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PDF E5052B Data sheet ( Hoja de datos )

Número de pieza E5052B
Descripción Signal Source Analyzer
Fabricantes Agilent(Hewlett-Packard) 
Logotipo Agilent(Hewlett-Packard) Logotipo



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No Preview Available ! E5052B Hoja de datos, Descripción, Manual

Agilent
E5052B Signal Source Analyzer
10 MHz to 7 GHz, 26.5 GHz, or 110 GHz
Data Sheet
www.DataSheet4U.com

1 page




E5052B pdf
Phase Noise Measurement – cont’d
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E5052B SSB-PN Sensitivity
10 MHz
100 MHz
1 GHz
10 100 1k 10k 100k 1M 10M 100M
Offset frequency [Hz]
Figure 1-1. SSB phase noise sensitivity (E5052B, SPD) (LO < 150 kHz
optimized, +5 dBm input, start offset frequency = 1 Hz, measurement time =
12.9 sec.)
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E5052B-011 SSB-PN Sensitivity
10 MHz
100 MHz
1 GHz
10 100 1k 10k 100k 1M 10M 100M
Offset frequency [Hz]
Figure 1-2. SSB phase noise sensitivity (E5052B Option 011, SPD)
(LO < 150 kHz optimized, +5 dBm input, start offset frequency = 10 Hz, measurement
time = 3.3 sec.)
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E5052B SSB-PN Sensitivity Improvement by Correlation @1 GHz
corr. = 1
corr. = 10
corr. = 100
10 100 1k 10k 100k 1M 10M 100M
Offset frequency [Hz]
Figure 1-3. SSB phase noise sensitivity improvement by correlation
(E5052B, SPD) (carrier 1 GHz, LO < 150 kHz optimized, +5 dBm input, start offset
frequency = 1 Hz)
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E5052B SSB-PN Sensitivity Change by L.O. Phase Optimization @1 GHz
< 150 kHz opt.
> 150 kHz opt.
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100
1k
10k 100k 1M
10M 100M
Offset frequency [Hz]
Figure 1-4. SSB phase noise change by LO optimization (SPD)
(carrier 1 GHz, +5 dBm input, start offset frequency = 1 Hz, reference oscillator:
narrowband)
Spectrum Monitor Measurement
Table 2-1. Spectrum monitor performance
Description
RF frequency range
Monitoring span
RBW
Measurement parameters
Absolute measurement uncertainty
Relative measurement uncertainty
Residual noise floor
www.DatMaSeahseureetm4eUnt.ctroigmger
Specification
10 MHz to 7 GHz
15 MHz maximum with linear scale
1.53 Hz to 400 kHz
dBm, dBV, watt, volt,
dBm/Hz, dBV/Hz, watt/Hz,
V/√–Hz
± 2 dB typical @ –10 dBm (att. = 10 dB)
± 1.5 dB (–60 dBm to –10 dBm, ratio)
–95 dBm typical @ RBW = 24.4 Hz
continuous/single/hold source:
internal/external/manual/bus
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E5052B SSB-PN Sensitivity Change by Reference Oscillator Bandwidth @100 MHz
Narrow
Wide
10 100 1k 10k 100k 1M 10M 100M
Offset frequency [Hz]
Figure 1-5. SSB phase noise sensitivity change by reference oscillator
bandwidth (SPD) (carrier 100 MHz, +5 dBm input, start offset frequency = 1 Hz,
LO optimization: < 150 kHz)
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E5052B arduino
Baseband Noise Measurement
Table 6-1. Baseband noise measurement performance
Description
Baseband input connector
Measurement frequency range
Measurement parameters
Measurement level range
Baseband input damage level
Noise floor level
Measurement uncertainty1
Measurement trigger
Specification
BNC, 50 ohm nominal, AC coupled
1 Hz to 100 MHz (E5052B)
10 Hz to 100 MHz (E5052B Option 011)
dBV/Hz, dBm/Hz, V/√Hz
< +5 dBm
> +23 dBm, > 35 V DC
See Table 6-2.
± 4 dB (< 1 kHz) SPD
± 2 dB (> 1 kHz) typical
continuous/single/hold source: internal/external/manual/bus
Table 6-2. Baseband noise floor [dBm/Hz]
correlation = 1, baseband input: 0 ohm terminated
BB noise floor
Baseband frequency [Hz]
1 10 100 1 k 10 k 100 k 1 M
E5052B start frequency = 1 Hz, measurement time = 13 s
specification
– – – –151 –158 –163 –160
typical
–119 –132 –145 –155 –162 –167 –164
E5052B Option 011 start frequency = 10 Hz, measurement speed = 3.3 s
specification
– – – –148 –155 –160 –157
typical
– –129 –142 –152 –159 –164 –161
10 M
–160
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–160
–164
40 M 100 M
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–160 –160
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–160 –160
Internal Timebase
Table 7-1. Internal timebase (OCXO) performance
Description
Frequency uncertainty
Frequency temperature coefficient
Frequency aging rate
Specification
± 5 Hz at 10 MHz (± 0.5 ppm)
< 0.5 ppb/degC
< 0.5 ppb/day
24 hours after a cold start for < 30 days continuous operation
1. Baseband measurement uncertainty: specified at > –60 dBm level.
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