Agilent Technologies 8510C manual Test set attenuation options, Calibration kit options select one

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Agilent 8510SX network analyzer system (45 MHz to 26.5 GHz)

The 8510SX is a complete system configured with a 26.5 GHz synthesizer, 26.5 GHz S-parameter test set, and a complete set of 3.5 mm measurement accessories. The instruments are integrated in the system rack, the system is fully tested, and a com- plete system verification is performed prior to shipment from the factory. Installation is included at no additional charge.

System components include: 8510C network analyzer 8515A test set

83631B synthesizer

85043C rack

85052C calibration kit

11752D gauge kit

85131F cable set

Features

8510C-010Add time domain

Voltage options

8510SX-115110/120 V line voltage operation

8510SX-230220/240 V line voltage operation

Accessories

8510SX-0017 mm accessories (85052C and 85132F) Extended service options are available.

Agilent 8510E network analyzer system (45 MHz to 20 GHz)

The 8510E is a complete unracked system config- ured with a 20 GHz synthesizer, 20 GHz S-parame- ter test set, and 3.5 mm connector accessories. Installation is not included.

System components include: 8510C network analyzer

8514B test set with Option 002 (deleted step attenuators and bias tees)

83621B synthesizer

85052D calibration kit

85131D cable set

Test set attenuation options

8510E-STDStandard configuration

8510E-002Add attenuator and bias network

Features

8510C-010Add time domain

Calibration kit options (select one)

8510E-0043.5mm economy calibration kit

8510E-0053.5mm precision calibration kit

Extended service options are available.

Agilent 85106D millimeter-wave network analyzer subsystem (33 GHz to 110 GHz)

When combined with the appropriate 85104A series test set modules (see page 6) and 11644A series calibration kits, the 85106D provides a complete system for measurements in the milli- meter-wave frequency range. The instruments are integrated in a 1600 mm system rack. It is fully tested and a complete system verification is per- formed prior to shipment from the factory. Installation is included at no additional charge.

The 85106D system consists of: 8510C network analyzer 85105A test set controller 83621B synthesizer (2 total) 1600 mm rack

Must also order appropriate 85104A series test set modules and 11644A series calibration kit for complete system.

Frequency range (select one)

85106D-STD33 - 110 GHz

85106D-00145 MHz - 110 GHz, adds 8517B and needed accessories

85106D-00745 MHz - 110 GHz, high power/high dynamic range

Features

8510C-010Add time domain

Voltage options

85106D-115110/120 V line voltage operation

85106D-230220/240 V line voltage operation

Extended service options are available.

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Contents Test set options FeaturesMHz to 110 GHz Complete systemsSource options AccessoriesTest set attenuation options Calibration kit options select oneFrequency range select one Frequency range select one 85108A-STD 2 20 GHz System components 83623L synthesized sweeper 45 MHz to 20 GHz for Millimeter-wave test sets and controllersSources 85105A millimeter-wave test set controllerCommon options for RF sources Measurement accessories85052C 045 to Calibration kitsTest port cables and adapters Verification kitsFor Agilent 85110L test sets Mm rugged test port connectors Test configuration accessories Upgrades for 85107B and 85109C System upgradesTime domain upgrade Instrument and firmware upgrades Upgrades for 8510AUpgrades for 8510B Upgrades for 8510CMiscellaneous compatibility upgrades Test set upgradesRelated Agilent literature Agilent Email Updates
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Manual 41 pages 24.69 Kb

8510C specifications

Agilent Technologies 8510C is a sophisticated network analyzer renowned for its high performance and precision in measuring small signals. Renowned in the electronic test and measurement industry, the 8510C is particularly suited for applications in microwave and RF engineering. This versatile instrument excels in characterizing both passive and active devices, making it indispensable for engineers working on circuit design, antenna measurement, and RF component testing.

One of the main features of the 8510C is its frequency coverage, which spans from 10 MHz to 50 GHz, allowing users to test a wide range of devices and components. This broad frequency range enables the analyzer to address various applications involving microwave frequencies, such as satellite communications and radar systems. Additionally, the device provides exceptional dynamic range, enabling accurate measurements of weak signals alongside more robust signals, a critical feature for today’s complex systems.

The 8510C utilizes state-of-the-art frequency synthesis technology, which enhances its signal stability and allows for precise frequency sweeps. It employs direct signal sampling techniques to improve measurement accuracy and reduce noise, providing engineers with reliable data to support their designs. The instrument boasts a high-resolution display that aids in visualizing S-parameter measurements, enhancing the analysis of transmission and reflection characteristics of devices under test.

Another prominent characteristic of the 8510C is its ability to perform automated measurements, greatly improving productivity in the lab. The device supports multiple measurement formats, including time domain and frequency domain measurements, broadening its application range. Additionally, it can be integrated with other Agilent instruments, offering seamless interconnectivity and advanced measurement capabilities.

The intuitive user interface simplifies operation, allowing engineers to focus on measurement tasks rather than navigating complex controls. The 8510C is compatible with several software packages, including Agilent’s ADS (Advanced Design System), facilitating comprehensive data analysis and modeling.

In summary, the Agilent Technologies 8510C is a cutting-edge network analyzer characterized by its extensive frequency coverage, remarkable dynamic range, accurate measurements, and user-friendly interface. This instrument empowers engineers to achieve high levels of precision and efficiency in their testing processes, making it a cornerstone in the field of RF and microwave engineering.