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EP1177566B3 - Dispositif permettant d'entrer des valeurs et dote d'un ecran - Google Patents

Dispositif permettant d'entrer des valeurs et dote d'un ecran Download PDF

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Publication number
EP1177566B3
EP1177566B3 EP99971145A EP99971145A EP1177566B3 EP 1177566 B3 EP1177566 B3 EP 1177566B3 EP 99971145 A EP99971145 A EP 99971145A EP 99971145 A EP99971145 A EP 99971145A EP 1177566 B3 EP1177566 B3 EP 1177566B3
Authority
EP
European Patent Office
Prior art keywords
elements
display screen
values
screen
computer
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
EP99971145A
Other languages
German (de)
English (en)
Other versions
EP1177566B1 (fr
EP1177566A1 (fr
Inventor
Martin Vogel
René WUSSLER
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Studer Professional Audio GmbH
Original Assignee
Studer Professional Audio GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Studer Professional Audio GmbH filed Critical Studer Professional Audio GmbH
Publication of EP1177566A1 publication Critical patent/EP1177566A1/fr
Publication of EP1177566B1 publication Critical patent/EP1177566B1/fr
Application granted granted Critical
Publication of EP1177566B3 publication Critical patent/EP1177566B3/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/18Distinguishing marks on switches, e.g. for indicating switch location in the dark; Adaptation of switches to receive distinguishing marks
    • H01H9/181Distinguishing marks on switches, e.g. for indicating switch location in the dark; Adaptation of switches to receive distinguishing marks using a programmable display, e.g. LED or LCD

Definitions

  • the invention relates to a.
  • a device for entering values with a screen for displaying the values and having at least one element for manually entering the values in front of the screen.
  • Such a device according to the preamble of claim 1, for example US-A-5805146 known.
  • Devices for entering values are, for example, rotary knobs and sliding levers, which are connected to a scale from which the set value can be read. The feedback on the set value can be quickly recorded and clearly arranged.
  • Such systems are well established and take up little space. Unfortunately, they are not configurable, meaning they can not be easily and quickly assigned to another task. They are also not remotely controllable. This disadvantage can be avoided by the connection with a motor which moves the knob or the sliding lever.
  • Such devices are known but expensive and large.
  • the device for input can now be separated from the display so that the rotary knob or shift lever and the display field, which can also be a screen here, are spatially separated.
  • Such a device is configurable and remotely controllable. But the operation is less favorable, since, if several such devices are present in a narrow field, the assignment between input element and display element must be known or practiced.
  • the elements for entering the values are often spatially separated from the display of the values on the screen, so that an association between the element and the display is not always safe. Often there are so many elements to enter that confusion suggests.
  • Typical for this type of device are mixing consoles for sound signals, control panels for power plants or chemical plants, as well as user interfaces for medical equipment, etc.
  • Another known embodiment of such a device with a screen is known from the art of electronic computers, so-called. PC's.
  • an arrow can be directed to a field on the screen with a so-called mouse, where, for example, a value is selected from a predetermined selection of values can be. Or, it can be selected from a predetermined value, by a pulse from the mouse, the next intended value.
  • Such an embodiment is indeed configurable and remotely controllable but relatively slow in operation.
  • the missing direct-acting input button leads to a complicated operation.
  • the simultaneous operation of multiple input units is impossible.
  • a device in which in front of a flat screen controls such as rotary or sliding buttons are arranged, which are connected via a connecting element such as a shaft with a transducer which converts a movement or a position of the control element into an electrical signal.
  • the transducers are mounted on a carrier, so that ultimately the controls are mounted on this carrier.
  • the carrier is seen in the direction behind the flat screen and the connection to the controls is done through openings in the flat screen.
  • a support for the elements for manual input is arranged in front of the screen in the viewing direction. If this carrier covers the entire screen, it has at least one transparent area associated with the element for displaying values across the screen.
  • the elements are connected via connections in front of the screen to a computer, which records the position of the elements for manual input via data and displays feedback on set values in at least one area on the screen.
  • the screen and the carrier is preferably associated with an element for mounting electronic components.
  • the element for mounting electronic components is preferably arranged between the carrier and the screen and, depending on the design, has at least transparent areas when it covers the entire screen. It may also be placed directly on the support (e.g., applied as a foil) or integrated into it.
  • Such elements for input for example, encoders, sliders, so-called. Joysticks, etc. so be provided linear or adjustable in two dimensions or directions donors.
  • Such elements for input either generate a value corresponding to their current position or generate a signal corresponding to an executed movement and increment, for example, previous values.
  • the advantages achieved by the invention are to be seen in particular in that a clear and reliable feedback can be made to the operator via just set values.
  • the often encountered spatial and thus also visual distance between the place where a display is made on a screen and the place where an input of values occurs is reduced so far that both elements, for the display and operation in the same field of view moved. This can also be moved depending on the design of multiple displays and multiple elements for input in the same field of view, so that for example with both hands At the same time, values can be changed and the currently valid values for both inputs can be tracked simultaneously.
  • the inventive device also allows the entry of values in quick succession and is pronounced "handy" or cheap for the operation with the hands.
  • Fig. 1 shows a known embodiment of a device with a screen 1 of a plurality of fields 2, 3, etc., in which a value is displayed graphically, for example by numbers.
  • knobs 4, 5 are assigned to these two fields 2, 3, via which values can be entered into the device.
  • the displayed values in the fields 2, 3 can be changed by turning the knobs 4, 5.
  • the distance between the fields 2, 3 and the knobs 4, 5, 6, 7, as well as the number of available knobs but also be much larger than shown here, which increases the uncertainty in the operation.
  • Fig. 2 shows a section through a part of the inventive device.
  • the element 11 is formed here as a so-called printed circuit on which printed conductors, and in particular also an optically operating sensor 13, are attached.
  • the sensor 13 cooperates with a belt 14 which lies on rollers 15,16 which are mounted in the carrier 12 via axes 17 and 18.
  • the band 14 has at least one mark which, when facing the sensor 13, triggers an electrical pulse therein.
  • the band 14 can be moved on its upper side 19 with a finger, for example. This is a linearly adjustable encoder.
  • the support 12 is formed, for example, from a transparent medium such as glass, plexiglass, mineral glass, etc., and the element 11 is cut out in certain areas adjacent to the belt 14, transparent or absent.
  • the carrier 12 may be attached, for example, to a cover plate for the screen or to a common housing part.
  • sensor 13 for example, an incremental encoder is conceivable.
  • the band 14 For entering values, the band 14 is placed on its top 19 e.g. driven by the finger and moved to a new position, with marks on the belt 14 in the sensor trigger 13 pulses, which are processed in a known per se and therefore not described here manner in an evaluation unit to values. These values are displayed by the screen 10 in an area or field adjacent to the belt 14.
  • Fig. 3 shows a further embodiment of the device with a knob 20 as an input element.
  • Touch screen as a screen 22 is provided.
  • the knob 20 is rotatably mounted on a support 21, which is upstream of the screen 22, of which only a part can be seen here.
  • a member 23 for mounting electronic components such as tracks, arranged and attached to one of these.
  • This is also a sensor 24 via contacts 25, 26 attached.
  • the carrier 21 therefore also has a recess 27. Other not shown recesses set the screen free.
  • a bearing 28 for the knob 20 via at least one screw 29 is mounted on the knob 20 a code disc 30, to which, the optically operating, sensor 24 has visual contact here.
  • a sensor 24 For example, a device from Hewlett-Packard, type HEDR-8000 is suitable.
  • the rotary knob 20 For entering values, the rotary knob 20 is rotated by hand, wherein the disk 30 runs along and triggers pulses in the optical sensor 24, which pulses are processed in a known manner and therefore not described here in detail in an evaluation unit into values. These values are displayed by the screen 22 in an area or field adjacent to the knob 20.
  • Fig. 4 shows a further possible embodiment wherein the screen 32, here a touch screen, with its side wall 31 is attached directly adjacent to the carrier 33.
  • sensors which do not work optically but utilize other physical effects such as magnetism, ultrasound, etc.
  • Fig. 5 shows a view of a device according to the invention in the direction of a screen 34 with areas 35 ', 36', 37 ', etc. for displaying set values and knobs 35, 36, 37, etc. as elements for inputting values on a support 42 are arranged.
  • further input elements 38, 39 of another type known per se can be provided on the same screen, which operate on the principle of "touch-screen", or which can be activated with a mouse.
  • the carrier 42 may be formed transparent in principle, so that the underlying screen 34 everywhere where not the knobs 35, 35, 37 cover this, is visible.
  • regions 40, 41 of the carrier 42 can also be made, for example, by conductor tracks which are arranged above or below the carrier 42 or are applied as a foil or in the form of a thin or thick layer. In these other areas 40, 41, which can cover the screen like a net connecting all the knobs, the screen 34 is covered and thus not visible.
  • the device according to the invention is particularly advantageous in so-called LCD screens. These have the advantage of having a flat surface and once again reproduced by a program delimited areas in exactly the same size. For example, a scale is always displayed in the same size and location.
  • the LED screens can also be installed very easily horizontally and, for example, form part of a mixing console for audio signals.
  • Zig. Fig. 6 shows an example of indications as to how they may appear in an area 35 ', 36' or 37 'in an audio mixer.
  • This information relates here e.g. Values for an audio channel for signal processing.
  • 43 is a graphic value display with area information 44 and 45 is designated.
  • 46 an indication of the control mode is provided, indicating whether the control is automatic or manual.
  • 47 indicates the absolute value of a parameter and 48 indicates the unit of measurement used.
  • 49 denotes the name of a parameter set, 50 the name of the parameter and 51 another auxiliary display.
  • the color of the background 52 may indicate a parameter identification, an alert level, and so on.
  • Fig. 7 shows a block diagram of the device according to the invention, taking into account as an example the conditions when used in an audio mixer closer.
  • a user interface 53 as usual in such mixing consoles, a variety of setting elements and.excellent such as scales, lamps, etc. on.
  • This consists of a support 54 for controls 55, which serve the configuration of the mixer, for controls 56, which serve to influence parameters that are important for the processing of the audio signals and for one or more screens 57, which display values, Scales, functions, etc. serve.
  • a graphics calculator 58 is also connected to the screen. Via a respective data bus 59, 60 and 61, a computer 62 is connected to the user interface 53.
  • the data bus 59 from the controls 55 to the computer 62 information or commands on the configuration of the mixer or their change.
  • the data bus 60 gives the computer 62 from the controls 56 new values for the parameters for processing the audio signals or the algorithms used.
  • the data bus 61 is the graphics calculator 58 and thus the screen 57 from the computer 62 information about the current state of the mixer and the audio signals from.
  • the computer 62 is also connected via a data bus 63 and a bus 71 to a signal processor 64, which changes the actual audio signals, mixes, etc. Therefore, this also has several inputs 65 and outputs 66 for audio signals.
  • the signal processor 64 consists of the actual core of a, for example, digitally working mixing console and is thus known per se and not shown here.
  • the signal processor 64 is associated with an algorithm library 67, in which all algorithms are used, which are used in the processing of the signals from the inputs 65. This is connected via a bus 68 to the computer 62 and via a bus 69 to the signal processor 64.
  • the user interface 53 is connected via suitable means directly to the process computer 64, so that the controls 55, 56 can directly influence the processing of the signals for the outputs 66.
  • the computer 62 is switched on between the user interface 53 and the process computer 64, the book about the state, ie all settings of the mixer and the associated signals leads. If the configuration of the mixing console is changed via the operating elements 55, this is done via corresponding data which, via the data bus 59, move the computer 62 to select new algorithms via the bus 68 in the algorithm library 67 and output them to the signal processor 64 and, on the other hand, instruct graphics processor 58 via data bus 61 to adjust the displays, scales, etc.
  • the term configuration means the entire arrangement provided for the processing of the audio signals. It can be represented, for example, in a block diagram in which all processing such as, gains, additions of signals, filtering, level changes, etc. are listed. Such a block diagram, which corresponds to exactly one configuration, can be changed by changing the configuration, so that then another block diagram applies to the processing, and so on. If, however, the operating elements 56 are actuated, the configuration (the block diagram) is retained and merely changes values for parameters in the algorithms provided, outputs them to the signal processor 64 via the bus 71 and also displays them via the graphics computer 58 in the screen 57. So can be such values as those in Fig. 6 are shown to be changed. Assuming that the rotary head 70 serves to indicate a cut-off frequency in a filter, this is changed by turning the rotary knob 70 and displayed in 47 also in values. In addition, you can see in which channel this change was made, etc.
  • the computer 62 thus serves to detect the state of signal paths, level controls, filters, the dynamics changing processors, and the size of signals, the position and the change in the position of input elements, etc. and display on the screen 57 in an appropriate form. He also gives the signal processor 64 control commands for editing the audio and video signals. Through this customized display, the user is also guided by being able to recognize at any time which changes at different levels causes his intervention in the existing settings. For example, a change in the cutoff frequency on a filter module not only causes the display of the new cutoff frequency, but also the updated display of other values that depend on it, for example, the level, etc.
  • the operating elements 55 represent means with which the signal flow in the audio channels can be defined by the selection of the algorithms.
  • the computer 62 are defined by the stored program parts and means that determine the assignment of the controls, for example, in the sense that a row or column of knobs on the mixer for setting the same parameters, while other parameters by elements in other columns or Rows are affected. It may also mean that individual controls are disabled in a configuration and can not exert any effect, the device being designed such that a control element can be used to change several parameters, e.g. by serial control. It may also simply mean that the language of the label is e.g. can be adjusted at the point 49, etc., or that in parts of the display, the color can be changed rhythmically or change.

Landscapes

  • Position Input By Displaying (AREA)
  • Input From Keyboards Or The Like (AREA)
  • User Interface Of Digital Computer (AREA)
  • Digital Computer Display Output (AREA)
  • Circuit For Audible Band Transducer (AREA)
  • Image Generation (AREA)
  • Measuring Pulse, Heart Rate, Blood Pressure Or Blood Flow (AREA)
  • Gyroscopes (AREA)
  • Electrochromic Elements, Electrophoresis, Or Variable Reflection Or Absorption Elements (AREA)

Claims (8)

  1. Dispositif pour l'entrée de valeurs pour le traitement de signaux audio dans un processeur de signaux (64), avec un écran (34, 57) d'affichage des valeurs, avec au moins deux éléments (35, 36, 37, 55, 56) d'entrée manuelle des valeurs, disposés devant l'écran, avec un support (42) pour les éléments (35, 36, 37, 55, 56) d'entrée manuelle, précédant l'écran dans la direction du regard, les éléments étant reliés à un ordinateur (62) par des connexions devant l'écran, ledit ordinateur saisissant au moyen de données la position des éléments d'entrée manuelle et affichant sur au moins une zone (35', 36', 37') de l'écran un message de retour sur les valeurs réglées, caractérisé en ce que l'ordinateur (62) est relié au processeur de signaux (64) pour le traitement des signaux audio de telle sorte que l'ordinateur puisse délivrer au processeur de signaux des instructions de commande pour le traitement des signaux audio en fonction des réglages sur les éléments d'entrée manuelle, qu'un élément (11) de fixation de composants électroniques est affecté à l'écran et au support, lequel est disposé entre le support et l'écran pour la fixation de composants électroniques, sur l'élément (11) de fixation de composants éléctroniques des pistes conductives etant fixés, et en ce que le dispositif est agencé tel que avec un élément (35, 36, 37) d'entrée manuelle des valeurs plusieurs paramètres peuvent être modifiés.
  2. Dispositif selon la revendication 1, caractérisé en ce que le support (42) comporte des zones (35', 36', 37') transparentes affectées aux éléments (35, 36, 37).
  3. Dispositif selon la revendication 1, caractérisé en ce que l'ordinateur définit la configuration pour le traitement des signaux audio dans le processeur de signaux.
  4. Dispositif selon la revendication 1, caractérisé en ce que des encodeurs (23) sont prévus comme élément d'entrée.
  5. Dispositif selon la revendication 1, caractérisé en ce que des transmetteurs (14) linéairement réglables sont prévus comme élément d'entrée.
  6. Dispositif selon la revendication 1, caractérisé en ce que l'ordinateur (62) est relié à des éléments de commande (55) définissant la configuration du dispositif.
  7. Dispositif selon la revendication 1, caractérisé en ce que l'écran comporte d'autres éléments d'entrée (38, 39) d'un autre type.
  8. Dispositif selon la revendication 1, caractérisé en ce que l'ordinateur (62) saisit par des affichages sur les zones (35', 36', 37') de l'écran l'état d'éléments tels que chemins de signaux, éléments de réglage de niveau, filtres, les processeurs modifiant la dynamique, la grandeur des signaux, la position et la variation de position d'éléments d'entrée, etc., et les affiche sous une forme appropriée sur l'écran (57).
EP99971145A 1998-10-26 1999-10-21 Dispositif permettant d'entrer des valeurs et dote d'un ecran Expired - Lifetime EP1177566B3 (fr)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
CH215398 1998-10-26
CH215398 1998-10-26
PCT/CH1999/000498 WO2000025332A1 (fr) 1998-10-26 1999-10-21 Dispositif permettant d'entrer des valeurs et dote d'un ecran

Publications (3)

Publication Number Publication Date
EP1177566A1 EP1177566A1 (fr) 2002-02-06
EP1177566B1 EP1177566B1 (fr) 2005-12-28
EP1177566B3 true EP1177566B3 (fr) 2011-04-27

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP99971145A Expired - Lifetime EP1177566B3 (fr) 1998-10-26 1999-10-21 Dispositif permettant d'entrer des valeurs et dote d'un ecran

Country Status (6)

Country Link
US (2) US7187357B1 (fr)
EP (1) EP1177566B3 (fr)
JP (2) JP4668417B2 (fr)
AT (1) ATE314726T1 (fr)
DE (1) DE59913000D1 (fr)
WO (1) WO2000025332A1 (fr)

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Also Published As

Publication number Publication date
DE59913000D1 (de) 2011-03-17
JP4668417B2 (ja) 2011-04-13
JP2010218584A (ja) 2010-09-30
EP1177566B1 (fr) 2005-12-28
US7187357B1 (en) 2007-03-06
US20070159460A1 (en) 2007-07-12
JP2002528830A (ja) 2002-09-03
ATE314726T1 (de) 2006-01-15
EP1177566A1 (fr) 2002-02-06
JP5336435B2 (ja) 2013-11-06
WO2000025332A1 (fr) 2000-05-04

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