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Additional software or documents can be integrated. By means of intuitive graphics with two tabs for accelerator and measurement parameters, the user can quickly and easily start a measurement.

Predefined measurement programs for PDDs, profiles, matrices for isodoses, and points are available. Axis definition for each defined radiation device with name and direction is possible.

Beam data collection for LINAC commissioning and RTPS beam data collection can be done very fast and structured due to an implemented TaskList with multiple energies, applicators, wedges, blocks, field sizes, SSDs, depths and even multiple queues.

An optimized batch conversion module for each established RTPS is available. All established international protocols including the LINAC vendor specifications are available.

User specific protocols can be generated. Curve comparison with percentage difference or 1D gamma analysis is possible.

Besides many other operations, ion depth curves can be converted into water absorbed energy dose curves according to all established international protocols.

Matrix operations allow adding treatment fields. A table generator for OCR table creation and PDD conversion 44 into TPR curves is available. Predefined RTPS TaskLists for beam data collection are available.

Data can be imported and exported with copy and paste function. A plot generator allows scaled and customizable printouts, html print preview is also available.

Data can be stored anywhere in the network, with filenames in windows convention. New programming technique allows drag and drop functionality and customizable screens and colors.

Isodoses and rotational 3D Display in color wash or lines. Dual cross hairs, zoom and various normalization functions are available.

A deconvolution algorithm allows the correction of volume effect of ionization chambers. Additional functions: Linear Array A module to adjust the beam with online analysis is included.

Static fields as well as dynamic IMRT fields and wedges can be measured and analyzed. TPR Allows easy and precise TPR measurements with an optimized module with stepping mode and fast continuous mode.

MLCSoft Includes MLCSoft software for calibration and QA to verify the radiological MLC positions for 48 leaves in one run. Absolute Dosimetry TanSoft for absolute dose measurement with TANDEM electrometer in accordance with IEC and UniSoft Edition is included.

Planning Module plamo Format and transfer RTPS data according to their specification. Ordering Information S MEPHYSTO mc2 basic software S Positioning commands from a computer are transmitted via the RS interface.

The minimum step size of the detector movement is 0. Up to five different coordinate systems can be stored in a non-volatile memory for the 1-dimensional, 2-dimensional and 3-dimensional phantom tanks as well as for the PLEXITOM device and the SLA48 2D air scanner.

A removable control pendant may be connected to the control unit or to the phantom tank, enabling the stepper motors of up to three moving axes to be operated manually.

The pendant features a bright display showing all three directions with a resolution of 0. It makes it possible to set the limits of detector movement and the coordinate origin.

The water level is automatically lowered by self-draining. The draining process is initially calibrated by a water sensor, which is mounted to the moving mechanism of the TBA Therapy Beam Analyzer.

The TPR procedures are controlled by the MEPHYSTO mc2 software. The required TPR software module with a stepping mode and a fast continuous mode is included in the TPR options.

The water reservoir carriages of the MP3 and MP3-M systems are required respectively to operate the TPR options. To utilize the entire vertical detector moving range of the MP3 phantom tank, we recommend the optional elevation set for shifting the lifting carriage height positioning by mm.

PLEXITOM 2D Positioning device page 42 SLA48 Air Scanners page 49 MP3 Phantom page 37 MP3-M Phantom page 38 MEPHYSTO mc2 Software page 44 45 Radiation Therapy: TBA Therapy Beam Analysis Equipment FilmSoft Software Film Digitizers for Film Densitometry Software package for automatic film evaluation including film scanning and calibration Film Scanners for digitizing radiographic films irradiated for film dosimetry in radiotherapy Features Features Full computer control of film digitizers for scanning radiographic films Computer controlled 48 bit 16 bit scanners to digitize radiographic films Records and evaluates the density distribution of radiographic films for film dosimetry in radiotherapy Dynamic measuring ranges of up to 4.

Evaluation of beam data according to international protocols can be done. The software is prepared to control the density measurement of radiographic films by an automatic film digitizer as well as the import of many file formats from EPIDs or RTPS.

FilmSoft supports direct communications for various scanner types and scanners with TWAIN Interface. FilmSoft features self calibration routines prior to each scan and customizable lookup tables for calibration in optical density or dose.

Ordering Information S FilmSoft Software MEPHYSTO mc2 page 44 The VIDAR DosimetryPro Advantage Red 16 bit HD-CCD scanner, measuring range Universal power supply Resolution dpi, measuring range max 3.

Ordering Information Detailed information on film digitizers upon request MEPHYSTO mc2 page 44 FilmSoft page 46 VeriSoft page 56 46 Radiation Therapy: TBA Therapy Beam Analysis Equipment TBA Trolley Cable Sets for Fixed Cable Installation Trolley with three plane storage space for TBA electronics, computer and peripheral devices Installation sets for fixed cable installation, including C-Boxes for wall mounting in treatment and control rooms Features Features Accommodates electronic water phantom components for mobile use Includes three storage planes and a key-board plane Includes a multi-way grounding type mains plug The TBA trolley has three planes to store the electronic devices including the computer and peripheral devices such as a printer.

A movable plate accommodates the computer keyboard. Four wheels make it possible to move the electronic components to different control rooms of radiotherapy treatment units.

The electronic components can be powered by a switchable multi-way mains plug. Ordering Information L Trolley Help to protect the sensitive connection cables of therapy dosimetry equipment against mechanical damage Let you avoid handling of long cables during routine work Help to protect the sensitive connectors of dosimetry cables The cable installation sets are used for fixed installation of dosimetric connection cables between treatment rooms and control rooms.

Two C-Boxes mounted to the walls in the treatment room and in the control room serve as cable terminal boxes. The dosimetry equipment is simply connected to the C-Boxes by means of shortlength cables that are removed after use.

Two versions of cable sets for firm installation are available: Cable set for the connection of the TBA control unit installed in the control room, Cable set for the connection of the TBA control unit installed in the treatment room.

If other dosimetry equipment, like the MULTIDOS has to be connected, additional cable components are required, depending on the various applications.

Please ask for our suggestions to achieve the optimum solution. Ordering Information Installation sets for control unit set up in control rooms: L TBA cable installation set including cable for field and reference detector, cable length 20 m L TBA cable installation set including cable for field detector, cable length 20 m T The device includes an adapter plate, which fits into the guide rails of the LINAC accessory tray.

The design of the adapter plate depends on the accelerator type, which the customer has to specify. Since the linear array is fixed to the accelerator gantry, profile measurements can be done at different gantry angles to check the consistent performance of the LINAC collimators.

Two acrylic build-up plates for profile measurements at depths of 10 mm and 25 mm are included. Ordering Information L LA48 Air scanner holding device for gantry mount LA48 Linear Chamber Array page 43 MULTIDOS Multi Channel Dosemeter page 30 MEPHYSTO mc2 Software page 44 48 The air scanner holding device makes it possible to position the LA48 linear array on the table-top of a treatment couch for profile measurements free in air with a spatial resolution of 8 mm.

The device is independent of the accelerator type, since it is not mounted to the accessory tray. The accelerator type has to be specified.

The SLA48 device is suitable for LINAC acceptance testing of open and dynamic fields. It is also used for routine quality-control measurements.

Photon beams as well as electron beams can be evaluated, since the device does not interfere with electron cones. The source to chamber distance is adjustable.

The maximum field size is mm x mm, and a spatial resolution of 1 mm can be realized by shifting the measuring device by PC control.

Crosshairs at the acrylic phantom and at the array enable the user to verify the location of the measured dose distribution with respect to the LASER alignment.

For 2D measurements, two precision stepper motors move the chamber array, which is controlled by the measuring program. The LA48 array, the TBA electronics and MEPHYSTO mc2 software are required to operate the SLA48 device.

The device is independent of the accelerator type, since it is not mounted to the gantry. The maximum field size is mm x mm, and a spatial resolution of 1 mm can be achieved by shifting the measuring device by PC control.

Since quality checks have to be done quite frequently by the responsible medical physics staff, the PTW test tools are designed for time-saving, accurate results with easy handling and minimum loss of treatment unit operation time.

It rotates with the gantry, measuring the dose inside the entire phantom volume, always perpendicular to the incident beam.

As a consequence, OCTAVIUS 4D requires no angular corrections or detector calibrations to compensate for the directional response of its detectors which makes it perfectly suited for rotational delivery techniques and easy-to-use in clinical routine.

L OCTAVIUS 4D Upgrade Package for use with existing PTW detector arrays Options S DVH 4D module T OCTAVIUS 4D Trolley T VeriSoft allows to perform a volume analysis comparing the measured dose against the calculated dose for the entire phantom volume.

The optional software module DVH 4D calculates dosevolume histograms DVHs for each structure in less than a few minutes and compares them with the DVHs calculated by the treatment planning system TPS.

As a truly independent plan evaluation tool, DVH 4D requires no dose data from the TPS, but performs its calculations based entirely on patient CT data and OCTAVIUS 4D measurements, using a unique algorithm.

Utilizing ion chambers avoids radiation defects, the major drawback of solid-state detectors. The vented plane-parallel ion chambers are 5 mm x 5 mm x 5 mm in size, and the center-to-center spacing is 10 mm.

In total there are located chambers in a matrix of 27 x 27, providing a maximum field size of 27 cm x 27 cm. The array is only 22 mm flat and 5.

Due to the square chamber technology the array can be moved 5 mm to close the gaps between chambers. By shifting the array 3 times the whole area is covered.

The number of measuring points can be increased to The OCTAVIUS Detector can be used for IMRT plan verification, LINAC QC with optional MultiCheck software and online LINAC adjustment with optional BeamAdjust software.

Using the Universal Gantry Mount the array can be mounted to the gantry and irradiated under various gantry angles.

OCTAVIUS I contains the OCTAVIUS Detector and VeriSoft software. The option LINAC QA contains BQ-CHECK, MultiCheck and BeamAdjust.

Ordering Information L OCTAVIUS I OCTAVIUS Accessories page 55 54 No gantry angle input, angular corrections and cable connections to LINAC required Including the complete functionality of the OCTAVIUS I, OCTAVIUS II adds a specially designed phantom along with dedicated tools to enable fast and precise verification of composite IMRT plans or IMAT plans.

With an optional inclinometer the dose can be recorded as a function of gantry angle or time to verify partial plans. OCTAVIUS II contains the OCTAVIUS Detector , VeriSoft software and the OCTAVIUS phantom.

The OCTAVIUS Phantom was designed by Ann van Esch and Dominique P. Huyskens from 7Sigma, Belgium. Customizable, color-coded alarm levels to quickly detect serious e.

Allows dose measurements as a function of time and gantry angle to verify partial plans. Typically use for IMAT measurements. Ingeniously simple installation and everyday operation Available for all standard MLCs Designed to close the gap in IMRT QA, OCTAVIUS III cleverly combines pre-treatment verification using OCTAVIUS II with the DAVID Detector, a truly innovative real-time in vivo dosimetry system for IMRT.

By integrating DAVID, OCTAVIUS III gives you a powerful, yet highly practical QA solution at hand to verify whether the planned dose is actually being delivered over the entire treatment period.

It is the ultimate safety layer for complex IMRT treatments. DAVID features a transparent multiwire ionization chamber MIC which is installed below the MLCs.

Measurement wires are stretched parallel to the running direction of the MLCs. Each measurement wire monitors the opening of a leaf pair.

The evaluation software compares the dose measured during radiotherapy to a reference dose, which was taken during a reference measurement.

DAVID can be used independent of the IMRT method Step and Shoot, Sliding Window or Dynamic Arc. The DAVID system was developed in collaboration with PIUS Hospital and CARL VON OSSIETZKY University, Oldenburg as well as Goettingen University, Germany.

Ordering Information L OCTAVIUS III OCTAVIUS Accessories page 55 Inclinometer L Film Measurement T Chamber Measurement T Unneeded cavities can be closed with blind plugs.

It computes the dose at one or multiple dose points and compares the results with calculations by the treatment planning system TPS , making routine IMRT plan verification much faster and simpler.

As an independent verification tool, it can replace IMRT dose verification measurements with PTW OCTAVIUS systems in clinical routine cases.

IMRT fluence and dose maps can be calculated and exported to the TPS or VeriSoft IMRT plan verification software for comparison and detailed analysis.

DIAMOND utilizes a modified Clarkson integration and advanced optimization algorithms to ensure the most accurate calculations for dynamic IMRT delivery techniques.

Ordering Information S DIAMOND software S Diamond Monitor Unit Calculation Software; R Kukdchadker et al. Matrices of measured and calculated points of an IMRT beam are read and displayed by VeriSoft.

Isodoses, profiles and numerical values can be compared. VeriSoft features several display modes. The unique 3D volume analysis compares the dose measured inside the entire phantom volume and automatically calculates all slices of the dose volume.

Failed points, measured isodoses, contours of the CTV, PTV and organs at risk can be overlaid onto the patient's CT image to support you in your evaluation of the accuracy of dose delivery.

Ordering Information S VeriSoft Software S Option DVH 4D for VeriSoft IMRT Verification Phantoms page 58ff. The very small detector size of only 2.

Target application is patient plan verification in stereotactic radio surgery and quality assurance of small fields.

In the inner area of 5. On the main axes the detector distance is 2. The excellent surface coverage of the liquid-filled ionization chambers ensures a virtually complete field coverage which otherwise can be optained by film only.

The OCTAVIUS Detector SRS can be used in a slab phantom or the OCTAVIUS Rotation Unit. It is compatible with the PTW software. Their values are determined by interpolation of surrounding chambers.

The OCTAVIUS Detector XDR is a new concept of an ion chamber matrix in a plane for patient plan verification and quality control in radiation therapy.

The vented plane-parallel ion chambers are 5 mm x 5 mm x 3 mm in size, and the center-to-center spacing is 10 mm.

The OCTAVIUS Detector XDR is compatible with the PTW software. Ordering Information Ordering Information L OCTAVIUS Detector and data acquisition software SRS incl.

The corrections of the RTPS for inhomogeneities are verified by the phantom. The IMRT Inhomogeneity Phantom is composed of a base plate and five inserts of four different materials.

Three inserts are mimicking inhomogeneities in the human body 1 x bone, 1 x tissue, 1 x lung. Two inserts are made of acrylic glass PMMA. The phantom can be placed on the bottom part of the Universal IMRT phantom T The size of the Inhomogeneity Phantom is 30 cm x 30 cm x 2.

The inserts can be exchanged according to the users requirements. The IMRT Inhomogeneity Phantom is not a CT test phantom.

The Hounsfield units of the phantom must be determined by a CT scan. Ordering Information T Inhomogeneity Phantom IMRT Universal Phantom page 58 OCTAVIUS Detector page 54 Accommodates radiographic film and up to five ionization chambers Marks the film position by perforation The purpose of IMRT dose verification phantoms is to verify dose distributions and absolute dose values produced by IMRT beams, either sub beams or total beams.

The verification is done by irradiating an IMRT verification phantom and by comparing the measured phantom values and the calculated values of the radiotherapy treatment planning system.

The Universal IMRT Verification Phantom type T enables the user to check the spatial distribution of IMRT beams using a radiographic film.

Ion chambers connected to integrating dosemeters measure absolute dose values. The phantom accommodates a film of 25 cm x 30 cm and up to five 0. The position of the film is marked by needles with respect to the phantom and the chamber orientation.

The phantom is composed of two 30 cm x 30 cm acrylic blocks, the depth of the film is 50 mm, and the depth of the ion chambers is 60 mm.

The simple shape of the phantom makes it easy to enter its dimensions into the treatment planning system. The cylinder with a diameter of 20 cm is supplied with a cover, decreasing to zero in cranial direction.

Single packed films can be placed between the plates, which are aligned and fixed by means of acrylic rods on two sides of the cylinder.

Five holes in the plates make it possible to mark a coordinate system on the films using a needle. Ionization chamber data can be taken using a hole along the axis of the cylinder, where a 0.

The phantom can be attached to the stereotactic system and the couch by a special holding device. Can be attached to the stereotactic system and the couch The IMRT matrix phantom1 model T is a 20 cm high cylinder composed of water-equivalent RW3 material.

The diameter of the cylinder is 20 cm, and the height is 20 cm. The phantom is supplied with 25 holes through the entire height to place semiflex ionization chambers inside the phantom.

The chambers are inserted up to the desired position in any of the holes, and then securely fixed. The holes not in use are closed by means of dummy plugs.

Ordering Information Ordering Information T IMRT matrix phantom T The LA48 linear array is connected to the MULTIDOS dosemeter with extender ME48 and operated by using a PC software.

Ordering Information T LA48 IMRT head phantom T The phantom is made of water equivalent RW3 material. The slabs are tight together with plastic screws.

The films can be placed between the slabs, each film can be marked by a needle. Markers for adjustment with the lasers are at the end cuttings of the slabs.

Ordering Information T IMRT Body Phantom 60 Mounts to different LINAC types without interfering with accessory tray guide rails and with electron cones Accommodates any detector and phantom assembly for measurements in the isocenter Universal tool for any therapy dosimetry task at arbitrary gantry angles The SC holding device is a very stable mechanism, which is available for different types of LINAC gantries.

It does not interfere with the guide rails of the accessory tray and with an attached electron cone.

These features make the SC holding device a real universal tool for therapy dosimetry using any dosimetry assembly at any gantry angle. A solid mounting frame at the holding device makes it possible to position any phantom-detector combination in the isocenter.

As an example, single radiation detectors can be placed in an acrylic or RW3 phantom, or the LA48 linear chamber array can be fixed for profile measurements, or a 2D chamber matrix can be attached for on-line measurements in a plane.

Alternatively a radiographic film could be adapted for film dosimetry. Ordering Information L SC Gantry holding device Please specify type of linear accelerator!

Typical applications are quality control and LINAC beam adjustment measurements with the detector panel embedded in a solid state phantom. The ionization chambers feature an excellent relative response stability, avoiding the need of frequent recalibration.

A full set of four profiles is measured every ms, making the device useful for real-time measurements. The excellent spatial resolution of only 3 mm ensures precise measurements even in penumbra regions.

The scanning lengths covered by the detectors are The optional BQ-CHECK phantom is used for contancy check of the beam quality.

Both phantoms are supported by the MultiCheck software. The delivery includes the detector panel, an interface box which connects to a PC via RS or network, real time analysis software BeamAdjust , and a quality control software MultiCheck.

Ordering Information L STARCHECK system with ionization chambers, incl. A full set of 4 profiles is measured every ms or one profile every ms , making the device useful for realtime measurements.

The scanning lengths covered by the detectors are 40 cm along the principal axes and BeamAdjust software displays up to four profiles in realtime.

The profiles can be analyzed according to selectable dosimetry protocols and the protocols of the accelerator manufacturers. The software displays the start-up behaviour with a time resolution of ms.

The STARCHECK maxi can be manually rotated using the optional rotation unit. Ordering Information L STARCHECK maxi measuring system T Rotation unit for STARCHECK maxi T Various one- or two-dimensional PTW detector arrays can be connected.

A reference curve can be displayed. The adjustment parameters are displayed for each curve. They change their color from green to red if a parameter is outside the limits.

The limits are adjustable. The curves can be analyzed following different selectable dosimetry protocols and the protocols of the accelerator manufacturers.

Together with STARCHECK the setup of a water phantom can sometimes be replaced, e. BeamAdjust is part of STARCHECK and part of MEPHYSTO mc2. It can be used as a stand alone software e.

Ordering Information S BeamAdjust software OCTAVIUS Detector page 54 STARCHECK page 61 LA48 page 43 Suitable for fast and easy daily constancy tests of photon and electron beams from LINACs using PTW 2D arrays Checks flatness, symmetry, dose deviation in the central axes, wedge angle of dynamic, virtual and fixed wedges as well as the congruency of light and radiation fields Checks beam quality with BQ-CHECK phantom Compares all parameters to a reference data record and displays deviations Enables tracking parameters via a statistic function Creates a comprehensive data analysis according to selectable dosimetry protocols and the protocols of the accelerator manufacturers Provides snapshoot mode for fast checking of the beam MultiCheck is a Windows based software for fast and easy-to-handle routine constancy tests of high-energy photon and electron beams from linear accelerators.

Reference files for different accelerators and different beam parameters can be defined. MultiCheck is based on two-dimensional dose measurements by the 2D flat panel arrays.

By evaluating the dose matrices, the relevant LINAC quality parameters are compared to original reference values, which are stored together with tolerance thresholds.

Measuring results, parameter variations and tolerance excesses are presented in either numeric or graphic format. The progress of test results combined with statistical evaluations is shown.

Profiles can be analyzed after different protocols. The software offers air density correction of the ion chamber measuring values.

The data can be exported to Excel sheets for further evaluation. Performance and analysis of the measurements are done by means of the MultiCheck software version 3.

To detect the exact position of the light field, four movable sliders are adjusted to the margins of the light field. The sliders move markers on the measuring diagonals of the STARCHECK detector.

The evaluation software MultiCheck shows size and position of both, light field and radiation field and displays the values and trends.

Adjustable limits help to keep track of all parameters. Ordering Information BQ-CHECK is a phantom with mm x mm x 47 mm in size. It can be placed on the PTW 2D ion chamber arrays OCTAVIUS Detector and STARCHECK to check the constancy of the beam quality of high energy photon and electron beams.

Wedges of different materials are placed over the diagonals of the arrays. The MultiCheck software checks the constancy of the beam quality and displays a figure for each beam quality.

Limits of acceptance can be adjusted. The beam quality can be tracked with a statistic function. Because the main axes are not affected by the use of BQ-CHECK the beam quality can be checked without additional workload.

Browsing and playing enabled, the directories returned will be constrained to the directory you have chosen here and those below it. See section 7.

Adds a link to the selected item in the shortcuts. If the file does not already exist it will be created in the root directory. Note that if you create a shortcut to a file, Rockbox will not open it upon selecting, but simply bring you to its location in the File Browser.

Virtual Keyboard Figure 4. The virtual keyboard can be easily changed by making a text file with the required layout. More information on how to achieve this can be found on the Rockbox website at LoadableKeyboardLayouts.

Also you can switch to Morse code input mode by changing the Use Morse Code Input setting or by pressing Long Forward in the virtual keyboard.

Delete the character before the line cursor. If you move out of the picker area you get to the line edit mode. Play Insert the selected keyboard letter at the current line cursor position.

Forward Exit the virtual keyboard and save any changes. Long Forward Toggle keyboard input mode and Morse code input mode. Play Tap to select a character in Morse code input mode.

Database 4. Introduction This chapter describes the Rockbox music database system. The criteria the database uses to sort the songs can be completely customised.

More information on how to achieve this can be found on the Rockbox website at DataBase. Initializing the Database The first time you use the database, Rockbox will scan your disk for audio files.

This can take quite a while depending on the number of files on your player. This scan happens in the background, so you can choose to return to the Main Menu and continue to listen to music.

If you shut down your player, the scan will continue next time you turn it on. After the scan is finished you may be prompted to restart your player before you can use the database.

Browsing and playing Ignoring Directories During Database Initialization You may have directories on your player whose contents should not be added to the database.

Placing a file named database. This will speed up the database initialization. The files in that directory and its subdirectories will be scanned and added to the database.

The Database Menu Auto Update If Auto update is set to on, each time the player boots, the database will automatically be updated. Warning: Initialize Now removes all database files removing runtimedb data also and rebuilds the database from scratch.

Update Now Update now causes the database to detect new and deleted files Note: Unlike the Auto Update function, Update Now will update the database regardless of whether the Directory Cache is enabled.

Thus, an update using Update now may take a long time. Unlike Initialize Now, the Update Now function does not remove runtime database information.

Gather Runtime Data When enabled, rockbox will record how often and how long a track is being played, when it was last played and its rating.

This information can be displayed in the WPS and is used in the database browser to, for example, show the most played, unplayed and most recently played tracks.

This is needed when database structures change, because new code cannot read old database code. Import Modifications. If Auto Update is enabled this is performed automatically when the database is initialized.

To use the database, go to the Main Menu and select Database. There is no option to turn off database completely. If you do not want to use it just do not do the initial build of the database and do not load it to RAM.

Refer to section D page for details on how to change the display of the WPS. In contrast to all other items, the status bar is always at the top of the screen.

Go to beginning of track, or if pressed while in the first seconds of a track, go to the previous track. Rewind in track. Go to the next track.

Fast forward in track. Stop playback. Enter Main Menu. Switch to the Quick Screen see section 5.

Show current Playlist. Skip to the next directory. Peak Meter The peak meter can be displayed on the While Playing Screen and consists of several indicators.

For a picture of the peak meter, please see the While Recording Screen in section 5. The bar: This is the wide horizontal bar. It represents the current volume value.

The peak indicator: This is a little vertical line at the right end of the bar. It indicates the peak volume value that occurred recently.

The clip indicator: This is a little black block that is displayed at the very right of the scale when an overflow occurs. It usually does not show up during normal playback unless you play an audio file that is distorted heavily.

Browsing and playing while recording, your recording will sound distorted. You should lower the gain. Note: Note that the clip detection is not very precise.

Clipping might occur without being indicated. The scale: Between the indicators of the right and left channel there are little dots.

These dots represent important volume values. Playlist The Playlist submenu allows you to view, save, search and reshuffle the current playlist.

These and other operations are detailed in section 4. In this menu, you can find the Playlist Viewer Settings.

Playlist Viewer Settings Show Icons. This toggles display of the icon for the currently selected playlist entry and the icon for moving a playlist entry Show Indices.

This toggles display of the line numbering for the playlist Track Display. This toggles between filename only and full path for playlist entries Playlist catalogue View catalogue.

This lists all playlists that are part of the Playlist catalogue. You can load a new playlist directly from this list. Add to playlist. Adds the currently playing file to a playlist.

Select the playlist you want the file to be added to and it will get appended to that playlist. Add to new playlist. Similar to the previous entry this will add the currently playing track to a playlist.

You need to enter a name for the new playlist first. Browsing and playing Sound Settings This is a shortcut to the Sound Settings Menu, where you can configure volume, bass, treble, and other settings affecting the sound of your music.

See section 6 page 47 for more information. Playback Settings This is a shortcut to the Playback Settings Menu, where you can configure shuffle, repeat, party mode, skip length and other settings affecting the playback of your music.

Rating The menu entry is only shown if Gather Runtime Information is enabled. The value wraps at Bookmarks This allows you to create a bookmark in the currently-playing track.

Show Track Info Figure 4. This info is known as meta data and is stored in audio file formats to keep information on artist, album etc.

Open With Browsing and playing Delete Delete the currently playing file. The file will be deleted but the playback of the file will not stop immediately.

Instead, the part of the file that has already been buffered i. This may even be the whole track. Pitch The Pitch Screen allows you to change the rate of playback i.

The rate can be changed in two modes: procentual and semitone. Initially, procentual mode is active. This allows you to change the playback speed without affecting the pitch, and vice versa.

In timestretch mode there are separate displays for pitch and speed, and each can be altered independently. The value of the rate, pitch and speed is not persistent, i.

However, the rate, pitch and speed information will be stored in any bookmarks you may create see section 8. Key Action Forward Toggle pitch changing mode cycle through all available modes.

Leave the Pitch Screen. Working with Playlists 4. Playlist terminology Some common terms that are used in Rockbox when referring to playlists: Directory.

A playlist! One of the keys to getting the most out of Rockbox is understanding that Rockbox always considers the song that it is playing to be part of a playlist, and in some situations, Rockbox will create a playlist automatically.

For example, if you are playing the contents of a directory, Rockbox will automatically create a playlist containing all songs in it.

This means that just about anything that is described in this chapter with respect to playlists also applies to directories.

Dynamic playlist. In Rockbox, to Insert an item into a playlist means putting an item into a playlist and leaving it there, even after it is played.

As you will see later in this chapter, Rockbox can Insert into a playlist in several places. In Rockbox, to Queue a song means to put the song into a playlist and then to remove the song from the playlist once it has been played.

The only difference between Insert and Queue is that the Queue option removes the song from the playlist once it has been played, and the Insert option does not.

Creating playlists Rockbox can create playlists in four different ways. Note: If you already have created a dynamic playlist, playing a new song will erase the current dynamic playlist and create a new one.

If you want to add a song to the current playlist rather than erasing the current playlist, see the section below on how to add music to a playlist.

By using Insert and Queue functions If playback is stopped, the Insert and Queue functions can be used as described in 4. This will erase any dynamic playlist.

Browsing and playing 36 By using the Playlist catalogue The Playlist catalogue makes it possible to modify and create playlists that are not currently playing.

To do this select Playlist catalogue in the Context Menu. There you will have two choices, Add to playlist adds the selected track or directory to an existing playlist and Add to a new playlist creates a new playlist containing the selected track or directory.

It is however possible to move existing playlists there see section 4. By using the Main Menu To create a playlist containing all music on your player, you can use the Create Playlist command in the Playlists menu found in the Main Menu.

The created playlist will be named root. Adding music to playlists Adding music to a dynamic playlist Figure 4. If there is no music currently playing, Rockbox will create a new dynamic playlist and put the selected track s into it.

If there is music currently playing, Rockbox will put the selected track s into the current playlist.

The place in which the newly selected tracks are added to the playlist is determined by the following options: Insert.

Add track s immediately after any tracks added via the most recent Insert operation. If no tracks have yet been added via an Insert, new tracks will be added immediately after the current playing track.

If playback is stopped a new dynamic playlist will get created with the selected tracks. Browsing and playing Insert Next. Add track s immediately after current playing track, no matter what else has been inserted.

Insert Last. Add track s to end of playlist. Wir verwenden solche dauerhaften Cookies, um Sie wieder zu erkennen, wenn Sie unsere Website das nächste Mal besuchen.

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Von einem DocFinder Nutzer. Hier hat man wirklich das Gefühl, dass der Mensch noch Mensch ist. Insert Shuffled. Add track s to the playlist in a random order.

Insert Last Shuffled. Add tracks in a random order to the end of the playlist. Queue is the same as Insert except queued tracks are deleted immediately from the playlist after they have been played.

Also, queued tracks are not saved to the playlist file see section 5. Queue Next. Queue track s immediately after current playing track.

Queue Last. Queue track s at end of playlist. Wo kann ich die MiniLotto Ziehung live sehen? MiniLotto Infos. Wie hoch ist die. Wo kann ich am günstigsten Mini Lotto online spielen?

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Jörg Wacker

Jörg Wacker
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2 Kommentare zu „JГ¶rg Wacker

  • 22.08.2020 um 00:45
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    Meiner Meinung nach ist es das sehr interessante Thema. Geben Sie mit Ihnen wir werden in PM umgehen.

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