Reflectometers
Instruments used to measure the reflectance of a surface. (spaceflight.nasa.gov)
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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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SM, MM, Quad, PON Integrated OTDR
TR900 Series
Shenzhen Sharingtek Communication Co., LTD
TR900 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; The highest 45dB dynamic range, can penetrate optical splitter, effective PON network testing; Intelligent power-saving management, 20 hours long standby, efficient protection of test dimension.
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Spectroscopic Reflectometer
– Antireflective coating (ARC) on textured (poly-) crystalline silicon solar cellMeasurement– Thickness, Reflectivity, n&kWavelength– 420 – 950 nm (1.3-3.0 eV) : expandableAccuracy (thickness measurement on specular sample)– 104.5 nm for 104.8 nm SiO₂on c-Si* Accuracy can be dependent on the quality of filmThickness range– 10 nm ~ 20 mm (depend on sample)Data acquisition time– < 1 sBeam spot size– ~ 50 mmFocusing of beam– Manual (optional auto-focus)Sample stage– Manual X-Y stage (specify sample size and travel distance)(optional automatic X-Y stage for mapping)
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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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Spectroscopic Reflectometer
SR Series
Angstrom Sun Technologies, Inc.
Spectroscopic reflectometer (SR) tools are relative low cost and easy to use. To ensure accurate measurement on spectra, a long working distance and also adjustable working distance set up are professionally designed and considered. Since reflection spectra measurements require to use known reference to calibrate light intensity, it is hard to image that user could get accurate spectra without optimizing signal during such calibration because reference thickness is different from sample substrate's thickness in most of cases. Adjusting power output to lamp is our another consideration in ensuring a good measurement by reducing non-linearity effect of the detector.
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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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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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Integrated-In-Line-In-Situ-Meterology
Angstrom Sun Technologies, Inc.
Although table-top version is our major product platform, we do provide in-line and in situ solutions. Although all in-line tools involve some special configuration and customized designs, we have had such experience to demo our capability in semiconductor, photovoltaic, glass industries. Both spectroscopic ellipsometer and spectroscopic reflectometers could be integrated for in-line or in situ application purpose. But how to implement them, or which one is more suitable, an environmental situation should be considered. You are welcome to discuss with our experts and we'll be glad to offer a real solution to meet your needs.
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Mobil Cable Test and Fault Location System
SWG-12 (SWG-32)
• testing cable insulation with DC (rectified) voltage up to 32 kV;• conditioning faults by burning faulty cable insulation with current up to 100 mA;• pre-locating cable faults with the reflectometer RIF-9 based on the pulse reflection method (TDR), voltage wave oscillation method (DECAY), impulse current envelope (ICE) method and arc reflection method (ARC / ARC multi-shot);• pinpointing cable faults with the acoustic method with up to 2000 J surge wave generator and a suitable signal receiver.
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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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Coaxial Dual-Directional Coupler, 2 GHz to 18 GHz
772D
The Keysight 772D is a high-performance, dual-directional coupler designed for broadband swept measurements in the 2 to 18 GHz range. This coupler can be combined with Keysight power sensors and power meters for reflectometer applications. Forward and reverse power measurements on transmitters, components, or other broadband systems are made simpler using the Keysight 772D. The broadband design allows the use of a single test setup and calibration for tests spanning the entire 2 to 18 GHz range.
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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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Spectrum & Vector Analyzer
SVA1000X Series
The SIGLENT SVA1000X series spectrum & vector network analyzers are powerful and flexible tools for broadcast and RF device testing. With a wide frequency range from 9 kHz to 1.5 GHz, the analyzer delivers reliable automatic measurements and plenty of features including a tracking generator and multiple modes of operation: the base model is a swept super-heterodyne spectrum analyzer and optional functions include a vector network analyzer, a Frequency Domain Reflectometer based distance-to-fault locator, and a modulation analyzer. Applications include broadcast monitoring/evaluation, site surveying, EMI pre-compliance, research and development, education, production and maintenance.
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Microspectrophotometer
MSP Series
Angstrom Sun Technologies, Inc.
Microspectrophotometer (MSP) is an advanced optical system. The key difference with typical low cost reflectometer is in its capability to characterize optical properties of thin films over a micron region area. With unique design by Angstrom's professionals, user can enjoy digital imaging capability in Microspectrophotometers (MSP series) by live video, powerful digital editing, measurement tools for reflection, transmission, absorption spectra. Data acquisition only takes milliseconds.
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Portable Solar Reflectometer
CONDOR
Condor is a portable reflectometer designed for field measurement of reflectivity in the solar field in less than 10 seconds with a high accuracy and precision. It can be applied to both flat and curved reflecting surfaces of up to 4 mm thickness.
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Integrated 850/1300/1310/1490/1550/1625/1650nm SM And MM OTDR, With Ethernet
TR960 Series
Shenzhen Sharingtek Communication Co., LTD
TR960 series optical time domain reflectometer adopts 7 inch capacitance touch screen, which integrates 9 modules, with excellent intelligent hardware and software design, the accuracy of short fiber test and automatic test is higher. It is equipped with rich Ethernet (PING/PPOE etc.), support APP control.TR960 series is used to test the optical fiber length, loss and connection quality, and used in the engineering construction, link maintenance test. They are mainly used in urban trunk, bone trunk network and metropolitan network.
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Spectroscopic Ellipsometer
SE Series
Angstrom Sun Technologies, Inc.
Spectroscopic Ellipsometer SE series are advanced models built by Angstrom Sun Technologies Inc. Ellipsometry is a technique utilizing polarization state changes after light beam reacts with probing samples. A typical ellipsometer setup includes a light source, polarizing optics (like polarizer, analyzer, phase retarder or called as compensator), sample stage, detecting unit, incident angle change mechanism, computer and software for data acquisition and modeling. Not like reflectometer, ellipsometer parameters (Psi and Del) are always obtained at non normal incident angles. By varying incident angle. many more data sets can be obtained which will be helpful in refining model, reducing uncertainty and improving user's confidence on model's output. Therefore, variable angle ellipsometer is far more powerful than fixed angle ellipsometers. Furthermore, by utilizing broadband light source, spectroscopic data over a wavelength range with many wavelength points can be obtained and thus measurement precision and accuracy for optical properties can be greatly improved. The measurement speed for spectroscopic data has been overcome by implementing an advanced detector array so thousands of data can be acquired simultaneously. With such configuration and capable of collecting more data sets, the complicated layer stacks could be analyzed with powerful functions built within software.
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Mini OTDR Fiber Optic Reflectometer with VFL OPM Laser Source
MT-1300 Plus
Guangzhou Wanglu Communications Co., Ltd.
- Display: 3.5 inch color TFT-LCD screen- Handheld design, light weight and easy operation- Single mode: 1310/1550 nm- Dynamic range: 24 / 22dB (can test about 60 km)- Automatic measurement mode: 1310/1550 nm dual wavelength can be tested simultaneously- Applicable fiber: SM- <8m extra-short event dead zone- Wavelength: 1550nm- Up to 24dB High Dynamic Range- Distance Range: 4,8,16,32,64,128,256km- Pulse width: 3ns-10us- RJ45 cable TDR test & cable sequence test- Optical power meter, Visual fault locator, Laser source- Event Map, can display the length of the link, the type of event point and the position of break point.- USB interfaces, supporting USB stick and printer and direct cable download to PC via ActiveSync- LED light- Built-in friendly-environment lith ium battery with high capacity for over 12 hours of operating life
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OTDR
Wuhan Sunma Technology Co., Ltd.
OTDR, short for optical time-domain reflectometer, is an optoelectronic instrument used to characterize an optical fiber. It can offer you an overview of the whole system you test and can be used for estimating the fiber length and overall attenuation, including splice and mated-connector losses. It can also be used to locate faults, such as breaks, and to measure optical return loss.
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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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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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Saluki S2110P Series PON OTDR (up to 45dB)
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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OTDR Tester
M-OTDR-502
Fuzhou Metricu Technology Co Ltd
Optical Time Domain Reflectometer Wavelength 1310 / 1550nm, max test range 150KM, Dynamic range 28 / 26dB, SOR standard data saving, create PDF/EXCEL format report, stable laser source, support CW/270/330/1000/2000Hz, Test fiber's length, loss, attenuation parameters and event map, locate connection point/fusion point, Automatic analysis of various linkers/fusion points, easy analyze of various events,Support saving curves number ≥30000pcs, loss test, detect the optical or optical components loss value, etc. Test IP camera, optical power meter, visual fault locator, RJ45 cable TDR test, cable tester, cable tracer, etc.
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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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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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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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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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OTDR
OTDR, short for optical time-domain reflectometer, is an optoelectronic instrument used to characterize an optical fiber. It can offer you an overview of the whole system you test and can be used for estimating the fiber length and overall attenuation, including splice and mated-connector losses. It can also be used to locate faults, such as breaks, and to measure optical return loss.
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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





























