Agilent Technologies 5750A Load Connections for 80V to 600V Models, Wire Size, 10 mm 0.39, Torque

Models: 5751A 5744A 5743A 5750A 5749A 5752A 5747A 5742A 5748A 5741A 5745A 5746A

1 132
Download 132 pages 2.14 Kb
Page 23
Image 23

Installation 2

Install the shield after you have finished connecting the load wires.

Shield

Load Connections for 80V to 600V Models

 

SHOCK HAZARD Hazardous voltages may exist at the outputs and the load

WARNING

 

connections when using a power supply with a rated output greater than 40V.

 

To protect personnel against accidental contact with hazardous voltages,

 

ensure that the load and its connections have no accessible live parts. Ensure

 

that the load wiring insulation rating is greater than or equal to the maximum

 

output voltage of the power supply.

The 80V to 600V models have a four-terminal wire clamp output connector. The two left terminals are the positive outputs and the two right terminals are the negative outputs. The connector specifications are as follows:

Wire Size:

AWG 18 to AWG 10

Stripping Length:

10 mm (0.39 in.)

Torque:

6.5 - 7 in-lb.

The following instructions describe how to connect the load wires to the power supply:

Strip wires back approximately 10 mm (0.39 in).

Loosen the connector terminal screws and insert the stripped wires into the terminal. Tighten the terminal screw securely.

+V -V

Positive Output (+)

Negative (-)

Output/Return

Load wires

Series N5700 User’s Guide

23

Page 23
Image 23
Agilent Technologies 5750A, 5752A, 5744A manual Load Connections for 80V to 600V Models, Wire Size, 10 mm 0.39, Torque, in-lb

5751A, 5744A, 5743A, 5750A, 5749A specifications

Agilent Technologies has been a leader in electronic measurement and analysis, with a suite of powerful instruments that cater to various applications in research, development, and manufacturing. Among these, the Agilent 5746A, 5745A, 5741A, 5748A, and 5742A models stand out for their advanced capabilities and features.

The Agilent 5746A is a high-performance signal analyzer that excels in time and frequency domain analysis. This device offers a wide frequency range and exceptional dynamic range, making it suitable for both RF and microwave applications. Its advanced digital signal processing allows for high-resolution spectrum analysis and real-time signal processing, which is essential for engineers and researchers working on complex signals.

The Agilent 5745A is known for its versatility as a multifunctional signal generator. It combines the functionalities of a vector signal generator with the precision of a traditional oscillator. This model provides high-quality waveform generation for a variety of modulation schemes, making it ideal for testing communication systems and conducting research in advanced modulation techniques.

The Agilent 5741A is a precision power meter that offers accurate measurements of RF power in a compact format. It is equipped with state-of-the-art sensing technology that ensures reliable and repeatable measurements. The 5741A is particularly useful for monitoring power levels in transmitters and receivers, and its intuitive interface makes it user-friendly for both novices and experienced professionals.

For those focused on harmonic and intermodulation distortion analysis, the Agilent 5748A provides exceptional performance. This model allows users to analyze distortion products in various devices with precision, helping in the design and testing of amplifiers and other RF components. Its comprehensive sweep functionality enables users to observe the behavior of devices across a wide frequency range.

Finally, the Agilent 5742A complements the range with its dedicated spectrum analyzing capabilities. Offering high sensitivity and ability to capture short-lived events, this model is optimal for monitoring transient signals. The 5742A is frequently used in the telecommunications sector to ensure signal integrity and compliance with regulatory standards.

Together, these Agilent Technologies instruments provide a comprehensive toolkit for professionals in electronics and telecommunications, enabling detailed analysis, accurate measurements, and advanced signal generation. Their integration of modern technologies ensures that users can tackle the complexities of today’s electronic environments with confidence and precision.