The Rohde & Schwarz TS-EMF is a portable electromagnetic field measurement system for precise, frequency-selective analysis of EMF emissions across complex RF environments. Integrated with Rohde & Schwarz spectrum analyzers, it evaluates total and individual emissions while maintaining compliance with ICNIRP, EN 50400, and EN 50499 standards. The system operates across 9 kHz to 6 GHz using three calibrated isotropic antennas, each covering discrete frequency bands with documented isotropic deviations. Field measurements are performed using multiple methods—fast overview, average/peak value over time, grid, stirring, and long-term measurement—with automated test routines and integrated report generation enabling efficient on-site operation.
Technical Specifications
Frequency Coverage
• Overall range: 9 kHz to 6 GHz
• Isotropic loop antenna: 9 kHz to 200 MHz
• Isotropic antenna: 30 MHz to 3 GHz
• Isotropic antenna: 700 MHz to 6 GHz
Isotropic Deviation Performance
• General: ≤ ±2.1 dB
• 0.6 GHz to 2 GHz: ≤ ±2.5 dB (±1.0 dB at 900 MHz)
• 2 GHz to 3.6 GHz: ≤ ±2.2 dB (±1.7 dB at 1800 MHz)
• 3.6 GHz to 6 GHz: ≤ ±3.0 dB
• TS-EMF-B3 (9 kHz to 200 MHz): ±1.37 dB
• TS-EMF-B1 (30 MHz to 3 GHz): ±1.0 dB to ±2.1 dB
Measurement Capabilities
• Frequency-selective EMF spectrum measurements
• Complex RF signal scenarios with varied bandwidths, modulation schemes, and timing structures
• Total and individual emissions evaluation
• Fast overview, average/peak, grid, stirring, and long-term measurement methods
– Key Features
• Three-antenna isotropic configuration for omni-directional field detection independent of polarization
• Individual antenna calibration data stored on USB dongle and/or CD
• Compliant with ICNIRP, EN 50400, and EN 50499 standards
• On-site automated testing with integrated reporting
– Compatibility & Integration
Designed for integration with Rohde & Schwarz spectrum analyzers including R&S FPL, R&S FSH, R&S FPH, and R&S FSL. Supported by R&S RFEX measurement software including R&S RFEX-Fast for standard measurement routines.
















