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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 Analysis
S93010A
The time domain 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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Enhanced Time-Domain Analysis With TDR
S95011B
This application enables the analyzer to perform enhanced time domain analysis for high-speed data applications. All functionality of the S95010B are included (TDR/TDT mode). In addition, the S95011B enables more detailed measurements and evaluations, such as eye-diagram / mask modes, without adding PLTS software. Jitter and emphasis / equalization capabilities enable simulation of real-world signals and environment. The S95011B covers up to 53 GHz bandwidth. Full calibration is available and the automatic deskew ensures easy removal of fixture and probe effects. To get the best accuracy, mechanical calibration kits or ECal with DC option (i.e., N469xD or N4433D with Option 0DC) are recommended.
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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 Reflectometer
ETDR 10A-3
Compact single channel precision portable easy to useTDR for fault location on balanced unloaded cables.
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Time Domain Replication (Road Load Simulation)
The powerful graphical editor makes it easy to review and compile your field sample data for use in the test lab. The point editor, filters, velocity and displacement compensation ensure the test feasibility is evaluated at an early stage. The continuous closed-loop controller then replicates the test files with very high levels of precision. The control algorithms use a continuous coherence averaging technique to ensure a stable proactive control loop that will not only provide accurate replication but will also respond to changes in test item dynamics.
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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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Enhanced Time Domain Analysis With TDR
S96011B
Use S96011B to perform enhanced time domain analysis for high-speed data applications. Includes all functionality of the S96010B (TDR/TDT mode). In addition, the S96011B enables more detailed measurements and evaluations, such as eye diagram / mask modes, without adding PLTS software. Jitter and emphasis / equalization capabilities enable simulation of real-world signals and environment. The S96011B covers up to 53 GHz bandwidth. Full calibration is available and the automatic deskew ensures easy removal of fixture and probe effects. To get the best accuracy, use mechanical calibration kits or ECal with DC option (i.e. N469xD or N4433D with Option 0DC).
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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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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 Reflectometers (OTDR)
Shanghai Joinwit Optoelectronic Tech,co.,Ltd
Joinwit Optical Time Domain Reflectometers (OTDR)
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Optical Time Domain Reflectometer (OTDR)
JW3302F
Shanghai Joinwit Optoelectronic Tech,co.,Ltd
JW3302F series Optical Time Domain Reflectometer (OTDR) is an intelligent meter of a new generation for the detection of fiber communications systems. With the popularization of optical network construction in cities and countrysides, the measurement of optical network becomes short and disperse; JW3302F is specially designed for that kind of application. It’s economic, having outstanding performance.
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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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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 Reflectometer
TDR-410
*Location damaged power cables.*Fault location copper telecom cables.*Coaxial cable fault location.*Fault location wiring infrastructure.*Detection of breaks, short circuits, damage caused by dampness and other changes in impedance of the cable.*Graphic depiction of damage the cable with automatic indication the distance to fault on the screen.
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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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Mini OTDR Optical Time Domain Reflectometer
X30
Mini OTDR X-30 is a very reliable and good performance OTDR, it can measure the optical fiber length, transmission attenuation of optical fiber, attenuation of splice, and failure location, etc accurately. It is widely used in the maintenance, construction and monitoring of cable line. It is also very easy to carry because of its small size and light weight.
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Time Domain Induced Polarization /Resistivity Receiver
IPR-12
This allows you to troubleshoot and monitor data quality for the most efficient IP survey possible. With an IPR-12 you will have an excellent tool to get the best possible IP data from your survey.
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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
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 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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Enhanced Time Domain Analysis With TDR
S97011B
This application enables the analyzer to perform enhanced time domain analysis for high-speed data applications.
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Pulse Generator
PulseGen
Pulse Generator for use with an oscilloscope as a Time Domain Reflectometer (TDR).
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Full Wave Recorder
I-FullWaver
The I-FullWaver systems were specifically developed for precise full waveform time domain induced polarisation, Resistivity and self-potential measurements. Each system is fully independent; incorporating its own power source, GPS module and digital memory for up to 3 months continuous recording.
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OTDR
TMO350 Series
TMO350 series Optical Time Domain Reflectometer(OTDR) is the new generation of intelligent meter for the detection of fiber communications systems.
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Integrated OTDR 1310/1550nm 32/30dB
TR800
Shenzhen Sharingtek Communication Co., LTD
TR800 series optical time domain reflectometer is a new generation of portable and intelligent measuring instrument designed by AVES Communication Technology for testing optical fiber communication system. Adopt 5.8 inch color touch screen, button/ touch dual operation; Internal integration of eight major functional modules, multi-functional integration to help customers effectively solve the field test and maintenance; Intelligent power-saving management, 20 hours long standby, efficient protection of test dimension.
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Cable Length Meters
Reflect a pulse.through the cable measuring length (time domain reflectometry).
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Test Services
D-Coax offers RF/Microwave test services for your researchprojects, as well as, production quantities tests. We have available resources and expertise in the high frequency interconnects testing that will benefit your research and products. We will work with you to make your requested tests the most accurate and reliable and we'll complete them in a timely fashion. The following parameters can be characterized or tested to specifications with our test services: Time Domain: Impedance, Impedance profile, rise time, propagation delay, skew and more. Frequency Domain: S21 - Insertion loss, S11- Return loss, S12 - Reverse Insertion loss (port 2 insertion loss), S22 - Reverse Return loss (port 2 return loss) and more.
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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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Peak Power Analyzer
4500C
The Boonton Model 4500C is the instrument of choice for capturing, displaying, analyzing and characterizing microwave and RF power in both the time and statistical domains. It is ideal for design, verification, and troubleshooting of pulsed and noise-like signals used in commercial and military radar, electronic warfare (EW), wireless communications (e.g., LTE, LTE-A, and 5G), and consumer electronics (WLAN), as well as education and research applications.