The Marconi IFR Aeroflex FB100A is a modular bit error rate tester engineered for performance assessment of digital communication systems across telecommunications and data communication applications. It generates and analyzes pseudo-random binary sequences (PRBS) to measure transmission link bit error ratio (BER), supporting both serial and parallel testing topologies. The instrument accommodates system-level, sub-system, and component testing during development and compliance verification phases.
– Technical Specifications
• Maximum data rate: 100 Mbit/s (serial), 160 Mbit/s (parallel)
• Maximum clock rate: 100 MHz
• Pattern depth: 4 Mbit
• Independent data generator and analyzer: 4 Mbyte memory each
• RF channel impairment generation: 5 MHz to 2.4 GHz tunable noise
• Carrier power levels: down to -70 dBm (standard); -140 dBm with OP240/OP240B option
• C/N and C/I ratio resolution: 0.1 dB
• External interferer capability: up to four signals, 5 MHz to 2.4 GHz
– Key Features
• INSTALOK™ synchronization technology for rapid data synchronization and error code analysis
• Resident interfaces: TTL, ECL, PECL
• Interface pods: TTL, LVDS, RS-422 (V.11), MPEG SPI, ASI, OC3, HSSI, X.21, RS-449, V.35, V.36, RS-232, EIA/TIA-530/A
• Logic level outputs: TTL and PECL (serial); byte-width data and pilot wire (parallel)
• Signal connection options: Pod-to-Header and Pod-to-Micro-grabbers for circuit card and device probing
• Burst noise and flat fading carrier profiles
• Selectable channel bandwidths
• Automatic BER versus Eb/No measurement
• Windows NT user interface
– Typical Applications
• Digital communication system performance validation
• Telecommunications component and subsystem testing
• Compliance verification and certification
• RF front-end simulation with broadband noise loading
• Co-channel, adjacent channel, and total interferer power testing
– Compatibility & Integration
The FB100A supports diverse transmission standards and interface protocols through resident interfaces and optional interface pods, enabling integration into complex test environments requiring multi-standard BER measurement and RF impairment simulation.





















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