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The S93460B provides mismatch-corrected true-mode stimulus and enables accurate balanced measurements on 4-port PNA or PNA-X network analyzers.
The S93460B provides mismatch-corrected true-mode stimulus and enables accurate balanced measurements on 4-port PNA or PNA-X network analyzers.
S93460B
The S93460B provides mismatch-corrected true-mode stimulus and enables accurate balanced measurements on 4-port PNA or PNA-X network analyzers.
The S93460B integrated true-mode stimulus application (iTMSA) provides mismatch-corrected true-mode (true differential and true common) stimulus and enables accurate balanced measurements under real operating conditions. iTMSA also provides balanced measurements with forward-only sweep, reverse-only sweep, and frequency or power sweep with arbitrary phase and amplitude offsets. S93460B only works on 4-port PNA or PNA-X models. S93460B is equivalent to Option 460 on the PNA/PNA-X Series A model network analyzers.
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The S930900B spectrum analysis adds high-performance microwave spectrum analysis to the N522xB/N523xB/N524xB PNA network analyzer family up to 8.5 GHz.
The S930900B spectrum analysis adds high-performance microwave spectrum analysis to the N522xB/N523xB/N524xB PNA network analyzer family up to 8.5 GHz.
S930900B
The S930900B spectrum analysis adds high-performance microwave spectrum analysis to the N522xB/N523xB/N524xB PNA network analyzer family up to 8.5 GHz.
The S930900B spectrum analysis adds high-performance microwave spectrum analysis to the PNA family up to 8.5 GHz. With fast stepped-FFT sweeps resulting from optimized data processing, the SA application provides quick spurious searches over broad frequency ranges. Simultaneous spectrum measurements can be done using up to five test and reference receivers. This multi-channel SA can be used with the internal swept-signal generators for efficient measurements of spurious signals emanating from mixers and frequency converters. The SA application employs source-power and receiver-response calibration as well as fixture de-embedding, providing in-fixture and on-wafer spectrum measurements with the highest level of accuracy.
It is recommended to use this option with PNA (N522xB) or PNA-X (N524xB) models with internal receiver attenuators to avoid receiver compression when measuring large signals. For use with PNA-L (N523xB) models, test set Options 216 or 416 is recommended so that external attenuators can be connected via the front-panel jumpers to avoid receiver compression. The upper frequency range of the SA application is determined by the installed SA license or the stop frequency of the instrument, whichever is smaller.
The PNA SA application adds NPR measurement to the PNA family. It provides integrated measurement setup including multitone signal generation with vector signal generator. New coherent-measurement and vector-averaging techniques employed in the PNA SA application allow you to make faster and more accurate NPR and ACPR measurements with better dynamic range than the conventional NPR measurement with spectrum analyzer.
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The S930905B spectrum analysis adds high-performance microwave spectrum analysis to the N522xB/N523xB/N524xB PNA network analyzer family up to 50 GHz.
The S930905B spectrum analysis adds high-performance microwave spectrum analysis to the N522xB/N523xB/N524xB PNA network analyzer family up to 50 GHz.
S930905B
The S930905B spectrum analysis adds high-performance microwave spectrum analysis to the N522xB/N523xB/N524xB PNA network analyzer family up to 50 GHz.
The S930905B spectrum analysis (SA) adds high-performance microwave spectrum analysis to the PNA family up to 50 GHz. With fast stepped-FFT sweeps resulting from optimized data processing, the SA application provides quick spurious searches over broad frequency ranges. Simultaneous spectrum measurements can be done using up to five test and reference receivers. This multi-channel SA can be used with the internal swept-signal generators for efficient measurements of spurious signals emanating from mixers and frequency converters. The SA application employs source-power and receiver-response calibration as well as fixture de-embedding, providing in-fixture and on-wafer spectrum measurements with the highest level of accuracy.
It is recommended to use this option with PNA (N522xB) or PNA-X (N524xB) models with internal receiver attenuators to avoid receiver compression when measuring large signals. For use with PNA-L (N523xB) models, test set Options 216 or 416 is recommended so that external attenuators can be connected via the front-panel jump¬ers to avoid receiver compression. The upper frequency range of the SA application is determined by the installed SA license or the stop frequency of the instrument, whichever is smaller.
The PNA SA application adds NPR measurement to the PNA family. It provides integrated measurement setup including multitone signal generation with vector signal generator. New coherent-measurement and vector-averaging techniques employed in the PNA SA application allow you to make faster and more accurate NPR and ACPR measurements with better dynamic range than the conventional NPR measurement with spectrum analyzer.
Learn more about Keysight Network Analyzer Software
The S930904B spectrum analysis adds high-performance microwave spectrum analysis to the N522xB/N523xB/N524xB PNA network analyzer family up to 43.5 GHz.
The S930904B spectrum analysis adds high-performance microwave spectrum analysis to the N522xB/N523xB/N524xB PNA network analyzer family up to 43.5 GHz.
S930904B
The S930904B spectrum analysis adds high-performance microwave spectrum analysis to the N522xB/N523xB/N524xB PNA network analyzer family up to 43.5 GHz.
The S930904B spectrum analysis adds high-performance microwave spectrum analysis to the PNA family up to 43.5 GHz. With fast stepped-FFT sweeps resulting from optimized data processing, the SA application provides quick spurious searches over broad frequency ranges. Simultaneous spectrum measurements can be done using up to five test and reference receivers. This multi-channel SA can be used with the internal swept-signal generators for efficient measurements of spurious signals emanating from mixers and frequency converters. The SA application employs source-power and receiver-response calibration as well as fixture de-embedding, providing in-fixture and on-wafer spectrum measurements with the highest level of accuracy.
It is recommended to use this option with PNA (N522xB) or PNA-X (N524xB) models with internal receiver attenuators to avoid receiver compression when measuring large signals. For use with PNA-L (N523xB) models, test set Options 216 or 416 is recommended so that external attenuators can be connected via the front-panel jump¬ers to avoid receiver compression. The upper frequency range of the SA application is determined by the installed SA license or the stop frequency of the instrument, whichever is smaller.
The PNA SA application adds NPR measurement to the PNA family. It provides integrated measurement setup including multitone signal generation with vector signal generator. New coherent-measurement and vector-averaging techniques employed in the PNA SA application allow you to make faster and more accurate NPR and ACPR measurements with better dynamic range than the conventional NPR measurement with spectrum analyzer.
Learn more about Keysight Network Analyzer Software
The S930902B spectrum analysis adds high-performance microwave spectrum analysis to the N522xB/N523xB/N524xB PNA network analyzer family up to 26.5 GHz.
The S930902B spectrum analysis adds high-performance microwave spectrum analysis to the N522xB/N523xB/N524xB PNA network analyzer family up to 26.5 GHz.
S930902B
The S930902B spectrum analysis adds high-performance microwave spectrum analysis to the N522xB/N523xB/N524xB PNA network analyzer family up to 26.5 GHz.
The S930902B spectrum analysis adds high-performance microwave spectrum analysis to the PNA family up to 26.5 GHz. With fast stepped-FFT sweeps resulting from optimized data processing, the SA application provides quick spurious searches over broad frequency ranges. Simultaneous spectrum measurements can be done using up to five test and reference receivers. This multi-channel SA can be used with the internal swept-signal generators for efficient measurements of spurious signals emanating from mixers and frequency converters. The SA application employs source-power and receiver-response calibration as well as fixture de-embedding, providing in-fixture and on-wafer spectrum measurements with the highest level of accuracy.
It is recommended to use this option with PNA (N522xB) or PNA-X (N524xB) models with internal receiver attenuators to avoid receiver compression when measuring large signals. For use with PNA-L (N523xB) models, test set Options 216 or 416 is recommended so that external attenuators can be connected via the front-panel jumpers to avoid receiver compression. The upper frequency range of the SA application is determined by the installed SA license or the stop frequency of the instrument, whichever is smaller.
The PNA SA application adds NPR measurement to the PNA family. It provides integrated measurement setup including multitone signal generation with vector signal generator. New coherent-measurement and vector-averaging techniques employed in the PNA SA application allow you to make faster and more accurate NPR and ACPR measurements with better dynamic range than the conventional NPR measurement with spectrum analyzer.
Learn more about Keysight Network Analyzer Software
The S930901B spectrum analysis adds high-performance microwave spectrum analysis to the N522xB/N523xB/N524xB PNA network analyzer family up to 13.5 GHz.
The S930901B spectrum analysis adds high-performance microwave spectrum analysis to the N522xB/N523xB/N524xB PNA network analyzer family up to 13.5 GHz.
S930901B
The S930901B spectrum analysis adds high-performance microwave spectrum analysis to the N522xB/N523xB/N524xB PNA network analyzer family up to 13.5 GHz.
The S930901B spectrum analysis adds high-performance microwave spectrum analysis to the PNA family up to 13.5 GHz. With fast stepped-FFT sweeps resulting from optimized data processing, the SA application provides quick spurious searches over broad frequency ranges. Simultaneous spectrum measurements can be done using up to five test and reference receivers. This multi-channel SA can be used with the internal swept-signal generators for efficient measurements of spurious signals emanating from mixers and frequency converters. The SA application employs source-power and receiver-response calibration as well as fixture de-embedding, providing in-fixture and on-wafer spectrum measurements with the highest level of accuracy.
It is recommended to use this option with PNA (N522xB) or PNA-X (N524xB) models with internal receiver attenuators to avoid receiver compression when measuring large signals. For use with PNA-L (N523xB) models, test set Options 216 or 416 is recommended so that external attenuators can be connected via the front-panel jumpers to avoid receiver compression. The upper frequency range of the SA application is determined by the installed SA license or the stop frequency of the instrument, whichever is smaller.
The PNA SA application adds NPR measurement to the PNA family. It provides integrated measurement setup including multitone signal generation with vector signal generator. New coherent-measurement and vector-averaging techniques employed in the PNA SA application allow you to make faster and more accurate NPR and ACPR measurements with better dynamic range than the conventional NPR measurement with spectrum analyzer.
Learn more about Keysight Network Analyzer Software
The S93088B allows users to set calibrated, arbitrary phase differences between two signal sources.
The S93088B allows users to set calibrated, arbitrary phase differences between two signal sources.
S93088B
The S93088B allows users to set calibrated, arbitrary phase differences between two signal sources.
The S93088B allows users to set calibrated, arbitrary phase differences between two signal sources. The sources can be the analyzer’s internal sources or external signal generators routed through the analyzer’s test set. The phase difference can be fixed, or swept between two specified phase values. The S93088B also controls the relative power level between the sources using the receiver-leveling feature.
The S93088B is targeted for active-load control, where the analyzer provides a precise, electronically settable impedance to the output port of a device, while gain and output power are measured. This capability can be combined with external load-pull software to create traditional load-pull power contours. Not available with PNA Option 200 and 210.
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The S93086B gain compression application (GCA) adds the software capabilities to the PNA Series B model network analyzers to evaluate the characteristics of compression point of an amplifier or frequency converter.
The S93086B gain compression application (GCA) adds the software capabilities to the PNA Series B model network analyzers to evaluate the characteristics of compression point of an amplifier or frequency converter.
S93086B
The S93086B gain compression application (GCA) adds the software capabilities to the PNA Series B model network analyzers to evaluate the characteristics of compression point of an amplifier or frequency converter.
The S93086B adds the software capabilities for the gain compression application (GCA). GCA provides fast and accurate input power, output power, gain, and phase at the compression point of an amplifier or frequency converter, over a specified frequency and power range, with a simple setup. GCA eliminates the problems of lengthy test times and inconvenient setups by providing SMART Sweep that is easy-to-use, fast and accurate. GCA also includes a guided calibration that corrects for absolute power levels, frequency response, and mismatch errors. S93086B is equivalent to Option 086 available on PNA/PNA-X A model Series network analyzers.
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The S93084B embedded LO capability tunes the analyzer’s receivers to the output frequency of the converter under test.
The S93084B embedded LO capability tunes the analyzer’s receivers to the output frequency of the converter under test.
S93084B
The S93084B embedded LO capability tunes the analyzer’s receivers to the output frequency of the converter under test.
The S93084B tunes the analyzer’s receivers to the output frequency of the converter under test without the need for access to internal LOs or a common reference signals. For converters with embedded LOs, this enables measurements of match-corrected conversion loss/gain and absolute group delay (requires S93082B and S93083B), gain compression versus frequency (requires S93086B), intermodulation distortion (requires S93087B), and noise figure (requires S93029B).
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The S93083B provides both fully calibrated vector and scalar measurements of mixers and frequency converters, with intuitive, easy-to-use user interface.
The S93083B provides both fully calibrated vector and scalar measurements of mixers and frequency converters, with intuitive, easy-to-use user interface.
S93083B
The S93083B provides both fully calibrated vector and scalar measurements of mixers and frequency converters, with intuitive, easy-to-use user interface.
The S93083B includes the scalar mixer/converter plus phase (SMC+Phase) measurement class that provides fully calibrated conversion gain/loss, relative phase, and absolute group delay measurements of mixers and converters without the need for reference or calibration mixers. Eliminating the calibration mixer requires a U9391C/F/G comb generator and an external DC power supply. A vector mixer/converter measurement (VMC) class is also included for measuring the phase difference between multiple paths or devices, or for measuring phase shifts within a device. Using VMC or the comb-generator-based calibration for SMC+Phase requires an instrument with a configurable test set (i.e., has front-panel RF loops). For units without front-panel loops, SMC+Phase can be used with an external calibration mixer.
The S93083B provides an intuitive and easy-to-use user interface for setting up mixer and converter measurements, with single or dual conversion stages. It can control the analyzer’s built-in source(s) as well as external signal generators for use as LO signals.
The S93083B is a superset of S93082B. S93083B is compatible with S93084B, which enables measurements of converters with internal LOs.
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S93015B는 PNA/PNA-L/PNA-X 시리즈 B 모델 네트워크 분석기의 동일한 디스플레이에 실시간 S-파라미터 및 전력 측정 불확도를 측정 트레이스와 함께 표시합니다.
S93015B는 PNA/PNA-L/PNA-X 시리즈 B 모델 네트워크 분석기의 동일한 디스플레이에 실시간 S-파라미터 및 전력 측정 불확도를 측정 트레이스와 함께 표시합니다.
S93015B
S93015B는 PNA/PNA-L/PNA-X 시리즈 B 모델 네트워크 분석기의 동일한 디스플레이에 실시간 S-파라미터 및 전력 측정 불확도를 측정 트레이스와 함께 표시합니다.
S93015B는 동일한 화면에 실시간 S-파라미터 및 전력 측정 불확도를 측정 트레이스와 함께 표시합니다. 따라서 사용자가 더 안정적으로 불확실성을 추정하고 합격/불합격 테스트에 보다 현실적인 기준치를 적용하여 생산 수율을 개선할 수 있습니다.
The S93551B adds a multiport analyzer mode that enables full N-port error correction and measurement capabilities using an external test set.
The S93551B adds a multiport analyzer mode that enables full N-port error correction and measurement capabilities using an external test set.
S93551B
The S93551B adds a multiport analyzer mode that enables full N-port error correction and measurement capabilities using an external test set.
The S93551B adds a multiport analyzer mode that enables full N-port error correction and measurement capabilities using an external test set. Only standard measurement class is available in the multi-port analyzer mode. For multiport analysis greater than 8 ports, it is highly recommended to use PLTS software N1930B to manage the large data format files that easily grow exponentially (12-port S-parameter files have 144 S-parameter elements). This capability is not available with PNA Option 200, 210, 400, and 410. S93551B is equivalent to Option 551 on PNA/PNA-L/PNA-X Series A model network analyzers.
You can find more info about multiport test sets under the Options & Accessories/Related Products tab.
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