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Device Under Test
a specific purpose component or module check; ex. substantial component of a PCB.
See Also: DUT, Unit Under Test, EUT
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Large Earth Resistance Tester
WA 180
Wuhan Sangao Electrical Test Installations Limit Co.
WA180 Type Large earth resistance tester,To test substation earthing network(4Ω), Hydroelectric and Thermoelectric Power Plant,microwave(10Ω),lighting rod(10Ω)etc.Using new type variable frequency AC power supply, And adopts microcomputer control and signal processing measures, Solved the problem of interference of the testing process, To simplify the test procedure, To improve the precision and accuracy of the test results, reducing test personnel's the labor intensity and the cost of testing.The instrument can be used to test all kinds of power frequency earth resistance,contact voltage,step voltage etc frequency power parameters and soil resistivity. The instrument adopts the different frequency Anti-interference resistance technology, under strong interference environment accurately measured the frequency under 50Hz data.The maximum test current is 5A,it will not cause the earth device potential too high,and it also has strong anti interference ability, so it can be measured in the case of non power.
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RF Testing Platform for ATx05
AT118
The functional test of modern devices with wireless connectivity always requires RF isolated cameras, as the only way to have the parameters controlled and to guarantee operation under the specified conditions.
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PCIe 6.0 Protocol Test Backplane
P5563B
The Keysight P5563B PCIe 6.0 Protocol Test Backplane provides a convenient means for testing PCIe 6.0 add-in cards with a self-contained portable and powered passive backplane. The P5563B provides power required for all combination of exerciser and analyzer with device under test.
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Modulation Distortion Up To 125 GHz
S930712B
S930712B enables fast and accurate active device modulation distortion characterization under modulated stimulus conditions up to 125 GHz. The wide dynamic range and vector error correction of the PNA-X results in an extremely low residual EVM of the test setup, delivering you a complete picture of your device’s performance without test system interference. S93072B measures EVM, NPR, ACPR, and decomposes nonlinear signals and linear signals with the spectral correlation between input and output spectrum without doing demodulation. Integration with the PNA-X SCCM provides quick modulation distortion measurements while making other VNA measurements.
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Test Fixture Kits
Our test fixture kits provide cost effective solutions to printed circuit board testing and other devices under test. Our modular kits are available in multiple sizes and configurations. They can easily be customized if our standard doesn’t meet your requirements. Removable side panels for ease of fabrication for I/O connections, switches or other hardware.
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PXI Automotive Switch Simulator Modules
Pickering's Switch Simulator Modules are designed for automotive test applications. These modules simulate the operation of automotive switches where dirty contacts or leaking current can be expected from switch contamination. They allow automotive I/O devices to be tested for correct operation under adverse conditions.
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Pulse Function Arbitrary Noise Generator
81160A
Generation of 330-MHz pulses and 500-MHz function/arbitrary waveforms with a 2.5-GSa/s sample rate and 14-bit vertical resolution; Selectable crest factors for white Gaussian noise lets engineers determine how much distortion to apply to a device during stress testing to meet various serial bus standards; Glitch-free timing parameter changes allow engineers to change the frequency without drop-outs or glitches and enable continuous operation without rebooting or resetting the device under test; and Arbitrary bit patterns show capacitive load of the channels using simple pattern settings. Complex measurement setups are no longer necessary to test designs to their limits. Pulses 330 MHz, 500 MHz sine waves, 660 Mbit pattern
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Hipot Tests
The hipot test (high potential test) or dielectric withstand test, is used to determine the insulation and dielectric strength. It is carried out on modules, devices and systems of protection class I + II. In this test, the insulation of the test object is subjected to greater stress by the high voltage than in normal operation. It is determined whether the insulation of all current-carrying conductors, as well as the safety distance to the enclosure, is sufficient and complies with the legal requirements under normal operating conditions.We will be happy to assist you with any questions or solutions to problems.You will find a large selection of high-voltage testers in our comprehensive shop.Questions? We are always at your disposal.
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1kV, 120 MHz High Voltage Differential Probe Without Tip Accessories and with Auto Zero Disconnect
HVD3106A-NOACC
The HVD3000A series of high voltage differential probes cover the fullest range of applications, from 120/240 V switch-mode power supplies through 600 V class and 5 kV electrical apparatus. The table below provides a list of recommended probe models based on specific device under test applications.
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Regenerative Power System, 1000 V, ±60 A, 20 KW, 400/480 VAC
RP7972A
The RP7972A regenerative power system is a single output, bi-directional, regenerative DC power supply with highly integrated safety features that protect both your people and your device under test.
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PXIe-4144, 4-Channel, ±6 V, 500 mA PXI Source Measure Unit
782432-01
PXIe, 4-Channel, ±6 V, 500 mA PXI Source Measure Unit - The PXIe-4144 is a 4-channel source measure unit (SMU) ideal for high-pin-count applications. It features 4-quadrant operation, and each channel has integrated remote (4-wire) sensing for accurate measurements. The fast sample rate of the PXIe-4144 can reduce measurement times, capture transient device characteristics, and allow quick I V characterization of devices under test (DUTs). With a high-speed sequencing engine, you can synchronize all these SMUs with each other or with other instruments such as switches or high-speed digital test modules.
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PXI-4130, ±20 V, ±2 A DC, 40 W PXI Source Measure Unit
779647-31
±20 V, ±2 A DC, 40 W PXI Source Measure Unit - The PXI‑4130 is a programmable source measure unit (SMU). It has a single isolated SMU channel that offers a four-quadrant output that incorporates remote (4‑wire) sense. With its five current ranges, it is ideal for transistor characterization that requires accurately sourcing a constant current or voltage while sweeping another current. The PXI‑4130 also includes a utility channel that can source either current or voltage. This PXI SMU can act as either a constant voltage source or a constant current source, with a settable compliance limit for either mode. In addition, you can enable remote sense on the SMU channel to maximize voltage output and measurement accuracy on your device under test (DUT) for high-precision applications.
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NI-9239 , ±10 V, 50 kS/s/ch, 24-Bit, Simultaneous Input, 4-Channel C Series Voltage Input Module
782402-01
±10 V, 50 kS/s/ch, 24-Bit, Simultaneous Input, 4-Channel C Series Voltage Input Module - The NI‑9239 performs differential analog input. With channel‑to‑channel isolation, your entire system, including the device under test, is protected from harmful voltage spikes up to the isolation rating. In addition to safety, isolation eliminates measurement errors caused by ground loops because the front end of the module is floating. Designed for both speed and accuracy, the NI‑9239 is an effective general-purpose analog module because of its resolution, sample rate, and input range.
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PXI 8/16-Channel Isolated D/A Converter
M9185A
The M9185A is a fully independent, isolated D/A converter that is capable of supplying high voltage levels in parallel of up to eight or sixteen channels. Each channel is able to output up to 16V as stimulus signals to Device Under Tests (DUTs).
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PCIe 6.0 Protocol Exerciser
P5573A
Keysight P5573A PCIe 6.0 Protocol Exerciser gives the flexibility in providing realistic traffic to devices under test and also able to emulate as a complex host system
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DUT Prototype Board
DPB8800
The DPB8800 is an 11? x 14? PC board used to interface the tester with the Device Under Test (DUT). This board contains generous area for custom circuitry and extra relays. The DPB8800 is also available with standard solutions to test families of components like Op-Amps, Regulators, ADC?s and DAC?s. +/-15 V and +5 V are available to support circuitry biasing.
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Multi-Channel Attenuation Control Unit (4-channels), DC to 18 GHz, 0 to 121 dB, 1 dB Step
J7204B
The J7204B is a multi-channel (4-channels) attenuation solution for signal attenuation and conditioning of up to 4 devices under test (DUT). Operating frequency from DC to 18 GHz, with 121 dB, 1 dB steps. Exceptional 0.03 dB insertion loss repeatability per section for the entire 5 million cycles and excellent attenuation accuracy and flatness, the J7204B reduces cost of ownership and provide the best measurement accuracy.
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Regenerative Power System, 160 V, ±125 A, 10 KW, 400/480 VAC
RP7946A
The Keysight RP7946A regenerative power system is a single output, bi-directional, regenerative DC power supply with highly integrated safety features that protect both your people and your device under test.
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PXI RF Multiplexer Switch Module
PXI RF Multiplexer Switch Modules are ideal for high-channel-count applications that need to connect measurement or signal generation instruments to various test points on devices or units under test(DUTs or UUTs). PXI RF Multiplexer Switch Modules use a variety of relay types, including electromechanical armature relays, reed relays, field-effect transistor(FET) relays, and solid-state relays, each with their own benefits, allowing you to choose a multiplexer that fits your requirements. To program the switches, you can use the IVI-compliant NI-SWITCH driver software, complete with help documentation, example programs, and a soft front panel application for interactive control of switches. For intelligent management of complex switch systems, NISwitch Executive provides additional software tools to help you design, build, and deploy your switching system.
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Automatic Calibration Module
ACM2520
ACM2520 is an automatic calibration module that can be used with all CMT Vector Network Analyzers operating in frequency range up to 20 GHz. It is a fully automatic USB-controlled and powered electronic calibration module. Minimizing the number of steps required by technicians reduces the risk of human error and expedites the calibration process. Automating the calibration routine also reduces wear and tear on the analyzer and RF cables. To perform full 2-port calibration, each end of the ACM need only be connected to the analyzer once, as opposed to 18 connections with a traditional calibration. The ACM also contains a factory characterized 20dB in-line attenuator which acts as a simulated device under test (DUT). The confidence check feature loads the factory stored DUT into memory so proper calibration can be verified.
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1kV, 25 MHz High Voltage Differential Probe Without Tip Accessories and with Auto Zero Disconnect
HVD3102A-NOACC
The HVD3000A series of high voltage differential probes cover the fullest range of applications, from 120/240 V switch-mode power supplies through 600 V class and 5 kV electrical apparatus. The table below provides a list of recommended probe models based on specific device under test applications.
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Modulation Distortion Up To 90 GHz
S930709B
S930709B enables fast and accurate active device modulation distortion characterization under modulated stimulus conditions up to 90 GHz. The wide dynamic range and vector error correction of the PNA-X results in an extremely low residual EVM of the test setup, delivering you a complete picture of your device’s performance without test system interference. S930709B measures EVM, NPR, ACPR, and decomposes nonlinear signals and linear signals with the spectral correlation between input and output spectrum without doing demodulation. Integration with the PNA-X SCCM provides quick modulation distortion measurements while making other VNA measurements.
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PXI 18 Channel Data Comms MUX, 96-pin SCSI
40-735-902
The 40-735 data communications multiplexer is designed for switching the data lines of serial interfaces (RS232, USB). Careful attention to the design of the module ensures that the switching system minimizes its impact on the transmission distance of USB1.1 interfaces. The MUX is available in 36:1 or 18:1 formats and enables a single source of serial data to be switched to one of 36 or 18 devices under test. This allows the data source to load information to, or receive information from, the device under test. The 36:1 version can be software configured into two independent 18 way MUXs enabling two separate sources of serial data to be connected to separate banks of 18 devices. The module is ideal for performing bulk testing of any device that relies on a serial data communications port to load software or control the device operation. It can also be used for a variety of other applications where ever a 2-pole low power MUX is required.
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Nonlinear Component Characterization 10 MHz - 50 GHz (Export Control)
S94511B
The S94511B Nonlinear Component Characterization provides strong insight into the nonlinear behavior of your device under test (DUT).
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Dynamic Digital I/O with Per Channel Programmable Logic Levels and PMU PXI Card
GX5295
The GX5295 offers outstanding digital test capabilities and channel density in a compact 3U PXI form factor. Offering both performance digital and analog test capabilities, the GX5295 provides a cost-effective, tester per pin architecture - making this card the ideal choice for high throughput, mixed-signal component test applications. Each digital channel can be individually programmed for a drive hi, drive lo, sense hi, sense lo, and load value (with commutation voltage level). In addition, each channel offers a parametric measurement unit (PMU) providing users with the capability to perform parallel DC measurements on the DUT (device under test).
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Regenerative Power System, 500 V, 40 A, 10 kW, 200/208 VAC
RP7952A
The RP7952A regenerative power system is a single output, bi-directional, regenerative DC power supply with highly integrated safety features that protect both your people and your device under test. The regenerative capability enables the energy normally consumed to be returned to the grid cleanly, saving costs associated with energy consumption and cooling.
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Three Phase Reference Standard Meter
Signals & Systems India Private Limited
The Three Phase Reference Standard Meter (TPRS-1107) is portable equipment from SANDS. The main objective of this device is to calibrate the errors in three-phase and single-phase energy meters i.e. the meter under test (MUT). The TPRS supports both static and electro-mechanical types of meters. It can also be used to compute the voltage, current, energy, power factor etc of the meter under test. It has an LCD display, an alphanumeric keypad that makes it easy for the user to operate the TPRS. It can be interfaced with the PC for data analysis. It has the capability of storing up to 8000 test results.
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Motors and Resolvers
We design, manufacture and test highly reliable motion control devices for extreme environments that range from vacuum and the extreme cold of outer space to high pressure and temperature applications many miles under the earth's surface.
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Artificial Power Supply Network
KH3760
Beijing KeHuan Century EMC Technology Co,.LTD
The artificial power supply network (also called the power supply impedance stabilization network) should be able to provide a stable impedance to the device under test in the radio frequency range, isolate the device under test from high-frequency interference on the power grid, and then couple the interference voltage to the receiver.
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Artificial Power Supply Network
KH3763
Beijing KeHuan Century EMC Technology Co,.LTD
The artificial power supply network (also called the power supply impedance stabilization network) should be able to provide a stable impedance to the device under test in the radio frequency range, isolate the device under test from high-frequency interference on the power grid, and then couple the interference voltage to the receiver.