Spinner S3

The new spinner S3 combines all the proven technologies of our spinner series but adds a feature that has already demonstrated its worth on our flashscan NOVA small gauge film scanner: The automatic Easy Wet Gate for all film formats up to 35mm. Our wet gate utilizes isopropyl alcohol within a closed system. The design was determined by the need to protect the sensor, lens, and light source from any liquid potentially dripping from the film. A hood and an exhaust system ensure a workspace that is as odor-free as possible.

2026 specifications for the spinner S3

MWA Scanning technology

All MWA scanners are based on the patented Laser Registration technology. A laser spot reads the film perforation and detects the edges of each hole. When the related film frame passes the gate, the LED flash is triggered exactly at that location.
In this way the scanner works independent of film shrinkage or misaligned splices. All frames across a stretched splice will be captured at their correct locations.

A plausibility check discards those holes that could not be clearly detected, for example if the hole is ripped off or covered with splicer tape. The related flash locations will be interpolated between neighbouring good holes in a range of 62 mm. If more holes in a row are not readable, the scanner will continue to scan with the last known frame distance (extrapolation) until good holes appear again.

Each film frame is stored as exactly one frame in the output file. The scanning speed is completely independent of the playback speed of the output file. The scanning speed ranges from 1 fps to 60 fps. The playback speed (for example 16, 18, 24 or 25 fps) is written in the output file’s header data, so a video player or editing program will play the file at its correct speed.

Since the scanner registers the perforation with a laser, it does not need the holes being visible in the picture. Therefore, the entire 6,5K/13,4k sensor area can be zoomed into the image, no resolution is wasted for the holes.


Optical System

The optical system is made of these components:

1) A cold LED light source with red, green and blue LEDs. The wavelength of the LEDs are optimised to match the film dye densities. Best colour channel separation is achieved already by the spectrum of the light. The red, green and blue light intensities can be set freely with a colour wheel in the software. The film base density and orange mask will be compensated optically in this way.

2) A light integration chamber and diffuser disk, which provide perfectly homogenous and diffused light for the suppression of scratches on the film surface.

3) A diffraction limited prime lens with aperture 5.6. The aperture can be user-adjusted to trade off depth of field and light throughput.

4) The Sony IMX342 imaging sensor. This sensor has a native resolution of 6464 x 4848 pixels and features a colour filter array. Full resolution readout is possible up to 25 fps at 12 Bits digitisation.

5) The lens and sensor assembly are motor-driven, thus allow for free zoom and focus alignment. The positions can be stored as presets. It is possible to zoom the 6,5K completely into the 16mm picture as well as to fit 35mm from edge to edge on the sensor area.


Image Processing

The raw image data is transferred from the sensor to the workstation PC via CoaXPress interface at 25 GBit/s and then passed through to the Nvidia graphics card. The entire image processing pipeline runs on the GPU and is 16 bits wide. At the output side various codecs are provided to pack the finalised images into files. The processing pipeline includes:

1) FPN (fixed pattern noise) correction. Compensates vignetting of the lens and shading in the dark.

2) HQLI demosaicing algorithm. Decodes the color filter array into separate color channels.

3) Gamma LUT. This includes the setting of a gamma correction via color wheel, user drawn gamma curves and inversion of negative films.

4) Color space conversion matrix for Rec.709 or Rec.2020 output.

5) MTF (modulation transfer function) correction. This ensures a flat spatial frequency response and may also be utilised to soften or sharpen the picture if desired.

6) Generation of images for live preview and separate reference monitors. Generation of waveform, vectorscope and focus assist displays.

7) Cropping and scaling to the desired output resolution.

8) Picture stabilisation (optical pin register) with reference to the perforation hole.

9) Output file writing, available encoders are:

    • DPX 8 / 10 / 12 / 16 bit
    • TIFF 8 / 16 bit
    • ProRes
    • DnxHD
    • MotionJPG
    • FFV1
    • H.264

It is possible to store an H.264 proxy video parallel to scanning in other formats.

It is possible to save sensor RAW data into a file, currently in PGM format.

The sound will either be embedded or stored as separate Broadcast WAV file.


Film transport system

The film transport is conceived as sprocketless and capstanless system. The capstanless system invented by MWA is unique in the industry and provides these advantages:

1) Since there is no capstan which would require grip to the film, the minimum film tension can be set extremely low. The scanner runs with stable picture down to 0,2 Newton (20 grams), which is the lowest tension industry-wide. Very delicate splices and films with cracks can be run. However, the user can set the tension up to 6 Newton (600 grams).

2) Having no capstan means there is only one film loop going from reel to reel. Therefore, only one tension roller is needed. That greatly simplifies the film path. Fewer components mean fewer sources of error, and fewer stress to the film, so the user benefits from a robust and easy to handle transport platform.

The following features were specifically designed to handle old films:

1) Stop at sticky reel: The transport detects adhesion between film layers (for example sticky splices) and stops quickly without loosing the timecode. The user can peel off the layer and continue to scan.

2) Filmgate and sound heads automatically withdraw when going to shuttle speed.

3) Definable global limits for speed and acceleration prevent the user from running too fast.

4) Overall large rollers avoid sharp bending of the film.

5) The film gates are designed with ball bearings instead of slide rails. The film will be kept flat and evenly focused without friction on the surface.


Audio System

The machine features a socket for exchangeable sound modules for all types of sound formats. There are modules for single formats as well as combined modules for 16+35 mm optical tracks and magnetic heads.

For the optical sound we provide dedicated sound heads, we do not extract the sound from the image. Therefore we achieve an uncompromising sound quality and can use the entire sensor resolution for the image (no waste of pixels for the sound track).

The analog-to-digital conversion is located directly inside the sound heads for the best possible noise immunity. The magnetic heads are fully shielded against interference. The preamplifiers and ADCs reach a dynamic range of 110dB, so they exceed the limit of physics of the analog medium by far.

The entire audio processing including tape equalisation and picture to sound delay matching is carried out digital.

One major feature of the audio processing is the Velocity-Adaptive Sampling technology invented by MWA. This compensates jitter (wow and flutter) by measuring the tape speed with an encoder roller close to the pickup head and resampling the sound accordingly. This method unlocks the following benefits:

1) The wow+flutter performance exceeds that of a traditional capstan drive. Typical values are 0,05% at 16mm and 0,03% at 35mm.

2) The wow+flutter becomes independent of the scanning speed. You can scan fragile material as slow as 5 fps without sacrificing the sound quality. Traditional capstan drives instead are unable to suppress jitter at low speed, they will only achieve their jitter specification at realtime speed.

3) It avoids the expensive capstan motor and thereby allows for a film tension as low as 0,2N.

The scanner has a rear panel with manifold audio I/Os, such as analog and digital XLR and SPDIF. You can feed external sound from a Sepmag follower. Biphase in and out are provided for synchronisation. To synchronise two MWA machines there is also the more advanced MWA-422 control connection.

Up to 8 sound channels are simply transferred to the flashsuite operational software through the USB connection that already exists for the machine control. External PC sound cards or similar are not needed.

The flashsuite software features per-channel equaliser and gain settings and an 8×8 mixing matrix. Any combination of film and external sounds can be routed and mixed into the output file.

Whenever the scanning speed deviates from the output file speed, the sound will be resampled automatically. For example you can scan at 5 fps and set the file playback speed to 24 fps. In this case the sound will be downsampled to match the playback at 24fps and “24 fps” will be written in the header of the file.


Software Features

The flashsuite operational software and the Windows workstation are integral parts of the scanning system and are always delivered in a bundle. The software features:

1) Transport controls (play, shuttle, single steps, record, endstops, goto timecode … )

2) Optical controls (zoom, focus, frameline, perf stepping)

3) Image format controls (mirroring, cropping, scaling, masking, anamorphotic correction)

4) Colour wheels (lightsource, gamma, black, curves, saturation, hue)

5) Video instruments (waveform, vectorscope, focus assist)

6) Live preview (preview screen, second screen, 100 % – 800 % pixel magnifier)

7) Scan automation (timeline, scene detection, edit list)

8) Audio controls (mixing matrix, gain, equaliser, monitoring mixer, VU meter)

9) DPX Metadata editor

A Tangent Devices Wave Panel can be connected to control most settings.

The scanner has a local touchscreen and a jog/shuttle knob that offer the most film transport controls directly at the machine.


Summary of technical specifications:

Sub-criterion 1:

Native resolution: 6464 x 4848 Pixels with Color Filter Array

Optical zoom: 12 mm … 36 mm film width

Sensor digitisation: 12 Bits

Picture dynamic range: 70 dB (standard mode), 90 dB (HDR double exposure / half speed mode)

Output colour space: Rec.709 and Rec. 2020

Output file formats: 8 / 10 / 12 / 16 Bit DPX, 8 / 16 Bit TIFF, ProRes, H.264

Lightsource: Cold LED flash array, 450 / 525 / 660 nm with diffuser

Imaging sensor: Sony IMX342

Scanning speed: 1 – 25 fps (6,5K), 1 – 60 fps (2K)

Minimum scanning speed with optical or magnetic sound: 5 fps


Sub-criterion 2:

Film transport: Sprocketless and capstanless with Laser Registration

Stabilisation: Laser and edge guided, additional Optical Pin Register in software.

Film formats: 8, 16, 35 with standard rollers, 9,5, 17,5, 28 with optional Pathé rollers

Film types: B/W, Colour, Negative with / without orange mask

Film shrinkage: -4% … 5%. (Unlimited shrinkage via format definition)

Film tension: 0,2 … 6,0 N adjustable

Max. winding speed: 600 fps at 16mm, 300 fps at 35mm

Max acceleration: 100 fps / s


Sound:

Audio output: 48 kHz or 96 kHz, 24 Bit

Audio channels: 6 internal, 8 external

External audio Interfaces: 3x AES In/Out via XLR, 2x Analog In/Out via XLR, SPDIF In/Out via BNC, Wordclock In, Biphase In/Out, MWA-422

Audio head modules:
Optical 16,
Optical 35 Stereo,
Optical 16+35 combined
Magnetic 8+S8
Magnetic 16 COMMAG and 2-Track SEPMAG
Magnetic 35 COMMAG and 1-6 Track SEPMAG