EP1004110B1 - Device for displaying alphanumeric characters and symbols - Google Patents

Device for displaying alphanumeric characters and symbols Download PDF

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Publication number
EP1004110B1
EP1004110B1 EP97928220A EP97928220A EP1004110B1 EP 1004110 B1 EP1004110 B1 EP 1004110B1 EP 97928220 A EP97928220 A EP 97928220A EP 97928220 A EP97928220 A EP 97928220A EP 1004110 B1 EP1004110 B1 EP 1004110B1
Authority
EP
European Patent Office
Prior art keywords
light emitting
emitting diodes
support
circuit board
electric motor
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
EP97928220A
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German (de)
French (fr)
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EP1004110A1 (en
Inventor
Karl Heinz Ronkholz
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.)
Lumino Licht Elektronik GmbH
Original Assignee
Lumino Licht Elektronik 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
Priority claimed from DE29611155U external-priority patent/DE29611155U1/en
Priority claimed from DE29621296U external-priority patent/DE29621296U1/en
Application filed by Lumino Licht Elektronik GmbH filed Critical Lumino Licht Elektronik GmbH
Publication of EP1004110A1 publication Critical patent/EP1004110A1/en
Application granted granted Critical
Publication of EP1004110B1 publication Critical patent/EP1004110B1/en
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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F9/00Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
    • G09F9/30Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements
    • G09F9/33Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements being semiconductor devices, e.g. diodes
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G3/00Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
    • G09G3/001Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes using specific devices not provided for in groups G09G3/02 - G09G3/36, e.g. using an intermediate record carrier such as a film slide; Projection systems; Display of non-alphanumerical information, solely or in combination with alphanumerical information, e.g. digital display on projected diapositive as background

Definitions

  • the invention relates to a device for displaying alpha-numerical Signs and symbols according to the generic term of Protection claim 1.
  • LED's light emitting diodes
  • Such a device is, for example, in practice in Form of a spherical LED display known, in which in the Inside of the sphere, generally of the rotationally symmetrical housing, made of acrylic glass or the like translucent material one or more rows of light-emitting diodes arranged vertically are on an appropriately trained carrier.
  • the Carrier rotates at high speeds using an electric motor from, for example, 2000 rpm to 3000 rpm, whereby the one or more preferably parallel to the axis of rotation of the Electric motor-aligned LED row (s) also rotates or turn.
  • the LED's become a still picture for the viewer or a standing or in the manner of a ticker moving, readable character and / or image sequence on the housing surface projected from an angular range of more than 270 ° is recognizable.
  • FIG. 1 Another display device of the generic type is in international patent application PCT / RO95 / 00013 published as WO-A-9611462.
  • the Block diagram includes a sequence generator for generation the code sequences for the character and image sequences and a Synchronization circuit for detecting the angular position of the rotating LED carrier, from which the rotational speed of the LED carrier is determined and regulated.
  • a first object of the invention is therefore a device of the type mentioned with an improved control to create the display device and the LED's.
  • translucent balls used generally have a only relatively small opening for the installation of the display technology or display arrangement with LEDs. It is also used for stabilization a counterweight to the or during the rotational movement the LED rows. Due to this, the assembly bumps such devices for significant technical difficulties, that do not allow series production.
  • a second object of the invention is therefore a device to improve the type mentioned in such a way that technically simple and series production is possible.
  • the inventive measures according to claim 1 an exact measurement of the speed of rotation of the drive motor or the rotating LED arrangement, due to which the LED control with the speed of rotation of the LED arrangement is synchronized. Interfering external influences, such as incident light rays, by means of a suitable software for optoelectronic rotation speed measurement are largely filtered out.
  • the one with the coupled extremely accurate detection of the rotational speed optimal synchronization of the LED control is clear for one readable and flicker-free character and / or image sequence indispensable.
  • the device is for the purpose the data transmission for control and programming with a PC interface and / or an infrared interface fitted.
  • the infrared interface enables input a desired character and / or image sequence using a Remote control.
  • FIG. 1 is a first preferred embodiment of the Device according to the invention in section along the axis of symmetry 21 of the arrangement shown.
  • a Electric motor 2 mounted for an engine speed of about Is designed from 2000 to 3000 rpm.
  • an electric motor 2 can preferably a synchronous motor can be used.
  • the circuit board 4 contains the complete electronic circuits for the Control of the device, in particular a control of the LEDs or LED groups 6 via regulated constant current sources, a non-volatile storage of the alpha-numeric characters and / or pictograms and a character generator for implementation the character and / or image sequence into the corresponding one LED control.
  • the electronic circuit board 4 also serves as mechanical holder for a in a preferred manner perpendicular to the circuit board 4, i.e. roughly parallel to Axis of symmetry 21, arranged carrier 5.
  • carrier 5 On the carrier 5 is at least one preferably vertical row from radially to externally directed LEDs or LED groups 6 attached.
  • the LEDs 6 on the carrier 5 are colored light-emitting diodes which can be predetermined color order. Both LEDs can be used in constantly changing colors and LEDs from same color can be used. The choice of color essentially depends from the planned ad. Furthermore, the application of course not on the one used in this embodiment only one LED row of sixteen LED's 6 limited. The Depending on the application, the row can have more or fewer LEDs exhibit.
  • the control on the circuit board 4 ensures accordingly a stored specification (program, computer program) for a predetermined lighting of the desired one LEDs 6.
  • a stored specification program, computer program
  • the font bold, italic, etc.
  • the running speed of the character and / or image sequence fixed, and the user can only and / or select and enter image sequence.
  • a flexible Programming tool can of course also do that Font, the running speed or other parameters of the Character and / or image sequence to be displayed freely selected by the user become.
  • This picture Due to the high speed on the drive shaft 20 of the electric motor 2 of about 3000 rpm is for the viewer of the display device a "standing" picture with a frame rate generated by about 50 Hz.
  • This picture can be according to the given and programmed memory content a standing or moving typeface from alpha-numeric characters or also be a picture. Combinations are of course also such Characters possible.
  • the LED heads 6 can be beveled, the beveling preferably takes place in the vertical. You can also alternatively, SMD LEDs 6 can also be applied.
  • a flexible (elastically flexible) spring steel rod 7 attached to the side of the circuit board opposite the LED carrier 5 4 .
  • a weight 8 which is very advantageously on the spring steel rod 7 in the longitudinal direction can be moved and locked in any position. This is an optimal and the structural as well as the operating conditions adjusted weight balance possible.
  • spring steel rod 7 is also a rod from another Material with comparable properties can be used. Further it is conceivable, a simple instead of the spring steel rod 7 or rod that can be folded down or decayed several times or to choose a telescopic rod, which is due to the centrifugal force automatically flips up to its operating length when rotating or extends.
  • a bendable, foldable or telescopic Compensation element 7 instead of a rigid mechanical compensation body has the advantage of easier assembly, in particular when assembling the complete device in housing with small receiving opening, as shown below with the second Embodiment will be explained in more detail in Fig. 4.
  • the electrical connections 9 of the electronic circuit board 4, in this embodiment two contacts Power supply and two contacts for data transmission by an implementation (not shown) by the Base 1 and the electric motor 2 to high-quality sliding contacts 24 fed to the rotating coupling piece 3.
  • the sliding contacts 24 run on the entire circumference of the coupling piece 3 and are for example and preferably made of gold.
  • the two contacts for power supply are via a supply cable 10 connected to the network, which is also the electric motor 2 supplies the necessary energy.
  • the two contacts to Data transmission is with a PC interface 11 in the base 1 connected to the device.
  • a computer 12 At this PC interface 11 is a computer 12 with a terminal that can be connected at the same time networked several display devices of the type described can be.
  • a remote control 13 can be controlled.
  • an infrared sensor 14 whose connections for simplicity to the PC contacts are laid for data transmission.
  • the infrared sensor 14 can now be either fixed on the resting base or foot 1 or one Part of the base 1 as well as moving on a rotating Part, such as on the carrier 5 or the circuit board 4 be mounted.
  • the frequency range of data transmission with remote control 13 is in principle not limited to the infrared range but through the use of commercially available remote controls on.
  • remote control 13 in contrast to the computer 12 usually does not have a screen or other display elements
  • To check the data entered works in the case of Data transmission with remote control 13 the display device with its LED's 6 itself as a display for checking data entry.
  • the display device further includes a measuring device 15 for exact measurement of the rotation speed of the LED arrangement 6 about the axis of rotation 21.
  • the measuring device 15, which is shown in FIG drawn out enlarged, consists of a optoelectronic sensor 16 and a reflector 17.
  • the off Photosensor 16 constructed transmitter and receiver is on the bottom the rotating circuit board 4 attached.
  • the Reflector 17 is at the same distance from the axis of rotation 21 Photosensor 16 opposite, for example on the engine block 2, fixed fixed.
  • an active transmitter in the form of a stationary transmitter diode 22 is provided, while the receiver 23 spaced opposite on the rotating carrier 5 or on the underside of the rotating Circuit board 4 is attached.
  • the position of the reflector 17 marks, for example Zero crossing of the rotation.
  • the transmitter of the photosensor 16 emits continuously or at least with a very rapid pulse sequence, which is a much higher frequency than the rotation of the LED array 6 should have one facing down Beam of light 18a. Whenever there is a reflector 17 and photosensor 16 face, i.e. once per rotation of the assembly, the light beam 18a is reflected by the reflector 17, and the reflected light beam 18b is from the receiver of the photosensor 16 added.
  • the arrangement of the photosensor 16 and the reflector 17 is not limited to the type described above, it just has to be guaranteed be that a component of the measuring device 15 one component rotating with the LED arrangement 6 and the other Component is attached stationary. Furthermore, the measuring device 15 be arranged so that as little distracting as possible External influences influence the measurement of the rotational speed can. For this purpose, the distance between Photosensor 16 and reflector 17 chosen as small as possible.
  • this software also allows, with an otherwise regular pulse sequence, possibly one-off pulses to pass over. So it is pretended that the fancy too Pulse would be present, so that a constant Rotational speed is measured.
  • the entire arrangement described above with components 2-9, 14-17 and 20 is usually packaged 19 mounted.
  • the housing 19 is essentially a spherical, cylindrical or other rotationally symmetrical housing.
  • the spherical body 19 consists of a translucent or transparent material, e.g. acrylic glass, plastic, Glass or the like.
  • the preferred ball body 19 has a diameter of about 30 cm and has on the other hand a smaller receiving opening 25 through which the arrangement described above introduced into the spherical body 19 becomes.
  • the circuit board 4 can in principle also outside of Housing 19 may be attached. In this case, the electrical Controls via the electrical connections 9 fed directly to the LEDs.
  • the arrangement of the circuit board 4 within the housing 19 is a preferred design because all elements are complete in the housing 19 and the LED display device so that it is an autonomous unit. Furthermore the housing 19 provides protection for the circuit board 4 against dirt and harmful environmental influences.
  • Fig. 3 is a second embodiment of the invention Display device shown. The same elements are included with the same reference numerals as in the first embodiment 1 and 2 provided.
  • the second exemplary embodiment according to FIG. 3 differs above all from the first embodiment described above in the way of attaching circuit board 4 and compensating element 7, 8 and the arrangement of the electrical connections.
  • the coupling piece 3 replace the first embodiment of FIG. 1.
  • the first fastening element 3a is the spring steel rod 7 of the Compensating element mounted while on the second fastener 3b the circuit board 4 with the control of the Device.
  • the compensating element 7, 8 is in Principle like the compensating element 7, 8 described above Fig. 1 is built and is therefore not repeated at this point described in more detail.
  • Circuit board 4 is analogous to the first embodiment the carrier 5 for the LEDs 6 attached.
  • the electrical connections 9 of the circuit board 4 are through a bushing 26 through the base 1, the electric motor 2 and the drive shaft 20 to high-quality sliding contacts 27 supplied, which are for example and preferably made of gold.
  • the Implementation 26 is firmly connected to the base 1 and not rotatable.
  • the sliding contacts 27 are round rod-shaped at the top End of implementation 26 attached to the entire circumference.
  • the Power is drawn via high-quality sliding contacts 28 made of gold on the fastening element 3b of the circuit board 4.
  • the receiving opening 25 of the spherical body 19 only has to as large as the base 1 or the diameter of the electric motor Be 2.
  • FIG. 4a shows the two basic elements spherical body 19 with a receiving opening 25 and completely pre-assembled assembly from electric motor 2, circuit board 4, carrier 5 with LEDs 6 and Compensation element 7, 8.
  • the fully assembled and in the operating state located ball indicator shows Fig. 4h, here the Arrow 29 the direction of rotation of the drive shaft 20 and with it the Direction of rotation of the LED carrier 5 disclosed.
  • the carrier 5 is attached the LEDs 6 obliquely through the receiving opening 25 of the spherical body 19 out.
  • the spherical body 19 becomes something according to FIG. 4c rotated so that the receiving opening 25 is aligned horizontally is.
  • the carrier 5 is completely in brought the spherical body 19 and the subsequent circuit board 4 so far into the receiving opening 25 until you Collar hits the side of the electric motor 2 or only one has a small side distance to the electric motor 2.
  • the Ball body 19, as shown in FIGS. 4d to 4g by continuous rotation of its receiving opening 25 over the entire standing assembly tilted.
  • the spring steel rod 7 or the one described above is equivalent Bar element with its weighted down by 8 End piece sags constantly and additionally continue to elastically bent into contact with the electric motor 2 can be, the relatively small diameter of the Receiving opening 25 from slipped over the entire assembly to become. After completely overturned spherical body 19 according to FIG. 4g, the spring steel rod 7 straightens up again or folds up again and engages.
  • Fig. 4g shows the fully assembled ball display in the idle state.
  • the electric motor rotates 2
  • the drive shaft 20 which via the coupling piece 3 or Fasteners 3a and 3b with the circuit board 4
  • the LED carrier 5 and the spring steel rod 7 is rotatably connected.
  • the carrier 5 begins to rotate in the spherical body 19. Because of The spring steel rod is aligned with the increasing centrifugal force 7 or the equivalent rod element in the spherical body 19 to the horizontal position and forms in the operating state stabilization and equilibrium the device. That attached to the end of the spring steel rod 7 Weight 8 compensates for the weight of the LED arrangement used 5, 6.
  • the entire LED ball display thus reaches one secure stand without special, additional fastenings requirement.
  • the measuring device 15 designed as an optoelectronic measuring device.
  • the optoelectronic measuring device can also be one with a Hall generator trained measuring device may be provided from a Hall sensor as a receiver and a permanent magnet exists as a transmitter. These components are close together on the stationary or rotating component of the device across from.
  • the Hall sensor must not pass through the stray electrical field of the Electric motor 2 are disturbed. That's why you become one accordingly use insensitive Hall sensor or / and the Position or turn the Hall sensor so that it comes out of the electrical Stray field of the electric motor 2 comes.

Abstract

The invention concerns a device for displaying alphanumeric characters and/or symbols, with a rotationally symmetric housing (19) of a transparent and/or light transparent material; the housing (19) containing an electric motor (2) with a motor shaft (20) which revolves around a symmetrical axis (21); a carrier (5) which is rotationally fixed to the motor shaft (20) and on which is/are attached at least one row of light-emitting diodes or groups of light-emitting diodes (6) that are substantially perpendicular to the motor shaft (20); and a circuit board (4) with a control circuit for the light-emitting diodes (6). To improve control of the display device and the LED's and to create a technically simple series production, the display device also has an opto-electronic measuring device (15) made of a transmitter and receiver, to measure the rotating speed of the carrier (5) for synchronising control of the light-emitting diodes (6) with the rotating speed of the carrier (5), the transmitter and receiver of which are fixed to a rotating structural part of the device on the one hand to a stationary structural part of the device on the other hand, opposite and at a short distance apart. With the use of software the signal picked up by the receiver can be converted into a clear square-wave signal, free from external interference so that the LED-control can be synchronised with the exactly or almost exactly measured rotating speed of the carrier (5). The device according to the invention also contains a mechanical balancing element (7, 8) opposite the carrier (5) in relation to the symmetrical axis (21), wherein the balancing element (7, 8) is a rod (7) of any cross-section, the operating length of which can be shortened, the rod being raised into a substantially horizontal position during operating.

Description

Die Erfindung betrifft eine Vorrichtung zur Anzeige von alpha-numerischen Zeichen und Bildzeichen nach dem Oberbegriff von Schutzanspruch 1.The invention relates to a device for displaying alpha-numerical Signs and symbols according to the generic term of Protection claim 1.

Vorrichtungen der vorstehend genannten Art sind in der Literatur vielfältig beschrieben und auch in der Praxis eingesetzt worden. Solche Vorrichtungen sind beispielsweise Displays in unterschiedlicher Größe mit in Zeilen und Spalten matrixförmig angeordneten Leuchtdioden (LED's).Devices of the type mentioned above are in the literature described in many ways and also used in practice been. Such devices are, for example, displays in of different sizes with a matrix in rows and columns arranged light emitting diodes (LED's).

Aus der Praxis ist beispielsweise eine solche Vorrichtung in Form einer kugeligen LED-Anzeige bekannt, bei welcher sich im Inneren der Kugel, allgemein des rotationssymmetrischen Gehäuses, aus Acrylglas oder dergleichen lichtdurchlässigem Material eine oder mehrere senkrecht angeordnete Reihen von Leuchtdioden auf einem entsprechend ausgebildeten Träger befinden. Der Träger rotiert mittels eines Elektromotors mit hohen Drehzahlen von beispielsweise 2000 U/min bis 3000 U/min, wodurch sich die eine oder mehrere vorzugsweise parallel zur Drehachse des Elektromotors ausgerichtete(n) LED-Reihe(n) ebenfalls dreht bzw. drehen. Durch eine geeignete software-unterstützte Ansteuerung der LED's wird für den Betrachter ein stehendes Bild bzw. eine stehende oder in der Art einer Laufschrift sich bewegende, lesbare Zeichen- und/oder Bildfolge auf die Gehäuseoberfläche projiziert, die aus einem Winkelbereich von mehr als 270° erkennbar ist.Such a device is, for example, in practice in Form of a spherical LED display known, in which in the Inside of the sphere, generally of the rotationally symmetrical housing, made of acrylic glass or the like translucent material one or more rows of light-emitting diodes arranged vertically are on an appropriately trained carrier. The Carrier rotates at high speeds using an electric motor from, for example, 2000 rpm to 3000 rpm, whereby the one or more preferably parallel to the axis of rotation of the Electric motor-aligned LED row (s) also rotates or turn. With a suitable software-supported control the LED's become a still picture for the viewer or a standing or in the manner of a ticker moving, readable character and / or image sequence on the housing surface projected from an angular range of more than 270 ° is recognizable.

Eine weitere Anzeigevorrichtung der gattungsgemäßen Art ist in der internationalen Patentanmeldung PCT/RO95/00013 als WO-A-9611462 veröffentlicht offenbart. Darin ist eine Reihe von LED's oder LED-Gruppen auf einem entsprechend ausgebildeten Träger senkrecht angeordnet, der mit einer konstanten Winkelgeschwindigkeit von mehr als 1200 U/min um die senkrechte Achse eines Antriebsmotors rotiert. Das Blockschaltbild enthält u.a. einen Sequenzgenerator zur Erzeugung der Codesequenzen für die Zeichen- und Bildfolgen und eine Synchronisationsschaltung zur Erfassung der Winkelposition des rotierenden LED-Trägers, aus der die Drehgeschwindigkeit des LED-Trägers ermittelt und geregelt wird.Another display device of the generic type is in international patent application PCT / RO95 / 00013 published as WO-A-9611462. There is a row of LEDs or LED groups in one appropriately trained carrier arranged vertically with a constant angular velocity of more than 1200 rpm rotates around the vertical axis of a drive motor. The Block diagram includes a sequence generator for generation the code sequences for the character and image sequences and a Synchronization circuit for detecting the angular position of the rotating LED carrier, from which the rotational speed of the LED carrier is determined and regulated.

Um eine für den Betrachter gut lesbare, auf die Gehäuseoberfläche projizierte Zeichen- und/oder Bildfolge zu erzeugen, ist die richtige Ansteuerung der LED's und die ruhige, vibrationsarme Rotation des LED-Trägers von entscheidender Bedeutung.To make it easy for the viewer to read on the surface of the case to generate projected character and / or image sequence is the correct control of the LEDs and the quiet, low-vibration Rotation of the LED carrier is vital.

Eine erste Aufgabe der Erfindung ist es deshalb, eine Vorrichtung der eingangs genannten Art mit einer verbesserten Ansteuerung der Anzeigevorrichtung und der LED's zu schaffen.A first object of the invention is therefore a device of the type mentioned with an improved control to create the display device and the LED's.

Die üblicherweise für die eingangs genannten Anzeigevorrichtungen verwendeten lichtdurchlässigen Kugeln besitzen i.a. eine nur relativ kleine Aufnahmeöffnung für den Einbau der Anzeigetechnik oder Anzeigeanordnung mit LED's. Ferner ist zur Stabilisierung während der Drehbewegung ein Gegengewicht zu der oder den LED-Reihen vorgesehen. Hierdurch bedingt, stößt die Montage solcher Vorrichtungen auf erhebliche technische Schwierigkeiten, die eine serienmäßige Fertigung nicht zulassen.The usually for the display devices mentioned above translucent balls used generally have a only relatively small opening for the installation of the display technology or display arrangement with LEDs. It is also used for stabilization a counterweight to the or during the rotational movement the LED rows. Due to this, the assembly bumps such devices for significant technical difficulties, that do not allow series production.

Eine zweite Aufgabe der Erfindung ist es deshalb, eine Vorrichtung der eingangs genannten Art derart zu verbessern, daß eine technisch einfache und Serienfertigung möglich ist. A second object of the invention is therefore a device to improve the type mentioned in such a way that technically simple and series production is possible.

Diese Aufgaben werden durch die Merkmale des Anspruches 1 bzw. 3 gelöst. Vorteilhafte Ausgestaltungen und Weiterbildungen der Erfindung sind Gegenstand der Unteransprüche.These tasks are characterized by the features of claim 1 and 3 solved. Advantageous refinements and developments of Invention are the subject of the dependent claims.

Durch die erfindungsgemäßen Maßnahmen gemäß Anspruch 1 wird eine exakte Messung der Drehgeschwindigkeit des Antriebsmotors bzw. der rotierenden LED-Anordnung ermöglicht, aufgrund der die LED-Ansteuerung mit der Drehgeschwindigkeit der LED-Anordnung synchronisiert wird. Dabei können störende äußere Einflüsse, wie beispielsweise einfallende Lichtstrahlen, mittels einer geeigneten Software bei der optoelektronischen Drehgeschwindigkeits-Messung weitestgehend herausgefiltert werden. Die mit der extrem genauen Erfassung der Drehgeschwindigkeit gekoppelte optimale Synchronisierung der LED-Ansteuerung ist für eine klar lesbare und flackerfreie Zeichen- und/oder Bildfolge unerläßlich.The inventive measures according to claim 1 an exact measurement of the speed of rotation of the drive motor or the rotating LED arrangement, due to which the LED control with the speed of rotation of the LED arrangement is synchronized. Interfering external influences, such as incident light rays, by means of a suitable software for optoelectronic rotation speed measurement are largely filtered out. The one with the coupled extremely accurate detection of the rotational speed optimal synchronization of the LED control is clear for one readable and flicker-free character and / or image sequence indispensable.

Durch die erfindungsgemäßen Merkmale gemäß Anspruch 3 wird eine Reihe von weiteren Vorteilen erreicht. Durch die Verwendung eines Gegengewichtes für den LED-Träger aus einem biegsamen Federstahl oder einem Material mit vergleichbaren Eigenschaften bzw. in einer klappbaren Verbindung in Verlängerung der Elektronikplatine kann die komplett vormontierte Anordnung aus Elektromotor, LED-Reihe oder LED-Reihen, Elektronikplatine und Gegengewicht durch eine relativ kleine Aufnahmeöffnung in die Kugel aus lichtdurchlässigem Material problemlos und ohne Spezialwerkzeuge eingeführt werden. Bei der Drehbewegung der Anordnung durch den Elektromotor stellt sich der Federstahlstab aufgrund der Zentrifugalkraft waagerecht auf und dient damit als Stabilisierung der gesamten im Betrieb befindlichen Anordnung.Due to the features of the invention according to claim 3 A number of other advantages achieved. By using it a counterweight for the LED carrier made of a flexible Spring steel or a material with comparable properties or in a foldable connection in the extension of the electronics board can the completely pre-assembled arrangement Electric motor, LED series or LED series, electronic board and Counterweight through a relatively small opening in the Ball made of translucent material easily and without Special tools are introduced. With the rotation of the Arrangement by the electric motor turns the spring steel rod horizontal due to the centrifugal force and thus serves as a stabilization of the entire arrangement in operation.

In Weiterbildung der Erfindung ist die Vorrichtung zum Zwecke der Datenübertragung für die Ansteuerung und Programmierung mit einer PC-Schnittstelle und/oder einer Infrarot-Schnittstelle ausgestattet. Die Infrarot-Schnittstelle ermöglicht die Eingabe einer gewünschten Zeichen- und/oder Bildfolge mittels einer Fernbedienung.In a further development of the invention, the device is for the purpose the data transmission for control and programming with a PC interface and / or an infrared interface fitted. The infrared interface enables input a desired character and / or image sequence using a Remote control.

Die vorliegende Erfindung wird nachfolgend anhand von bevorzugten Ausführungsbeispielen mit Hilfe der Zeichnung beschrieben.
Es zeigen:

Fig. 1
ein erstes Ausführungsbeispiel der Vorrichtung in ihrem Prinzip-Aufbau im Schnitt entlang der Drehachse der Anordnung;
Fig. 2
eine Variante der Meßeinrichtung der Vorrichtung von Fig. 1 im vereinfachten Prinzip-Aufbau;
Fig. 3
ein zweites Ausführungsbeispiel der Vorrichtung in ihrem Prinzip-Aufbau im Schnitt entlang der Drehachse der Anordnung, mit einer getrennt dargestellten Kugel und einer strich-punktiert angedeuteten Kugel; und
Fig. 4a bis 4h
insgesamt acht vereinfachte Darstellungen für die Montage der Vorrichtung von Fig. 3.
The present invention is described below on the basis of preferred exemplary embodiments with the aid of the drawing.
Show it:
Fig. 1
a first embodiment of the device in its basic structure in section along the axis of rotation of the arrangement;
Fig. 2
a variant of the measuring device of the device of Figure 1 in a simplified principle structure.
Fig. 3
a second embodiment of the device in its basic structure in section along the axis of rotation of the arrangement, with a separately shown ball and a dash-dotted ball; and
4a to 4h
a total of eight simplified representations for the assembly of the device of FIG. 3.

In Fig. 1 ist ein erstes bevorzugtes Ausführungsbeispiel der erfindungsgemäßen Vorrichtung im Schnitt entlang der Symmetrieachse 21 der Anordnung dargestellt. Auf einem Sockel, Standfuß 1 oder dergleichen Aufstell- oder Stützeinrichtung ist ein Elektromotor 2 montiert, der für eine Motordrehzahl von etwa 2000 bis 3000 U/min ausgelegt ist. Als Elektromotor 2 kann vorzugsweise ein Synchronmotor verwendet werden.1 is a first preferred embodiment of the Device according to the invention in section along the axis of symmetry 21 of the arrangement shown. On a base, stand 1 or the like set-up or support device is a Electric motor 2 mounted for an engine speed of about Is designed from 2000 to 3000 rpm. As an electric motor 2 can preferably a synchronous motor can be used.

Auf der Antriebswelle 20 des Elektromotors 2 ist ein Kupplungsstück 3 befestigt. Auf diesem Kupplungsstück 3 oder auf der Abtriebseite des Kupplungsstückes 3 ist wiederum eine Schaltungsplatine 4 montiert, die in einem Winkel von etwa 90° zur Drehachse der Antriebswelle 20, die hier gleichzeitig Symmetrieachse 21 des Gehäuses ist, orientiert ist. Die Schaltungsplatine 4 enthält die kompletten elektronischen Schaltungen für die Steuerung der Vorrichtung, insbesondere eine Ansteuerung der LED's bzw. der LED-Gruppen 6 über geregelte Konstantstromquellen, eine nichtflüchtige Speicherung der alpha-numerischen Zeichen und/oder Bildzeichen und einen Zeichengenerator zur Umsetzung der Zeichen- und/oder Bildfolge in die entsprechende LED-Ansteuerung.On the drive shaft 20 of the electric motor 2 is a coupling piece 3 attached. On this coupling piece 3 or on the driven side the coupling piece 3 is in turn a circuit board 4 mounted at an angle of about 90 ° to the axis of rotation the drive shaft 20, which here is also the axis of symmetry 21 of the housing is oriented. The circuit board 4 contains the complete electronic circuits for the Control of the device, in particular a control of the LEDs or LED groups 6 via regulated constant current sources, a non-volatile storage of the alpha-numeric characters and / or pictograms and a character generator for implementation the character and / or image sequence into the corresponding one LED control.

Die elektronische Schaltungsplatine 4 dient gleichzeitig als mechanische Halterung für einen in bevorzugter Weise etwa rechtwinklig zur Schaltungsplatine 4, d.h. etwa parallel zur Symmetrieachse 21, angeordneten Träger 5. Auf dem Träger 5 ist mindestens eine vorzugsweise lotrechte Reihe von radial nach außen gerichteten LED's oder LED-Gruppen 6 angebracht.The electronic circuit board 4 also serves as mechanical holder for a in a preferred manner perpendicular to the circuit board 4, i.e. roughly parallel to Axis of symmetry 21, arranged carrier 5. On the carrier 5 is at least one preferably vertical row from radially to externally directed LEDs or LED groups 6 attached.

Die LED's 6 auf dem Träger 5 sind farbige Leuchtdioden in vorbestimmbarer farblicher Reihenfolge. Es können sowohl Leuchtdioden in ständig wechselnden Farben als auch Leuchtdioden von gleicher Farbe eingesetzt werden. Die Farbwahl hängt im wesentlichen von der geplanten Anzeige ab. Ferner ist die Anwendung natürlich nicht auf die in diesem Ausführungsbeispiel verwendete nur eine LED-Reihe von sechzehn LED's 6 beschränkt. Die Reihe kann je nach dem Anwendungsfall mehr oder weniger LED's aufweisen.The LEDs 6 on the carrier 5 are colored light-emitting diodes which can be predetermined color order. Both LEDs can be used in constantly changing colors and LEDs from same color can be used. The choice of color essentially depends from the planned ad. Furthermore, the application of course not on the one used in this embodiment only one LED row of sixteen LED's 6 limited. The Depending on the application, the row can have more or fewer LEDs exhibit.

Die Steuerung auf der Schaltungsplatine 4 sorgt entsprechend einer gespeicherten Vorgabe (Programm, Rechnerprogramm) für ein zeitlich vorbestimmtes Aufleuchten der jeweils gewünschten LED's 6. Im allgemeinen ist dabei die Schriftart (fett, kursiv, etc.) und die Laufgeschwindikeit der Zeichen-und/oder Bildfolge fest vorgegeben, und der Anwender kann nur eine gewünschte Zeichen- und/oder Bildfolge wählen und eingeben. Mit einem flexiblen Programmiertool können aber selbstverständlich auch die Schriftart, die Laufgeschwindigkeit oder weitere Parameter der anzuzeigenden Zeichen-und/oder Bildfolge vom Anwender frei ausgewählt werden.The control on the circuit board 4 ensures accordingly a stored specification (program, computer program) for a predetermined lighting of the desired one LEDs 6. In general, the font (bold, italic, etc.) and the running speed of the character and / or image sequence fixed, and the user can only and / or select and enter image sequence. With a flexible Programming tool can of course also do that Font, the running speed or other parameters of the Character and / or image sequence to be displayed freely selected by the user become.

Durch die hohe Drehzahl an der Antriebswelle 20 des Elektromotors 2 von etwa 3000 U/min wird für den Betrachter der Anzeige-vorrichtung ein "stehendes" Bild mit einer Bildwechselfrequenz von etwa 50 Hz erzeugt. Dieses Bild kann entsprechend dem vorgegebenen und programmierten Speicherinhalt ein stehendes oder bewegtes Schriftbild aus alpha-numerischen Zeichen oder aber auch ein Bild sein. Natürlich sind auch Kombinationen solcher Zeichen möglich.Due to the high speed on the drive shaft 20 of the electric motor 2 of about 3000 rpm is for the viewer of the display device a "standing" picture with a frame rate generated by about 50 Hz. This picture can be according to the given and programmed memory content a standing or moving typeface from alpha-numeric characters or also be a picture. Combinations are of course also such Characters possible.

Um einen größeren Ablesewinkel für den Betrachter zu ermöglichen, können die LED-Köpfe 6 abgeschrägt sein, wobei die Abschrägung bevorzugt in der Senkrechten erfolgt. Außerdem können alternativ auch SMD - LED's 6 aufgebracht werden.In order to allow a larger reading angle for the viewer, the LED heads 6 can be beveled, the beveling preferably takes place in the vertical. You can also alternatively, SMD LEDs 6 can also be applied.

An der dem LED-Träger 5 gegenüberliegenden Seite der Schaltungsplatine 4 ist ein biegsamer (elastisch durchbiegsamer) Federstahlstab 7 befestigt. An dem freien Stirnende dieses Stahlstabes 7 befindet sich wahlweise ein Gewicht 8, das in sehr vorteilhafter Weise auf dem Federstahlstab 7 in Längsrichtung verschiebbar und in einer beliebigen Position feststellbar ist. Dadurch ist ein optimaler und den baulichen wie den Betriebsverhältnissen angepasster Gewichtsausgleich möglich.On the side of the circuit board opposite the LED carrier 5 4 is a flexible (elastically flexible) spring steel rod 7 attached. At the free end of this steel rod 7 is optionally a weight 8, which is very advantageously on the spring steel rod 7 in the longitudinal direction can be moved and locked in any position. This is an optimal and the structural as well as the operating conditions adjusted weight balance possible.

Statt des Federstahlstabes 7 ist auch ein Stab aus einem anderen Material mit vergleichbaren Eigenschaften einsetzbar. Ferner ist es denkbar, an Stelle des Federstahlstabes 7 einen einfach oder mehrfach abklappbaren oder ausklingbaren Stab oder einen Teleskopstab zu wählen, der in Folge der Zentrifugalkraft bei Drehung automatisch auf seine Betriebslänge hochklappt bzw. ausfährt.Instead of the spring steel rod 7 is also a rod from another Material with comparable properties can be used. Further it is conceivable, a simple instead of the spring steel rod 7 or rod that can be folded down or decayed several times or to choose a telescopic rod, which is due to the centrifugal force automatically flips up to its operating length when rotating or extends.

Bei Beginn der Drehung der Anordnung um die Drehachse 21 richtet sich der Federstahlstab 7 bzw. das äquivalente Stabelement aufgrund der zunehmenden Zentrifugalkraft bis zur waagerechten Position aus und bildet im Betriebszustand eine Stabilisierung und einen Gewichtsausgleich der Vorrichtung. Das am Ende des Federstahlstabes 7 angebrachte Gegengewicht 8 kompensiert das Gewicht der eingesetzten LED-Anordnung 5, 6. Die gesamte Vorrichtung erreicht dadurch einen sicheren Stand, ohne daß es besonderer, zusätzlicher Befestigungen bedarf.When the arrangement begins to rotate about the axis of rotation 21 the spring steel rod 7 or the equivalent rod element due to the increasing centrifugal force up to the horizontal Position and forms a stabilization in the operating state and a weight balance of the device. That at the end of the Spring steel rod 7 attached counterweight 8 compensates for this Weight of the LED arrangement 5, 6. The entire device thereby achieves a safe stand without it special, additional fastenings required.

Die Verwendung eines biegbaren, klappbaren oder teleskopartigen Ausgleichselementes 7 an Stelle eines starren mechanischen Ausgleichskörpers hat den Vorteil einer einfacheren Montage, insbesondere bei Montage der kompletten Vorrichtung in Gehäuse mit kleiner Aufnahmeöffnung, wie weiter unten anhand des zweiten Ausführungsbeispieles in Fig. 4 genauer erläutert werden wird.The use of a bendable, foldable or telescopic Compensation element 7 instead of a rigid mechanical compensation body has the advantage of easier assembly, in particular when assembling the complete device in housing with small receiving opening, as shown below with the second Embodiment will be explained in more detail in Fig. 4.

Die elektrischen Verbindungen 9 der elektronischen Schaltungsplatine 4, in diesem Ausführungsbeispiel zwei Kontakte zur Energieversorgung und zwei Kontakte zur Datenübertragung, werden durch eine (nicht dargestellte) Durchführung durch den Sockel 1 und den Elektromotor 2 an hochwertige Schleifkontakte 24 am rotierenden Kupplungsstück 3 zugeführt. Die Schleifkontakte 24 verlaufen auf dem gesamten Umfang des Kupplungsstückes 3 und sind beispielsweise und bevorzugt aus Gold.The electrical connections 9 of the electronic circuit board 4, in this embodiment two contacts Power supply and two contacts for data transmission by an implementation (not shown) by the Base 1 and the electric motor 2 to high-quality sliding contacts 24 fed to the rotating coupling piece 3. The sliding contacts 24 run on the entire circumference of the coupling piece 3 and are for example and preferably made of gold.

Die beiden Kontakte zur Energieversorgung sind über ein Versorgungskabel 10 mit dem Netz verbunden, welches auch dem Elektromotor 2 die nötige Energie zuführt. Die beiden Kontakte zur Datenübertragung sind mit einer PC-Schnittstelle 11 im Sockel 1 der Vorrichtung verbunden. An diese PC-Schnittstelle 11 ist ein Rechner 12 mit Terminal anschließbar, der gleichzeitig mit mehreren Anzeigevorrichtungen der beschriebenen Art vernetzt sein kann.The two contacts for power supply are via a supply cable 10 connected to the network, which is also the electric motor 2 supplies the necessary energy. The two contacts to Data transmission is with a PC interface 11 in the base 1 connected to the device. At this PC interface 11 is a computer 12 with a terminal that can be connected at the same time networked several display devices of the type described can be.

Zusätzlich zur Ansteuerung der Vorrichtung über einen Rechner 12 kann die oben beschriebene Vorrichtung alternativ auch über eine Fernbedienung 13 angesteuert werden. Hierzu befindet sich ortsfest auf dem Block des Elektromotors 2 ein Infrarot-Sensor 14, dessen Anschlüsse der Einfachheit halber auf die PC-Kontakte zur Datenübertragung gelegt sind. Der Infrarot-Sensor 14 kann nun sowohl ortfest am ruhenden Sockel oder Fuß 1 oder einem Teil des Sockels 1 als auch sich mitbewegend an einem drehenden Teil, wie beispielsweise am Träger 5 oder der Schaltungsplatine 4 montiert sein. Bei Anbringung des Infrarot-Sensors 14 an einem drehenden Teil wird der Vorteil erzielt, daß aus allen Richtungen mit der Fernbedienung Daten auf die sogenannte Kugelanzeige übertragen werden können.In addition to controlling the device via a computer 12 can alternatively also use the device described above a remote control 13 can be controlled. For this is located stationary on the block of the electric motor 2, an infrared sensor 14, whose connections for simplicity to the PC contacts are laid for data transmission. The infrared sensor 14 can now be either fixed on the resting base or foot 1 or one Part of the base 1 as well as moving on a rotating Part, such as on the carrier 5 or the circuit board 4 be mounted. When attaching the infrared sensor 14 on a rotating part, the advantage is achieved that from all directions with the remote control data on the so-called Bullet display can be transmitted.

Der Frequenzbereich der Datenübertragung mit Fernbedienung 13 ist im Prinzip nicht auf den Infrarotbereich beschränkt, bietet sich aber durch den Gebrauch bei handelsüblichen Fernbedienungen an.The frequency range of data transmission with remote control 13 is in principle not limited to the infrared range but through the use of commercially available remote controls on.

Da die Fernbedienung 13 im Gegensatz zum Rechner 12 in der Regel keinen Bildschirm oder andere Anzeigeelemente besitzt, um die eingegebenen Daten zu überprüfen, fungiert im Falle der Datenübertragung mit Fernbedienung 13 die Anzeigevorrichtung mit ihren LED's 6 selbst als Display zur Kontrolle der Dateneingabe.Since the remote control 13 in contrast to the computer 12 usually does not have a screen or other display elements To check the data entered works in the case of Data transmission with remote control 13 the display device with its LED's 6 itself as a display for checking data entry.

Die Anzeigevorrichtung enthält ferner eine Meßeinrichtung 15 zur exakten Messung der Drehgeschwindigkeit der LED-Anordnung 6 um die Drehachse 21. Die Meßeinrichtung 15, die in Fig. 1 zusätzlich vergrößert herausgezeichnet ist, besteht aus einem optoelektronischen Sensor 16 und einem Reflektor 17. Der aus Sender und Empfänger aufgebaute Photosensor 16 ist an der Unterseite der rotierenden Schaltungsplatine 4 angebracht. Der Reflektor 17 ist im gleichen Abstand von der Drehachse 21 dem Photosensor 16 gegenüberliegend, zum Beispiel auf dem Motorblock 2, ortsfest befestigt.The display device further includes a measuring device 15 for exact measurement of the rotation speed of the LED arrangement 6 about the axis of rotation 21. The measuring device 15, which is shown in FIG drawn out enlarged, consists of a optoelectronic sensor 16 and a reflector 17. The off Photosensor 16 constructed transmitter and receiver is on the bottom the rotating circuit board 4 attached. The Reflector 17 is at the same distance from the axis of rotation 21 Photosensor 16 opposite, for example on the engine block 2, fixed fixed.

Alternativ dazu ist entsprechend Figur 2 statt der Reflexion ein aktiver Sender in Form einer ortsfesten Sendediode 22 vorgesehen, während der Empfänger 23 im Abstand gegenüberliegend auf dem rotierenden Träger 5 bzw. auf der Unterseite der rotierenden Schaltungsplatine 4 angebracht ist.Alternatively to this is according to Figure 2 instead of reflection an active transmitter in the form of a stationary transmitter diode 22 is provided, while the receiver 23 spaced opposite on the rotating carrier 5 or on the underside of the rotating Circuit board 4 is attached.

Die Position des Reflektors 17 markiert beispielsweise den Nulldurchgang der Drehung. Der Sender des Photosensors 16 strahlt kontinuierlich oder zumindest mit sehr rascher Pulsfolge, die eine wesentlich höhere Frequenz als die Drehung der LED-Anordnung 6 haben sollte, einen nach unten gerichteten Lichtstrahl 18a ab. Immer wenn sich Reflektor 17 und Photosensor 16 gegenüberstehen, d.h. einmal pro Drehung der Anordnung, wird der Lichtstrahl 18a vom Reflektor 17 zurückgeworfen, und der reflektierte Lichtstrahl 18b wird vom Empfänger des Photosensors 16 aufgenommen.The position of the reflector 17 marks, for example Zero crossing of the rotation. The transmitter of the photosensor 16 emits continuously or at least with a very rapid pulse sequence, which is a much higher frequency than the rotation of the LED array 6 should have one facing down Beam of light 18a. Whenever there is a reflector 17 and photosensor 16 face, i.e. once per rotation of the assembly, the light beam 18a is reflected by the reflector 17, and the reflected light beam 18b is from the receiver of the photosensor 16 added.

In äquivalenter Weise arbeiten der aktive Sender 22 und der Empfänger 23 zusammen.The active transmitter 22 and the operate in an equivalent manner Receiver 23 together.

Aus den bei jeder Drehung erfassten Signalen kann mittels geeigneter Software die Drehgeschwindigkeit der Schaltungsplatine 4 und damit der LED-Anordnung 6 um die Symmetrieachse 21 der Anordnung ermittelt werden. Da eine genau geregelte Darstellungsgeschwindigkeit für eine klar lesbare, flackerfrei erzeugte Zeichen-und/oder Bildfolge unerläßlich ist, kann im Bedarfsfalle die Darstellungsfrequenz entsprechend korrigiert werden. An Stelle der Korrektur der Darstellungsfrequenz auf einen Sollwert ist es bei nicht allzu großen Schwankungen der Drehgeschwindigkeit des Elektromotors 2 ebenso denkbar, die Ansteuerung der LED's 6 dem jeweiligen Istwert der Drehgeschwindigkeit anzupassen. Entscheidend ist eine exakte Synchronisation von Drehgeschwindigkeit und Ansteuerung der LED's 6.From the signals recorded during each rotation, suitable signals can be used Software the speed of rotation of the circuit board 4 and thus the LED arrangement 6 around the axis of symmetry 21 of the Order can be determined. Because a precisely regulated display speed for a clearly legible, flicker-free generated Character and / or image sequence is essential, if necessary the display frequency corrected accordingly become. Instead of correcting the display frequency it is a setpoint if the fluctuations are not too great Rotational speed of the electric motor 2 is also conceivable Control of the LEDs 6 the actual value of the speed of rotation adapt. Exact synchronization is crucial of rotation speed and control of the LEDs 6.

Die Anordnung des Photosensors 16 und des Reflektors 17 ist nicht auf die oben beschriebene Art beschränkt, es muß nur gewährleistet sein, daß eine Komponente der Meßeinrichtung 15 an einem mit der LED-Anordnung 6 rotierenden Bauteil und die andere Komponente ortsfest angebracht ist. Ferner sollte die Meßeinrichtung 15 so angeordnet sein, daß möglichst wenig störende Einflüsse von außen die Messung der Drehgeschwindigkeit beeinflussen können. Hierzu wird zweckmäßigerweise der Abstand zwischen Photosensor 16 und Reflektor 17 möglichst klein gewählt.The arrangement of the photosensor 16 and the reflector 17 is not limited to the type described above, it just has to be guaranteed be that a component of the measuring device 15 one component rotating with the LED arrangement 6 and the other Component is attached stationary. Furthermore, the measuring device 15 be arranged so that as little distracting as possible External influences influence the measurement of the rotational speed can. For this purpose, the distance between Photosensor 16 and reflector 17 chosen as small as possible.

Um eine exakte Messung der Drehgeschwindigkeit und damit eine optimale Synchronisation auch bei störenden äußeren Einflüssen zu gewährleisten, ist die Anzeige-Vorrichtung mit einer Software ausgerüstet, die es ermöglicht, solche Störeffekte bei der Messung der Drehgeschwindigkeit herauszufiltern.For an exact measurement of the speed of rotation and therefore one optimal synchronization even with disturbing external influences To ensure the display device is software equipped, which enables such interfering effects at the Filter out the measurement of the rotational speed.

Bei Einfall eines reflektierenden oder aktiven Lichtstrahles 18b werden vom Empfänger des Photosensors 16 bzw. vom Empfänger 23 aufeinander folgende Strompulse innerhalb einer Zeitdauer erzeugt. Der Anstieg des Stromes von einem Wert Null auf einen Wert Eins geschieht nun im allgemeinen nicht sprunghaft, sondern während einer bestimmten Zeitdauer. Am Ende eines Strompulses erfolgt dann innerhalb einer weiteren Zeitdauer der Abfall des Stromes vom Wert Eins wieder zurück auf den Wert Null. Im Idealfall sind sowohl die Pulsdauern als auch die Anstiegs- und Abstiegszeiten zweier aufeinander folgender Pulse gleich.When a reflective or active light beam is incident 18b are from the receiver of the photosensor 16 or from the receiver 23 successive current pulses within a period of time generated. The increase in current from zero to one Value one now generally does not happen by leaps and bounds, but rather for a certain period of time. At the end of a current pulse the waste then takes place within a further period of time of the current from the value one back to the value zero. Ideally, both the pulse duration and the rise and descent times of two successive pulses are the same.

Aus dem zeitlichen Abstand T zweier aufeinander folgender Strompulse läßt sich die Frequenz der Drehung aus f = 1/T berechnen. Dabei ist es prinzipiell gleichbedeutend, ob der zeitliche Abstand zwischen zwei Anfangspunkten des maximalen Stromwertes, zwischen zwei Anfangspunkten der ansteigenden Flanken oder zwischen beliebigen zwei anderen wohldefinierten Punkten gemessen wird.From the time interval T between two successive ones Current pulses can be used to calculate the frequency of the rotation from f = 1 / T. It is basically synonymous whether the temporal Distance between two starting points of the maximum current value, between two starting points of the rising flanks or between any two other well-defined points is measured.

Aufgrund störender äußerer Einflüsse, insbesondere Lichteinfall auf den Reflektor 17 oder direkt auf den Empfänger des Photosensors 16 bzw. den Empfänger 23, kann das empfangene Signal und somit der erzeugte Strompuls vom üblichen Verlauf abweichen. Wenn nun beispielsweise die ansteigende Flanke des zweiten Strompulses gestört ist, dann sind die zeitlichen Abstände von zwei aufeinander folgenden Strompulsen verändert, obwohl die Drehgeschwindigkeit der Anordnung konstant blieb. Die oben beschriebene Synchronisation von Drehgeschwindigkeit und LED-Ansteuerung würde in diesem Fall sogar zu einer Verschlechterung der Bildqualität der Zeichen-und/oder Bildfolge führen.Due to disturbing external influences, especially the incidence of light on the reflector 17 or directly on the receiver of the photosensor 16 or the receiver 23, the received signal and thus the generated current pulse deviate from the usual course. For example, if the rising edge of the second Current pulse is disturbed, then the time intervals changed by two successive current pulses, though the rotational speed of the arrangement remained constant. The above described synchronization of rotation speed and LED control would even worsen in this case the image quality of the character and / or image sequence.

Durch eine geeignete Software der Anzeigevorrichtung werden die vom Empfänger des Photosensors 16 bzw. vom Empfänger 23 erzeugten Strompulse in Rechtecksignale umgewandelt, die idealerweise keine ansteigenden und abfallenden Flanken aufweisen. Diese Pulsform filtert äußere Störungen der Empfangssignale aus, so daß immer eine exakte Messung der Drehgeschwindigkeit über f = 1/T erfolgt, wobei T für den zeitlichen Abstand zweier aufeinander folgender Pulse steht.Suitable software for the display device is used generated by the receiver of the photosensor 16 or by the receiver 23 Current pulses converted into square wave signals, ideally have no rising and falling edges. This Pulse shape filters out external interference in the received signals, see above that always an exact measurement of the rotational speed over f = 1 / T takes place, where T is the time interval between two following pulse stands.

Mit der verwendeten Software können störende äußere Einflüsse beliebiger Art herausgefiltert werden, sofern sie nicht zu stark sind, also eine übliche Pulsfolge beispielsweise gar nicht mehr erkennen lassen.With the software used, disruptive external influences of any kind are filtered out, provided they are not too are strong, i.e. a common pulse sequence for example no longer show.

Darüberhinaus erlaubt es diese Software auch, bei einer ansonsten regelmäßigen Pulsfolge eventuell einmalig ausfallende Pulse zu übergehen. Es wird also so getan, als ob auch der ausgefallene Puls vorhanden wäre, so daß weiterhin eine konstante Drehgeschwindigkeit gemessen wird.In addition, this software also allows, with an otherwise regular pulse sequence, possibly one-off pulses to pass over. So it is pretended that the fancy too Pulse would be present, so that a constant Rotational speed is measured.

Die gesamte, oben beschriebene Anordung mit den Bauteilen 2-9, 14-17 und 20 wird üblicherweise in einem geschlossenen Gehäuse 19 montiert. Das Gehäuse 19 ist im wesentlichen ein kugeliges, zylindrisch oder sonstwie rotationssymmetrisch geformtes Gehäuse. Der Kugelkörper 19 besteht aus einem lichtdurchlässigen oder durchsichtigen Material, beispielsweise Acrylglas, Kunststoff, Glas oder dergleichen. Der bevorzugt eingesetzte Kugelkörper 19 besitzt einen Durchmesser von etwa 30 cm und weist eine demgegenüber kleinere Aufnahmeöffnung 25 auf, durch welche die oben beschriebene Anordnung in den Kugelkörper 19 eingeführt wird.The entire arrangement described above with components 2-9, 14-17 and 20 is usually packaged 19 mounted. The housing 19 is essentially a spherical, cylindrical or other rotationally symmetrical housing. The spherical body 19 consists of a translucent or transparent material, e.g. acrylic glass, plastic, Glass or the like. The preferred ball body 19 has a diameter of about 30 cm and has on the other hand a smaller receiving opening 25 through which the arrangement described above introduced into the spherical body 19 becomes.

Die Schaltungsplatine 4 kann prinzipiell auch außerhalb des Gehäuses 19 angebracht sein. In diesem Fall werden die elektrischen Ansteuerungen über die elektrischen Verbindungen 9 direkt den LED's zugeführt. Die Anordnung der Schaltungsplatine 4 innerhalb des Gehäuses 19 ist eine bevorzugte Bauweise, weil alle Elemente komplett im Gehäuse 19 sind und die LED-Anzeigevorrichtung damit eine in sich autonome Baueinheit ist. Darüberhinaus bietet das Gehäuse 19 einen Schutz für die Schaltungsplatine 4 vor Schmutz und schädlichen Umwelteinflüssen.The circuit board 4 can in principle also outside of Housing 19 may be attached. In this case, the electrical Controls via the electrical connections 9 fed directly to the LEDs. The arrangement of the circuit board 4 within the housing 19 is a preferred design because all elements are complete in the housing 19 and the LED display device so that it is an autonomous unit. Furthermore the housing 19 provides protection for the circuit board 4 against dirt and harmful environmental influences.

In Fig. 3 ist ein zweites Ausführungsbeispiel der erfindungsgemäßen Anzeigevorrichtung gezeigt. Gleiche Elemente sind dabei mit den gleichen Bezugszeichen wie beim ersten Ausführungsbeispiel der Fig. 1 und 2 versehen.In Fig. 3 is a second embodiment of the invention Display device shown. The same elements are included with the same reference numerals as in the first embodiment 1 and 2 provided.

Das zweite Ausführungsbeispiel gemäß Fig. 3 unterscheidet sich von dem oben beschriebenen ersten Ausführungsbeispiel vor allem in der Art der Anbringung von Schaltungsplatine 4 und Ausgleichselement 7, 8 und der Anordnung der elektrischen Verbindungen.The second exemplary embodiment according to FIG. 3 differs above all from the first embodiment described above in the way of attaching circuit board 4 and compensating element 7, 8 and the arrangement of the electrical connections.

Auf der Antriebswelle 20 des Elektromotors 2 sind zwei Befestigungselemente 3a und 3b angebracht, die das Kupplungsstück 3 des ersten Ausführungsbeispieles von Fig. 1 ersetzen. An dem ersten Befestigungselement 3a ist der Federstahlstab 7 des Ausgleichselementes montiert, während an dem zweiten Befestigungselement 3b die Schaltungsplatine 4 mit der Steuerung der Vorrichtung vorgesehen ist. Das Ausgleichselement 7, 8 ist im Prinzip wie das oben beschriebene Ausgleichselement 7, 8 von Fig. 1 aufgebaut und wird an dieser Stelle deshalb nicht nochmals näher beschrieben. On the drive shaft 20 of the electric motor 2 there are two fastening elements 3a and 3b attached, which the coupling piece 3 replace the first embodiment of FIG. 1. To the first fastening element 3a is the spring steel rod 7 of the Compensating element mounted while on the second fastener 3b the circuit board 4 with the control of the Device is provided. The compensating element 7, 8 is in Principle like the compensating element 7, 8 described above Fig. 1 is built and is therefore not repeated at this point described in more detail.

An dem dem Befestigungselement 3b entgegengesetzten Ende der Schaltungsplatine 4 ist analog dem ersten Ausführungsbeispiel der Träger 5 für die LED's 6 befestigt.At the opposite end of the fastener 3b Circuit board 4 is analogous to the first embodiment the carrier 5 for the LEDs 6 attached.

Die elektrischen Verbindungen 9 der Schaltungsplatine 4 werden durch eine Durchführung 26 durch den Sockel 1, den Elektromotor 2 und die Antriebswelle 20 an hochwertige Schleifkontakte 27 zugeführt, die beispielsweise und bevorzugt aus Gold sind. Die Durchführung 26 ist fest mit dem Sockel 1 verbunden und nicht drehbar. Die Schleifkontakte 27 sind am oberen rundstabförmigen Ende der Durchführung 26 am gesamten Umfang angebracht. Die Stromabnahme erfolgt über ebenfalls hochwertige Schleifkontakte 28 aus Gold am Befestigungselement 3b der Schaltungsplatine 4.The electrical connections 9 of the circuit board 4 are through a bushing 26 through the base 1, the electric motor 2 and the drive shaft 20 to high-quality sliding contacts 27 supplied, which are for example and preferably made of gold. The Implementation 26 is firmly connected to the base 1 and not rotatable. The sliding contacts 27 are round rod-shaped at the top End of implementation 26 attached to the entire circumference. The Power is drawn via high-quality sliding contacts 28 made of gold on the fastening element 3b of the circuit board 4.

Aufgrund des speziellen erfindungsgemäßen Aufbaus der Vorrichtung muß die Aufnahmeöffnung 25 des Kugelkörpers 19 lediglich so groß wie der Sockel 1 bzw. der Durchmesser des Elektromotors 2 sein.Because of the special construction of the device according to the invention the receiving opening 25 of the spherical body 19 only has to as large as the base 1 or the diameter of the electric motor Be 2.

Die Montage der Vorrichtung in den Kugelkörper 19 wird nachstehend anhand der Figuren 4a bis 4h erläutert. Wichtig und von großem Vorteil ist es, daß die Elemente eine im wesentlichen vormontierte Baugruppe sind, die in ihrer Gesamtheit nun technisch einfach in die Kugel eingeführt wird. In Fig. 4 ist beispielhaft das zweite Ausführungsbeispiel der Erfindung gemäß Fig. 3 dargestellt, die Montage des anhand der Fig. 1 und 2 beschriebenen ersten Ausführungsbeispieles erfolgt selbstverständlich analog.The assembly of the device in the spherical body 19 is shown below explained with reference to Figures 4a to 4h. Important and from It is a great advantage that the elements are essentially one are preassembled modules that are now technical in their entirety is simply inserted into the ball. 4 is exemplary the second embodiment of the invention according to 3, the assembly of the on the basis of FIGS. 1 and 2 described first embodiment is of course done analogous.

Fig. 4a zeigt die beiden Grundelemente Kugelkörper 19 mit Aufnahmeöffnung 25 und komplett vormontierte Baugruppe aus Elektromotor 2, Schaltungsplatine 4, Träger 5 mit LED's 6 und Ausgleichselement 7, 8. Die fertig montierte und im Betriebszustand befindliche Kugelanzeige zeigt Fig. 4h, wobei hier der Pfeil 29 die Drehrichtung der Antriebswelle 20 und mit ihr die Drehrichtung des LED-Trägers 5 offenbart. 4a shows the two basic elements spherical body 19 with a receiving opening 25 and completely pre-assembled assembly from electric motor 2, circuit board 4, carrier 5 with LEDs 6 and Compensation element 7, 8. The fully assembled and in the operating state located ball indicator shows Fig. 4h, here the Arrow 29 the direction of rotation of the drive shaft 20 and with it the Direction of rotation of the LED carrier 5 disclosed.

Im ersten Montageschritt gemäß Fig. 4b wird der Träger 5 mit den LED's 6 schräg durch die Aufnahmeöffnung 25 des Kugelkörpers 19 geführt. Der Kugelkörper 19 wird gemäß Fig. 4c etwas gedreht, so daß die Aufnahmeöffnung 25 waagerechter ausgerichtet ist. In dieser Position wird der Träger 5 vollständig in den Kugelkörper 19 gebracht und die nachfolgende Schaltungsplatine 4 soweit in die Aufnahmeöffnung 25 geführt, bis ihr Kragen seitlich an den Elektromotor 2 stößt bzw. nur noch einen geringen Seitenabstand zum Elektromotor 2 hat. Nun wird der Kugelkörper 19, wie dies die Fig. 4d bis 4g zeigen, durch fortlaufende Drehung seiner Aufnahmeöffnung 25 über die gesamte stehende Baugruppe gekippt.In the first assembly step according to FIG. 4b, the carrier 5 is attached the LEDs 6 obliquely through the receiving opening 25 of the spherical body 19 out. The spherical body 19 becomes something according to FIG. 4c rotated so that the receiving opening 25 is aligned horizontally is. In this position, the carrier 5 is completely in brought the spherical body 19 and the subsequent circuit board 4 so far into the receiving opening 25 until you Collar hits the side of the electric motor 2 or only one has a small side distance to the electric motor 2. Now the Ball body 19, as shown in FIGS. 4d to 4g, by continuous rotation of its receiving opening 25 over the entire standing assembly tilted.

Da der Federstahlstab 7 bzw. das vorstehend gleichwertig geschilderte Stabelement mit seinem durch das Gewicht 8 beschwerten Endstück ständig nach unten durchhängt und zusätzlich noch weiter bis zur Anlage an den Elektromotor 2 elastisch eingebogen werden kann, reicht der relativ kleine Durchmesser der Aufnahmeöffnung 25 aus, um über die gesamte Baugruppe gestülpt zu werden. Nach völlig übergestülptem Kugelkörper 19 gemäß Fig. 4g richtet sich der Federstahlstab 7 wieder etwas auf bzw. klappt wieder hoch und rastet ein.Since the spring steel rod 7 or the one described above is equivalent Bar element with its weighted down by 8 End piece sags constantly and additionally continue to elastically bent into contact with the electric motor 2 can be, the relatively small diameter of the Receiving opening 25 from slipped over the entire assembly to become. After completely overturned spherical body 19 according to FIG. 4g, the spring steel rod 7 straightens up again or folds up again and engages.

Fig. 4g zeigt die fertig montierte Kugelanzeige im Ruhezustand. Beim Betrieb der LED-Anzeigevorrichtung dreht der Elektromotor 2 die Antriebswelle 20, die über das Kupplungsstück 3 bzw. die Befestigungselemente 3a und 3b mit der Schaltungsplatine 4, dem LED-Träger 5 und dem Federstahlstab 7 drehfest verbunden ist. Der Träger 5 beginnt in dem Kugelkörper 19 zu rotieren. Aufgrund der zunehmenden Zentrifugalkraft richtet sich der Federstahlstab 7 bzw. das äquivalente Stabelement in dem Kugelkörper 19 bis zur waagerechten Position aus und bildet im Betriebszustand eine Stabilisierung und einen Gleichgewichtsausgleich der Vorrichtung. Das am Ende des Federstahlstabes 7 angebrachte Gewicht 8 kompensiert das Gewicht der eingesetzten LED-Anordnung 5, 6. Die gesamte LED-Kugelanzeige erreicht dadurch einen sicheren Stand, ohne daß es besonderer, zusätzlicher Befestigungen bedarf.Fig. 4g shows the fully assembled ball display in the idle state. When the LED display device is operating, the electric motor rotates 2, the drive shaft 20, which via the coupling piece 3 or Fasteners 3a and 3b with the circuit board 4, the LED carrier 5 and the spring steel rod 7 is rotatably connected. The carrier 5 begins to rotate in the spherical body 19. Because of The spring steel rod is aligned with the increasing centrifugal force 7 or the equivalent rod element in the spherical body 19 to the horizontal position and forms in the operating state stabilization and equilibrium the device. That attached to the end of the spring steel rod 7 Weight 8 compensates for the weight of the LED arrangement used 5, 6. The entire LED ball display thus reaches one secure stand without special, additional fastenings requirement.

Wie bereits vorstehend ausgeführt wurde, ist die Meßeinrichtung 15 als optoelektronische Meßeinrichtung ausgebildet. Statt der optoelektonischen Meßeinrichtung kann aber auch eine mit einem Hall-Generator ausgebildete Meßeinrichtung vorgesehen sein, die aus einem Hall-Sensor als Empfänger und einem Permanentmagneten als Sender besteht. Diese Bauteile stehen sich im geringen Abstand auf dem ortsfesten bzw. rotierenden Bauteil der Vorrichtung gegenüber.As already stated above, the measuring device 15 designed as an optoelectronic measuring device. Instead of the optoelectronic measuring device can also be one with a Hall generator trained measuring device may be provided from a Hall sensor as a receiver and a permanent magnet exists as a transmitter. These components are close together on the stationary or rotating component of the device across from.

Der Hall-Sensor darf nicht durch das elektrische Streufeld des Elektromotors 2 gestört werden. Deshalb wird man einen entsprechend unempfindlichen Hall-Sensor einsetzen oder/und den Hall-Sensor so positionieren oder drehen, daß er aus dem elektrischen Streufeld des Elektromotors 2 kommt. The Hall sensor must not pass through the stray electrical field of the Electric motor 2 are disturbed. That's why you become one accordingly use insensitive Hall sensor or / and the Position or turn the Hall sensor so that it comes out of the electrical Stray field of the electric motor 2 comes.

BezugszeichenlisteReference list

11
Sockel, StandfußBase, pedestal
22nd
ElektromotorElectric motor
33rd
KupplungsstückCoupling piece
3ab3ab
BefestigungselementeFasteners
44th
SchaltungsplatineCircuit board
55
(LED-) Träger(LED) carrier
66
LED'sLEDs
77
Federstahl-StabSpring steel rod
88th
GewichtWeight
99
elektrische Verbindungenelectrical connections
1010th
(Netz-) Versorgungskabel(Power) supply cable
1111
PC-SchnittstellePC interface
1212th
Rechnercomputer
1313
Fernbedienungremote control
1414
Infrarot-SensorInfrared sensor
1515
MeßeinrichtungMeasuring device
1616
optoelektronischer Sensoroptoelectronic sensor
16a16a
SenderChannel
16b16b
Empfängerreceiver
1717th
Reflektorreflector
18a18a
abgestrahlter Lichtstrahlradiated light beam
18b18b
reflektierter Lichtstrahlreflected light beam
1919th
Gehäuse / KugelkörperHousing / spherical body
2020th
Antriebswelledrive shaft
2121
SymmetrieachseAxis of symmetry
2222
sendediodetransmitter diode
2323
Empfängerreceiver
2424th
SchleifkontakteSliding contacts
2525th
Aufnahmeöffnung Receiving opening
2626
Durchführungexecution
2727
SchleifkontakteSliding contacts
2828
SchleifkontakteSliding contacts
2929
Pfeil (Drehrichtung)Arrow (direction of rotation)

Claims (31)

  1. A device for displaying alphanumeric symbols and/or graphic symbols comprising a rotationally symmetrical housing (19) of a translucent and/or transparent material and having an axis of symmetry (21); an electric motor (2) placed within said housing (19) and comprising a drive shaft (20); a support (5) corotatingly connected to said drive shaft (20) and rotating about said axis of symmetry and provided with at least one row of light emitting diodes or light emitting diode groups (6) which are oriented substantially perpendicularly to said axis of symmetry (21); and a circuit board (4) comprising an actuating circuit for said light emitting diodes or said light emitting diode groups (6),
    characterised in that
    the rotating speed of said support (5) is detected by an electronic detection means (15) being constituted of a transmitting means and a receiving means,
    said transmitting means and said receiving means are arranged in opposite relationship one at a rotating element of said device and the other at a stationary element of said device and with a small distance therebetween, and
    the signal detected by said receiving means is convertable into a pure square wave signal being free of disturbing environmental influences by means of software so that a synchronisation of actuating said light emitting diodes (6) with the exactly or nearly exactly detected rotating speed of said support (5) is performed, wherein a mechanical compensating element (7, 8) is provided in opposite relationship to said support with reference to said axis of symmetry (21).
  2. A device according to claim 1 characterised in that said compensating element (7, 8) is a bar (7) of any cross section having a reducible operational length and raising to a substantially horizontal position in the operating condition.
  3. A device for displaying alphanumeric symbols and/or graphic symbols comprising a rotationally symmetrical housing (19) of a translucent and/or transparent material and having an axis of symmetry (21); an electric motor (2) placed within said housing (19) and comprising a drive shaft (20); a support (5) corotatingly connected to said drive shaft (20) and rotating about said axis of symmetry and provided with at least one row of light emitting diodes or light emitting diode groups (6) which are oriented substantially perpendicularly to said axis of symmetry (21); and a circuit board (4) comprising an actuating circuit for said light emitting diodes or said light emitting diode groups (6),
    characterised in that
    a mechanical compensating element (7, 8) is provided in opposite relationship to said support (5) with reference to said axis of symmetry (21), and said compensating element (7, 8) is a bar (7) of any cross section having a reducible operational length and raising to a substantially horizontal position in the operating condition.
  4. A device according to claim 3 characterised in that an electronic detection means (15) being constituted of a transmitting means and a receiving means is provided for detecting the rotating speed of said support (5) for synchronisation of actuating said light emitting diodes (6) with said rotating speed of said support (5), wherein said transmitting means and said receiving means are arranged in opposite relationship one at a rotating element of said device and the other at a stationary element of said device and with a small distance therebetween, wherein the signal detected by said receiving means is convertable into a pure square wave signal being free of disturbing environmental influences by means of software so that the synchronisation of actuating said light emitting diodes with the exactly or nearly exactly detected rotating speed of said support (5) is performed.
  5. A device according to any one of claims 1 to 4 characterised in that said detection means (15) is an optoelectronic detection means.
  6. A device according to any one of claims 1 to 4 characterised in that said detection means (15) as a Hall generator is provided with a Hall sensor constituting said receiving means coacting with a permanent magnet constituting said transmitting means, wherein said Hall generator and said permanent magnet are arranged in opposite relationship one at a rotating element of said device and the other at a stationary element of said device and with a small distance therebetween.
  7. A device according to claim 5 characterised in that said optoelectronic detection means (15) is constituted of an optoelectronic transmitter and receiver constituting a photo sensor (16) and a reflecting means (17), wherein said photo sensor (16) and said reflecting means (17) are arranged in opposite relationship one at a rotating element of said device and the other at a stationary element of said device and with a small distance therebetween.
  8. A device according to any one of the preceding claims characterised in that said transmitting means (22) and said receiving means (23) or said photo sensor (16) and said reflecting means (17) or said Hall sensor and said permanent magnet, respectively, are arranged in opposite relationship one at a motor side driving element and the other at a support side driven element and with a small distance therebetween.
  9. A device according to any one of the preceding claims characterised in that said transmitting means is a transmitter diode (22).
  10. A device according to any one of the preceding claims characterised in that said circuit board (4) is corotatingly connected to a coupling portion (3, 3b) or to a drive output side of a coupling portion (3, 3b).
  11. A device according to claim 10 characterised in that said coupling portion (3, 3b) is provided with high-quality sliding contacts (24, 28) for electrical connection (9) of said circuit board (4) to power supply and data communication.
  12. A device according to any one of the preceding claims characterised in that a leadthrough (26) is fixed to a stand (1) of the driving unit serving for receiving of electrical wirings (9) through said electric motor (2) and said drive shaft (20).
  13. A device according to claim 12 characterised in that said leadthrough (26) is provided at its upper round rod shaped end and along its whole periphery with sliding contacts (24) being in electrical contact with said electrical wirings (9).
  14. A device according to claim 11 or 13 characterised in that at least the effective surface of said sliding contacts (24, 28) is made of gold or copper graphite.
  15. A device according to any one of the preceding claims characterised in that said software is adapted to recognise and omit single failing signals out of an otherwise regular pulse train of signals as being failure signals.
  16. A device according to any one of the preceding claims characterised in that for inputting alphanumeric symbols and/or graphic symbols there is provided at least one interface (11, 14) between an input medium and said device.
  17. A device according to claim 16 characterised in that one interface is a computer interface (11) for connecting a computer (12) comprising optionally a terminal and a keyboard or a mouse.
  18. A device according to claim 16 or 17 characterised in that one interface is an infrared sensor (14) for receiving infrared signals from a remote control device (13).
  19. A device according to claim 18 characterised in that said device serves as control display for alphanumeric symbols and/or graphic symbols input by said remote control device (13).
  20. A device according to claim 18 characterised in that said infrared sensor (14) is installed stationary within said housing (19).
  21. A device according to claim 18 characterised in that said infrared sensor (14) is installed on one of said rotating elements (5, 4) of said device.
  22. A device according to any one of the preceding claims characterised in that said electric motor (2) is provided with an additional winding for generating a low voltage for the electrical componentries.
  23. A device according to any one of the preceding claims characterised in that said electric motor (2) is mounted on a base, stand, pedestal or something like that (1) supporting said essentially spherical, cylindrical or otherwise rotationally symmetrically shaped housing (19).
  24. A device according to any one of the preceding claims characterised in that the front surfaces of said light emitting diodes (6) are bevelled for achieving an improved greater reading angle.
  25. A device according to any one of the preceding claims characterised in that said coupling portion (3) serves for mechanical fixing by fitting said rotating elements (4, 5) on said drive shaft (20).
  26. A device according to any one of the preceding claims characterised in that said circuit board (4) serves as a mechanical holding means for said support (5) and said mechanical compensating element (7, 8) is fixed on an end portion of said circuit board extending over said drive shaft (20).
  27. A device according to any one of claims 2 to 26 characterised in that said bar (7) of said compensating element (7, 8) is a spring steel bar or a bar made of a material having comparable properties.
  28. A device according to any one of claims 2 to 26 characterised in that said bar (7) of said compensating element (7, 8) is a folding out or telescopic bar being lockable in the operating state.
  29. A device according to any one of claims 2 to 28 characterised in that a weight (8) of predeterminable extent is disposed at or near the free end of the bar (7) which is optionally displaceable and lockable in the longitudinal direction of said bar (7).
  30. A device according to any one of the preceding claims characterised in that the assembly of electric motor (2), drive shaft (20), circuit board (4), light emitting diode support (5) and compensating element (7, 8) constitutes a complete and operative preassemblable unit which is as a whole insertable into said housing (19) through a receiving opening (25).
  31. A device according to any one of claims 6 to 30 characterised in that said Hall sensor is insensitive to the electric leakage of said electric motor (2) due to its constitution and/or its positioning.
EP97928220A 1996-06-26 1997-06-17 Device for displaying alphanumeric characters and symbols Expired - Lifetime EP1004110B1 (en)

Applications Claiming Priority (5)

Application Number Priority Date Filing Date Title
DE29611155U DE29611155U1 (en) 1996-06-26 1996-06-26 Device for displaying alpha-numeric characters and pictorial characters
DE29611155U 1996-06-26
DE29621296U 1996-12-07
DE29621296U DE29621296U1 (en) 1996-12-07 1996-12-07 Device for displaying alpha-numeric characters and / or symbols
PCT/EP1997/003145 WO1997050070A1 (en) 1996-06-26 1997-06-17 Device for displaying alphanumeric characters and symbols

Publications (2)

Publication Number Publication Date
EP1004110A1 EP1004110A1 (en) 2000-05-31
EP1004110B1 true EP1004110B1 (en) 2001-08-01

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EP97928220A Expired - Lifetime EP1004110B1 (en) 1996-06-26 1997-06-17 Device for displaying alphanumeric characters and symbols

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EP (1) EP1004110B1 (en)
AT (1) ATE203846T1 (en)
AU (1) AU3259897A (en)
DE (1) DE59704216D1 (en)
ES (1) ES2162307T3 (en)
WO (1) WO1997050070A1 (en)

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WO2000074973A1 (en) 1999-06-08 2000-12-14 911 Emergency Products, Inc. Rotational led reflector
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US6816137B2 (en) 2001-02-15 2004-11-09 Newscanner, Plc Visual message display device
US6943762B2 (en) 2001-02-15 2005-09-13 Newscanner, Plc Visual message display device
GB0419071D0 (en) * 2004-08-26 2004-09-29 Mgx Internat Ltd Display device
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Also Published As

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EP1004110A1 (en) 2000-05-31
AU3259897A (en) 1998-01-14
ES2162307T3 (en) 2001-12-16
ATE203846T1 (en) 2001-08-15
DE59704216D1 (en) 2001-09-06
WO1997050070A1 (en) 1997-12-31

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