Language Reference

STATus Subsystem

Questionable Integrity Enable

:STATus:QUEStionable:INTegrity:ENABle <number>

:STATus:QUEStionable:INTegrity:ENABle?

This command determines what bits in the Questionable Integrity

Condition Register will set bits in the Questionable Integrity Event

register, which also sets the Integrity Summary bit (bit 9) in the

Questionable Register. The variable <number> is the sum of the

decimal values of the bits you want to enable.

Key Type:

There is no equivalent front panel key.

Factory Preset

 

and *RST:

32767 (all 1’s)

Range:

0 to 32767

Questionable Integrity Event Query :STATus:QUEStionable:INTegrity[:EVENt]?

This query returns the decimal value of the sum of the bits in the

Questionable Integrity Event register.

NOTE

The register requires that the associated PTR or NTR filters be set

 

before a condition register bit can set a bit in the event register.

 

The data in this register is latched until it is queried. Once queried, the

 

register is cleared.

 

Key Type:

There is no equivalent front panel key.

Questionable Integrity Negative Transition

:STATus:QUEStionable:INTegrity:NTRansition <number>

:STATus:QUEStionable:INTegrity:NTRansition?

This command determines what bits in the Questionable Integrity Condition register will set the corresponding bit in the Questionable Integrity Event register when the condition register bit has a negative transition (1 to 0)

The variable <number> is the sum of the decimal values of the bits that you want to enable.

Key Type:

There is no equivalent front panel key.

Factory Preset

 

and *RST:

0

Range:

0 to 32767

Chapter 5

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Image 373
Agilent Technologies E4406A VSA manual Questionable Integrity Enable, STATusQUEStionableINTegrityENABle number

E4406A VSA specifications

The Agilent Technologies E4406A Vector Signal Analyzer (VSA) is a sophisticated instrument designed for the analysis of complex signals. This versatile device is widely used in various fields, including telecommunications, broadcasting, and aerospace, thanks to its high-performance capabilities and advanced features.

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The E4406A utilizes advanced measurement technologies that ensure precise signal analysis. With a frequency range from 50 kHz to 6 GHz, the VSA can handle various applications, making it a suitable choice for both R&D and production testing. The instrument employs digital signal processing techniques, enabling high-resolution measurements and exceptional dynamic range. This ensures accurate interpretation of signals, even in the presence of noise or interference.

Another significant feature of the E4406A is its user-friendly interface. The combination of a graphical display and intuitive controls allows users to visualize complex waveforms and spectra easily. The software capabilities of the E4406A further enhance its usability, providing various analysis options including error vector magnitude (EVM), adjacent channel power (ACP), and spectrum occupancy. These tools allow engineers to diagnose issues rapidly and efficiently optimize their designs.

The modularity of the E4406A is a key aspect of its design. Users can upgrade their instrument with various option packs and software for specific applications, making it adaptable to a variety of testing scenarios. This flexibility ensures that the VSA remains relevant as technology evolves and new standards emerge.

In conclusion, the Agilent E4406A Vector Signal Analyzer stands out due to its combination of advanced measurement capabilities, user-friendly interface, and adaptability. Its extensive feature set makes it an essential tool for professionals involved in the development and testing of modern communication systems. Whether for research, design validation, or quality control, the E4406A delivers high-performance signal analysis that meets the demands of today's fast-paced technology landscape.