Specifications

Performance Specifications

Table 3-2

87130A Environmental Specifications

 

 

 

 

 

Environmental Specifications

 

 

 

Temperature

 

 

 

 

 

Operating

 

0 to + 55 °C

 

 

 

Non-operating

 

− 40 to 70 °C

 

 

 

Humidity

 

 

 

 

 

Operating and

 

 

 

 

 

Non-operating

 

80% relative humidity up to 31 °C decreasing linearly to 50% relative humidity at 40 °C

 

 

 

Altitude

 

 

 

 

Operating and non-operating

5600 meters (15,000 feet)

 

 

 

Environmental Compatibility

 

Radiated and conducted emission is in compliance with CISPR Pub 11/1990, Group 1, Level A

 

 

 

Environmental Qualification Test

 

 

 

 

 

Humidity

 

5 day, 25 to 40 °C, 50 to 95% relative humidity

 

 

 

Vibration

 

a. Operating: MIL-PRF-28800F, Class 3, par. 4.5.5.3.1 (random, 10 to 500 Hz, 0.21 g rms)

 

 

 

 

 

b. Non-operating: swept sine, 5 to 500 Hz, 0.5g, 15 min/axis, 3 axis

 

 

 

 

 

c. Non-operating: MIL-PRF-28800F, Class 3, par. 4.5.5.3.1 (random, 10 to 500 Hz, 2.1 g rms)

 

 

 

Shock

 

a. Non-operating, 170 g, 1/2 sine 2ms, 1 drop/face, 6 faces

 

 

 

 

 

b. Non-operating, 30 g, trapezoidal, 28 ms, 1 drop/face, 6 faces

 

 

 

Environmental Conditions

 

This product is designed for indoor use in Installation Category II and Pollution Degree 2 per

 

 

IEC 1010 and IEC 664, respectively. Enclosure protection is IP 2 0 according to IEC 529.

 

 

 

Line Voltage

 

100 to 240 Vac

 

 

 

Power Consumption

 

110 Watts MAX

 

 

 

Weight

 

6.2 kg (13.7 lb)

 

 

 

Dimensions

 

10.2 cm (h) x 45.7 cm (w) X 55.9 cm (d)

 

 

4 in. x 18 in. x 22.5 in

 

 

 

Agilent 87130A Operating and Service Manual 3-3

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Agilent Technologies manual 87130A Environmental Specifications

87130A specifications

Agilent Technologies 87130A is a highly regarded network analyzer that has been widely adopted in the field of RF and microwave testing. Known for its versatility and precision, the 87130A is designed for evaluating components and devices in various applications, including telecommunications and electronics.

One of the main features of the 87130A is its frequency range, which spans from 300 kHz to 3 GHz. This broad spectrum allows engineers to test a wide variety of RF components, including amplifiers, filters, and antennas. The analyzer provides vector network analysis capabilities, enabling users to measure both the magnitude and phase of S-parameters, essential for characterizing components effectively.

The instrument is equipped with a powerful internal calibration capability, which ensures accurate measurements by compensating for test fixture errors and other variables. The built-in electronic calibration options further enhance measurement accuracy and repeatability, giving engineers confidence in their results.

Another notable characteristic of the 87130A is its graphical user interface, which is intuitive and user-friendly. The display provides clear visual representations of measurement data, allowing for easy interpretation and analysis. Users can access a variety of measurement functions, such as gain compression, group delay, and return loss, making it a versatile tool for multi-faceted testing.

The Agilent 87130A employs advanced measurement algorithms that improve speed and accuracy. These enhancements facilitate rapid data acquisition, which is particularly beneficial in production environments where time is critical. The analyzer also supports multiple calibration techniques, including through-reflect-match (TRM) and short-open-load (SOL), catering to diverse testing needs.

Connectivity options are abundant, with GPIB, LAN, and USB interfaces, allowing seamless integration into automated test setups. This modularity supports remote operation, making it easier to incorporate the analyzer into various testing environments.

Overall, Agilent Technologies 87130A stands out for its precision, ease of use, and flexibility in RF and microwave testing applications. Its combination of advanced features and robust performance makes it a staple in laboratories, production lines, and research settings, helping engineers and technicians achieve optimal results in their measurement endeavors.