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Time Domain Reflectometer (TDR) Card
PCI-3127
The PCI-3127 is a PCMCIA-form factor TDR that can be used to identify and locate failures in installed wiring and cable systems. The instrument can make high resolution TDR measurements on circuits up to 96,000 feet (~30km) from your Windows XP notebook computer or PC using a low-voltage non-destructive test signal.
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Time Domain Reflectometers and S-Parameter Analyzers
The Teledyne LeCroy WavePulser 40iX and the Teledyne Test Tools T3SP15D are a perfect combination of complimentary products to serve the requirements on testing, validating and troubleshooting cables, backplanes, connectors, transmission lines on boards and interconnect.
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Smart Optical Time Domain Reflectometer OTDR
BD900 Series
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 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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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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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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Multi-wavelength Measurement Optical Time Domain Reflectometer
MT-7300 Plus
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 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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Cable Fault Locator With Time Domain (Intelligent Bridge)
GT00ZD00ZY
GAOTek Cable Fault Locator with Time Domain has a reflectometer to locate faults in metallic cables and Intelligent bridge for tesing the broken line
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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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Pulse Generator
PulseGen
Pulse Generator for use with an oscilloscope as a Time Domain Reflectometer (TDR).
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Cable Length Meters
Reflect a pulse.through the cable measuring length (time domain reflectometry).
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Time Domain/Fault Location Analysis For E5061B
E5006A
The E5006A Time Domain/ Fault Location Analysis option allows you to locate the discontinuities and mismatches of devices such as cables. By employing the gating function in the time domain and transforming the data back to the frequency domain, you can remove unwanted responses of connector mismatch in your fixture. In addition, the cable SRL (Structural Return Loss) analysis capability is provided with the E5006A.
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Optical Fiber Rangers
Fiber rangers are a form of test equipment functioning similarly to an optical time domain reflectometer (OTDR).
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Electrical Testers
The Fault Trapper is a new class of tester using Spread Spectrum Time Domain Reflectometry (SSTDR) to monitor energized circuits.
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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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Phase Noise Measurement Application
N9068A
One-button measurements for analyzing phase noise in frequency domain (log plot) and time domain (spot frequency)Compatible with phase noise measurement personality in Keysight PSA and ESA spectrum analyzers Runs inside the PXA, MXA, EXA signal analyzers and MXE EMI receiver
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FaultCaster
4401700
The FaultCasterTM is a palm-top Digital Time Domain Reflectometer designed to detect and locate faults on all types of copper cable up to a distance of 2000m (6,000ft).
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Cable Testers
The CableTool uses TDR (Time Domain Reflectometry) technology to quickly identify an open or a short from 0 to 2,500 feet within a foot of the fault.
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Optical Delay Generator
The FR-203 provides periodic linear optical delay (~200ps) for ultrashort laser pulses. It is useful for applications such as time resolved spectroscopy and time domain terahertz spectroscopy. A well defined optical delay is generated with interferometric precision.
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OTDR
Shenzhen Sharingtek Communication Co., LTD
Is an optoelectronic instrument used to characterize an optical fiber. It is the optical equivalent of an electronic time domain reflectometer which measures the impedance of the cable or transmission line under test.
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Deep Transient Electromagnetic System
WTEM-2
WTEM-2 Medium-Deep/Deep Time Domain TEM Exploraiton System is applicable to medium-deep/deep transient electromagnetic sounding exploration. It features high power, short turn off time, high reliability, strong anti-interference performance, lightweight and low power consumption.
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Cable Analyzer
MM-HTDR MediaManifold
The Crestron MM-HTDR MediaManifold Cable Analyzer is a portable handheld device used to determine the length and integrity of RG6 cable runs. Using "time domain reflectometry," the MM-HTDR can measure cable lengths up to 1099 feet.
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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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Noise Sensor
CRY2301
CRY2301 Noise sensor is a new type of noise test equipment independently developed by CRY Sound for industrial grade applications. It can realize real-time noise time domain and frequency domain analysis with real-time spectrum analysis software. The product complies with such standards as IEC61672 (Class 1) and GB/T3785 (Class 1). CRY2301 integrates measurement microphone, preamplifier, data acquisition, and data communication in a compact structure. It supports an optional 1'' high-sensitivity microphone for extremely low sound pressure testing. CRY2301 uses a USB interface for data communication and power supply. As a composite USB device consisting of a USB Audio device and a HID device, it is compatible with 32-bit/64-bit Windows 7 and Windows 10 systems. CRY2301 is equipped with real-time spectrum analysis software for easy access to time and frequency domain measurements. The real-time spectrum analysis software supports frequency weighting and time weighting, and can perform acoustic analysis, such as noise statistical analysis, octave analysis, and FFT analysis.
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18 Bit / 300 MS/s Arbitrary Waveform Generator
AWG18
The AWG18 is an 18 bit Arbitrary Waveform Generator for high-speed / high resolution waveform generation. This module features two dedicated signal paths. A DC to 100 MHz path which is optimized for accurate time domain and frequency domain measurements up to 30 MHz. And a dedicated AC path optimized for signals between 10 MHz to 100 MHz. In combination with the built-in filters it features a typical harmonics level of better than -80 dBc for the whole range.
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Finite Element Method Magnetics Simulation Software
FEMM
Finite Element Method Magnetics
FEMM is a suite of programs for solving low frequency electro magnetic problems on two-dimensional planar and axisymmetric domains. The program currently addresses linear/nonlinear magneto-static problems, linear/nonlinear time harmonic magnetic problems, linear electrostatic problems, and steady-state heat flow problems.
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350 MHz Universal Frequency Counter/Timer, 12 digits/s, 20 ps
53230A
The Keysight 53230A universal frequency counter/timer serves all your frequency and time interval measurement needs. In addition to the typical frequency and time interval measurements, continuous/gap-free measurements are available for basic modulation domain analysis. Optional burst measurement software is available. An optional microwave channel can be added to measure 6 or 15 GHz.
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Materials Lab XM
The Materials Lab XM product provides a fully integrated reference grade time domain and AC measurement platform. No need to switch sample connections between techniques. Time domain measurements include I-V (current voltage) characterization as well as fast pulse techniques. AC testing techniques include everything from single-sine analysis, to multisine / Fast Fourier Transform for faster low frequency analysis, to harmonics and intermodulation for testing linearity and breakdown of materials. Measurements of electrical impedance spectroscopy (EIS), admittance, permittivity and capacitance are all provided from the XM-studio MTS software platform, together with integrated equivalent circuit analysis functionality.
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Gravity Sensors
iGRAV
Superconducting persistent currents (i) produce the most stable relative gravity meter in existence. Superconducting persistent currents (i) produce the most stable relative gravity meter in existence. Super stable: Drift less than 0.5 µGal/month Scale factor constant to better than 1 part in 104 for years! Super precise: 1 nanoGal (10-3 µGal) in frequency domain 0.05 µGal in the time domain for 1 minute averaging. Super low noise: 0.3 µGal/(Hz)½.