Home Test & Measurement Spectrum Analysers SSA3000X Series
SIGLENT SSA3000X spectrum analyzer front view
SIGLENT SSA3000X spectrum analyzer measurement display
SIGLENT SSA3000X spectrum analyzer RF analysis interface
SIGLENT SSA3000X rear-panel and connectivity overview
SIGLENT SSA3000X Series

SSA3000X — Bench Spectrum Analyzer, 9 kHz to 3.2 GHz

Versatile bench spectrum analyzer from 9 kHz to 2.1/3.2 GHz, with -161 dBm/Hz displayed average noise level, < -98 dBc/Hz phase noise, 1 Hz minimum RBW, standard tracking generator, and optional EMI, advanced measurement and reflection/VSWR functions.

Frequency Range
9 kHz – 2.1 / 3.2 GHz
DANL
−161 dBm/Hz typ.
Phase Noise
< −98 dBc/Hz typ.
RBW
1 Hz – 1 MHz
9 kHz–3.2 GHz−161 dBm/Hz DANL1 Hz RBWTracking generatorEMI option
ModelFrequency RangeRBWDANLPhase Noise
SSA3021X9 kHz – 2.1 GHz1 Hz – 1 MHz−161 dBm/Hz typ.< −98 dBc/Hz @ 1 GHz, 10 kHz offset typ.
SSA3032X9 kHz – 3.2 GHz1 Hz – 1 MHz−161 dBm/Hz typ.< −98 dBc/Hz @ 1 GHz, 10 kHz offset typ.

Key Features

All-digital IF architecture

The SSA3000X platform uses all-digital IF processing for stable spectrum measurements, reliable automatic measurements and repeatable swept analysis in R&D, education, maintenance and production benches.

−161 dBm/Hz DANL typ.

The typical displayed average noise level helps resolve weak spurious emissions, harmonics and low-level RF signals when using narrow RBW settings and the built-in preamplifier.

1 Hz minimum RBW

RBW from 1 Hz to 1 MHz in 1-3-10 sequence supports narrowband signal separation, close-in spur checks and low-level spectral measurements.

Standard tracking generator

The tracking generator is included on the current SIGLENT EU listing, making the instrument useful for scalar filter, amplifier and cable response measurements.

Reflection/VSWR option

Reflection, VSWR and return-loss measurements are available with the relevant option and external return-loss bridge. This has been described as a reflection/VSWR workflow rather than a full two-port network-analyzer product.

EMI and advanced measurement options

Optional EMI pre-compliance and advanced measurement functions support quasi-peak/average detector workflows, ACPR, channel power, occupied bandwidth and spectrum monitoring.

Specifications

ParameterUnitValue / Description
FREQUENCY
Frequency rangeGHz0.009 to 2.1 (SSA3021X) · 0.009 to 3.2 (SSA3032X)
Resolution bandwidthHz1 Hz to 1 MHz, 1-3-10 sequence
Frequency spanZero span and swept frequency analysis
AMPLITUDE / SPECTRAL PURITY
DANLdBm/Hz−161 typ., normalized to 1 Hz
Phase noisedBc/Hz< −98 typ. @ 1 GHz, 10 kHz offset
Total amplitude accuracydB< 0.7
MEASUREMENT FUNCTIONS
PreamplifierStandard
Tracking generatorStandard / included on current SIGLENT EU listing
Advanced measurementsOptional ACPR, channel power, occupied bandwidth, TOI, time-domain power and spectrum monitor
Reflection measurementsOptional VSWR / return loss with external reflection bridge
EMI pre-complianceOptional EMI filters and quasi-peak detector workflow
Analog demodulationAM / FM demodulation with audio output
DISPLAY / CONTROL
Display10.1-inch WVGA, 1024 × 600
Traces and markersFour selectable traces and four movable markers
Remote operationSCPI-style automated control for bench and production workflows

Applications

Pre-compliance Screening

Use optional EMI functions, limit lines and quasi-peak/average detector workflows to screen products before formal EMC lab submission.

Wireless Transmitter Characterization

Measure output power, occupied bandwidth, harmonics and spurious emissions for 2.4 GHz wireless modules and sub-3 GHz RF products.

University RF Lab Analyzer

A practical bench analyzer for spectrum, modulation, filter-response and signal-source training without moving directly to high-cost microwave instruments.

Scalar Response Measurement

Use the standard tracking generator for transmission response checks on filters, cables, amplifiers and simple RF networks.

Interference and Service Work

Check unknown carriers, spurs and RF interference during service and maintenance of radios, IoT nodes and industrial wireless equipment.

Automated RF QC

Use remote-control workflows for repeatable RF module checks including power, harmonics, OBW and simple pass/fail spectrum limits.

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