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EXB-F6WT06G Description
EXB-F6WT06G Description
The EXB-F6WT06G from Panasonic Electronic Components is an 8-resistor network array designed for precision termination and signal conditioning in through-hole applications. Housed in a compact 6-pin SIP package with dimensions of 0.586" x 0.100" (14.88mm x 2.54mm) and a seated height of 0.195" (4.95mm), this dual-terminator network offers resistances of 330Ω and 470Ω with a tight tolerance of ±2% and a temperature coefficient of ±200ppm/°C. Rated at 125mW per element, it ensures reliable performance in moderate-power circuits. Although marked as obsolete, its robust design and EAR99/ECCN compliance make it suitable for legacy or non-critical industrial systems.
EXB-F6WT06G Features
- High-Density Integration: Combines 8 resistors in a space-saving SIP package, reducing PCB footprint.
- Precision Performance: ±2% tolerance and ±200ppm/°C TCR ensure stable operation across temperature variations.
- Dual-Terminator Circuit: Optimized for impedance matching and signal integrity in bus termination applications.
- Through-Hole Reliability: Robust MSL1 (unlimited) moisture sensitivity rating suits harsh environments.
- Legacy Compatibility: Ideal for maintaining or repairing older equipment due to its standardized EXB series design.
EXB-F6WT06G Applications
- Industrial Controls: Signal termination in PLCs and motor drivers.
- Telecommunications: Impedance matching in legacy communication hardware.
- Test & Measurement Equipment: Precision resistor networks for calibration circuits.
- Consumer Electronics: Audio/video signal conditioning in CRT displays or older AV systems.
- Power Supplies: Voltage divider networks in analog power management.
Conclusion of EXB-F6WT06G
The EXB-F6WT06G excels in applications demanding compact, multi-resistor arrays with moderate power handling and stable performance. While obsolete, its Panasonic-quality construction and dual-resistance values (330Ω/470Ω) make it a pragmatic choice for legacy systems or niche designs requiring through-hole reliability. Engineers should evaluate alternatives for new designs but can leverage this component for repairs or low-volume production.



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