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EXB-S8V620J Description
EXB-S8V620J Description
The EXB-S8V620J from Panasonic Electronic Components is a high-performance 4-resistor array designed for precision surface-mount applications. Housed in a compact 2009 concave long-side terminal package (5.08mm x 2.20mm), this isolated network offers a 62Ω resistance per element with a ±5% tolerance and ±200ppm/°C temperature coefficient. Its 100mW power rating per element ensures reliable operation in demanding circuits, while the ROHS3 compliance and REACH unaffected status make it environmentally friendly. The device is supplied in Tape & Reel (TR) packaging, ideal for automated assembly processes.
EXB-S8V620J Features
- Compact Design: Ultra-low profile (0.90mm height) saves board space in dense layouts.
- Stable Performance: Low ±200ppm/°C thermal drift ensures consistency across temperature variations.
- High Reliability: MSL 1 (Unlimited) moisture sensitivity allows extended shelf life without baking.
- Optimized for Automation: 2009 concave package with long-side terminals enhances pick-and-place efficiency.
- Wide Compatibility: EAR99 and HTSUS 8533.21.0020 classifications simplify global logistics.
EXB-S8V620J Applications
This resistor array excels in:
- Signal Conditioning: Precision voltage division in sensor interfaces and ADC circuits.
- Consumer Electronics: Space-constrained devices like smartphones, wearables, and IoT modules.
- Industrial Controls: Robust performance in PLCs, motor drivers, and power management systems.
- Automotive Electronics: Stable operation in infotainment and ECU designs due to low thermal drift.
Conclusion of EXB-S8V620J
The EXB-S8V620J stands out for its miniaturized footprint, reliable isolation, and industry-compliant design, making it a superior choice for modern electronics. Its balance of precision, power handling, and manufacturability positions it as a versatile solution for both high-volume production and specialized applications. Engineers seeking a cost-effective, high-performance resistor network will find this model ideal for optimizing circuit performance while minimizing PCB real estate.



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