Agilent Technologies 8753ET User Manual

Page 13

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13

Frequency offset mode

3

Frequency range

300 kHz to 3 GHz

Option 006

300 kHz to 6 GHz

R-channel input requirements

Power level
300 kHz to 3 GHz

0 to -35 dBm

3 GHz to 6 GHz

0 to -30 dBm

LO spectral purity

Maximum spurious input <-25 dBc
Residual FM

<20 kHz

LO frequency accuracy

±1 MHz at nominal frequency

External source mode

4

(CW time sweep only)

Frequency range

300 kHz to 6 GHz

R-channel input requirements

1

Power level

0 to -25 dBm

Spectral purity

Maximum spurious

<-30 dBc

input

Residual FM

<20 kHz

Typical settling time

1

500 ms (automatic)
50 ms (manual)

Input frequency accuracy requirement

1

Manual

-0.5 to 5 MHz

Display resolution

0.001 dB/division

Marker resolution

5

0.001 dB

Trace noise
(+5 dBm at test-port, ratio measurement, 3 kHz BW)
Magnitude

300 kHz to 3 GHz

<0.006 dB rms

3 GHz to 6 GHz

<0.010 dB rms

Phase

300 kHz to 3 GHz

<0.038° rms

3 GHz to 6 GHz

<0.070° rms

Reference level

Range

±500 dB

Resolution

0.001 dB

Stability

2

30 kHz to 3 GHz

0.02 dB/° C

3 GHz to 6 GHz

0.04 dB/° C

Range

±180°

Display resolution

0.01°/division

Marker resolution

5

0.01°

Trace noise

2

30 kHz to 3 GHz

<0.038° rms

3 GHz to 6 GHz

<0.070° rms
(+5 dBm at test port, ratio
measurement, 3 kHz BW)

Reference level

Range

-180° to +180°

Resolution

0.01°

Stability

30 kHz to 3 GHz

0.05°/° C

3 GHz to 6 GHz

0.20°/° C

Polar characteristics

Range

10 x 10

–12

to 1000 units full

scale

Reference

±500 units

1. Typical performance.
2. Typical below 300 kHz.
3. The Agilent 8753ES source characteristics and measurement accuracy in this

mode are dependent on the stability of the external LO source. The RF source
tracks the LO to maintain a stable IF signal at the R-channel receiver input.
Degradation in accuracy is negligible when using an Agilent 8642A/B, 8656B,
or E4432B RF signal generator as the LO source.

4. See the Agilent 8753ES descriptions and options for a functional description.

Measurement accuracy is dependent on the stability of the input signal.

5. Marker resolution for magnitude, phase and delay is dependent upon

measured value. Resolution is limited to five digits.

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