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Time Domain
See Also: Time, Timers, Time Interval, GPS Time, Time Reference, Time Code, Time Standards, Timing, Time Domain Reflectometers, Time & Frequency
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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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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 Reflectometer
STEP TDRS
Cable Measurements: Distance, Fault Types, Distance to Faults, Impedance Readings, and Loop Resistance.
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Time Domain Analysis
S97010B
The S97010B time domain analysis capability allows you to measure the time domain response of a device. The analyzer can transform frequency domain data to the time domain or time domain data to the frequency domain.
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Time-Domain Analysis
S95010B
Measure the time-domain response of a device; transform frequency-domain data to the time domain or time-domain data to the frequency domain
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Time Domain Sensors
TDS
Schmid & Partner Engineering AG
Time Domain Sensor (TDS) probes are miniaturized fully isolated active optical magnetic or electric field sensors operating in the frequency range from 10MHz to 6GHz. TDS offers unparalleled sensitivity for EM measurements resolved in the time and frequency domains while maintaining all amplitude and phase information.
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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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Time Domain Reflectometer
BAUR TDR 510
BAUR Prüf- und Messtechnik GmbH
Handheld Time Domain Reflectometer TDR 510. The BAUR handheld time domain reflectometer TDR 510 is used for fault location in all metal cables such as power cables, coaxial cables, data cables and communication cables. The BAUR TDR 510 comes with a device storage for 50 measurements and the option to compare the trace of an active TDR measurement with a stored trace.* Configurable for various measurement ranges and cable types* Standard-compliant, safe measurements on live cables through the measurement category CAT IV / 600 V* Ideal for fault location in the area of telecommunication, video technology, data and security technology
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Time Domain Reflectometer
ETDR 10A-C
Compact dual channel precision full function portable easy to useTDR for fault location on balanced loaded and unloaded cables.
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Optical Time Domain Reflectometry
OTDR600
The OTDR600 is an optical time domain reflectometry (OTDR) system for the measurement of attenuation and length of optical fibers. The OTDR600 is specifically designed for use in factories and laboratories where high linearity and productivity on factory spool lengths are crucial.
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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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Optical Time Domain Reflectometer
3000 Series
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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Time-Domain Electromagnetic Simulation
Meep
Massachusetts Institute of Technology
Meep is a free and open-source software package for electromagnetics simulation via the finite-difference time-domain (FDTD) method spanning a broad range of applications.
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Optical Time Domain Reflectometer
Alnair Laboratories Corporation
The FDM-OTDR encodes multiple probe pulses at different frequencies, in the same time frame that conventional C-OTDRs send out a single pulse. This frequency-division-multiplexing enables larger data acquisition in the same measurement time compared to C-OTDRs. As a result the FDM-OTDR can achieve higher dynamic range with the same measurement time, or a significantly reduced measurement time with the same dynamic range.
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Optical Time Domain Reflectometer
OTDR II
The OTDR II (Optical Time Domain Reflectometer) excels in fault finding on fibre cabling with industry-leading specifications and performance levels on both single-mode and multimode fibre networks. Not only does OTDR II deliver accurate test data and pass/fail results, it also offers automated fault-finding capabilities that help to minimise network downtime.
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Hand-held Optical Time Domain Reflectometer
MT-2300 Plus
Guangzhou Wanglu Communications Co., Ltd.
● 3.5 inch color TFT-LCD (touch screen) ● Applicable fiber: SM ● Up to 28dB High Dynamic Range ● Flexible measurement mode switching ● Memory capacity >800 traces ● Traces fixed function mode for comparison with reference waveforms ● Provides multiple "multi-wavelength analysis" functional modes for multiple trace comparisons
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Time Domain Analysis
S93010B
The S93010B time domain capability allows you to measure the time domain response of a device. The analyzer can transform frequency domain data to time domain or time domain data to the frequency domain and runs on PNA/PNA-L/PNA-X Series B models.
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Time Domain Reflectometer
IRG 2000
BAUR Prüf- und Messtechnik GmbH
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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Optical Time Domain Reflectometer / OTDR Tester
M-OTDR-802
Fuzhou Metricu Technology Co Ltd
Wavelength 1310 / 1550nm, max test range 150KM, Dynamic range 28 / 26dB
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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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Time Domain Analysis
S96010B
The S96010B time domain capability allows you to measure the time domain response of a device. The analyzer can transform frequency domain data to time domain or time domain data to the frequency domain and runs on the E5080B.
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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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High Voltage 50 Ω Pulse Generator
TLP-12010A
High Power Pulse Instruments GmbH
The high-current TLP/HMM test system TLP-12010A offers advanced features intended for the characterization of semiconductor devices, discrete components, such as TVS, varistors, capacitors, gas tubes, circuits and systems in the high power time domain. It includes high current I-V characteristics inpulsed operation mode, turn-on/off transient characteristics of the device, breakdown effects, charge recovery effects e.g. reverse recovery, Safe-Operating-Area (SOA) and ESD measurements in general.
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DCA-X Sampling Oscilloscopes
The DCA-X wide-bandwidth sampling oscilloscopes are in our digital communication analyzer (DCA) family. These are modular platforms that provide accurate and precise measurements of high-speed digital designs from 50 Mb/s to 224 Gb/s. You can configure the DCA-X mainframes by selecting from a variety of plug-in modules that perform precision optical, electrical, and time domain reflection / transmission (TDR / TDT) measurements. Select specific modules to obtain the desired bandwidth, filtering, and sensitivity that match your measurement needs.
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Interactive Software
TE SERIES
The TE SERIES Interactive Software provides a powerful set of formats and charts for fast analysis, and interfaces with a simple USB. Features include smith charts, multi series plotting, difference plotting, curve smoothing, annotations, cursors, time domain reflectometry and interference spectrum scanning.
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Time-domain Field-Device-Circuit coupled simulator
EM-SUPREME®
Time-domain Field-Device-Circuit coupled simulator for modeling of passive structures, active components, and complete RF & millimeter-wave modules. EM-Supreme is used for EM modeling of power amplifiers, switches, filters, active antennas, and complete RF modules such as antenna-switch, switch-filter, switch-filter-amplifier, and front-end modules with no approximations.
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PXI Semiconductor/IC Test System
A high-density 100MHz PXIe digital IO card designed for characterizing, validating, and testing a variety of digital and mixed-signal ICs. Each IO card consists of a Sequencer Pattern Generator (SQPG) and 32 channels of full ATE-like features. The 33010 IO card is expandable up to 256 channels. Some unique features of the 33010 include an on-board SQPG, per pin timing/levels/ PMU/TFMU, multiple time domains, and multithreaded testing for complex IC testing. Each channel is also equipped with 64M vector memory, 16 timing sets with on-the-fly timing change, and per pin timing and frequency measurements up to 400 MHz.
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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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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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PXIe-4481, 24-Bit, 6-Channel, 1.25 MS/s/ch PXI Analog Input Module
784278-01
24-Bit, 6-Channel, 1.25 MS/s/ch PXI Analog Input Module—The PXIe‑4481 is an analog input module for higher bandwidth voltage measurements. The module offers analog and digital filtering for accurate frequency domain measurements. You also can select from four gain settings to configure your input range. For measuring sudden changes, such as high speed blast and pressure events, the PXIe-4481 can sample up to 20 MS/s per channel in time domain mode. The included NI-DAQmx driver simplifies hardware configuration and measurement.





























