Premier Datacom

Premier Datacom, Inc 1500 Village West Dr. Suite M002Austin, TX 78733 Services: Structured communications consulting, design, installation & certification Cat5e, Cat 6, Cat 6A, SM & MM Fiber installation Allworx Certified Partner, ICC Elite Certified Installers Network design & installation, Cisco, HP, DLink Hosted Voice solutions, SIP trunk installations

Areas Covered:

Central Texas Area

Thomas Young Communications

Thomas Young Communications 1123 Brockman Dr. SE Cedar Rapids, IA 52403 Services: Structured cable, telephone, VoIP, T1, DSL, wireless networks, rack/stack, router configuration, access control, video surveillance, break-fix. 25 years experience. Areas Covered: Generally serving a 100 mile radius from Cedar Rapids, Iowa. Am willing to travel outside of this radius depending on size of project.

A & S Integrated Services

A & S Integrated Services 7325 County Line Road Willis, TX 77378 Services: We provide voice and data cabling (full infrastructure installations, add moves & changes, repairs) network hardware installations, telephone system/PBX support (installation, programming & maintenance)

Areas Covered:

We service the South Texas region. (including greater Houston area, Austin, Beaumont, Victoria and Dallas)

Terre Haute

Terre Haute Carlos Saucer Sp. 3455 Wallace Ave Indianapolis, Indiana 46218 Services: Computer Troubleshooting – Wireless Network Security Areas Covered: Indiana

Austin SoneraCom

Austin SoneraCom 3131 McKinney Avenue Dalla, TX 75204 Contact: Syres Whitfield Phone: 972-588-8158 Email: operations@soneracom.com Services: SoneraCom has extensive experience in Fiber Optics, IT Management, Structured Cabling, Rack and stacks, Custom patch cables, Smart hands Tickets, Cabinet installs, Ladder Racks, Fiber Trough, Data Center moves, Fusion Splicing and all of your data, voice, storage, network security and telecommunications needs. Areas Covered: Dallas, Plano, Richardson, Frisco, Denton, Lewisville, Mesquite, Grand Prairie, Arlington, Carrollton, Ft. Worth, Houston, Austin

South Bend

South Bend Carlos Saucer Sp. 3455 Wallace Ave Indianapolis, Indiana 46218 Services: Computer Troubleshooting – Wireless Network Security Areas Covered: Indiana

Indianapolis

Indianapolis Carlos Saucer Sp. 3455 Wallace Ave Indianapolis, Indiana 46218 Services: Computer Troubleshooting – Wireless Network Security Areas Covered: Indiana

Global Data Systems

Global Data Systems 537 Cajundome Blvd., Suite 111 Lafayette, LA 70506 Services: Structured cabling, low voltage cabling, fiber, access control, video surveillance, trenching and boring, aerial cable, hardware integration deployment, facilities-based telecommunications services, satellite telecommunications and Datacenter services. Areas Covered: Louisiana, Mississippi, Texas, Alabama, Arkansas.

Fort Wayne

Fort Wayne Carlos Saucer Sp. 3455 Wallace Ave Indianapolis, Indiana 46218 Services: Computer Troubleshooting – Wireless Network Security Areas Covered: Indiana

Bloomington

Bloomington Carlos Saucer Sp. 3455 Wallace Ave Indianapolis, Indiana 46218 Services: Computer Troubleshooting – Wireless Network Security Areas Covered: Indiana

Worldview Technologies

Worldview Technologies 26595 Evergreen Rd. Southfield , MI 48076 Services: Voice, Data, Structured cabling IP Security & Access Control Phone System – Paging Network Design & Support Directional Boring – Trenching Areas Covered: Michigan, Ohio, Indiana, Atlanta

PIck Telecom Solutions

PIck Telecom Solutions PO Box 1471 Kyle , Texas 78640 Services: Structured cabling, cat5, cat5e,cat6. Installing and serving phone systems and VoIP phone systems. Areas Covered: Austin, San Antonio and surrounding cities.

San Antonio

San Antonio Absolute Communications 2333 Pollex Avenue Corpus Christi , TX 78415 Services: VOIP, Structured Cabling, Video Surviellance, Hosted Services, Virtualization, Video Conferencing Areas Covered: South Texas including Corpus Christi, Alice, Kingsville, Beeville, Sinton, Port Aransas, Aransas Pass, Rockport. Basically a 200 mile radius around the 78415 zip code.

The Basics of Structured Cabling

The Basics of Structured Cabling
Here at Outsource.net, we supply the best qualified installers for the Structured Cabling industry. We deploy teams of qualified installers of all levels to your projects on request across the country on a national basis. We supply systems technicians, project managers RCDD, and CAD and engineering personnel. Our focus on the Structured Cabling industry allows us to source and retain the best pre and post screened talent to help you complete your projects on time and under budget. Call or email us now, if you need one technician or multiple crews on your jobsite(s).

The Basics of Structured Cabling

A structured cabling system is a complete system of cabling and associated hardware, which provides a comprehensive telecommunications infrastructure. This infrastructure serves a wide range of uses, such as to provide telephone service or transmit data through a computer network. It should not be device dependent.
We further define a structured cabling system in terms of ownership. The structured cabling system begins at the point where the service provider (SP) terminates. This point is the point of demarcation (demarc) or Network Interface Device (NID).
For example, in a telephone system installation, the SP furnishes one or more service lines (per customer requirements). The SP connects the service lines at the point of demarcation.

Every structured cabling system is unique. This is due to variations in:
• The architectural structure of the building, which houses the cabling installation;
• The cable and connection products;
• The function of the cabling installation;
• The types of equipment the cabling installation will support — present and future;
• The configuration of an already installed system (upgrades and retrofits);
• Customer requirements; and
• Manufacturer warranties.

The methods we use to complete and maintain cabling installations are relatively standard. The standardization of these installations is necessary because of the need to ensure acceptable system performance from increasingly complex arrangements.

The U.S. cabling industry accepts the American National Standards Institute (ANSI), in conjunction with TIA/EIA, as the responsible organization for providing and maintaining standards and practices within the profession. It has published a series of standards to design, install, and maintain cabling installations. These help to ensure a proper cabling installation.

The benefits of these standards include:
• Consistency of design and installation;
• Conformance to physical and transmission line requirements;
• A basis for examining a proposed system expansion and other changes; and
• Uniform documentation.

The industry standard term for a network installation that serves a relatively small area (such as a structured cabling installation serving a building) is a local area network (LAN). There are also metropolitan area networks (MANs) and wide area networks (WANs).

Structured cabling installations typically include: entrance facilities; vertical and horizontal backbone pathways; vertical and horizontal backbone cables; horizontal pathways; horizontal cables; work area outlets; equipment rooms; telecommunications closets; cross-connect facilities; multi-user telecommunications outlet assemblies (MUTOA); transition points; and consolidation points.

The entrance facility includes the cabling components needed to provide a means to connect the outside service facilities to the premises cabling. This can include service entrance pathways, cables, connecting hardware, circuit protection devices, and transition hardware.

An entrance facility houses the transition outside plant cabling to cabling approved for intrabuilding construction. This usually involves transition to fire-rated cable. The entrance facility is also the network demarc between the SP and customer premises cabling (if required). National and regional electrical codes govern placement of electrical protection devices at this point.

The location of the entrance facility depends on the type of facility, route of the outside plant cabling (e.g. buried or aerial), building architecture, and aesthetic considerations. The four principal types of entrance facilities include underground, tunnel, buried, and aerial. (We will cover only aerial entrances in this article.)

In an aerial entrance, the SP cables provide service to a building via an overhead route. Aerial entrances usually provide the lowest installation cost, and they’re readily accessible for maintenance. However, they’re subject to traffic and pedestrian clearances, can damage a building’s exterior, are susceptible to environmental conditions (such wind and ice), and are usually joint-use installations with the power company, CATV company, and telephone or data service providers.

Backbone cabling. From the entrance facility, the structured cabling network branches out to other buildings, as well as from floor to floor within a building on the backbone cabling system. We use the term backbone to describe the cables handling the major network traffic.

The ANSI/TIA/EIA-568-A standard defines backbone cabling as follows: “The function of the backbone cabling is to provide interconnections between telecommunications closets, equipment rooms, and entrance facilities in the telecommunications cabling system structure. Backbone cabling consists of the backbone cables, intermediate and main cross-connects, mechanical terminations, and patch cords or jumpers used for backbone-to-backbone cross-connection. Backbone cabling also includes cabling between buildings.”

Interbuilding and intrabuilding are two types of backbone cables. Interbuilding backbone cable handles traffic between buildings. Intrabuilding backbone cable handles traffic between closets in a single building.

This standard identifies two levels of backbone cabling. First-level backbone is a cable between a main cross-connect (MC) and intermediate cross-connect (IC) or horizontal cross-connect (HC). Second-level backbone exists between an IC and HC.
The main components of backbone cabling are:

  • Cable pathways: shafts, conduits, raceways, and floor penetrations (such as sleeves or slots) that provide routing space for the cables.
  • The actual cables: optical fiber, twisted-pair copper, coaxial copper, or some combination of these. (Note: You should avoid areas where potential sources of EMI or electromagnetic interference may exist when planning the routing and support structure for copper cabling.)
  • Connecting hardware: connecting blocks, patch panels, interconnections, cross-connections, or some combination of these components.
  • Miscellaneous support facilities: cable support hardware, firestopping and grounding hardware. Note: The terms horizontal and backbone (previously called riser) evolved from the orientations typical for functional cables of these types. However, the physical orientation of the cabling has no bearing on classifying the cable as horizontal or backbone.
    The useful life of a backbone cabling system consists of several planned growth periods (typically three to 10 years). This is shorter than the life expectancy of the premises cabling system.

Cabling connectors. A connector is a mechanical device you use to interface a cable to a piece of equipment or one cable to another. The role of the connector is to provide a coupling mechanism that keeps loss to a minimum.

In the case of fiber, it allows light impulses to transfer from one connector to another. For copper, it allows electrical signals to transfer from one connector to another.

A good connection requires aligning the connectors, preventing the connectors from unintentional separation, and efficient transferring of light or electricity from one connector to the other.

A connector demonstrates durability by withstanding hundreds of insertion and withdrawal cycles without failing. We calculate this as mean time between failures (MTBF).

Connectors are as essential to the integrity of the entire telecommunications network as is the cable itself. Connectors align, attach, and decouple the media to a transmitter, receiver, another media of same or similar type, an active telecommunications device, or a specified passive telecommunications device.

How to become a structured cabling contractor

How to become a structured cabling contactor

Becoming a structured cabling contractor involves much more than just having the basic knowledge of how to build, install or fix structured cabling systems. Just like every other profession, merely having the basic knowledge of what a profession entails, gives you nothing more than a beginner’s edge. I’m not saying it’s not necessary to have the basic knowledge of what the profession is about, I’m only trying to point out that having just the basic knowledge is actually never going to be enough.

There are quite a number of documents you need to have to become a structured cabling contractor. These documents are very important because prospective clients and organizations who require your services will unfailingly ask you for them. Moreover, some of these documents can be expected from any contractor regardless of discipline or specialization, it doesn’t matter if they are only installing HVAC, electrical power, plumbing or even lighting, these documents should be readily available and produced upon requests. But to become a structured cabling contractor, you need to have more than these documents in your possession. This brings us to the question I’m sure you’re already asking yourself.

What is this document? Or better still what are these documents?

Well, here are a few:

License:
To become a structured cabling contractor, you need to have a license. I’m sure I don’t need to explain to you how important this document is. Your license portrays the most necessary information about your profession and it assures prospective clients that you’re not just some fraud trying to pose as a structured cabling contractor. It shows that you have the authority to undertake structured cabling projects and you’re overly qualified to deliver expected results.

Insurance:
To become a structured cabling contractor, you need have full insurance against uncertainties relating to your profession. Unfortunate situations are bound to happen unexpectedly, which could leave you devastated and probably go on to wreck your business or practice especially if you have no insurance. Having full insurance helps you guide against this.

Professional Certifications:
To be fully qualified, most times your license is not just enough. Most clients would want to see one form of professional certification or the other e.g. BICSI certifications etc. These certifications are important because they serve as endorsements from widely renowned and profoundly honored professional organizations related to your discipline. For example, BiCSi certifications are used to guarantee industry performance standards. So having all or some of these certifications puts you forward as a force to be reckoned with amongst structured cabling contractors.

Apart from having the aforementioned documents, there are also some things you need to know how to do to become a structured cabling contractor. Some of them include;

Blueprints:
You need to know how to create comprehensive blueprints. These blueprints should be comprehensive enough to show everything concerning the system installation. They should also include a set of instructions. You have to make sure your blueprints are fully detailed, try as much as possible to leave nothing out.

Testing and Certification:
You need to know how to test and certify your cabling installations. This is because Testing and certification results prove to you that the system was installed properly and it matches the required specifications. Also, through the readings you get from testing, you can easily tell if something is not right and quickly resort to your blueprints to troubleshoot, locate and fix the problem.

I hope this article has been able to show you one or two new things on what it takes to become a structured cabling contractor.

If you have questions or require more information, please do not hesitate to contact us