TAR.LZO (TLZO) to TAR.7Z (T7Z) Converter
Convert your tar.lzo files to tar.7z online & free
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About formats
TAR.LZO is a compound archive format pairing TAR archiving with LZO (Lempel-Ziv-Oberhumer) compression, created by Markus Oberhumer in 1996. The TAR layer bundles files with Unix metadata, and the LZO algorithm compresses the stream prioritizing decompression speed above all else. LZO is an asymmetric compressor — it sacrifices compression ratio for extremely fast decompression, operating at speeds that approach raw memory bandwidth on modern hardware. This makes TAR.LZO ideal for scenarios where archives must be extracted quickly and frequently, such as real-time backup systems and embedded device firmware images. One advantage is decompression performance — LZO extraction is several times faster than gzip and an order of magnitude faster than bzip2, critical for time-sensitive operations like boot-time filesystem initialization or rapid backup restoration. The low CPU overhead during extraction is another strength, making TAR.LZO practical on resource-constrained embedded systems and for streaming decompression without buffering. The lzop command-line tool integrates with tar via pipeline, and the format is used in the Linux kernel's initramfs, Btrfs filesystem compression, and various real-time data processing systems where extraction latency matters more than archive size.
TAR.7Z is a compound archive format that combines the TAR container with 7-Zip's LZMA/LZMA2 compression. The TAR layer bundles multiple files into a single stream preserving Unix metadata (permissions, ownership, symlinks), while the outer 7Z compression applies LZMA or LZMA2 to the entire stream. This combination leverages LZMA's superior compression ratios — typically 30-70% better than gzip — making TAR.7Z one of the most space-efficient archive formats for Unix-style backups and software distribution. The solid-stream approach means compression can exploit redundancy across all archived files rather than compressing each file independently. One advantage is maximum compression density: the TAR.7Z combination often produces the smallest archives among common Unix archive+compression pairings. Broad tool support is another strength — tar and 7-Zip are available on all major platforms, and many modern tar implementations can create and extract TAR.7Z archives directly with the appropriate flag. The format is popular for distributing large source code trees and backup archives where minimizing transfer size justifies the additional compression time.