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FW82801CAM Description
FW82801CAM Description
The FW82801CAM from Intel is a high-performance micro peripheral IC designed as a USB 1.0 controller with a PCI interface, packaged in a PBGA421 form factor. This active-status component is ideal for embedded systems and computing applications requiring reliable USB protocol management. With an ECCN of EAR99 and HTSUS 8542.39.0001, it complies with international trade standards while offering robust functionality in a bulk packaging format. Its Moisture Sensitivity Level (MSL 3) ensures durability in varied environmental conditions, making it suitable for industrial and commercial use.
FW82801CAM Features
- USB 1.0 Compliance: Ensures compatibility with legacy USB devices while maintaining stable data transfer rates.
- PCI Interface: Facilitates seamless integration with host systems for efficient peripheral control.
- PBGA421 Package: Provides a compact, high-density solution for space-constrained designs.
- Industrial Durability: MSL 3 (168 Hours) rating enhances reliability in humid or demanding environments.
- Vendor-Defined REACH Status: Offers flexibility in compliance with environmental regulations.
- Bulk Packaging: Optimized for cost-effective mass production and inventory management.
FW82801CAM Applications
The FW82801CAM excels in applications requiring USB host controller functionality, such as:
- Embedded Systems: Ideal for industrial PCs, automation controllers, and IoT gateways.
- Legacy Computing: Supports older USB 1.0 peripherals in medical, military, or retrofitted systems.
- Data Acquisition: Reliable for low-speed USB data transfer in test and measurement equipment.
- Consumer Electronics: Used in kiosks, POS terminals, and other devices needing stable USB connectivity.
Conclusion of FW82801CAM
The Intel FW82801CAM stands out as a dependable USB 1.0 controller with a PCI interface, combining legacy support with industrial-grade resilience. Its PBGA421 packaging and MSL 3 rating make it a practical choice for embedded and legacy systems where durability and compatibility are critical. While newer USB standards exist, this IC remains a cost-effective solution for applications requiring low-speed USB control without compromising reliability.



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