Add your XLIFF file
Drop one or more .xliff files onto the converter above, or browse for them. They load into browser memory only — nothing is uploaded, so there is no size-based pricing and no server queue.
Converting a .xliff font to .androidxml repackages the same glyphs and metrics for a different delivery target. Free, private, and validated — the file never leaves your browser.
Batch files can each use a different output. Nothing uploads for local conversions.
Working inputs include camera RAW, browser-local audio/video, PDF, CBZ/CBR comics, office documents, ebooks, markup, 3D models, structured text, images, and archives.Converting a .xliff font to .androidxml repackages the same glyphs and metrics for a different delivery target. A .xliff file is an XLIFF document written with the long extension, most often at version 2.0 — the redesigned OASIS standard in which each translatable string is a unit containing one or more segments, each with its own source and target. The payload matches the .xlf form; the structure is what changed.
An Android string resource file — catalogued here as .androidxml — is the res/values/strings.xml of an Android application: a <resources> element containing <string name=…> entries, plus optional <plurals> and <string-array> groups. Because every Android project names the file strings.xml, there is no real extension to key on, so Novus Convert recognises these by the .android.xml suffix and files them under .androidxml to keep them distinct from generic XML. For this route the practical draw is integrated with Android's whole resource-qualifier system, so locale selection is automatic and real plural support using the CLDR categories rather than a bolted-on convention — balanced against escaping rules are a common source of subtly broken translations, which is worth knowing before you commit a large batch.
The practical trigger for this conversion is usually a mismatch: with .xliff, less widely supported than 1.2 despite being the newer standard. Switching to .androidxml buys you integrated with Android's whole resource-qualifier system, so locale selection is automatic, which is why it is the better fit for localising an Android application. Because the conversion runs locally, trying it costs nothing but a few seconds of compute on your own machine.
| Aspect | XLIFF 2.0 (.xliff) | Android string resources (.androidxml) |
|---|---|---|
| Format type | Text-based — characters and structure, so there is no visual quality loss | Text-based — characters and structure, so there is no visual quality loss |
| How it stores data | the root xliff element carries srcLang and trgLang, replacing 1.2's source-language and target-language on file | entries are <string name=…> with the translatable text as element content; the name is the R.string identifier the code references |
| Strongest at | interchange with tooling built against the 2.0 core | localising an Android application |
| Weak spot | less widely supported than 1.2 despite being the newer standard | escaping rules are a common source of subtly broken translations |
| Metadata | unit identifiers, source and target text and the declared languages are preserved. Module data — change tracking, glossary entries, translation candidates — and inline markup are not represented in flat key-value targets | string names and their text are preserved. Plural groups, string arrays, the translatable attribute and the directory-derived locale are not represented in flat catalog targets |
Drop one or more .xliff files onto the converter above, or browse for them. They load into browser memory only — nothing is uploaded, so there is no size-based pricing and no server queue.
Select .androidxml in the output menu next to each file. The menu only offers targets this engine can genuinely produce, so if ANDROIDXML is selectable, the route is real and validated.
Press Convert. The font tables are parsed and rewritten locally with fonteditor-core; glyph outlines, hinting, and kerning survive the trip.
Each result is signature-checked before the download unlocks, so a failed encode can never masquerade as a valid ANDROIDXML file. Outputs keep the original filename with the .androidxml extension.
There is no visual quality to lose — xliff is text-oriented and androidxml is text-oriented, so the question is structural fidelity. Text, ordering, and basic structure are preserved; complex layout, embedded objects, and styling beyond the target's model are simplified.
Yes — the .xliff file is processed inside your browser tab and never uploaded. The font tables are parsed and rewritten locally with fonteditor-core; glyph outlines, hinting, and kerning survive the trip. Close the tab and the file is gone from memory.
Android Studio and the Gradle build read these natively, and translation platforms support them widely. Novus Convert parses the <resources>/<string> structure locally, rejects documents carrying a doctype or custom entities, and converts to and from the other localization formats; plurals and string arrays are outside the flat one-string-per-key model and are not carried across.
It depends on the content: entries are <string name=…> with the translatable text as element content; the name is the R.string identifier the code references. Convert one representative file first and compare before batch-processing a large set.
In .xliff, unit identifiers, source and target text and the declared languages are preserved. Module data — change tracking, glossary entries, translation candidates — and inline markup are not represented in flat key-value targets. Re-encoding through the browser pipeline does not carry embedded metadata into the output, which doubles as a privacy scrub — check the exported file if you specifically need tags preserved.
Yes — the reverse route exists as a separate tool. Bear in mind that round-tripping .xliff → .androidxml → .xliff is not a perfect undo when any lossy step is involved; keep your original if fidelity matters.