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Ac voltage (non-sine wave) specifications – Atec Fluke-5500A User Manual

Page 23

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Fluke Corporation

5500A Black and White Extended Specifications

AC Voltage (Non-Sine Wave) Specifications

1-Year Absolute Uncertainty,

tcal ± 5

°C,

± (% of output + % of range)

[2]

Triangle Wave &

Truncated Sine

Range

p-p

[1]

Frequency

% Output

% Range

Maximum

Voltage Resolution

Normal Channel (Single Output Mode)

2.9 to 92.999 mV

0.01 to 10 Hz

5.0

0.5

Two digits on each range

93 to 929.999 mV

10 to 45 Hz

0.25

0.5

0.93 to 9.29999 V

45 Hz to 1 kHz

0.25

0.25

1 to 20 kHz

0.5

0.25

9.3 to 92.9999 V

20 to 100 kHz

[3]

5.0

0.5

Six digits on each range

Auxiliary Output (Dual Output Mode)

0.01 to 10 Hz

5.0

0.5

Two digits on each range

93 to 929.999 mV

10 to 45 Hz

0.25

0.5

45 Hz to 1 kHz

0.25

0.25

0.93 to 9.29999 V

1 to 10 kHz

5.0

0.5

Six digits on each range

[1]

To convert p-p to rms for triangle wave, multiply the p-p value by 0.2886751. To convert p-p to rms for truncated sine wave,
multiply the p-p value by 0.2165063.

[2]

Uncertainty is stated in p-p. Amplitude is verified using an rms-responding DMM.

[3]

Uncertainty for truncated sine outputs is typical over this frequency band.

1-Year Absolute Uncertainty,

tcal ± 5

°C

± (% of output + % of range)

[2]

Square Wave

Range

p-p

[1]

Frequency

% Output

% Range

Maximum

Voltage Resolution

Normal Channel (Single Output Mode)

2.9 to 65.999 mV

0.01 to 10 Hz

5.0

0.5

Two digits on each range

66 to 659.999 mV

10 to 45 Hz

0.25

0.5

0.66 to 6.59999 V

45 Hz to 1 kHz

0.25

0.25

1 to 20 kHz

0.5

0.25

6.6 to 65.9999 V

20 to 100 kHz

5.0

0.5

Six digits on each range

Auxiliary Output (Dual Output Mode)

0.01 to 10 Hz

5.0

0.5

Two digits on each range

66 to 659.999 mV

10 to 45 Hz

0.25

0.5

45 Hz to 1 kHz

0.25

0.25

0.66 to 6.59999 V

1 to 10 kHz

5.0

0.5

Six digits on each range

[1]

To convert p-p to rms for square wave, multiply the p-p value by .5000000.

[2]

Uncertainty is stated in p-p. Amplitude is verified using an rms-responding DMM.