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The 4024D / E / F / G spectrum analyzer has many advantages, including a wide frequency range, high performance, fast sweep speed, various functions, and easy operation. In terms of performance specifications, it offers excellent display resolution, low phase noise, and fast sweep speed. Regarding measurement functions, it provides a rich set of measurement capabilities, including spectrum analyzer, interference analyzer, AM/FM/PM analyzer, power meter, channel scanner, and intelligent measurement functions for channel power, occupied bandwidth, adjacent channel power ratio, tune & listen, emission mask, and carrier-to-noise ratio. The 4024 features an integrated design with an 8.4-inch LCD and capacitive touchscreen, making display definition and operation convenient. This series is handheld, compact, lightweight, and equipped with flexible power options, making it very suitable for fieldwork. The 4024 can be used for testing signals and equipment in the fields of aerospace, microwave and satellite communications, radio communications, radar surveillance, electronic countermeasures and reconnaissance, and precision guidance.
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It adopts a compact portable box structure that is small, lightweight, low power consumption, and convenient for carrying. Utilizing miniaturized integrated design technology for wideband millimeter-wave receivers, all-phase synchronization technology based on wideband VCO, full digital intermediate frequency design technology, and microwave composite multilayer circuit board design technology, it achieves high-performance indicators and ensures the economic efficiency of the product. The 4041 series consists of four models. With a preamplifier equipped across the entire product spectrum, very high reception sensitivity can be obtained at any frequency point. Furthermore, the integrated design of a 12.1-inch high-brightness LCD and a capacitive touchscreen, along with a combination design of large buttons and virtual buttons, enhances operational convenience. As for performance indicators, it features excellent average noise level and phase noise indicators, as well as high-speed scanning. The measurement functions include optional modes such as interference analyzer channel scanner, AM/FM/PM analyzer, power meter, and various measurement functions such as channel power, occupied bandwidth, adjacent channel power, audio demodulation, emission mask, and carrier-to-noise ratio.
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The overall size of the handheld monitoring receiver is 182.5mm × 289mm × 69mm, and the total weight of the machine is less than 3.5kg. The operating time on battery is 3 to 4 hours, and the display is a 10.1-inch TFT with an integrated touch screen. It is equipped with multiple functions such as searching, intercepting, measuring, analyzing, demodulating, direction finding, and positioning of radio signals, and can be used for radiation monitoring, coverage measurement, rapid detection and positioning of illegal radiation sources/interference sources, as well as performing key activities in compliance with ITU specifications for radio security and other tasks. The entire machine adopts a full touch screen design, and the software supports multi-touch interactive mode. The touch operation experience of a smartphone has been fully transplanted to the monitoring receiver. Users can easily complete operations such as zooming in and out of display tracks, moving windows, and setting parameters using touch gestures. It provides a user-friendly UI interface to ensure that users can operate the monitoring receiver just like using a mobile phone or tablet computer.
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The 82407 Spectrum Analyzer Frequency Extension Module Series is primarily designed for millimeter-wave frequency extension for spectral analysis. This series can be used as the front end of a millimeter-wave signal receiver. The 82407 series adopts a standard waveguide interface corresponding to its frequency range as the input interface. The LO input uses a 2.4mm female coaxial connector, and the IF output uses a 3.5mm female coaxial connector.
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The 3672 series vector network analyzers include the 3672A, 3672B, 3672C, 3672D, and 3672E. The 3672 analyzers offer multiple calibration types, including frequency response, single port, response separation, extended response, full dual port, and electronic calibration, providing various display formats such as logarithmic amplitude, linear amplitude, standing wave, phase, group delay, Smith charts, and polar coordinates. They are designed with several standard interfaces such as USB, LAN, GPIB, and VGA. In addition to all the measurement functions of traditional vector network analyzers, the 3672 analyzers, with configurable functional options, enable accurate measurements of amplitude frequency characteristics, phase frequency characteristics, and group delay in fields such as transmission/reception (T/R) module measurements, dielectric property measurements, microwave pulse property measurements, and optoelectronic property measurements. They also allow for multifunctional and comprehensive parameter testing of mixers/converters, two-dimensional sweeps of gain compression, and pulse S-parameters. These analyzers are essential equipment for scientific research and manufacturing processes in radar, communication, and navigation systems.
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The 3672-S series maintains the same important technical specifications as the 3672 series, such as sweep speed and dynamic range, while reducing costs and improving price-performance ratio. The 3672-S series offers multiple calibration types, including frequency response, single port, response separation, enhanced response, full dual port, and E-cal. It incorporates multiple display types such as logarithmic amplitude, linear amplitude, standing wave, phase, group delay, Smith chart, and polar coordinates. Many standard interfaces are available, including USB, LAN, GPIB, and VGA. These can accurately measure characteristics such as amplitude frequency, phase frequency, and group delay.
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The 3656A / B / D vector network analyzer can be applied in fields such as wireless communication, cable TV, education, and automotive electronics. It can be used for performance measurement of RF components such as filters, amplifiers, antennas, cables, and cable TV subconnectors. It adopts the Windows operating system and is equipped with features for error calibration, time domain, and fixture simulation. It supports multiple display formats including logarithmic amplitude, linear amplitude, standing wave, phase, group delay, Smith chart, and polar coordinates. It offers multiple calibration types such as frequency response, single port, response separation, extended response, full dual port, fast SOLT calibration, and electrical calibration. Multi-channel and multi-window display capabilities are available. It is designed with USB interface, LAN interface, GPIB interface, and VGA interface. With efficient and powerful error correction capabilities, it can quickly and accurately measure the amplitude, phase, and group delay characteristics of DUT S-parameters.
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By adopting advanced technologies such as hybrid integrated design of RF circuits and digital circuits, broadband fundamental wave mixing, digital IF processing, and intelligent power management, the 3680A/B Cable & Antenna Analyzer offers advantages of high speed, high precision, compactness, lightweight, battery operation, touch screen operation, and automatic adjustment of backlight brightness. In addition to testing VSWR, reflection loss, characteristic impedance, and phase, it can also accurately identify fault points. The 3680A/B Cable & Antenna Analyzer is developed for on-site testing, primarily for trunking, GSM, PCS/DCS, CDMA, GPRS, WCDMA, CDMA2000, TD-SCDMA, LTE, and paging systems. During the installation, calibration, and regular maintenance of cable and antenna systems, the Cable & Antenna Analyzer helps users quickly estimate the status of transmission lines and antenna systems, improve the maintenance efficiency of operational base stations, and accelerate the installation and calibration of new base stations.
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The 3644A / 45A / 43Q / 49 / 49A / 49B millimeter wave VNA extender module has reached an international level in measurement speed, dynamic range, and measurement stability. In terms of hardware, it adopts new design concepts and technological solutions, significantly enhancing the key performance indicators of the equipment. The 3644A / 45A / 43Q / 49 / 49A / 49B millimeter wave VNA extender, 3640A millimeter wave frequency extension controller, and vector network analyzer together form a millimeter wave vector network analysis system, achieving flexible configurations of 5mm, 3mm, 2mm, and 1mm. The maximum frequency range reaches up to 500GHz. With advantages such as concise system configuration, user-friendly interface, and high testing accuracy, it enables complete S-parameter measurements of the millimeter wave networks under test. This system is widely used in research and development, manufacturing, and testing in the fields of millimeter wave components, MMICs, antennas, RCS, and materials.
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The 3671 series vector network analyzers include the 3671C, 3671D, and 3671E. The 3671 series network analyzers provide frequency response, single-port, response separation, extended response, full dual-port, electronic calibration, and more. They offer various display formats such as logarithmic amplitude, linear amplitude, phase, group delay, Smith chart, and polar coordinates. They are designed with several standard interfaces including USB, LAN, GPIB, VGA, and HDMI. They can accurately measure the amplitude frequency characteristics, phase frequency characteristics, and group delay characteristics of microwave networks. The 3671 series vector network analyzers retain the functionalities of high-end vector network analyzers, such as performance indicators, equipment appearance, display effects, and software interfaces, while controlling the volume, weight, wind noise, and other aspects of the equipment. Therefore, this product is widely used in fields such as radar, communications, and navigation, which are essential testing devices in the defense industry and scientific research at universities.
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The 3986 series noise figure analyzers include the 3986A, 3986D, 3986E, 3986F, and 3986H. Features of this product include a wide frequency range, high sensitivity reception, an easy-to-use user interface, dual-channel HD display, various external interfaces, and dual noise source drives. It supports automatic measurement of noise figures for amplifiers, upconverters, downconverters, and multi-stage frequency receiving links. The guide interface is intuitive for setting measurement modes. The comprehensive loss compensation feature can compensate for losses occurring in channels before and after measurements using fixed format or Excel format. The internal noise figure measurement uncertainty calculator performs quantitative analysis of the uncertainty in noise figure measurements. The limit line function, which provides pass/fail notifications for tests, simplifies the decision-making process for pass/fail tests. User-friendly features make it easy for engineering technicians to correctly set measurement values and observe and save measurement results in various formats.
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The 5G next-generation communication networks and autonomous driving technology in the automotive field, which are being developed for practical use and commercialization in 2020, require measurement technology for onboard millimeter-wave and sub-millimeter-wave radar. SAF's Spectrum Compact series covers a wide frequency range from 300 MHz to 87 GHz with eight models. Customers can choose the most cost-effective model that best fits their applications. The device will satisfy even in serious research and development with standalone measurements in the field, as well as through standard PC analysis software. It is an essential tool for antenna alignment and testing, and is the top choice for LoS verification applications. This device is ideal for analysis and measurement applications of various microwave systems. It features an interactive GUI with intuitive controls and an instant on/off function, along with a resistive touch screen.
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A noise source is a device that can generate a random continuous spectrum signal. A properly functioning noise source must have stable output noise power and a uniform power spectral density within the specified frequency band. We offer various solid-state coaxial noise sources in the frequency range of 10 MHz to 50 GHz. This includes the Smart Series and Standard Series, which have the advantage of a wide frequency range. They exhibit low output voltage standing wave ratio (VSWR) and excellent flatness of output excess noise ratio, among other features. The Smart Noise Source employs I2C bus technology to enable automatic downloads and improve measurement speed. Equipped with a digital temperature sensor, it allows the host to automatically monitor changes in ambient temperature, correcting the temperature for noise figure measurements and enhancing measurement accuracy. The standard noise source requires a pulse voltage drive of +28V. Together with a solid-state noise source and a noise figure analyzer, we provide a complete solution for measuring noise figures at microwave and millimeter-wave frequencies.
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The 2438 series microwave power meter consists of a microwave power meter host and a series of microwave power sensors. With a newly designed wideband diode detector, it incorporates digital signal processing technology and multidimensional calibration compensation technology, enabling the device to have a wide frequency range, broad dynamic range, high precision, fast measurement and analysis, and serialization of sensors. It is primarily used for measuring and calibrating the average power, peak power, and pulse envelope power of microwave signals. It is an essential measuring instrument for research and development, manufacturing, acceptance, and maintenance in fields such as radar, electronic countermeasures, and communications.
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The 87230/87231/87232/87233 USB power sensor is a diode-based power sensor equipped with a USB 2.0 full/high-speed self-adaptive interface. It incorporates high-performance digital processing chips and various calibration and correction technologies to achieve a wide frequency range and broad dynamic range. Power measurements and dynamic range can be established by connecting to computers and other electronic measuring instruments to create a power testing system. In particular, it can be used for field tests, production line tests, and other low-cost power testing.
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The 3871 series broadband solid-state amplifier series operates from 9 kHz to 110 GHz and is provided in a 4U 19-inch rack mount chassis according to the IEC60297-3-100.2008 standard. Designed with a wide bandwidth, high gain and power, broad dynamic range, low spurious signals, and very high load resistance, the amplifier can be used as suitable test equipment covering multiple frequency bands. This makes it suitable not only for applications such as electronic counter measurements, antenna testing, laboratory instrumentation, and electromagnetic compatibility/electromagnetic interference testing, but also for narrowband applications like radar, microwave imaging, and satellite communications. The 3871 series amplifier features a patented spatial power combine. The amplifier operates on 100-220 VAC and is suitable for both rack-mounted applications such as testing and measurement and benchtop use. The RF input and output are matched to 50Ω. Driver amplification, bias, and gain control are integrated.
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The 4957D / E / F microwave analyzer has a frequency range of up to 18 GHz / 26.5 GHz / 40 GHz and provides users with powerful and comprehensive analysis capabilities through dual-port vector network analysis, cable and antenna analysis, vector voltage measurement, spectrum analysis (channel power, adjacent channel power, occupied bandwidth, interference analysis, and frequency counting), electric field strength measurement, and power measurement. The dual-port vector network analysis features fast and accurate measurement capabilities for RF network parameters, offering logarithmic, linearity, phase, group delay, impedance circle diagrams, polar coordinates, standing wave ratio, and other display formats, as well as time domain measurement options. In cable and antenna analysis, it can measure standing wave ratio, reflection loss, impedance, cable loss, and other parameters of microwave networks such as antennas, transmission lines, and cables. Additionally, the distance-to-fault (DTF) feature allows for easy measurement of discontinuities in the impedance of cable antenna feeders and cables.
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The 5256C 5G communication terminal integrated tester is primarily used for research and development, manufacturing, calibration, testing, certification, maintenance, and education in the field of 5G terminals and baseband chips. It is equipped with 5G signal generation capabilities, 5G signal power characteristics, demodulation characteristics, and spectral characteristic analysis functions, supporting high-speed testing on 5G terminal production lines. It can transmit downlink 5G NR signals to achieve receiver testing for 5G terminals. Additionally, it supports 3GPP TS38 521 Release 15 version, sub-6GHz, and multi-domain parallel synchronization testing, analyzing 5G terminal signals from the perspective of angles and dimensions of perspective. The tester meets various testing requirements through a variety of optional configurations, such as terminal RF compliance testing using the 3GPP TS38 521-1 protocol standard, and can also support RF compliance testing for 4G/3G/2G and Wi-Fi terminals through software upgrades.
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The Ceyear 5252D 5G Multi-Channel Test Set is a multi-channel parallel analysis system for testing 5G base stations, providing high performance in 5G base station transceiver testing that supports the 3GPP TS 38.104 V15.4.0 standard. The 5252D is also compatible with 4G (LTE), 3G (WCDMA), and 2G (GSM) base stations. It integrates advanced multi-channel RF transceiver modules and high-speed baseband processing hosts, offering a wide frequency bandwidth, broad modulation bandwidth, multiple channels, and flexible configurations. This allows for the comprehensive handling of critical technical issues such as wide bandwidth, multi-channel, and frame structure. To represent the guaranteed product specifications of the 5252D 5G Multi-Channel Test Set, parameters such as EVM, OBW, ACLR, time domain, frequency domain, and sensitivity are included. This enables full-stage functionalities for large array antenna base station testing, transceiver RF performance testing, base station production, and BASESTATION optimization. Furthermore, the 5252D provides insights for the verification of cutting-edge 5G communication technologies.
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The 4992A wireless test set, which integrates multiple RF transmission and reception analysis functions with sound source analysis and other features, measures various performances of wireless, intercom, and audio equipment in the range of 2MHz to 1GHz / 2.7GHz, and can test standing waves of communication cables and antennas. It is a compact and versatile comprehensive wireless testing device. Equipped with strong environmental adaptability and a rechargeable battery, the test set can be used for simple lab applications, manufacturing and debugging of communication equipment, on-site installations, civilian communications, public security, and the development of military information technology.
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The 4945B / C wireless communication test set is a multifunctional and portable model based on software-defined radio architecture, integrating a rich set of features such as generation and analysis of frequency-hopping signals, generation and demodulation analysis of vector signals, generation and demodulation analysis of analog modulation signals, audio signal generation and analysis, audio oscilloscope, and automated testing. The test set enables key performance testing related to the measurement and analysis of functional parameters of wireless communication equipment, including transmission and reception, RF, modulation, audio, and digital. Its wide range of applications covers research and development, manufacturing, verification, and maintenance. It is suitable for the repair and testing of wireless communication equipment, including shortwave/ultra-shortwave radio stations, data link systems, communication and monitoring satellites, and wireless relay equipment. Military mobile phone companies with wireless communication terminals such as communication vehicles, surveillance vehicles, ships, and external field tests can conveniently use this test set.
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The 6418C OTDR is a mini testing device designed for FFTx networks, primarily used to measure the physical characteristics of optical fibers and cables such as length, transmission loss, and splice loss, and it can also accurately detect the location of events and faults along the optical fiber. The 6418C OTDR adopts an integrated design with two colors and two materials, giving it a novel and beautiful appearance, while its structure is strong and sturdy. With both a touch screen and keypad, operation is very convenient. The built-in advanced anti-reflective LCD ensures that the operating interface is clearly visible even in the field. This device features four optical interfaces that can simultaneously achieve functions of an optical power meter, VFL, and single-mode and multi-mode testing. The interface types are interchangeable, making it easier to clean the fiber end faces. The device has multiple external interfaces, enabling not only remote control via an Ethernet interface but also data communication with U-disks, printers, and PCs through two types of USB interfaces.
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The 6416 handheld optical pulse tester (6416 OTDR) is a testing device designed for FTTx, primarily used to measure the physical characteristics of optical fibers and cables such as length, transmission loss, and splice loss. It can also accurately identify event points and fault points along the optical fiber. The 6416 OTDR is widely applied in the engineering construction, maintenance testing, emergency repairs, and R&D, manufacturing, and testing of optical fibers and cables in optical fiber communication systems. The 6416 OTDR adopts cutting-edge technology in its mold design process, combining double colors and two materials, resulting in a novel and beautiful appearance with a strong and sturdy structure. The anti-reflective LCD display ensures that the operating interface remains very clear even in field environments. Two power modes are available; using a large-capacity lithium battery allows the device to operate for over 10 hours. There are two types of USB interfaces, allowing connection to a USB drive or communication with a PC via a USB cable. Additionally, it comes with a comfortable strap for easy portability.
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The 6419A BOTDR can simultaneously measure strain distribution, loss distribution, and Brillouin scattering spectrum at various locations in optical fibers, and can display 3D and multiple distribution parameters. It offers advantages such as high-precision strain measurement, good reproducibility, and single-end non-destructive measurement. It has become an indispensable instrument in the fields of optical fiber communication and optical fiber sensing (OFS). The 6419A can be widely used for health monitoring of bridges, dams, tunnels, high-rise buildings, oil well platforms, and oil pipelines, as well as for predicting and warning of geological hazards such as landslides, mudflows, and earthquakes. It is also applicable for diagnosing intelligent structures such as ships and spacecraft. The 6419A can also be used to measure the strain distribution of optical fiber loops or underwater optical cables during the development, manufacturing, testing process, or when underwater optical cables are in the development, manufacturing, construction, acceptance inspection, and maintenance stages.
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It can be used for testing single-mode wavelengths of 1310 nm, 1550 nm, 1490 nm, 1625 nm, and 1650 nm, multi-mode wavelengths of 850 nm and 1300 nm, as well as customized special wavelengths. It offers multiple options for modules such as single wavelength, multi-wavelength, and online testing. With a maximum dynamic range of up to 50 dB, this device can be used for testing remote multi-branch communication networks. The minimum event dead zone is 0.5 m, making it easy to monitor close connections, and the minimum sampling resolution is designed to accurately identify event points at 2.5 cm. Furthermore, this device is designed with multiple convenient feature options, including a stable light source, optical power meter, visible red light source, and fiber end face inspection tester. It is designed to operate at temperatures ranging from -10°C to 50°C and to be stored at temperatures from -40°C to 70°C, meeting both EMC requirements and the requirements for vibration and shock testing. The MTBF (Mean Time Between Failures) is over 6000 hours. To ensure high reliability, it can withstand continuous measurements in the field, powered by a built-in 75W lithium battery.
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The 2498C Optical Multimeter is a handheld intelligent tester equipped with multiple functions, integrating a light source and a light power meter. In addition to absolute and relative power testing, it can perform optical loss testing for optical fibers, optical cables, and optical passive components, making it ideal for the installation, maintenance, and repair of fiber optic communication and cable TV systems.
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The optical laser light source adopts an integrated design of two colors and materials, making it visually appealing and innovative in design. The panel is simple, and the keys are convenient for operation.
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It has high attenuation accuracy and reproducibility over a wide wavelength range of 1200nm to 1650nm, with no power jumps observed. Furthermore, it offers absolute attenuation mode and relative attenuation mode to meet various testing needs of customers.
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The product models of the 6433 series optical wave component analyzer are 6433D (10MHz to 20GHz), 6433F (10MHz to 43.5GHz), 6433H (10MHz to 50GHz), and 6433L (10MHz to 67GHz), available in 2-port and 4-port models. The optical wave component analyzer is mainly used for testing frequency response parameters of high-speed wideband electro-optical devices (electro-optical modulators, directly modulated lasers, TOSAs), optoelectronic devices (PDs, PINs, APDs, ROSAs), and optical devices (optical attenuators, EDFAs). It serves as an efficient testing instrument in the scientific research, manufacturing, and measurement processes of optical chips, optical devices, optical transceiver components, optoelectronic equipment, and optical communication systems.
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This is a newly upgraded comprehensive radio frequency tester. The frequency range is from 9 kHz to 6.5 GHz. Compared to previous products in the same frequency band, the 4957B radio frequency comprehensive tester not only has significantly improved indicators but also enhanced various testing functions.
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The 4024CA Spectrum Analyzer is a broadband handheld real-time spectrum analyzer designed for field testing. The maximum bandwidth for real-time analysis reaches 120 MHz. In addition to real-time spectrum analysis, 5G NR demodulation analysis, LTE FDD/TDD demodulation analysis, GSM/EDGE demodulation analysis, directional analysis, and other measurement function modes, it also includes electric field strength measurement, channel power, occupied bandwidth, adjacent channel power, audio demodulation, harmonic distortion, spectral radiation mask/spurious radiation mask, and indoor/outdoor map measurements. It features an integrated design with an 8.4-inch large LCD and capacitive touchscreen to facilitate user operation. The structure adopts a handheld chassis, making it compact, lightweight, flexible in power supply, highly operable, and very suitable for field use.
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The "GA146X series" is a highly cost-effective microwave signal generator with a frequency range from 5 MHz to a maximum of 40 GHz. It is suitable for various applications using RF and microwave, such as wireless communication and radar. It can be widely used in electronic engineering products in fields such as automatic test systems, components, receivers, and production testing. 【Features】 ■ Stylish and lightweight design, convenient and flexible interface ■ High cost performance ■ High frequency stability, aging rate < ±8×10^-10 / day ■ High-performance spectral performance, phase noise: -119 dBc/Hz @ 10 KHz ■ Frequency switching speed: ≤20 ms * For more details, please refer to the PDF materials or feel free to contact us.
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The "eoProbe" is a light probe and optoelectronic sensor that can be used in water and oil. It achieves innovative electric field measurements through an electro-optical probe utilizing the Bockelmann effect and a high-end converter. The measurement performance exceeds several MV/m, providing advanced functionality in extremely harsh environments such as underwater, with an ultra-wide bandwidth of 40Hz to over 100GHz. The active components of the sensor, which do not use metal parts (metal-free), are fundamentally crystals. The measurement signals are transmitted by a laser within the fiber optic link. 【Features】 ■ Provides advanced functionality in ultra-wide bandwidths and extremely harsh environments such as underwater ■ Capable of measuring three components and phase of vector electric fields ■ Can accurately identify and measure three-axis vectors ■ Unlike conventional antenna-based probes, the measured electric field does not affect the measurement ■ Electric field measurements inside animal tissue, fruits, or vegetables within MRI systems are also possible *For more details, please refer to the PDF document or feel free to contact us.
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The SDS6000A series digital storage oscilloscope features a bandwidth of 2GHz, 1GHz, and 500MHz, with a maximum sample rate of 5GSa/s/ch, a maximum record length of 500M points, and the capability for mixed signal analysis with up to 4 analog channels and 16 digital channels. Additionally, it is possible to upgrade the Eye diagram and Jitter analysis functions. [Siglent Product Introduction] https://wavecrestkk.co.jp/sl/
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A multifunction oscilloscope packed with seven measurement functions. (1) Oscilloscope (2) Waveform generator (3) Multimeter (4) FFT spectrum analyzer (5) Frequency counter (6) Protocol analysis (7) Amplitude-frequency curve analysis
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XSA800 Series: Frequency range 9kHz-1.5GHz (maximum), -160 dBm displayed average noise level (DANL)
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Achieving accurate measurements with a low noise floor and wide dynamic range.
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TBLM1 LISN Mate is a companion device for LISN that separates conducted noise signals into common mode components and differential mode components. The LISN Mate is connected to the output of the LISN inserted in the positive power line and to a second LISN inserted in the negative power line. The noise signal conducted at the output of the LISN is the sum of common mode noise and differential mode noise. The LISN Mate separates it into common mode components and differential mode components, and each signal component can be used at separate BNC ports.
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The TBCP2-250 shows a very flat response with a 3dB bandwidth of 250 MHz and is characterized over a frequency range of 30 kHz to 300 MHz. Upon request, a test protocol covering a frequency range of 1 kHz to 350 MHz can also be provided. Its transmission impedance is > 12 dB ohms in the range of 700 kHz to 300 MHz. The TBCP2-500 shows a flat response with a 3dB bandwidth of 500 MHz and is characterized over a frequency range of 30 kHz to 600 MHz. Upon request, the test protocol can be extended to frequencies up to 1 kHz. Its transmission impedance is > 15 dB ohms in the range of 1 MHz to 500 MHz. The TBCP2-750 shows a very flat response with a 3dB bandwidth of 750 MHz and is characterized over a frequency range of 30 kHz to 800 MHz. Upon request, the test protocol can be extended to frequencies up to 1 kHz. Its transmission impedance is > 15 dB ohms in the range of 1 MHz to 750 MHz. The opening of the RF current monitoring probe is 32 mm.
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The TBCP3-1000 is a fixed aperture RF current monitoring probe. It has a very flat response with a 3dB bandwidth of 1 GHz and is characterized and usable over a frequency range of 30 kHz to 1 GHz. The aperture of the RF current monitoring probe is 17 mm. Its transfer impedance is close to 20 dB ohms in the range of 3 MHz to 1 GHz. Tekbox provides calibration fixtures compatible with the TBCP3 series of fixed aperture current probes.
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【TBCP4-250】 The TBCP4-250 exhibits a very flat response with a 3dB bandwidth of 250 MHz and is characterized and usable in the frequency range of 10 kHz to 250 MHz. The opening of the RF current monitoring probe is 32 mm. Its transfer impedance is close to 14 dB ohms in the range of 400 kHz to 250 MHz. 【TBCP4-500】 The TBCP4-500 exhibits a very flat response with a 3dB bandwidth of 500 MHz and is characterized and usable in the frequency range of 10 kHz to 500 MHz. The opening of the RF current monitoring probe is 32 mm. Its transfer impedance is close to 16 dB ohms in the range of 400 kHz to 500 MHz. 【TBCP4-750】 The TBCP4-750 exhibits a very flat response with a 3dB bandwidth of 750 MHz and is characterized and usable in the frequency range of 10 kHz to 800 MHz. The opening of the RF current monitoring probe is 32 mm. Its transfer impedance is close to 20 dB ohms in the range of 400 kHz to 750 MHz.
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The UBBV-NF series preamplifiers are designed for all low-frequency applications. Starting from DC / 1Hz, they are particularly suitable for conductive emission measurements in the low-frequency spectrum, either as audio amplifiers or as sensitivity amplifiers for probes and magnetic field tracking antennas.
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The UBBV-HF preamplifier achieves maximum performance, especially when measuring very weak signals. It is highly recommended for pre-compliance testing for EMC and standards such as EN55011, EN55022, and EN50371.
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The HR-E 40-1 electric field probe was developed for the analysis and measurement of high-frequency structures (such as 5G modules and microwave components). The HR-E 40-1 is a passive near-field probe designed to measure electric fields up to 40GHz. The probe's resolution is 0.2mm. For reproducible measurements of circuits and signal lines, it is recommended to use a test setup with the LangerIC scanner.
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A powerful and flexible tool for testing broadcast and RF devices. It offers reliable automatic measurements and a wealth of features, including a tracking generator and multiple operating modes.
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