Showing results: 886 - 900 of 1015 items found.
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40-562A-121-15X32 -
Pickering Interfaces Ltd.
This version of our BRIC is part of a range of high-density PXI matrix modules. These modules are available in 2, 4 or 8-slot PXI sizes to suit all high performance matrix requirements and are constructed using instrumentation quality reed relays. With this high level of switching density, these PXI matrix modules allow a complete Functional ATE system to be housed in a single 3U PXI chassis. These BRIC matrix modules allow the use of lower cost 8 or 14-slot PXI chassis.
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40-561A-122-105X16 -
Pickering Interfaces Ltd.
This version of our BRIC is part of a range of high-density PXI matrix modules. These modules are available in 2, 4 or 8 slot PXI sizes to suit all high performance matrix requirements and are constructed using instrumentation quality reed relays. With this high level of switching density, these PXI matrix modules allow a complete Functional ATE system to be housed in a single 3U PXI chassis. These BRIC matrix modules allow the use of lower cost 8 or 14-slot PXI chassis.
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40-562A-121-10X32 -
Pickering Interfaces Ltd.
This version of our BRIC is part of a range of high-density PXI matrix modules. These modules are available in 2, 4 or 8-slot PXI sizes to suit all high performance matrix requirements and are constructed using instrumentation quality reed relays. With this high level of switching density, these PXI matrix modules allow a complete Functional ATE system to be housed in a single 3U PXI chassis. These BRIC matrix modules allow the use of lower cost 8 or 14-slot PXI chassis.
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40-562A-121-110X16 -
Pickering Interfaces Ltd.
This version of our BRIC is part of a range of high-density PXI matrix modules. These modules are available in 2, 4 or 8-slot PXI sizes to suit all high performance matrix requirements and are constructed using instrumentation quality reed relays. With this high level of switching density, these PXI matrix modules allow a complete Functional ATE system to be housed in a single 3U PXI chassis. These BRIC matrix modules allow the use of lower cost 8 or 14-slot PXI chassis.
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40-562A-122-110X16 -
Pickering Interfaces Ltd.
This version of our BRIC is part of a range of high-density PXI matrix modules. These modules are available in 2, 4 or 8-slot PXI sizes to suit all high performance matrix requirements and are constructed using instrumentation quality reed relays. With this high level of switching density, these PXI matrix modules allow a complete Functional ATE system to be housed in a single 3U PXI chassis. These BRIC matrix modules allow the use of lower cost 8 or 14-slot PXI chassis.
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40-562A-122-110X8 -
Pickering Interfaces Ltd.
This version of our BRIC is part of a range of high-density PXI matrix modules. These modules are available in 2, 4 or 8-slot PXI sizes to suit all high performance matrix requirements and are constructed using instrumentation quality reed relays. With this high level of switching density, these PXI matrix modules allow a complete Functional ATE system to be housed in a single 3U PXI chassis. These BRIC matrix modules allow the use of lower cost 8 or 14-slot PXI chassis.
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40-560A-121-115X16 -
Pickering Interfaces Ltd.
This version of our BRIC is part of a range of high-density PXI matrix modules. These modules are available in 2, 4 or 8 slot PXI sizes to suit all high-performance matrix requirements and are constructed using instrumentation quality reed relays. With this high level of switching density, these PXI matrix modules allow a complete Functional ATE system to be housed in a single 3U PXI chassis. These BRIC matrix modules allow the use of lower cost 8 or 14-slot PXI chassis.
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40-530-021 -
Pickering Interfaces Ltd.
Typical applications for this high-density reed relay matrix include signal routing in Functional ATE and data acquisition systems. These PXI matrix modules are constructed using high reliability Sputtered Ruthenium Reed Relays, offering 109 operations to give maximum switching confidence with long life and stable contact resistance. Larger matrices may be constructed by Daisy Chaining the common signals from multiple PXI modules. For example, seven PXI modules will form a 224x8 Matrix, a total of 1792 crosspoints in a 7-slot PXI Chassis.
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A.T.E. Solutions Ltd.
Whatever your functional testing requirement, whether analogue, digital, or a combination of technologies, we have a solution. With over 2500 applications delivered in this field we have a level of experience that cannot be matched. Ensure the reliability of your product with our functional testing tools. Our functional test solutions range from completely standalone applications to those matched for our FLEX range of ATE test systems. Whatever your testing needs, we will help you choose the best option for you.
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CPS2000 -
Boonton Electronics
CPS2000 True Average Connected Power Sensors provide USB, LAN and PoE capabilities to enable easy RF power measurement of modulated and CW signals from 50 MHZ to 8 GHz. Compatible with Windows and Linux systems, CPS2000 sensors include all the necessary drivers for programming through SCPI, IVI and LabVIEW. Connectivity and compatibility, combined with 60 dB dynamic range and 100 measurements per second, CPS2000 sensors are the ideal solution for lab, field, production test, ATE remote monitoring and embedded environments.
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AMETEK VTI Instruments
The EMX-75XX Series adds to AMETEK VTI Instruments' growing PXI Express (PXIe) Core Automated Test Equipment (ATE)TM family as a high-current, high-density digital input/output line of modules. Unlike many static I/O PXIe modules on the market today, the EMX-75XX Series can sink or source up to 300 mA on each channel. Delivering beyond just 2 V and 5 V, engineers can program the cards to support a wide range of voltages and more—on every channel, for both input and output.
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40-533B-022 -
Pickering Interfaces Ltd.
The 40-533B ultra high density matrix module is configured as 64x4 or 64x2 and is available in a choice of 1-pole and 2-pole reed relay formats. Typical applications include signal routing in Functional ATE and data acquisition systems. These PXI matrix modules are constructed using high reliability sputtered Ruthenium reed relays, offering >109operations to give maximum switching confidence with long life and stable contact resistance. Larger matrices may be constructed by daisy chaining the common signals from multiple PXI modules.
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GT668PXI-40 -
Guide Technology, Inc.
A true breakthrough in high-speed Time Measurement and test technology, GuideTech’s GT668PXI-40 leverages the power of its CTIA continuous time-stamping technology, eliminating the need for supplemental triggers, pattern markers or clock recovery circuits.GuideTech’s CTIAs enables serial interfaces pattern verification and full jitter analysis in milliseconds for fast, automated characterization and high-throughput production test on all ATE platforms, including low-cost and in-house testers.GT668PXI-40 cards can be expanded up to 36 Channels Single Ended Input in a single 3U PXI chassis.
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778572-94 -
NI
2.5 GHz, 50 Ω, 4x1 PXI RF Multiplexer Switch Module—The PXI‑2594 is ideal for applications that require the routing of high-frequency signals inside automated test equipment (ATE) systems because it can switch signals with very low insertion loss. The module also features excellent insertion loss, voltage standing wave ratio (VSWR), and isolation parameters to minimize signal degradation. You can use the onboard relay count tracking feature to predict relay lifetime and reduce unexpected system downtime.
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M3201A -
Keysight Technologies
The M3201A PXIe arbitrary waveform generator is ideal for general purpose AWG automated test requirements. It offers high channel density with high-quality output with low phase noise. The optional real-time sequencing, intermodulation synchronization, and graphical FPGA programming software tools expand its capability to enable a number of solutions including envelope tracking (ET) and DPD (part of PA/FEM reference solution), MIMO, baseband electronics design, wireless device manufacturing, ATE, beamforming and other multi-channel coherent signal generation and multi-channel signal generation.