Siglent SVA1015X

SIGLENT SVA1015X Spectrum Vector Analyzer User Manual

Model: SVA1015X

1. Kupu Whakataki

This manual provides detailed instructions for the safe and effective operation of the SIGLENT SVA1015X Spectrum Vector Analyzer. The SVA1015X is a versatile instrument designed for RF signal and network analysis, offering a frequency range from 9 kHz up to 1.5 GHz. It combines the functionalities of a spectrum analyzer and a vector network analyzer, making it suitable for various applications including broadcast monitoring, S-parameter measurement, cable and antenna testing, and EMI pre-compliance testing.

Please read this manual thoroughly before using the device to ensure proper handling and to maximize its performance and longevity.

2. Nga korero haumaru

Observe the following safety precautions to prevent injury and damage to the instrument:

3. Hua Neke Atuview

The SIGLENT SVA1015X is a high-performance spectrum and vector network analyzer. Its design integrates advanced microwave technology and digital processing algorithms to deliver reliable and accurate measurements.

Āhuatanga matua:

Tuhinga o muaview:

SIGLENT SVA1015X Spectrum Vector Analyzer Front View

Whakaahua 3.1: Mua view of the SIGLENT SVA1015X Spectrum Vector Analyzer, showing the large display, control buttons, and input/output ports.

The front panel features a large 10.1-inch multi-touch display for intuitive operation. To the right of the display are dedicated function keys for control, setting, marker, and measurement operations. A rotary knob and numeric keypad provide additional input methods. The bottom section includes USB ports for external storage or peripherals, a TG Source port for the tracking generator, and RF Input ports (PORT 1 and PORT 2) for signal connections.

SIGLENT SVA1015X Displaying Distance-to-Fault Measurement

Figure 3.2: The SVA1015X display showing a Distance-to-Fault (DTF) measurement, illustrating the graphical interface and measurement parameters.

The user interface is designed for clarity and ease of use, supporting both touch input and traditional button/knob controls. It also supports external mouse and keyboard for enhanced usability.

4. Tatūnga

4.1 Te Wetewete me te Tirotiro

  1. Carefully remove the instrument from its packaging.
  2. Inspect the instrument for any signs of damage during transit. If damage is found, contact your supplier immediately.
  3. Me manatoko kei a koe ngā taputapu katoa kua whakarārangihia ki te rārangi tākai.

4.2 Hononga Hiko

4.3 Hiko-Whakaahua Tuatahi

5. Nga Tohutohu Whakahaere

5.1 Spectrum Analysis

The SVA1015X functions as a full-featured spectrum analyzer, allowing you to measure the magnitude of an input signal versus frequency within the instrument's frequency range.

  1. Connect the signal to be analyzed to the RF INPUT PORT 1.
  2. Pehia te Aratau button and select 'Spectrum Analyzer'.
  3. Whakaritea te Auautanga settings (Center Frequency, Span) to define the measurement range.
  4. Whirihora Ampahuru settings (Reference Level, Attenuation) to optimize the signal display.
  5. Whakaritea te BW (Resolution Bandwidth, Video Bandwidth) for desired measurement resolution and noise reduction.
  6. Whakamahi Kaitohu functions to pinpoint specific frequencies and measure their ampahuru.

5.2 Vector Network Analysis (VNA)

The VNA mode allows for comprehensive characterization of RF components and networks by measuring S-parameters (S11, S21).

SIGLENT SVA1015X Vector Network Analysis Display

Figure 5.1: Display showing Vector Network Analysis results, including a Smith Chart for impedance matching and S-parameter measurements.

  1. Pehia te Aratau button and select 'Vector Network Analyzer'.
  2. Perform a calibration using appropriate calibration kits (e.g., OSL mechanical calibration) to ensure accurate measurements.
  3. Connect the Device Under Test (DUT) to RF INPUT PORT 1 (for S11) or between PORT 1 and PORT 2 (for S21).
  4. Set the frequency range (Start/Stop Frequency) for the measurement. The SVA1015X supports VNA from 100 kHz to 1.5 GHz.
  5. Select the desired S-parameter (S11, S21) and display format (e.g., Log Magnitude, Phase, Smith Chart, Polar Chart, VSWR).
  6. The SVA1015X offers a transmission dynamic range of over 70 dB for single-port measurements.
  7. Utilize features like Distance-to-Fault (DTF) for cable and antenna testing, and impedance analysis for precise fault location.

5.3 EMI Pre-compliance Testing

The SVA1015X can be used for EMI pre-compliance testing, helping to identify potential electromagnetic interference issues early in the design cycle.

SIGLENT SVA1015X EMI Pre-compliance Test Setup Diagram

Figure 5.2: Diagram illustrating a typical setup for EMI pre-compliance testing using a Spectrum Analyzer/EMI Receiver, LISN, and attenuator.

5.4 Modulation Analysis

The SVA1015X offers advanced capabilities for analyzing modulated signals, supporting both analog and digital modulation types.

SIGLENT SVA1015X Modulation Analysis Display

Figure 5.3: Screen capture showing QAM modulation analysis, including constellation diagrams and various measurement parameters like EVM and IQ offset.

5.5 Te Inenga Mana

The instrument provides a comprehensive suite of power measurement functions for characterizing RF signals.

SIGLENT SVA1015X Power Measurement Display

Figure 5.4: Graphical representation of various power measurement results, such as channel power and adjacent channel power ratio.

5.6 User Interface and Connectivity

SIGLENT SVA1015X 10.1 Inch Multi-Touch Display

Figure 5.5: The 10.1-inch multi-touch display of the SVA1015X, demonstrating touch-based interaction for setting parameters.

6. Tiaki

6.1 Te horoi

6.2 Whakariterite

7. Te Raru

This section provides solutions to common issues encountered during the operation of the SVA1015X. If the problem persists, contact technical support.

RaruraruTake peaRongoā
Kaore te taputapu e kaha ana.Power cord not connected; Power outlet faulty; Instrument fuse blown.Check power cord connection; Test power outlet; Contact service for fuse replacement.
No signal displayed in Spectrum Analyzer mode.Input signal not connected; Amplitude settings incorrect (e.g., Reference Level too low, Attenuation too high); Frequency range incorrect.Verify signal connection to RF INPUT PORT 1; Adjust Reference Level and Attenuation; Check Center Frequency and Span settings.
VNA measurements are inaccurate.Calibration not performed or incorrect; DUT not properly connected; Incorrect VNA settings.Perform a full VNA calibration; Ensure secure and correct DUT connections; Verify VNA frequency range and S-parameter settings.
Ko te mata pa e kore e aro.Temporary software glitch; Screen dirty; Hardware issue.Restart the instrument; Clean the screen with a soft cloth; If issue persists, use external mouse/keyboard and contact support.

8. Whakatakotoranga

The following table outlines the key technical specifications for the SIGLENT SVA1015X Spectrum Vector Analyzer.

TawhāSpecification (SVA1015X)
Spectrum Analyzer Frequency Range9 kHz ki te 1.5 GHz
Vector Network Analyzer Frequency Range100 kHz ki te 1.5 GHz
Resolution Bandwidth (RBW)1 Hz to 1 MHz, in 1-3-10 sequence
Displayed Average Noise Level (DANL)-156 dBm/Hz (typical)
Wāhanga Haruru<-98 dBc/Hz @ 1 GHz, 10 kHz offset
Tapeke AmpLitude Tika<1.2 dB
Tracking Generator Frequency Range100 kHz ki te 1.5 GHz
Whakaatu10.1 Inch Multi-Touch Screen
Ahu (L x W x H)18 x 12 x 11 inihi
Taumaha12.05 Pauna
Tauira TuemiSVA1015X
KaihangaSiglent Technologies NA Inc.

9. Pūtāhui me te Tautoko

The SIGLENT SVA1015X is covered by a manufacturer's warranty. For detailed warranty terms and conditions, please refer to the warranty card included with your product or visit the official Siglent webpae.

For technical support, service, or inquiries, please contact Siglent Technologies NA Inc. or your local authorized distributor. Contact information can typically be found on the Siglent webpae, i roto ranei i nga tuhinga hua.

Tuhinga e pa ana - SVA1015X

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