Custom Arb Waveform Generator

Configuring Hardware

the internal ARB as a baseband source and enable the wideband inputs.

1.Set up the internal baseband generator with the desired signal.

2.Press the Mux hardkey.

3.Press I/Q Out.

4.Press BBG1

5.Press the front panel I/Q hardkey.

6.Press I/Q Off.

7.Press I/Q Path Wide (Ext Rear Inputs).

8.Press I/Q On.

Configuring Hardware

To Set the ARB Reference see page 163

To Set a Delayed, Positive Polarity, External Single Trigger

Using this procedure, you learn how to utilize an external function generator to apply a delayed single- trigger to a custom multicarrier waveform.

1.Connect an Agilent 33120A function generator or equivalent to the signal generator PATT TRIGGER IN port, as shown in Figure 6- 1.

Figure 6-1

2.On the signal generator, press Preset.

3.Press Mode > Custom > Arb Waveform Generator.

4.Press Multicarrier Off On until On is highlighted.

5.Press Trigger > Single.

6.Press Trigger > Trigger Setup >Trigger Source > Ext.

7.Press Ext Polarity Neg Pos until Pos is highlighted.

8.Press Ext Delay Off On until On is highlighted.

162

Chpater 6

Page 176
Image 176
Agilent Technologies E8267D PSG, E8257D PSG manual Configuring Hardware, Press Mode Custom Arb Waveform Generator

E8267D PSG, E8257D PSG specifications

Agilent Technologies, a recognized leader in electronic measurement and communications solutions, offers a comprehensive range of signal generators, including the E8257D PSG (Pulsed Signal Generator) and E8267D PSG. These instruments are engineered to meet the demanding requirements of wireless communication, aerospace, defense, and various research applications.

The E8257D PSG is known for its versatility and reliability. It operates within a frequency range of 250 kHz to 40 GHz, making it suitable for a wide array of applications, from signal generation to vector modulation. With an output power capability of up to +30 dBm, it delivers high-quality signals with exceptional precision. Its low phase noise performance is especially critical for applications such as radar and communication system testing, where signal integrity is paramount.

One of the standout features of the E8257D is its advanced modulation capabilities, including analog and digital modulation schemes. This flexibility allows engineers to simulate real-world communications environments accurately. The PSG also features a built-in arbitrary waveform generator that enables users to create complex waveforms tailored to specific testing needs, providing a significant advantage in research and development.

On the other hand, the Agilent E8267D PSG is designed to cater to the needs of users requiring a combined signal generation and analysis solution. With the capability to generate signals from 250 kHz to 67 GHz, the E8267D is ideal for millimeter-wave applications, as well as testing next-generation wireless technologies.

This model includes features such as enhanced phase noise performance and faster switching speed, which are crucial for signal integrity in sophisticated networks. The instrument's intuitive user interface and powerful software integration facilitate effortless operation and automation, thereby improving workflow efficiency.

Both the E8257D and E8267D PSG instruments incorporate cutting-edge technologies such as low-noise microwave and RF components, as well as digital signal processing capabilities. They provide users with enhanced accuracy and reliability in their measurements.

In summary, Agilent Technologies' E8257D and E8267D PSG signal generators represent the pinnacle of precision in signal generation technology. With their extensive feature sets, advanced modulation capabilities, and robust performance specifications, these instruments are invaluable tools for engineers and researchers working across various high-tech industries.