Showing results: 1141 - 1155 of 3715 items found.
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85563A -
Keysight Technologies
Combines an open, short, and load standard in a compact unit that is easy to handle and lightweight
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N7974A -
Keysight Technologies
The N7974A is designed for automated test equipment (ATE) applications where high-speed dynamic sourcing and measurement is needed.
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84906L -
Keysight Technologies
The Keysight 84906L programmable step attenuator offers coaxial measurements to 40 GHz in a compact, rugged design. It offers repeatability of better than 0.03 dB, excellent life greater than 5 million switching cycles per section) and an attenuation range of 0 to 90 dB in 10-dB steps. This latest design evolution sets new standards for size and performance. High attenuation accuracy and low SWR are achieved through the use of miniature thin-film attenuation cards composed of high-stability tantalum nitride film of saphire substrate. Insertion loss is outstanding, with with only 2.4 dB of loss at 40 GHz. The compact size of the unit, 35% smaller than the Keysight 8495/7 (26.5 GHz) family, allows for easy integration into instruments and ATE systems.
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N7976A -
Keysight Technologies
The N7976A is designed for automated test equipment (ATE) applications where high-speed dynamic sourcing and measurement is needed.
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84904L -
Keysight Technologies
The Keysight 84904L programmable step attenuator offers coaxial measurements to 40 GHz in a compact, rugged design. It offers repeatability of better than 0.03 dB, excellent life (greater than 5 million switching cycles per section) and an attenuation range of 0 to 11 dB in 1-dB steps. This latest design evolution sets new standards for size and performance. High attenuation accuracy and low SWR are achieved through the use of miniature thin-film attenuation cards composed of high-stability tantalum nitride film of saphire substrate. Insertion loss is outstanding, with with only 2.4 dB of loss at 40 GHz. The compact size of the unit, 35% smaller than the Keysight 8495/7 (26.5 GHz) family, allows for easy integration into instruments and ATE systems.
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N7977A -
Keysight Technologies
The N7977A is designed for automated test equipment (ATE) applications where high-speed dynamic sourcing and measurement is needed.
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84907K -
Keysight Technologies
The Keysight 84907K programmable step attenuator offers coaxial measurements to 26.5 GHz in a compact, rugged design. It offers repeatability of better than 0.03 dB, excellent life (greater than 5 million switching cycles per section) and an attenuation range of 0 to 70 dB in 10-dB steps. This latest design evolution sets new standards for size and performance. High attenuation accuracy and low SWR are achieved through the use of miniature thin-film attenuation cards composed of high-stability tantalum nitride film of saphire substrate. Insertion loss is outstanding, with less than 2 dB of loss at 26.5 GHz. The compact size of the unit, 35 percent smaller than the Keysight 8495/7 26.5 GHz) family, allows for easy integration into instruments and ATE systems.
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N7953A -
Keysight Technologies
The N7953A is designed for automated test equipment (ATE) applications where high-speed dynamic sourcing and measurement is needed.
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84904K -
Keysight Technologies
The Keysight 84904K programmable step attenuator offers coaxial measurements to 26.5 GHz in a compact, rugged design. It offers repeatability of better than 0.03 dB, excellent life (greater than 5 million switching cycles per section) and attenuator range of 0 to 11 dB in 1-dB steps. This latest design evolution sets new standards for size and performance. High attenuation accuracy and low SWR are achieved through the use of miniature thin-film attenuation cards composed of high-stability tantalum nitride film of saphire substrate. Insertion loss is outstanding, with less than 2 dB of loss at 26.5 GHz. The compact size of the unit, 35% smaller than the Keysight 8495/7 (26.5 GHz) family, allows for easy integration into instruments and ATE systems.
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84907L -
Keysight Technologies
The Keysight 84907L programmable step attenuator offers coaxial measurements to 40 GHz in a compact, rugged design. It offers repeatability of better than 0.03 dB, excellent life greater than 5 million switching cycles per section) and an attenuation range of 0 to 70 dB in 10-dB steps. This latest design evolution sets new standards for size and performance. High attenuation accuracy and low SWR are achieved through the use of miniature thin-film attenuation cards composed of high-stability tantalum nitride film of saphire substrate. Insertion loss is outstanding, with with only 2,4 dB of loss at 40 GHz. The compact size of the unit, 35% smaller than the Keysight 8495/7 (26.5 GHz) family, allows for easy integration into instruments and ATE systems.
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N7954A -
Keysight Technologies
The N7954A is designed for automated test equipment (ATE) applications where high-speed dynamic sourcing and measurement is needed.
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N7973A -
Keysight Technologies
The N7973A is designed for automated test equipment (ATE) applications where high-speed dynamic sourcing and measurement is needed.
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PE8203 -
Pasternack Enterprises, Inc.
Pasternack adjustable phase trimmer PE8203 is part of our large selection of in-stock RF, microwave and millimeter wave components available for purchase. This adjustable phase trimmer is manufactured with SMA connectors and has a phase adjustment of 10 degrees. Our SMA adjustable phase trimmer has a minimum frequency of DC and a maximum frequency of 18 GHz.
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72-3100 -
Tenma
600A 750V True RMS Clamp Meter with OLED Display.
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CK521A -
Spanawave Corporation
The Network Analyzer Calibration Kits with open, short, load, and thru (OSLT) provide the RF components needed to enable stable and accurate error correct measurements. Calibration of a network analyzer using Spanawave's Network Analyzer Calibration Kits allow for precise measurements. The Calibration Kits offer broad test equipment coverage for use with the 8003 Scalar Network Analyzer as well as being compatible with most network analyzers produced by other manufacturers. Spanawave calibration kits yield complete calibrations, as it takes into consideration the three major sources of systematic error correction by one port calibration at both ports.