Time Domain Reflectometers
Used to locate and identify faults in all types of metallic paired cable. (tscm.com) Also known as: TDR
See Also: TDR, Time Domain, Cable TDR
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Time Domain Reflectometers
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Locating high and low impedance faults on paired metallic cables is a crucial yet often difficult task for a telecoms engineer. Megger designs TDRs specifically for the communications industry, which makes each unit a safe, application specific tester that can be used on virtually all communications cable types. The wide range of TDRs makes it easy to choose the tester with the resolution and range you need.
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Optical Time Domain Reflectometers (OTDR)
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Shanghai Joinwit Optoelectronic Tech,co.,Ltd
an optoelectronic instrument used to characterize, troubleshoot, and maintain fiber optic networks. It works like optical radar, sending light pulses into a fiber and measuring scattered/reflected light to map cable length, splice loss, connectors, and breaks.
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Optical Time Domain Reflectometers - OTDRs
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ShinewayTech Optical Time Domain Reflectometers
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Time Domain Reflectometers
HL1100 Series
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HYPERLABS HL1100 Series TDR instruments provide high-performance test and measurement capabilities for use in the field or in the lab. These instruments are used for applications such as fault detection in cables and interconnects, impedance characterization, time of flight analysis, water level measurement, and more.
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Optical Time Domain Reflectometers
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An optical time domain reflectometer (OTDR) is a precision instrument used to locate events or faults along a fiber link, typically within an optical communications network. The OTDR launches a series of high speed optical pulses into the fiber to be measured. Various events on the fiber generates a Rayleigh back scatter that returns to the OTDR and the strength of the return pulses are measured and integrated as a function of time, and plotted as a function of fiber length. The horizontal axis is the distance and the vertical axis is the loss.
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Signal Integrity Test Products
RoBAT SCARA-TDR-M
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*Fully automatic TDR tester for bare and assembled PCBs*2 – 24 Port Ultra-compact TDR units*Full range of TDR tests and measurements available*100% test in a production environment*Custom modules with automatic tool changer
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Optical Fiber Rangers
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Fiber rangers are a form of test equipment functioning similarly to an optical time domain reflectometer (OTDR).
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Power Networks Test
TX8000
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The TX8000 is a 6 Km range Time Domain Reflectometer housed in a rugged over moulded case being water proof to IP67 and drop resistant, designed for outdoor use, but sufficiently small and light weight for general use and may be operated using one hand. Using a 3.5-inch QVGA colour display information is clearly displayed; an illuminated keypad makes the TX8000 ideal for use in poorly lit areas.
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Smart Optical Time Domain Reflectometer OTDR
BD900 Series
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Shanghai Baudcom Communication Device Co.,Ltd.
BD900 series of Optical Time Domain Reflectometer has excellent dead zone performance and wide dynamic range. There are four models to choose from and that can betterly meet the customer’s specific measurement requirements. Combined with the visual fault locator, it can easily find the breaks, bends, splices, faulty connectors, and other causes of signal loss.
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Time Domain Reflectometer
IRG 2000
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Cable fault location with the BAUR IRG 2000. The IRG 2000 impulse reflection measurement unit or time domain reflectometer is a handy, easy to carry device for single-phase cable fault pre-location. It is used in combination with a surge voltage generator on low-, medium- and high-voltage cables 0 - 65 km in length. It can also be used on live cables carrying voltage up to 400 V.* Easy and quick cable fault location* Light, compact and manageable* Main unit for the tried-and-tested pre-location method* Ideal for integration in measurement systems
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CATV Meters & Instruments
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GAOTek offers high quality, affordable CATV meters and testers to industry engineers. These instruments are used by professionals to automatically or manually test, measure, and maintain a wide collection of systems and channels. Our products are portable and durable to ensure long operational use during everyday field use by CATV technicians. Additionally, we offer QAM analyzers, PCM channel analyzers and TDR cable fault locators.
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Optical Time Domain Reflectometer
3000 Series
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Shanghai Baudcom Communication Device Co.,Ltd.
BAUDCOM 3000 series Optical Time Domain Reflectometer (OTDR) is anintelligent meter of a new generation for the detection of fiber communicationssystems. With the popularization of optical network construction in cities andcountrysides, the measurement of optical network becomes short and disperse; The3000 series is specially designed for that kind of application. It’s economic,having outstanding performance.The ODTR is manufactured with patience and carefulness, following thenational standards to combine the rich experience and modern technology, subjectto stringent mechanical, electronic and optical testing and quality assurance;in the other way, the new design makes ODTR more smart and compact andmulti-purpose.
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Flying Probe
EnteFP-5060TDR
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Two head TDR flying probe with rotation, max panel size: 20X24, accuracy +/25um, CCD camera alignment.
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Intelligent Cable Fault Locator
TM800
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TM800 Cable Fault Locator is a portable field instrument working on TDR and bridge methods, adopting advanced micro-electronics technology. It is designed to locate accurate fault points in such cables as telecommunication leadsheathed cable, plastic cable or user’s lead covered wire, while the faults include break, mix, earthing, defective insulation, or poor connecting. It is and ideal function-stable instrument for the field operator to improve work efficiency, in addition, it can also be used for circuitry project checking electric property testing of the cable.
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Saluki S2110P Series PON OTDR (up to 45dB)
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S2110P series optical time domain reflectometer can be used to test single-mode wavelengths of 1310nm, 1550nm, 1625nm and 1650nm as well as customized special wavelengths. It provides multiple optional modules, such as single wavelength, multi-wavelength and online test. S2110P series can test PON networks through even 1:128 high-port-count splitters.
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Multi-wavelength Measurement Optical Time Domain Reflectometer
MT-7300 Plus
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Guangzhou Wanglu Communications Co., Ltd.
● 32/30dB high dynamic range● ≤2m extra-short event dead zone● 0.05m high distance resolution,128k sampling points● Fast auto measurement, one-button operating● Test up to four wavelengths with a single unit ● Communication light check automatically● Remote function via Ethernet● USB interfaces, supporting USB stick and printer and direct cable download to PC via ActiveSync● Supporting Bellcore GR196 file format in writing or reading● Built-in lithium battery with high capacity for over 8 hours of operating life● Integrated Visible fault locating (VFL)
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Time Domain Reflectometer
IRG 4000
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Cable fault location with the BAUR IRG 4000. The IRG 4000 time domain reflectometer is integrated in BAUR cable fault location systems and is used in combination with the system software for locating cable faults in single and three-phase cable systems. Thanks to the novel operational concept, cable faults can be located more rapidly and easily with IRG 4000. The high-performance industrial PC and improved measurement parameters allow for a precise cable fault location in all cable types. The well-proven and continuously enhanced methods are available for the cable fault location as well as the newly developed Conditioning SIM/MIM** method which makes it even more effective and quick to locate wet cable faults that are difficult to detect. The SIM/MIM technology with 20 reflection measurements per HV pulse allows for selecting the best reflection image for a very precise determination of the fault distance.* Easy operation thanks to intuitive operational concept*Maximum precision with high resolution and sampling rate*Precise fault location methods for every type of fault
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Time Domain Reflectometer / TDR
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For testing cables and interconnects, we offer the ideal tool: A time domain reflectometer (TDR). Time domain reflectometry/transmission can be used to test network return loss (S11), propagation loss (S21), and crosstalk.Moreover, it can provide the impedance profile of an electrical channel. MultiLane supplies semi-automated solutions for the testing of direct-attach cables and TIAs.
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TDR Test System
GATS-310
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The GATS-310 TDR test system provides you with the ability to test nets as down to less than 1/2" in length using Industry Standard Techniques.
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Signal Integrity Test Products
RoBAT RCI
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*TDR & TDT, Measurement Capabilities*Impedance, Skew, Backdrill measurements*Automated Optical Inspection*DC Electrical Test*Now available with 4 heads*24 port (1 port per channel) TDR/TDT unit*Future capabilities – Fully automated VNA test (4 port S-Parameter Measurement)
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Pre- Locator
CFL PL4
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CFL PL4 Power Cable Fault Locator is a portable, easy to use cable fault pre-location instrument. It uses the Time Domain Reflection (TDR), Secondary Impulse Method / Multiple Impulse method (MIM) and Impulse Current Method (ICM) on low, medium and high voltage cables. Its measuring ranges enable pre-location on cable lengths from 500 m to 64km.
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Multi Channel Optical Fibre Verification
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The multi-channel optical fibre test system is used in the development and qualification of single mode optical fibres. The fibres are exposed to environmental influences in a climatic chamber in order to analyse the data on insertion loss and reflection. In addition, the current temperature in the climatic chamber is documented. Insertion loss measurement is performed with the help of an optical power meter, laser sources and optical switches. An Optical Time Domain Reflectometer (OTDR) from Exfo is used for the reflection measurements. The system was designed for the simultaneous characterization of 15 sample fibres and one reference fibre.
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OTDR Launch Cable Box, OTDR Dead Zone Eliminator, 1KM-2KM
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Shanghai Fibretool Technology Co.,Ltd.
Designed to aid in the testing of fiber optic cable when using an OTDR. TheOTDR Launch Cable Box is used with Optical Time Domain Reflectometers (OTDRs) to help minimize the effects of the OTDRs launch pulse on measurement uncertainty. Available in many different configurations and fiber lengths.
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Optical Time Domain Reflectometer / OTDR Tester
M-OTDR-802
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Fuzhou Metricu Technology Co Ltd
Wavelength 1310 / 1550nm, max test range 150KM, Dynamic range 28 / 26dB
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Impedance Measurement
CITS880s
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Finer geometries and thinner copper can present a challenge for fabricators measuring impedance on leading edge PCBs. The CITS880s answers that challenge with the introduction of Launch Point Extrapolation (LPE). LPE extrapolates the TDR response back to a point close to the start of the transmission line effectively allowing to users more accurately to measure the instantaneous or incident impedance of the line.
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Optical Fiber Ranger
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Optical fiber ranger is test equipment that functions similar to an optical time domain reflectometer. It is used in single mode fiber test applications. The fiber optic ranger is much smaller size and lighter weight compared to the fiber optic OTDR, and it is much more cost effective. They are used in optical fiber links troubleshooting, maintenance and test.
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Oscilloscopes
PicoScope 9000 Series
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Up to 25 GHz bandwidth9.5 GHz optical input40 ps Differential TDR / TDT sourceSequential sampling Oscilloscope
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OTDR - Optical Time Domain Reflectometer
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Specialized optoelectronic instrument used to characterize, certify, and troubleshoot fiber optic cables.
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Differential TDR, 35 ps, 15 GHz, ESD, Sxy, OSLT 3.5MM Cal Kit, Aluminum Case
T3SP15D-Bundle
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Differential TDR, 35 ps, 15 GHz, ESD, Sxy, OSLT 3.5MM Cal Kit, Aluminum Case.
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Demonstration Board
SAMPULSE20x2
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The SAMPULSE20x2 is a demonstration board for the Furaxa SiGe3 30GHz sampler/pulser IC. The SIGe3 IC is a dual channel sampler pulser chip, and the SAMPULSE20x2 demonstration board contains two 2.4mm combined TDR input/output connectors, one to each sampler/pulser channel in the IC. The SiGe3 IC's two sampler outputs are then sent to to two SMA jacks, the first outputting the sample taken on the rising edge of the sampler clock, and the second containing the sample taken on the falling edge of the sampler clock. The sampler clock input, which must be a square wave, may be set to any frequency from 5MHz to 1GHz, causing the board take two pairs of samples (one on each clock edge) at rates from 5 million to 1 billion per second. A pulser clock input, which may be set to any frequency from 5MHz to 2GHz, and MUST be a square wave (preferably differential) with rise time under 100pS, causes the board to produce concurrent pulses on both of the SiGe3's I/O pins, which produce near-concurrent pulses at the two 2.4mm sampler/pulser TDR input/output connectors.





























