethernet port. When you order Ethernet service, make sure that you have a port installed that will support the highest bandwidth you reasonably expect to be ordering down the road. Most ports are the standard Ethernet speeds of 10 Mbps, 100 Mbps and 1,000 Mbps. It’s also possible to get a 10,000 Mbps or 10 GigE port with a suitably fast managed router if your needs are that high.

With Ethernet over Copper, you are probably looking at a 100 Mbps Ethernet port at most. Be sure you know just what your maximum speed will be, because EoC is distance limited and requires more copper pairs as speed increases. Ask what bandwidth your installation will support compared to what you are ordering initially.

With Ethernet over Fiber, it likely makes sense to install a Gigabit Ethernet port. The fiber itself has more capacity that you are ever likely to employ. The speed of the port will be the limiting factor, along with the capability of the carrier’s equipment that feeds that port. Once again, it is smart to plan for the future but buy for today. Get the bandwidth you need now, but be sure that the system is engineered to allow for fast and easy upgrades as you need them. That will be especially handy if you get hit with a sudden increase in traffic or a need to support massive amounts of video or enormous file transfers that you didn’t anticipate.

Are you ready for a bandwidth upgrade, but unsure of what commitment to make? Give yourself some breathing room with a Gigabit Ethernet port and the ability to scale up your bandwidth as needed. Get prices and availability of Ethernet ports and line speeds now.

Click to check pricing and features or get support from a Telarus product specialist.




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Wednesday, May 26, 2010

From LAN to MAN to WAN

We’re in something of a network revolution right now. Computer networking has deployed many different protocols for communication. Some of these have been borrowed from the telephone industry. But there’s a consolidation underway that is moving toward a single IP networking standard. From LAN to MAN to WAN, it’s all headed toward IP.

Best pricers on LAN to MAN to WAN bandwidthThe standardization really started in the LAN or Local Area Network. Nearly all LANs are now constructed using Ethernet network interfaces? It’s not that other network architectures don’t have merit. It’s simply economy of scale. Perhaps the PC, more than anything else, helped to settle the issue with 10/100 Mbps NICs (Network Interface Cards) being included as standard equipment. Today’s faster machines offer 10/100/1000 interfaces with RJ-45 as the standard connector. If you want anything else, you have to pay extra.

This economy of scale encompasses not only desktop computers, but laptops, network switches, routers, servers, cabling and various appliances. The higher the volume produced, the cheaper each interface circuit becomes. Until something very much better comes along, Ethernet is the low cost solution.

The situation has been quite different beyond the company premises. The telephone industry has about a 100 year lead on the computer industry. If you’ve wanted to connect two business locations together or join the Internet, you had to convert your Ethernet protocol to something the telephone system could understand. Remember dial-up modems? Today’s equivalent is the T1 line. It’s all digital and offers rock solid 1.5 Mbps connectivity, but it’s a telco standard service.

The LAN to MAN or WAN connection is most often made with an interface called a CSU/DSU. This can be a stand alone box or a card that plugs in an edge router. It provides the protocol and signal level conversion between Ethernet on the LAN and T1 line connecting through the central office.

More recently, the T1 connection and faster speed DS3 and OCx services have been challenged by the rise of Metro Ethernet services. With MetroE, you connect directly from your Ethernet LAN to an Ethernet MAN and back again at other locations around town. Since this is a Level 2 switched service, it’s like having a way to expand your LAN over a much larger area to include other offices, a factory, warehouses, and an offsite data center.

Metro Ethernet melds LAN and MAN with one common service protocol. But what about the WAN or wide area needs? WANs often encompass regional areas of the country or even the entire US. Very large WANs include locations around the world. These, too, can now be joined by Ethernet through MPLS networks. While MPLS has an IP core, it uses its own tag switching system instead of IP routing while on the network. But being a multi-protocol system, it can easily transport Ethernet. Some larger providers have national and international service footprints, making it easier than ever to connect from LAN to MAN to WAN.

Are you interested in maximizing the efficiency of your metropolitan and wide area network services while minimizing your costs? You should get a quick quote on MAN & WAN Network Bandwidth to see how much you could be saving.

Click to check pricing and features or get support from a Telarus product specialist.




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