Table 1-2. Specifications (continued)

Source Effect:

 

 

 

 

Voltage

0.5 mV

0.5 mV

0.5 mV

0.5 mV

+ Current

0.005 mA

0.005 mA

0.01 mA

0.01 mA

Programming Accuracy:

Note: The programming accuracy specifications may degrade slightly when the unit is subjected to an RF field equal to or greater than 3 volts/meter.

Voltage

0.016% + 1.5 mV

0.016% + 10 mV

0.016% + 3 mV

0.016% + 10 mV

+ Current

0.04%

+ 15 μA

0.04%

+ 100 μA

0.04% + 185 μA

0.04% + 500 μA

OVP

0.13%

+ 475 mV

0.13%

+ 475 mV

0.13% + 475 mV

0.13% + 475 mV

Measurement/Readback Accuracy*

 

 

 

 

Voltage

0.016% + 2 mV

0.016% + 10 mV

0.016% + 3.5 mV

0.016% + 10 mV

± Current

0.03%

+ 15 μA

0.03%

+ 130 μA

0.04% + 250 μA

0.04% + 550 μA

Load Transient Recovery Time :(all outputs)

75 μS maximum to recover to within 75 mV of nominal value following a load change from 0.1 A to 100% of the maximum rated current

Maximum Output Noise: (PARD) (20 Hz-20 MHz)

CV pk-to-pk

3 mV

3 mV

3 mV

3 mV

CV rms

0.5 mV

0.5 mV

0.5 mV

0.5 mV

+CC rms

0.1 mA

0.1 mA

0.1 mA

0.1 mA

AC Input Voltage and Frequency:

 

 

 

Nominal Line

l00, 120, 220, or 240 Vac

 

 

 

Amplitude

+6% to -13% of nominal line voltage

 

 

Frequency

47 to 66 Hz

 

 

 

Note at low line, the supply will operate with up to 3/4 ohm line resistance

*For a ± 5 ° C range about the calibration temperature

 

 

Table 1-3. Supplemental Characteristics

Output Power

 

25 Watt Output

 

50 Watt Output

Output Range

Lo Range

Hi Range

Lo Range

Hi Range

Output Volts

0-7 V

0-50 V

0-16 V

0-50 V

Output Amps

0-15 mA

0-500 mA

0-200 mA

0-2 A

Temperature Coefficient-Programming:

 

 

 

Voltage

(0.003%+0.1 mV)

(0.003%+0.1 mV)

(0.003%+0.1 mV)

(0.003%+0.1 mV)

 

per° C

per° C

per° C

per° C

+ Current

(0.0035% + 1.5 μA)

(0.0035% + 6 μA)

(0.0035% + 30 μA)

(0.0035% + 50 μA)

 

per° C

per° C

per° C

per° C

OVP

(0.013% + 1 mV)

(0.013% + 2 mV)

(0.013% + 1 mV)

(0.013% + 2 mV)

 

per° C

per° C

per° C

per° C

General Information 17

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Agilent Technologies 6628A, 6626A, 6625A Specifications Source Effect, Programming Accuracy, Measurement/Readback Accuracy

6629A, 6625A, 6626A, 6628A specifications

Agilent Technologies, a recognized leader in electronic test and measurement solutions, has developed a series of precision power supplies ideal for a variety of applications in both research and industry. The Agilent 6628A, 6626A, 6625A, and 6629A are part of the Agilent 6000 series and stand out due to their innovative technologies and robust functionalities.

The Agilent 6628A is a triple-output power supply, featuring two 0 to 20 V outputs capable of delivering up to 3 A each, along with a 5 V output that can supply 5 A. This combination is perfect for supplying power to devices that require multiple supply voltages simultaneously, making it an excellent choice for testing and development purposes.

The Agilent 6626A, on the other hand, offers dual output capabilities with higher specifications. Each of its outputs can be adjusted from 0 to 25 V and delivers up to 3 A, providing enhanced flexibility for designers and engineers working with various devices. Additionally, the 6626A's compact size and lightweight design make it easy to integrate into test setups without occupying excessive space.

For applications that require comprehensive monitoring, the Agilent 6625A provides a unique solution with its built-in digital voltmeter (DVM). This power supply comes with two 0 to 25 V outputs, both capable of 3 A. The integrated DVM allows real-time measurement and displays voltage and current values, ensuring accurate readings during experimentation and testing.

Lastly, the Agilent 6629A is designed for high-performance applications, providing up to four outputs, including two adjustable outputs that can be set between 0 to 35 V and deliver 5 A each. This model is particularly suited for environments where multiple devices need to be powered simultaneously with varying voltage requirements.

All four models come equipped with key features including ease of programming, precision regulation, and superior load transient response. They employ advanced technologies like low-noise operation and excellent line regulation, ensuring stable performance under varying load conditions. Additionally, safety features such as overvoltage protection, current limiting, and rapid recovery from overloads guarantee reliable operation.

In summary, Agilent's 6628A, 6626A, 6625A, and 6629A power supplies provide versatile, precise, and reliable solutions for all electronic testing needs. Their characteristics and dedicated functionalities make them indispensable tools for engineers, researchers, and developers across numerous fields. Whether it's for prototyping, testing, or production, these power supplies deliver the quality and performance that professionals expect from Agilent Technologies.