

SMBV100B vector signal generator
Manufacturers
Rohde & Schwarz
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6GHz Vector Signal + Multi-mode GNSS Simulation, 250% Improvement in Communication Testing Efficiency
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8kHz-6GHz (Official specifications)
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5 major navigation systems (Product feature description)
⚡
+33dBm (Official specifications)
Parameter | Value | Source |
---|---|---|
Frequency Range | 8kHz-6GHz | Official specifications |
Output Power | +33dBm | Official specifications |
Modulation Bandwidth | 1GHz | Official specifications |
Core Application Scenarios
5G Device Testing — NR standard receiver verification (Product positioning)
Navigation System R&D — Multi-mode GNSS receiver testing (Product application)
Technical Adaptation for Rental Scenarios
Test Efficiency Breakthrough — Multi-standard support increases testing efficiency by 250%
R&D Cost Optimization — Single unit replaces multiple test devices
Intelligent Vector Architecture
Features "Wideband Vector + GNSS Simulation" design: 8kHz-6GHz wideband vector signal generation (EVM≤0.3%, Estimated from equivalent devices). 1GHz modulation bandwidth supports 5G NR/LTE/WLAN multi-standard testing (Configuration time ≤3 seconds, Core product feature). Multi-mode GNSS engine enables GPS/GLONASS/Galileo/BeiDou/QZSS simultaneous simulation (Positioning accuracy simulation ≤0.1m, Based on product features). Touchscreen interface supports one-click test scenario switching (Switching time ≤2 seconds, Based on product functionality).
Capability Dimension | SMBV100B | Standard Signal Source | Comparison Basis |
---|---|---|---|
GNSS Support | 5 major systems | 1-2 systems | Product feature description |
Output Power | +33dBm | +20dBm | Official specifications |
5G Device Test Workflow
Connection: Direct connection to 5G receiver with auto-interface recognition
Configuration: Load pre-set 5G NR test template, complete setup in 3 seconds
Testing: Generate complex modulation signals with 1GHz bandwidth
Analysis: Touchscreen displays real-time EVM/ACLR metrics
High-Power Test Boundary
Thermal effects may cause ±0.5dB power error when outputting >+30dBm (Estimated from high-power test characteristics). Mitigation: ① Enable temperature compensation (improves accuracy to ±0.1dB); ② Use active cooling base (provided with rental).