Error Codes

 

GPIB Error Strings

Table 18 Overview for Supported Strings

 

 

 

 

 

 

 

 

Error

 

 

 

 

 

 

New/Old/Standard

Number

String

 

 

 

 

 

New

-323

"Flash programming error (StatUserCalTable Empty)"

 

 

 

It is not possible to activate the offset (l) functionality when the offset ta-

 

 

 

ble is empty

 

 

 

"Flash programming error (StatUserCalTable Full)"

 

 

 

The offset (l) table is full and no more ? can be stored

 

 

 

"Flash programming error (StatUserCalActive)"

 

 

 

It is not possible to program the offset (l) table when the offset (l) feature

 

 

 

is activated. Deactivate first.

 

Old

-330

“Self-test failed”

 

 

 

Description:

 

 

 

You have started the self test, but the module has detected an error while

 

 

 

executing it

 

New

-340

"Printing error (StatPrintError)"

 

 

 

Description:

 

 

 

An unspecified problem occurred while communicating with the printer.

 

New

-341

"Printing error - paper out (StatPaperOut)"

 

 

 

Description:

 

 

 

The instrument cannot print because there is no paper in the connected

 

 

 

printer.

 

New

-342

"Printing error - offline (StatOffline)"

 

 

 

Description:

 

 

 

The instrument cannot print because the connected printer is offline.

 

Standard

-350

“Queue overflow”

 

 

 

[A specific code entered into the queue in lieu of the code that caused the

 

 

 

error. This code indicates that there is no room in the queue and an error

 

 

 

occurred but was not recorded.]

 

 

 

 

-400 to -499 Query Errors

Standard

Standard

-400

-410

“Query error”

[This is the generic query error for devices that cannot detect more specif- ic errors. This code indicates only that a Query Error as defined in IEEE 488.2, 11.5.1.1.7 and 6.3 has occurred.]

“Query INTERRUPTED”

[Indicates that a condition causing an INTERRUPTED Query error occurred (see IEEE 488.2, 6.3.2.3); for example, a query followed by DAB or GET be- fore a response was completely sent.]

268

Agilent 8163A/B, 8164A/B & 8166A/B Mainframes, Fifth Edition

Page 256
Image 256
Agilent Technologies B, 8166A, 8163A, 8164A manual 268, To -499 Query Errors

8163A, 8164A, 8166A, B specifications

Agilent Technologies B,86100A is a high-performance oscilloscope and signal integrity analyzer designed primarily for advanced digital communications applications. As a versatile tool, it supports a wide range of testing needs, making it indispensable for engineers and researchers involved in the development and testing of high-speed digital signals.

One of the standout features of the B,86100A is its capability to analyze signals with various bandwidths, accommodating both current and emerging communication standards. The device features a sampling rate of up to 80 GS/s and bandwidth capabilities of 33 GHz to ensure high accuracy in capturing fast signal transitions, which is critical for ensuring the integrity of complex digital signals.

The B,86100A employs Agilent's proprietary digital signal processing (DSP) technology, which significantly enhances measurement precision and reduces noise, enabling users to obtain clearer insights into signal behavior. Its advanced triggering capabilities allow for precise signal capture, making it particularly useful in troubleshooting and validating high-speed designs, as well as in evaluating the performance of optical and electrical devices.

In addition to its high-speed capabilities, the B,86100A offers a robust set of measurement tools including jitter analysis, eye diagram analysis, and equalization assessment. These features allow engineers to effectively analyze signal quality and address potential issues related to signaling distortions and inter-symbol interference.

The graphical user interface of the B,86100A is intuitive, enabling users to efficiently navigate through measurement options and visualize data results. Customizable measurement setups streamline workflow, ensuring that users can quickly adapt their tests to evolving project requirements.

Another key characteristic of the B,86100A is its modularity. The system supports a variety of plug-in modules, which can be tailored to specific application needs, such as different types of optical and electrical signals. This flexibility not only extends the operational capability of the instrument but also makes it a future-proof investment as technology continues to evolve.

In summary, Agilent Technologies B,86100A combines high-speed acquisition with advanced processing capabilities, making it an essential instrument for anyone involved in high-speed digital design and testing. With its ability to deliver precise measurements and extensive analysis features, it empowers engineers to achieve optimal performance and reliability in their systems.