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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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T3SP Time Domain Reflectometers
T3SP Series
Teledyne Test Tools T3SP15D stimulates the DUT with true differential signals. The T3SP15D offers fast rise times of 35 ps for spatial impedance resolution (in FR4) of 3 mm, at DUT lengths up to 40 meters and TDR repetition rates up to 10 MHz and uses the same open short load thru (OSLT) calibration standards as vector network analyzers. With their small form factors, light weight, and optional internal batteries, the instruments go anywhere in test labs or in the field at an affordable price.
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Time Domain Reflectometers
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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Time Domain Reflectometers
HL1100 Series
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
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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Handheld TDR
The handheld Time Domain Reflectometer (TDR) consists of CM Technologies’ PCI-3127 high-performance metallic TDR card packaged in a rugged handheld computer form factor. The software interface uses an easy to follow menu structure to assist in acquiring, saving and interpreting TDR signatures – extremely flexible when compared to traditional instrumentation.
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Time Domain Reflectometer
ETDR 10A-2
Compact dual channel precision full function portable easy to useTDR for fault location on balanced loaded and unloaded cables.
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OTDR Launch Cable Box
TM1000
Designed to aid in the testing of fiber optic cable when using an OTDR. The OTDR LaunchFiber box is used with Optical Time Domain Reflectometers (OTDR's) to help minimize the effects of the OTDR's launch pulse onmeasurement uncertainty.
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FieldFox Handheld Microwave Analyzer, 32 GHz
N9950A
32 GHz max frequency Carry world's most integrated handheld W analyzer: standard model includes cable and antenna analyzer Expand capabilities with optional VNA, spectrum analyzer, built-in power meter, vector voltmeter, and more Save time by measuring DTF and TDR in a single sweep Simultaneously measure all four S-parameters Make accurate SA measurements ( 0.5 dB) without needing warm-up Easily measure average and pulse power with a USB sensor
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Optical Time Domain Reflectometers (OTDR)
Shanghai Joinwit Optoelectronic Tech,co.,Ltd
Joinwit Optical Time Domain Reflectometers (OTDR)
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TDR Composite Cure Monitoring
Material Sensing & Instrumentation
MSI Time-Domain-Reflectometry (TDR) Composite Cure Monitoring [1-4] provides a new approach to cure monitoring of advanced polymer composites. Using a high-speed pulse and inexpensive microwave sensor, our TDR system follows rotation of a polar resin molecule, providing real-time information on viscosity and percent cure. Operating in the microwave frequency range, TDR Cure Monitoring provides an alternative between high-frequency fiber-optic methods and low-frequency dielectric methods, combining optical-style precision and miniaturization with electrode-based simplicity and robustness.
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OTDR Launch Cable Box, OTDR Dead Zone Eliminator 100-500M
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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Impedance Measurement
CITS880s
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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Time Domain Reflectometer
STEP TDRS
Cable Measurements: Distance, Fault Types, Distance to Faults, Impedance Readings, and Loop Resistance.
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Lasers FP/DFB-LDs For OTDR
C is a 1 650 nm Multiple Quantum Well (MQW) structured Distributed Feed-Back (DFB) pulsed laser diode DIP module with single mode fiber and internal thermoelectric cooler. It is designed for light sources of Optical Time Domain Reflectometer (OTDR).
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Pre- Locator
CFL PL4
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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TDR Structural Health Monitoring
Material Sensing & Instrumentation
MSI Time-Domain-Reflectometry (TDR) Structural-Health Monitoring probes the structural health of a composite part by propagating a fast electrical pulse along a distributed linear sensor which has been fabricated directly in the laminate. The sensor is formed from the native graphite fibers already used in composite manufacture, and constitutes zero defect. Fibers are patterned into a microwave waveguide geometry, or transmission line, and interrogated by a rapid pulse as shown below. Structural faults along the line cause distortions in waveguide geometry, producing reflected pulses similar to radar. Cracking, delamination, disbonds, moisture penetration, marcelling, and strain are all detected by propagation delay, for sensor lengths up to several meters.
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Cable Testers
The Tester can check UTP and STP Cat 5E,6,6A and Coaxial Cable. It can ldentify and locate the distance of a open or Short Circuit. With the Multifunction Tester you can determine the Continuity and Wiring of the Cable Pattern. Comes with the Low Battery Indicator. It uses TDR ( Time Domain Reflectometer ) to measure the length and distance of the cable. LCD Backlight Display.There are 8 Remote ID available.
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Demonstration Board
SAMPULSE20x2
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.
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Saluki S2106X Series OTDR (up to 45dB)
S2106X series optical time domain reflectometer is an upgraded version with 7 inch larger display, higher operation speed and more friendly UI. It has rich external interface, which can realize remote control through Ethernet interface or two different USB interface for external USB flash drive, printer and data communication with PC.
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Test Phone - Professional TS54 Pro
CZ20154
The CZ20154 is the top of the range in latest design technology providing voice, data, and video technicians/engineers all the functionality essential in a test set. Buttinskis are now required to deal with modern high speed digital services - something this test phone has been specifically designed for. On top of all the tests performed by the CZ20123, TDR length measurement to 900m is included for the first time on a buttinski. Not only can you measure cable length but you can identify the fault location of an open or a short. Further, tone generation is included as standard providing 5 different search tones and SmartToneR that confirms you have located the correct pair. Never before has this level of features been available in a buttinski. No longer do you need to carry a separate butt set, TDR, toner, and identifier - this buttinski does it all in the one tool !
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Differential TDR, 35 ps, 15 GHz, ESD, Sxy, OSLT 3.5MM Cal Kit, Aluminum Case
T3SP15D-Bundle
Differential TDR, 35 ps, 15 GHz, ESD, Sxy, OSLT 3.5MM Cal Kit, Aluminum Case.
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TX Ranger
4405200
The TX Ranger is a hand-held Time Domain Reflectometer (cable fault locator) with a first range of 2.5 meters combined with a 1.3 Nano second pulse width gives a blind zone of only 5 cm, it makes this the ideal product for fault location on short cable assemblies and harnesses. Small and intermittent faults can be easily identified by using the selectable gain control allowing trace amplification of up to 7 times and when set to scan lock mode the advanced noise reduction software may be selected allowing the user to select between 8,16 and 32-point trace averaging further enhancing the clarity of the trace by reducing electrical and environmental interference.
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Multi Channel Optical Fibre Verification
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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Time Domain Reflectometer
IRG 4000
BAUR Prüf- und Messtechnik GmbH
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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FieldFox Handheld RF Analyzer, 6.5 GHz
N9914A
6.5 GHz max frequency Carry the world's most integrated handheld RF analyzer: standard model includes cable and antenna analyzer Expand capabilities with optional VNA, spectrum analyzer, built-in power meter, vector voltmeter, and more Save time by measuring DTF and TDR in the same sweep Simultaneously measure all four S-parameters Make accurate spectrum analyzer measurements ( 0.5 dB) without needing warm-up Calibrate simply with QuickCal
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Handheld Cable Fault Locator
TM800H
TM800H Handheld Cable Fault Locator adopts TDR (Time Domain Reflection), new signal process and data collection technology. It can locate the distance of cable break and mix faults accurately. TM800H can be widely used in the communication installation, maintenance and general wiring. It can troubleshoot not only the local Telco-cable, but also Network cable. Its high sampling rate makes the measurement dead zone as narrow as 1 meter. This makes it a straightforward, user-friendly test solution.
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Thumpers and Cable Fault Location
Cable testing can be broken down to different steps of the process, starting with a time domain reflectometer test to look for an incident signal on the line or, in some high resistance situations, VLF testing. These tests will identify a fault, allowing you to move on to pre-locating it. In some low resistance faults this will occur alongside the identification via the TDR.
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MPI PCB Probe Systems
MPI Advanced Semiconductor Test
Every MPI manual probe systems can be configured with a variety of different holders for printed circuit boards (PCB’s) in order to provide in addition to on-wafer, versatile, convenient, and accurate Signal Integrity (SI) measurements with single-ended or differential RF probes. Measuring signals at the end of the channel for eye-patterns, deterministic jitter, distortion, TDR (Time Domain Reflectometry) impedance, cross-talk, coupling, and losses, or even S-parameters is easily accomplished.
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8K ip Camera Tester M-IPC-450C with TVI 5.0 Audio, Wrist Design
M-IPC-450C
Fuzhou Metricu Technology Co Ltd
8K wrist tester M-IPC-450C supports 8K ip camera, analog camera, 8MP TVI camera, 8MP CVI camera and 8MP AHD camera. (5 in one)It also supports DC12V 3A, 48V PoE 25.5W power output, UTP cable, RJ45 TDR cable, RS485, Audio in, TVI 5.0 audio, wrist design, etc.





























