显示标签为“fiber optic products”的博文。显示所有博文
显示标签为“fiber optic products”的博文。显示所有博文

2012年11月8日星期四

How Do Fiber Optic Couplers Work?


Fiber optic couplers either split optical signals into multiple paths or combine multiple signals on one path. Optical signals are more complex than electrical signals, making optical couplers trickier to design than their electrical counterparts. Like electrical currents, a flow of signal carriers, in this case photons, comprise the optical signal. However, an optical signal does not flow through the receiver to the ground. Rather, at the receiver, a detector absorbs the signal flow. Multiple receivers, connected in a series, would receive no signal past the first receiver which would absorb the entire signal. Thus, multiple parallel optical output ports must divide the signal between the ports, reducing its magnitude. The number of input and output ports, expressed as an N x M configuration, characterizes a coupler. The letter N represents the number of input fibers, and M represents the number of output fibers. Fused couplers can be made in any configuration, but they commonly use multiples of two (2 x 2, 4 x 4, 8 x 8, etc.).

The need for fiber optic couplers

We use electronic couplers all the time: such as a telephone coupler which lets you connect both a telephone and a fax machine to the same telephone line. Or a CATV coupler which lets you connect several TV sets to a single cable from Comcast. Basically you can buy these couplers from Home Depot or other electronic retailers.

Optical couplers have the same functionality as electronic couplers: They split the signal to multiple points(devices). Fiber optic couplers are needed for tapping(monitoring the signal quality) or more complex telecommunication systems which require more than simple point-to-point connections, such as ring architectures, bus architectures and star architectures.

Passive couplers and active couplers

Fiber optic couplers can be either active or passive devices. The difference between active and passive couplers is that a passive coupler redistributes the optical signal without optical-to-electrical conversion. Active couplers are electronic devices that split or combine the signal electrically and use fiber optic detectors and sources for input and output.

The difference between electronic couplers and fiber optic couplers

Electronic couplers are easy to make because electric current flows as long as you have physical contact between conductors. But optical signal is in a completely different domain. You have to align the tiny optical fiber cores precisely (9um for single mode and 50um or 62.5um for multimode fibers), so there won't be a huge power loss when you split the signal.
FiberStore offers a wide range of fiber optic products including Optical Transceiver, CWDM Mux/Demux, CWDM OADM , DWDM Mux/Demux , DWDM OADM , PLC Splitters, Fiber Patch Cable, Optical Pigtails, Fiber Optic Connectors, Fiber Adapters, Outdoor Fiber Cables, Indoor Fiber Cables,GPON SFP,ONU SFF, ONU SFP,ONU SFP,GEPON SFP,ONU SFF,ONU SFP,ONU SFP,Video SFP,QSFP, Fiber Media Converter, Optic Video Transmitter & Receiver, Fiber Optic Modem, Fiber Patch Panel, Fiber Optical Enclosures, Optical Terminal Box, Fiber Splice Closure, Fiber Optic Tester, Fiber Optic Splicer, Fiber Optic Tools, Fiber Optic Polishing, Fiber Optic Inspection, Fiber Optic Cleaning, Fiber Optic Accessories and etc.

2012年10月10日星期三

576 Core Floor-mount SMC Fiber Optic Cross Connect Cabinet FiberStore Supplies


Description
Fiber optic cross connect cabinet is an outdoor optical equipment that is especially designed for outdoor optical nodes in access network. 576 Core Floor-mount SMC Fiber Optic Cross Connect Cabinet this product just need $730.
Key Features
High intensity and anti-erosion performance
Able to counter abrupt climate change and extreme environment
Capacity can be flexibly customized as required
Quick and convenient installation
Built-in direct splice unit is capable for providing direct connection function
Perfect design of fiber wiring routing could facilitate management and maintenance of fibers
With secure and reliable fastening and grounding protection devices for the optic fiber
Applicable to strap-shaped and non-strap shaped fibers
Specificatios
Outdoor optical equipment
Applicable to strap-shaped
SMC, Cold-rolled steel
1450*760*520MM
Technical Parameters
Nominal work wave-length: 850nm, 1310nm, 1550nm
Operating temperature: -5°C-+40°C
Storage temperature: -40°C +70°C
Relative humidity: ≤85%(+30°C)
Atmospheric pressure: 70~106 KPa
Insertion loss: ≤0.2dB
Return loss: ≥45dB (PC), ≥50dB(UPC), ≥60dB(APC)
Isolation resistance: ≥1000MΩ/500V(DC)
Durability: 1000 times
Anti-voltage strength: ≥3000V(DC)/1min
This product 576 Core Floor-mount SMC Fiber Optic Cross Connect Cabinet belong to fiber splice closure of Fiberstore, FiberStore.com is a worldwide leading manufacturer & supplier of fiber optic products. We have been in these business almost 7 years. We have our own factory and our own professional R&D department. We are specializing in supplying fiber optic components and network equipment.

The Development of Fiber In The Telecommunications Environment


An important principle in physics, the theoretical basics of the optical fiber communication: in the glass medium can carry more information over longer distances than electrical or radio frequency signal can be copper, Our fiber optic splice closure is high quality and competitive in price coaxial cable or wireless medium.
The scientists first challenge is the development of glass, the pure light of one percent will be retained in the one kilometer distance from the end of the existing copper-based telephone system without replay transmission. Attenuation, this light to retain one percent conversion of 20db per kilometer (dB/km) glass material.
The researchers of the glass all over the world in the 1960s, the challenge, but in 1970 a breakthrough, Corning scientist Dr.Donald Keck, Robert Maurer and Peter Schultz created less than 20 dB per kilometer attenuation fiber. This is the most pure glass.Our mission is to save shoppers time,
money by bringing together everything that's needed to buy a fiber splitter.
The work of three scientists, lead to the commercialization of optical fiber technology to confirm. Since then, the technology has been much earlier, in terms of performance, quality, consistency and applications.
Closely with our customers has made it possible for scientists to understand what need to be modified by a corresponding increase in product design and manufacturing and to develop industry standards for fiber.
The commitment of the optical fiber technology has spanned more than 30 years, and continue efforts today to determine how fiber is currently used and how it can meet the challenges of future applications. As research and development work to improve the fiber glass purity has reached high levels. Today, the optical properties of the fiber close to the theoretical limit of silicon-based glass material. Purity, improved electronic systems combine to make the figure of the optical fiber transmission of optical signals of hundreds of kilometers there is no amplification. Early 20 db per kilometer attenuation level achieved compared to 1550 nm and 0.25 dB per kilometer, less than 0.35 dB per kilometer at 1310 nanometers (nm), to testify to the incredible improvement drive.

FiberStore.com is a worldwide leading manufacturer & supplier of fiber optic products. We have been in these business almost 7 years. We have our own factory and our own professional R&D department. We are specializing in supplying fiber optic components and network equipment.

2012年9月17日星期一

Buy Mini Telephone Line Tester From FiberStore


Telephone Line Tester is a new kind of line fault tester with safety & multi-functions capabilities. Besides the functions as a common Tel Line Tester, it also has the functions of high voltage protection and dangerous voltage warning.A phone line tester is used for detecting either digital or analog phone systems as well as the line polarity. Telephone line testers are good for both personal and professional use.
ST220 Tel Line Tester is a new kind of line fault tester with safety & multi-functions capabilities. Besides the functions as a common Tel Line Tester, it also has the functions of high voltage protection and dangerous voltage warning, etc.
Main Functions
Dialing, talk, hook
Checking wire pairs
Test insulation or break faults of the line
Pulse/Tone switch
Key Features
DTMF applying to GB/T15279-94
High voltage alarm
Low voltage warning
Last number redial
Special durable test clamp
Automatic power off and energy-save design
Pocket size, simple operation
Technical Specifications
Insulation impedance test
Range (MΩ)0~10
General specifications
Ring distance (Km)≤ 1
Line break resolution (Km)≤ 3
Weight (kg)≤ 0.22
Dimension (mm) 146× 54× 37
Battery (V)9
FiberStore.com is a worldwide leading manufacturer & supplier of fiber optic products. We have been in these business almost 7 years. We have our own factory and our own professional R&D department. We are specializing in supplying fiber optic components and network equipment.

2012年9月6日星期四

FiberStore For Sale 4U 19" Wall Mount Network Cabinet


FiberStore.com is a worldwide leading manufacturer & supplier of fiber optic products. We have been in these business almost 7 years. We have our own factory and our own professional R&D department. We are specializing in supplying fiber optic components and network equipment.

 4U 19" Wall Mount Network Cabinet

Description

Portable wall mount network cabinet 4U to 18U for networking.
Standards - ANSI/EIA RS-310-D, DIN41497 part 1, IEC297-2, DIN41494 part 7, GB/T3047.2-92
Main material:
1. SPCC cold rolled steel;
2. Thickness: mounting rail: 1.5mm, others: 1.2mm
3. Surface finish: Degreasing, pickling, phosphoric, powder coated
4. Loading capacity: 60KG
Features:
1. Welded reliable frame structure
2. Standing or wall mounting installation
3. Feet and castors are optional
4. Easy mounting installation
5. 19" standard installation
6. Lockable perspex door.
7. All cabinets are finished in Goose Grey
Contents:
1. 1 x 4U 400mm Cabinet
2. 1 x Power supply
3. 1 x Fan
4. 1 x Bag of Nuts and Bolts
FiberStore 6U, 9U, 12U, 15U, 18U wall mount network cabinet, and saving your money and time to order!

2012年6月15日星期五

How Does OTDR Work?

OTDRs are always used on OSP cables to verify the loss of each splice. But they are also used as troubleshooting tools. Let's look at how an OTDR works and see how it can help testing and troubleshooting. When you finish this section, see Understanding OTDR for a more detailed explanation.
Unlike sources and power meters which measure the loss of the fiber optic cable plant directly, the OTDR works indirectly. The source and meter duplicate the transmitter and receiver of the fiber optic transmission link, so the measurement correlates well with actual system loss.
The OTDR, however, uses backscattered light of the fiber to imply loss. The OTDR works like RADAR, sending a high power laser light pulse down the fiber and looking for return signals from backscattered light in the fiber itself or reflected light from connector or splice interfaces.
At any point in time, the light the OTDR sees is the light scattered from the pulse passing through a region of the fiber. Only a small amount of light is scattered back toward the OTDR, but with sensitive receivers and signal averaging, it is possible to make measurements over relatively long distances. Since it is possible to calibrate the speed of the pulse as it passes down the fiber, the OTDR can measure time, calculate the pulse position in the fiber and correlate what it sees in backscattered light with an actual location in the fiber. Thus it can create a display of the amount of backscattered light at any point in the fiber.
Since the pulse is attenuated in the fiber as it passes along the fiber and suffers loss in connectors and splices, the amount of power in the test pulse decreases as it passes along the fiber in the cable plant under test. Thus the portion of the light being backscattered will be reduced accordingly, producing a picture of the actual loss occurring in the fiber. Some calculations are necessary to convert this information into a display, since the process occurs twice, once going out from the OTDR and once on the return path from the scattering at the test pulse.
There is a lot of information in an OTDR display. The slope of the fiber trace shows the attenuation coefficient of the fiber and is calibrated in dB/km by the OTDR. In order to measure fiber attenuation, you need a fairly long length of fiber with no distortions on either end from the OTDR resolution or overloading due to large reflections. If the fiber looks nonlinear at either end, especially near a reflective event like a connector, avoid that section when measuring loss.
Connectors and splices are called "events" in OTDR jargon. Both should show a loss, but connectors and mechanical splices will also show a reflective peak so you can distinguish them from fusion splices. Also, the height of that peak will indicate the amount of reflection at the event, unless it is so large that it saturates the OTDR receiver. Then peak will have a flat top and tail on the far end, indicating the receiver was overloaded. The width of the peak shows the distance resolution of the OTDR, or how close it can detect events.
OTDRs can also detect problems in the cable caused during installation. If a fiber is broken, it will show up as the end of the fiber much shorter than the cable or a high loss splice at the wrong place. If excessive stress is placed on the cable due to kinking or too tight a bend radius, it will look like a splice at the wrong location.
OTDR Limitations
The limited distance resolution of the OTDR makes it very hard to use in a LAN or building environment where cables are usually only a few hundred meters long. The OTDR has a great deal of difficulty resolving features in the short cables of a LAN and is likely to show "ghosts" from reflections at connectors, more often than not simply confusing the user.
If you want to know more fiber optic products please pay attention to my blog http://www.fiber-optic-components.com/