The HPE LTO-6 Ultrium 6.25TB BaFe WORM Data Cartridge is designed for organizations that demand secure, long-term, and tamper-proof data archiving. Featuring WORM (Write Once, Read Many) technology, it guarantees that once information is written, it cannot be modified or deleted, making it an excellent solution for industries with strict compliance and regulatory requirements such as finance, healthcare, and government.
With a native capacity of 2.5TB and up to 6.25TB compressed capacity, this cartridge provides robust storage performance while reducing the physical footprint of your data archives. Built with Barium Ferrite (BaFe) technology, the media ensures exceptional durability, longer archival life, and better data integrity compared to traditional magnetic media.
Engineered to integrate seamlessly with LTO-6 drives and libraries, and supporting backward read/write compatibility with LTO-5, it offers investment protection and operational flexibility. This cartridge delivers reliable, high-density storage for enterprise-class backup, disaster recovery, and compliance archiving.
WORM Technology – Data cannot be altered or erased once written.
High Capacity – 2.5TB native and up to 6.25TB compressed capacity.
BaFe Media – Long-lasting Barium Ferrite particles provide enhanced reliability and longevity.
Regulatory Compliance – Ideal for industries requiring tamper-proof data storage.
Compatibility – Designed for LTO-6 drives; backward read/write with LTO-5.
Archival Life – Up to 30 years under proper storage conditions.
The HPE LTO-6 Ultrium 6.25TB BaFe WORM Data Cartridge is the perfect solution for businesses that need secure, high-capacity archival storage with guaranteed data immutability. With WORM technology, organizations can ensure compliance with data retention regulations while preventing accidental or malicious changes. The BaFe media extends cartridge life, delivering unmatched durability and peace of mind for long-term archiving. Choosing HPE ensures enterprise-grade reliability, reduced risk of data loss, and optimized cost efficiency for large-scale storage infrastructures.
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