SSA Signal Source Analyzer, 10 MHz to 7 GHz, 26.5 GHz, or 110 GHz
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Signal source analyzer
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- Commodity name: SSA Signal Source Analyzer, 10 MHz to 7 GHz, 26.5 GHz, or 110 GHz
Keysight E5052B Signal Source Analyzer: The Ultimate Tool for High-Frequency Signal Quality Analysis
I. Product Positioning and Core Value
II. Core Technological Breakthroughs
- Frequency Extension Capability :The frequency range can be extended from 7 GHz to 110 GHz through the E5053A downconverter and the 11970 series mixers, covering the Ka band (26.5-40 GHz) and the terahertz band, meeting the high-frequency testing needs of satellite communication and radar systems.
- Phase Noise Performance :Using ultra-low background noise (-168 dBc/Hz) and cross-correlation technology, the typical phase noise at 10 MHz carrier @ 1 MHz offset reaches -178 dBc, a 10 dB improvement over the previous generation E5052A, ensuring the demodulation accuracy of high-sensitivity receivers.
- Jitter Analysis :Supports femtosecond resolution (fs), can measure the clock jitter of high-speed data converters (ADC/DAC) and SerDes chips, meeting the testing requirements of interfaces such as PCIe 5.0 and USB4.
- Noise Measurement Function :Simultaneously measure AM noise and phase noise without changing the RF connection, supporting baseband noise analysis from 1 Hz to 100 MHz, suitable for VCO characteristic characterization (frequency/power/DC current versus voltage).
- real-time spectrum monitoring :Real-time capture of signal spectrum within a 15 MHz sweep range, can detect burst interference or nonlinear distortion, accelerating the debugging efficiency of radar chirp signals.
- Transient Measurement :Simultaneously monitor changes in frequency, phase, and power over time, and combined with video trigger function, it can capture unexpected frequency jumps, suitable for transient analysis of satellite communication signals.
- Graphical User Interface :The 10.4-inch touch screen supports multi-window display, allowing simultaneous viewing of phase noise, jitter, and spectrum data, and one-click generation of test reports.
- Software-Defined Function :Activate higher frequency ranges (such as E5053A) or upgrade jitter analysis software through options to flexibly adapt to different testing needs.
- Automated Integration :Supports SCPI commands and LAN remote control, and can be seamlessly integrated into ATE systems to improve production line testing efficiency.
III. Typical Application Scenarios
- Millimeter-wave Signal Source Test :Generate 28 GHz/39 GHz 5G NR signals, evaluate the ACPR and EVM performance of PAs, and verify the linearity of base stations.
- 6G Pre-research :Supports terahertz band (above 100 GHz) signal analysis, assisting in the R&D of 6G ultra-high-speed communication systems.
- Automotive Radar FMCW Signal Analysis :Measure the phase noise and linearity of 77 GHz/79 GHz radar signals to ensure the target recognition accuracy of ADAS systems.
- Weather Radar Optimization :Real-time monitoring of the spectral purity of chirp signals to improve the resolution and reliability of weather monitoring.
- SerDes Chip Test :Analyze the clock jitter of interfaces such as PCIe 5.0 and USB4 to ensure the stability of data transmission.
- Optical Module Verification :Measure the phase noise of high-speed optical signals, supporting the R&D of 400G/800G optical communication systems.
- Industrial Detection :Combined with terahertz mixers, analyze the defects of polyethylene pipe hot melt joints to improve the accuracy of non-destructive testing.
- Materials Science :Study the electromagnetic properties of materials in the terahertz band to promote the development of quantum communication and biomedical imaging technology.
IV. Technical Parameter Comparison
V. User Value and Industry Recognition
- Improved R&D Efficiency :A 5G chip manufacturer reduced the PA linearity test cycle by 30% and doubled verification efficiency after adopting E5052B.
- Reduced Production Costs :Built-in calibration tools and quick switching functions saved a filter production line over 200,000 yuan in annual calibration costs.
- Industry Certification :Supports standards such as 3GPP TS 38.141 and IEEE 802.11be, and has passed 5G base station consistency testing certification from companies such as Huawei and ZTE.
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I. Core Hardware Options
1. Frequency Range Extension
2. Signal Quality Optimization
3. Interface and Control
II. Software Function Options
1. Phase Noise Analysis
2. Noise and Modulation Analysis
3. Special Application Support
III. Accessories and Extensions
1. Calibration and Maintenance
2. Mechanical and Installation
3. External Device Interface
IV. Special Configuration Packages
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