Rohde & Schwarz SMW200A Signal Generator 100Khz-67Ghz Two-Port Source
Key Features and Functions Wide Frequency Coverage: Frequency range from 100 kHz to 67 GHz (single-channel mode), up to 44 GHz in dual-channel mode, meeting the needs of numerous high-frequency communication and radar applications. Large Modulation Bandwidth: Features a 2 GHz modulation bandwidth, capable of generating complex modulated signals, suitable for communication standards such as 5G and WLAN with high bandwidth requirements. Excellent Phase Noise Performance: Standard high-end synthesizers have excellent single-sideband phase noise and non-harmonic performance. Options such as the R&S®SMW-B711/B721 ultra-low phase noise option can be selected to further enhance performance and meet the extremely high requirements for spectral purity in measurements.
Category:
Vector signal generator
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- Brand: 罗德与施瓦茨
- Commodity name: Rohde & Schwarz SMW200A Signal Generator 100Khz-67Ghz Two-Port Source
- Brand: Rohde & Schwarz
Key Features and Functions Wide Frequency Coverage: Frequency range from 100 kHz to 67 GHz (single-channel mode), up to 44 GHz in dual-channel mode, meeting the needs of numerous high-frequency communication and radar applications. Large Modulation Bandwidth: Features a 2 GHz modulation bandwidth, capable of generating complex modulated signals, suitable for communication standards such as 5G and WLAN with high bandwidth requirements. Excellent Phase Noise Performance: Standard high-end synthesizers have excellent single-sideband phase noise and non-harmonic performance. Options such as the R&S®SMW-B711/B721 ultra-low phase noise option can be selected to further enhance performance and meet the extremely high requirements for spectral purity in measurements.
Main Features and Functions
- Wide Frequency Coverage Frequency range from 100kHz to 67GHz (single-channel mode), up to 44GHz in dual-channel mode, meeting the needs of numerous high-frequency communication and radar applications.
- Large Modulation Bandwidth Features a 2GHz modulation bandwidth, capable of generating complex modulated signals, suitable for communication standards with high bandwidth requirements such as 5G and WLAN.
- Excellent Phase Noise Performance Standard high-end synthesizers have excellent single-sideband phase noise and non-harmonic performance. Options such as the R&S®SMW-B711/B721 ultra-low phase noise option can be selected to further enhance performance and meet extremely high spectral purity measurement requirements.
- Integrated MIMO and Fading Simulation Integrates channel simulation functionality, with a fading bandwidth of up to 800MHz, and preset fading profiles for all major standards. Through configuration, various key MIMO fading scenarios such as 2x2, 3x3, 4x4, 8x4, 4x8, and 8x8 can be realized, supporting up to 8 carrier aggregations, and can also be connected to the SGT100A signal generator module to provide up to 8 RF paths.
- Unique Ease of Use Built-in graphic functions allow real-time display of the generated signals. Users can select various display types such as I/Q vs. time, spectrum, vector diagram, or complementary cumulative distribution function (CCDF). It also provides an SCPI macro recorder and code generator, which can record manual operation steps and generate executable code templates for MATLAB, CVI, or Python.
Technical Specifications
- Frequency Range 100kHz - 67GHz (single path); 100kHz - 44GHz (dual path).
- Output Power -120 to 18dBm.
- SSB Phase Noise For example, -150dBc at 1GHz, 10kHz offset.
- Modulation Types Supports various modulation types such as I/Q, AM, PM, FM.
- Harmonics -55 to -30dBc.
- Non-Harmonics -80 to -55dBc.
Application Areas
- Wireless Communication Supports all major digital communication standards such as 5G NR, LTE, NB-IoT, EMTC, and WLAN. It can be used for the research and testing of base stations and terminal equipment, simulating various complex communication signal scenarios to verify equipment performance and compatibility.
- Real-Time Envelope Tracking Can be used to test and verify envelope tracking technology, which plays an important role in improving the power efficiency of communication equipment.
- GNSS Simulation Can simulate global navigation satellite system signals, used for the development, testing, and calibration of GNSS receivers, ensuring the accuracy and reliability of receivers under various signal conditions.
- Radar Simulation Can generate various signals required by radar systems, such as linear frequency modulation signals and phase-coded signals, used for radar target simulation, radar receiver testing, and radar system performance evaluation.
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I. Hardware Expansion Options
1. Frequency Range Expansion
2. Multi-channel and MIMO Expansion
3. Interfaces and Accessories
II. Software Function Options
1. Digital Standard Support
2. Advanced Signal Processing
3. Industry Application Options
III. Accessories and Calibration Tools
IV. Option Compatibility and Configuration Suggestions
- Dual RF path options (e.g., B81/B82 ) require B9/B10 base frequency module.
- Ultra-low phase noise option ( B711/B721 ) only supports B9/B10 frequency range.
- Multi-channel expansion ( B90 ) requires external SGS100A signal source, and synchronize via PXIe interface ( B1006 ) synchronization.
- Digital standard options (e.g., K40/K41 ) are activated with a license, supporting USB key or online activation.
- Real-time baseband coding ( K50 ) require B9/B10 hardware module.
- Automotive Electronics :B13XT (20 GHz) + K56 (Radar simulation) + K504 (Real-time control).
- 5G R&D :B22 (40 GHz) + K50 (2 GHz baseband) + K53 (Multi-carrier aggregation).
- Satellite Communication :B22 (40 GHz) + K57 (DVB-S2X) + B721 (Ultra-low phase noise).
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