ENA-X and ENA Series Vector Network Analyzers.pdf - 第25页
25 Noise Figure Measurements w ith Vector Co rrection ( S96029B ) using E5081A ENA -X This software appli cation enables high - a ccuracy noise figure and no ise - power m easure ments of amplifiers, frequen cy converter…

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For calibration, a standard mechanical cal kit or ECal module is required for the S-parameter portion of
the cal (an ECal used as a tuner cannot be shared for calibration). To calibrate a standard receiver for
noise figure measurements, a power meter/sensor is required. A 346-serires noise source (Keysight 346C
or 346C-K01 recommended) can be used for noise calibration of the instrument’s receiver when a
preamplifier is located before the receiver. All calibration accessories and external hardware must be
ordered separately.
Noise figure measurements with the E5080B are not supported below 50 MHz or above 45 GHz.

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Noise Figure Measurements with Vector Correction
(S96029B) using E5081A ENA-X
This software application enables high-accuracy noise figure and noise-power measurements of
amplifiers, frequency converters, and mixers, utilizing Keysight’s unique vector-source-correction
technique that uses Keysight N469xD series ECal module as a source-impedance tuner
1
to remove the
effects of imperfect system-source match. This approach yields accuracy that surpasses that provided by
the Y-factor method and other cold-source implementations, especially for in-fixture, on-wafer, and
automated-test environments. S96029B controls N469xD Series ECal modules configured as impedance
tuners for use with the E5081A ENA-X.
A scalar-calibrated method is also available that offers less accuracy but is faster and does not require an
impedance tuner. Unlike E5080B ENA, E5081A ENA-X does not require an external switch to isolate the
source signal during noise figure measurements.
If hardware options 0K1/0K2/0N1/0N2 are not ordered, then only the low and medium receiver gain
settings are available for noise figure measurements. These settings are suitable for devices with gain +
noise figure is > 30 dB. If the hardware options are ordered, in addition to the low and medium gain
settings, the high gain setting is enabled. This makes the noise figure capability suitable for a wider range
of devices. Hardware Options 0K1/0K2/0N1/0N2 are highly recommended if the instrument is to be used
for noise figure characterization.
All E5081A (with and without Option 0K1/0K2/0N1/0N2) include the necessary filters to eliminate out-of-
band noise conversion up to 40 GHz on ports 1 and 2. Below 160 MHz or above 40 GHz, an external
bandpass filter may be required for noise figure measurements.
Typical block diagrams of scalar-corrected (left) vector-corrected (right) noise figure measurements with
ENA-X are shown.
For calibration, a standard mechanical cal kit or ECal module is required for the S-parameter portion of
the cal (an ECal used as a tuner cannot be shared for calibration). To calibrate a standard receiver for
noise figure measurements, a power meter/sensor is required. A 346-serires noise source (Keysight 346C
or 346C-K01 recommended) can be used for noise calibration of the instrument’s receiver.
Noise figure measurements with the E5081A are not supported below 50 MHz.
1. 8509x, N443x or N755xA Series ECal modules are not supported.

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IQ Data Bandwidth Up to 1.5 Ghz / 4 Ghz
(S96050B/S96051B)
Industry-standard PathWave Vector Signal Analysis (89600 VSA) software enables single-connection
multiple measurements of active device distortion analysis using the ENA-X. The VSA IQ data-link feature
in either S960704B/707B modulation distortion or S960904B/907B spectrum analysis application allows
you to send IQ data from the VNA to the VSA software and analyze demodulation EVM, AM-AM, AM-PM,
and more.
Vector signal analysis with S96050B/S96051B is supported with the ENA-X. S96050B software license
supports IQ bandwidth of up to 1.5 GHz, while S96051B supports bandwidth up to 4 GHz. The license is
not required for bandwidth below 200 MHz.
Vector signal analysis with S96050B/S96051B is not supported with the E5080B ENA.
Maximum Bandwidth
Software License
E5080B ENA
E5081A ENA-X
29 MHz
Additional license not required
Yes
Yes
200 MHz
Additional license not required
Not available
Yes
1.5 GHz
S96050B
Not available
Yes
4 GHz
S96051B
Not available
Yes
Impedance Analysis (S96041B)
This software application enables the E5080B ENA to measure impedance parameters of Surface Mount
Devices (SMDs) such as capacitors or inductors up to 10 GHz. The high-frequency impedance analysis
solution consists of E5080B, S96041B and 16198A test fixture with option 010 to mount a small-sized
SMD under test, with either 0402 mm (01005 inch) or 0201 mm (008004 inch) size. S96041B computes
impedance parameters from measured data of E5080B using the 1-port reflection measurement method.
For calibration, S96041B provides two-step calibration for accurate impedance measurements – full 1-
port calibration and enhanced fixture compensation. The 85052DH02 data-based calibration kit is
required to perform full 1-port calibration to define the calibration plane at the 3.5-mm coaxial connector of
16198A’s adapter. Then, fixture effects are removed with the special compensation method. Open/short
fixture compensation eliminates the effects of residual impedance and stray admittance around the
fixture’s electrodes. The whole calibration process eliminates system errors associated with cables and
test fixture and delivers accurate impedance measurements.
Refer to the solution brief (literature number 3121-1166.EN) for more details.
S96041B is not supported with E5081A ENA-X.