Tabor | Benchtop Signal Generator

Model LS1294B

Rs. 9859899.00

LS1294B is a 12 GHz four-channel RF analog signal generator that combines high-frequency performance, phase coherence, and versatile analog modulation in a compact benchtop unit — ideal for complex multi-signal testing in R&D and production environments..

  • Detail
  • Special Features
  • Specification

The LS1294B is the highest-density RF signal generator in Tabor’s 12 GHz Lucid B-series lineup. With four channels packed into one compact benchtop chassis, this unit supports synchronized and independent operation — allowing users to execute multi-signal test cases without needing multiple instruments.

Each channel delivers clean, stable signals with full analog modulation capabilities, including AM, FM, PM, Sweep, and Pulse. Designed for high-end test environments, the LS1294B excels in MIMO system development, multi-path testing, aerospace and defense validation, and parallel DUT testing.

Its user-friendly interface, fast switching, and remote programmability make it a go-to instrument for both manual testing and automated setups.

  • Four synchronized or independent RF outputs

  • Wide frequency coverage up to 12 GHz per channel

  • Ultra-fast frequency and amplitude switching

  • Built-in AM, FM, PM, Sweep & Pulse modulation

  • High signal fidelity with low phase noise

  • Space-saving benchtop form factor with intuitive control

  • Optimized for multi-channel setups like MIMO, radar simulation, and multi-path emulation

  • Remote control support via MATLAB, Python, LabVIEW, SCPI, and more

  • Frequency Range: 100 kHz to 12 GHz

  • Channels: 4 (independent or phase-coherent)

  • Switching Speed: <100 µs typical

  • Modulation Types: AM, FM, PM, Sweep, Pulse

  • Phase Noise: Low, suitable for high-precision RF tasks

  • Form Factor: Compact benchtop unit

  • Remote Programming: Supported via MATLAB, Python, LabVIEW, SCPI

  • Use Cases: Multi-signal RF testing, MIMO, radar simulation, production validation, aerospace & defense