FTS to RAS Converter

Transform FTS data into RAS — fast and online

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Quality Preserved

The converter extracts the best visual data from your FTS source. The resulting RAS output maintains the quality your original data supports.

Format Bridge

Go from specialized FTS (astronomy and scientific research) to universally supported RAS — making your data accessible to anyone without niche software.

Effortless Conversion

Upload your FTS, pick RAS, and click Convert — the entire process takes just a few clicks with no technical expertise required.

How to convert FTS to RAS

1

Select files from Computer, Google Drive, Dropbox, URL or by dragging it on the page.

2

Choose ras or any other format you need as a result (more than 200 formats supported)

3

Let the file convert and you can download your ras file right afterwards

About formats

FTS is a file extension for the Flexible Image Transport System (FITS), the standard data format used in astronomy since 1981 when it was defined by Don Wells, Eric Greisen, and R.H. Harten at the National Radio Astronomy Observatory, and subsequently endorsed by the International Astronomical Union in 1982. FITS was designed from the outset as a self-describing archival format: each file begins with one or more 2880-byte header blocks containing ASCII keyword-value pairs that describe the data's dimensions, coordinate system, observation parameters, and provenance, followed by data blocks in a variety of numeric types — 8/16/32/64-bit integers and 32/64-bit IEEE floating-point values. FITS supports multi-dimensional arrays (images, data cubes, hypercubes), binary tables for catalog data, and ASCII tables, with multiple Header/Data Units (HDUs) that can coexist in a single file. The format handles specialized astronomical data: spectral cubes, radio interferometry visibilities, multi-extension mosaic images from CCD arrays, and time-series photometry. One advantage is scientific rigor: FITS mandates that all metadata needed to interpret the data physically — coordinate transformations (WCS), photometric calibration, telescope and instrument parameters — travels with the file, eliminating the metadata-loss problem that plagues general-purpose image formats in scientific contexts. The format's longevity and institutional backing is another strength — virtually every observatory, space telescope (Hubble, James Webb, Chandra), and astronomical software package (DS9, IRAF, Astropy) uses FITS as its primary data format.
Developer: NASA / IAU
Initial release: 1981
RAS (Sun Raster) is a raster image format developed by Sun Microsystems for their SunOS and Solaris Unix workstations, dating to approximately 1982. Sun Raster files store 2D bitmap images with support for 1-bit monochrome, 8-bit indexed color (with a color map), 24-bit true color (BGR byte order), and 32-bit XBGR (with an unused alpha byte). The format uses a 32-byte header containing a magic number (0x59a66a95), width, height, bit depth, data length, raster type (indicating compression), color map type, and color map length, followed by the optional color map data and the pixel data. RAS supports three encoding modes: standard (uncompressed, with each scanline padded to a 16-bit boundary), byte-encoded (run-length encoded using a simple escape-code scheme), and RGB (uncompressed with RGB rather than BGR byte order). Sun Raster was the native image format for Sun's window system and later the OpenWindows desktop environment, serving as the standard format for screenshots, icons, backgrounds, and application graphics on Sun workstations throughout the 1980s and 1990s. One advantage is the format's representation of Unix workstation computing heritage: Sun Raster files from the SunOS/Solaris era document the visual culture of an important computing platform that drove advances in networking, multiprocessing, and graphics workstation design. The format's straightforward structure is another practical strength — the 32-byte header and simple encoding make RAS files easy to parse and convert, even with custom code. RAS files are supported by ImageMagick, GIMP, XnView, and other image processing tools.
Developer: Sun Microsystems
Initial release: 1982

Frequently Asked Questions

Why convert FTS to RAS?

RAS is widely supported across devices and applications — converting from FTS makes your astronomical images accessible to anyone without specialized tools.

What programs open RAS?

Most image viewers and editors handle RAS — Photoshop, GIMP, IrfanView, and built-in viewers on Windows, macOS, and Linux.

What is the FTS format?

FTS is used in astronomy and scientific research. It stores telescope captures and observatory data — converting to RAS makes this data universally accessible.

How long does the conversion take?

Most FTS to RAS conversions finish within seconds. Larger or more complex images may take slightly longer depending on the data size.

Can I convert multiple FTS images at once?

Yes — upload several FTS images in one session and convert them all to RAS simultaneously. Batch processing saves significant time.

Can I convert on a phone or tablet?

Absolutely — the online converter works in mobile browsers just as well as on desktop. No app installation is required at all.