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Test port input – Atec Agilent-E8364C User Manual

Page 16

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16

E8362/3/4C

Test port input

continued

Description Specification

Supplemental

information

Standard,

014,

UNL

UNL

and

014

Direct receiver access input noise floor

1,2

- Option 080 enabled

4

10 Hz IF bandwidth
10 to 45 MHz

< -127 dBm

< -127 dBm

45 to 500 MHz

3

< -126 dBm

< -126 dBm

500 MHz to 2 GHz

< -132 dBm

< -132 dBm

2 to 10 GHz

< -131 dBm

< -131 dBm

10 to 20 GHz

< -133 dBm

< -133 dBm

20 to 40 GHz

< -124 dBm

< -124 dBm

Option 016 degrades performance by 2 dB

40 to 50 GHz

< -122 dBm

< -122 dBm

Option 016 degrades performance by 2 dB

1 kHz IF bandwidth
10 to 45 MHz

< -107 dBm

< -107 dBm

45 to 500 MHz

3

< -106 dBm

< -106 dBm

500 MHz to 2 GHz

< -112 dBm

< -112 dBm

2 to 10 GHz

< -111 dBm

< -111 dBm

10 to 20 GHz

< -113 dBm

< -113 dBm

20 to 40 GHz

< -104 dBm

< -104 dBm

Option 016 degrades performance by 2 dB

40 to 50 GHz

< -102 dBm

< -102 dBm

Option 016 degrades performance by 2 dB

Receiver compression level (measured at test ports)
10 MHz to 20 GHz

< 0.1 dB at -5 dBm

5

and

< 0.45 dB at +5 dBm

20 to 30 GHz

< 0.1 dB at -9.5 dBm

5

and < 0.45 dB at 0 dBm

30 to 40 GHz

< 0.1 dB at -12.5 dBm

5

and < 0.45 dB at -3 dBm

40 to 50 GHz

< 0.1 dB at -12.5 dBm

5

and < 0.45 dB at -3 dBm

System compression level

max output power

See dynamic accuracy

chart
Third order intercept – Tone spacing from 100 kHz to 5 MHz

Typical:

10 to 150 MHz

+33 dBm

150 to 300 MHz

+34 dBm

300 to 500 MHz

+30 dBm

500 MHz to 20 GHz

+24 dBm

20 to 40 GHz

+18 dBm

40 to 50 GHz

+15 dBm

Third order intercept – Tone spacing from 5 MHz to 20 MHz

Typical:

10 to 500 MHz

+20 dBm

500 MHz to 20 GHz

+20 dBm

20 to 40 GHz

+16 dBm

40 to 50 GHz

+15 dBm

Third order intercept – Tone spacing from 20 MHz to 50 MHz

Typical:

10 to 500 MHz

+26 dBm

500 MHz to 20 GHz

+26 dBm

20 to 40 GHz

+20 dBm

40 to 50 GHz

+19 dBm

1. Total average (rms) noise power calculated as mean value of a linear magnitude

trace expressed in dBm.

2. Typical performance.
3. Noise floor may be degraded by 10 dB at particular frequencies (multiples of 5 MHz)
due to spurious receiver residuals.

4. 0 Hz offset.
5. This compression level comes from the dynamic accuracy curve with -30 dB

reference test port power.