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ATE

ATE systems are used to test semiconductor devices, printed circuit boards, and electronic systems during manufacturing. AI prompted RL created', prevails upon the UUT to demonstrate It's fulfillment of test requirements.

See Also: Automatic Test Equipment, ATS, Functional ATE, Combinational ATE, Semiconductor Test, PXI Switching, PXI Chassis, PXI Matrix, Automated Test Equipment, Automated Test Systems


Showing results: 901 - 915 of 1012 items found.

  • PXI-2594, 2.5 GHz, 50 Ω, 4x1 PXI RF Multiplexer Switch Module

    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.

  • PXI MUX 4 Banks of 16 Channel 2 Pole

    40-610-022-4/16/2 - Pickering Interfaces Ltd.

    This series of high density multiplexer modules feature a wide range of switching configurations, especially useful where a large number of small multiplexers are required. Typical applications include signal routing in ATE and data acquisition systems. Connections are made via a front panel 200-pin connector. Inter-bank linking relays allow multiplexer size to be increased in multiples of in multiples of three by joining the common terminals of adjacent banks. Closing one linking switch produces a 6-channel multiplexer, closing all linking switches produces an 54-channel multiplexer

  • PXI MUX 8 Banks of 8 Channel 2 Pole

    40-610-022-8/8/2 - Pickering Interfaces Ltd.

    This series of high density multiplexer modules feature a wide range of switching configurations, especially useful where a large number of small multiplexers are required. Typical applications include signal routing in ATE and data acquisition systems. Connections are made via a front panel 200-pin connector. Inter-bank linking relays allow multiplexer size to be increased in multiples of in multiples of three by joining the common terminals of adjacent banks. Closing one linking switch produces a 6-channel multiplexer, closing all linking switches produces an 54-channel multiplexer

  • PXI MUX 1 Bank of 64 Channel 2 Pole

    40-610-022-1/64/2 - Pickering Interfaces Ltd.

    This series of high density multiplexer modules feature a wide range of switching configurations, especially useful where a large number of small multiplexers are required. Typical applications include signal routing in ATE and data acquisition systems. Connections are made via a front panel 200-pin connector. Inter-bank linking relays allow multiplexer size to be increased in multiples of in multiples of three by joining the common terminals of adjacent banks. Closing one linking switch produces a 6-channel multiplexer, closing all linking switches produces an 54-channel multiplexer

  • PXI MUX 4 Bank, 16 Channel Screened 1 Pole

    40-610-021-S-4/16/1 - Pickering Interfaces Ltd.

    This series of high density multiplexer modules feature a wide range of switching configurations, especially useful where a large number of small multiplexers are required. Typical applications include signal routing in ATE and data acquisition systems. Connections are made via a front panel 200-pin connector. Inter-bank linking relays allow multiplexer size to be increased in multiples of in multiples of three by joining the common terminals of adjacent banks. Closing one linking switch produces a 6-channel multiplexer, closing all linking switches produces an 54-channel multiplexer

  • PXI MUX 8 Banks of 8 Channel 1 Pole

    40-610-021-8/8/1 - Pickering Interfaces Ltd.

    This series of high density multiplexer modules feature a wide range of switching configurations, especially useful where a large number of small multiplexers are required. Typical applications include signal routing in ATE and data acquisition systems. Connections are made via a front panel 200-pin connector. Inter-bank linking relays allow multiplexer size to be increased in multiples of in multiples of three by joining the common terminals of adjacent banks. Closing one linking switch produces a 6-channel multiplexer, closing all linking switches produces an 54-channel multiplexer

  • Multi-Purpose RF Test System

    SPA1241 - Elite RF, llc

    The S - Series multi-purpose RF test system can be used in many applications such as R&D lab, ATE factory testing, EMC testing, field testing, and general purpose RF design. The S - Series is a flexible alternative to expensive and bulky RF test equipment. As shown in the setup in the upper right the S-Series system can be utilized to simultaneously provide all RF functions using its 7 inch front panel display or can be connected to a larger monitor for ease of viewing multiple windows at the same time

  • Programmable AC Power Source

    LSX Series - Pacific Power Source, Inc.

    The LSX Series consists of a range of fully featured, single and three phase AC Power Sources. Available models range from 1.5kVA to 6kVA with an advanced programmable controller sporting a color touch screen user interface. Cost effective and fully programmable for both basic frequency conversion as well as advanced AC power line disturbance test and ATE applications. For applications not requiring advanced features, a basic function set M version of the LSX is available as well.Note: The LMX Series is not CE marked yet at this time.

  • PXI MUX 2 Banks of 32 Channel 1 Pole

    40-610-021-2/32/1 - Pickering Interfaces Ltd.

    This series of high density multiplexer modules feature a wide range of switching configurations, especially useful where a large number of small multiplexers are required. Typical applications include signal routing in ATE and data acquisition systems. Connections are made via a front panel 200-pin connector. Inter-bank linking relays allow multiplexer size to be increased in multiples of in multiples of three by joining the common terminals of adjacent banks. Closing one linking switch produces a 6-channel multiplexer, closing all linking switches produces an 54-channel multiplexer

  • Multi-Purpose RF Test System

    SPA441 - Elite RF, llc

    The S - Series multi-purpose RF test system can be used in many applications such as R&D lab, ATE factory testing, EMC testing, field testing, and general purpose RF design. The S - Series is a flexible alternative to expensive and bulky RF test equipment. As shown in the setup in the upper right the S-Series system can be utilized to simultaneously provide all RF functions using its 7 inch front panel display or can be connected to a larger monitor for ease of viewing multiple windows at the same time

  • PXI MUX 8 Banks of 8 Channel Screened 1 Pole

    40-610-021-S-8/8/1 - Pickering Interfaces Ltd.

    This series of high density multiplexer modules feature a wide range of switching configurations, especially useful where a large number of small multiplexers are required. Typical applications include signal routing in ATE and data acquisition systems. Connections are made via a front panel 200-pin connector.Inter-bank linking relays allow multiplexer size to be increased in multiples of in multiples of three by joining the common terminals of adjacent banks. Closing one linking switch produces a 6-channel multiplexer, closing all linking switches produces an 54-channel multiplexer

  • PXI MUX 4 Banks of 32 Channel 1 Pole

    40-610-022-4/32/1 - Pickering Interfaces Ltd.

    This series of high density multiplexer modules feature a wide range of switching configurations, especially useful where a large number of small multiplexers are required. Typical applications include signal routing in ATE and data acquisition systems. Connections are made via a front panel 200-pin connector. Inter-bank linking relays allow multiplexer size to be increased in multiples of in multiples of three by joining the common terminals of adjacent banks. Closing one linking switch produces a 6-channel multiplexer, closing all linking switches produces an 54-channel multiplexer

  • PXI MUX 2 Banks of 64 Channel 1 Pole

    40-610-022-2/64/1 - Pickering Interfaces Ltd.

    This series of high density multiplexer modules feature a wide range of switching configurations, especially useful where a large number of small multiplexers are required. Typical applications include signal routing in ATE and data acquisition systems. Connections are made via a front panel 200-pin connector. Inter-bank linking relays allow multiplexer size to be increased in multiples of in multiples of three by joining the common terminals of adjacent banks. Closing one linking switch produces a 6-channel multiplexer, closing all linking switches produces an 54-channel multiplexer

  • PXI MUX 8 Banks of 16 Channel 1 Pole

    40-610-022-8/16/1 - Pickering Interfaces Ltd.

    This series of high density multiplexer modules feature a wide range of switching configurations, especially useful where a large number of small multiplexers are required. Typical applications include signal routing in ATE and data acquisition systems. Connections are made via a front panel 200-pin connector. Inter-bank linking relays allow multiplexer size to be increased in multiples of in multiples of three by joining the common terminals of adjacent banks. Closing one linking switch produces a 6-channel multiplexer, closing all linking switches produces an 54-channel multiplexer

  • PXI MUX 1 Bank of 128 Channel 1 Pole

    40-610-022-1/128/1 - Pickering Interfaces Ltd.

    This series of high density multiplexer modules feature a wide range of switching configurations, especially useful where a large number of small multiplexers are required. Typical applications include signal routing in ATE and data acquisition systems. Connections are made via a front panel 200-pin connector. Inter-bank linking relays allow multiplexer size to be increased in multiples of in multiples of three by joining the common terminals of adjacent banks. Closing one linking switch produces a 6-channel multiplexer, closing all linking switches produces an 54-channel multiplexer

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