EP2469666B1 - Boîtier multimédia - Google Patents

Boîtier multimédia Download PDF

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Publication number
EP2469666B1
EP2469666B1 EP11009329.1A EP11009329A EP2469666B1 EP 2469666 B1 EP2469666 B1 EP 2469666B1 EP 11009329 A EP11009329 A EP 11009329A EP 2469666 B1 EP2469666 B1 EP 2469666B1
Authority
EP
European Patent Office
Prior art keywords
cable
switching
output
multimedia outlet
outlet according
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.)
Active
Application number
EP11009329.1A
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German (de)
English (en)
Other versions
EP2469666A2 (fr
EP2469666A3 (fr
Inventor
Benny Steinhilber
Ralf Häntsch
Josef Neureither
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.)
Kathrein SE
Original Assignee
Kathrein Werke KG
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Publication date
Application filed by Kathrein Werke KG filed Critical Kathrein Werke KG
Publication of EP2469666A2 publication Critical patent/EP2469666A2/fr
Publication of EP2469666A3 publication Critical patent/EP2469666A3/fr
Application granted granted Critical
Publication of EP2469666B1 publication Critical patent/EP2469666B1/fr
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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R24/00Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure
    • H01R24/38Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure having concentrically or coaxially arranged contacts
    • H01R24/40Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure having concentrically or coaxially arranged contacts specially adapted for high frequency
    • H01R24/52Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure having concentrically or coaxially arranged contacts specially adapted for high frequency mounted in or to a panel or structure
    • H01R24/525Outlets
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R24/00Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure
    • H01R24/38Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure having concentrically or coaxially arranged contacts
    • H01R24/40Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure having concentrically or coaxially arranged contacts specially adapted for high frequency
    • H01R24/42Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure having concentrically or coaxially arranged contacts specially adapted for high frequency comprising impedance matching means or electrical components, e.g. filters or switches
    • H01R24/46Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure having concentrically or coaxially arranged contacts specially adapted for high frequency comprising impedance matching means or electrical components, e.g. filters or switches comprising switches
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R31/00Coupling parts supported only by co-operation with counterpart
    • H01R31/005Intermediate parts for distributing signals

Definitions

  • the invention relates to a multimedia box according to the preamble of claim 1.
  • So-called antenna doses are well known. In most cases, they are used as flush-mounted boxes. They have a device for connecting an input cable, usually in the form of a coaxial cable. If several multimedia or antenna outlets are to be connected in series one behind the other, a device for connecting an output cable is also formed on the can. Then, the supplied signals can be supplied for example in the form of television or radio programs via the respective input cable (coaxial cable) of the multimedia box and forwarded via the output cable to a respective next multimedia box.
  • the respective signals can be coupled out if at the relevant multimedia box one or more subscriber terminals, for example, to receive television programs or to receive radio programs etc. are to be connected.
  • the coaxial interfaces in the form of coaxial couplings are usually equipped so that one interface has a male configuration and the other interface has a female configuration.
  • Multimedia doses usually include other interfaces and / or other types of interfaces, which need not necessarily be limited to coaxial interfaces for connecting coaxial cables.
  • sockets can be provided for connecting a telephone, modem, router or interfaces for connecting lightwave conductors (L-conductors). There are no restrictions in this respect.
  • a terminating resistor In an antenna signal home distribution network several antenna sockets are usually connected in series. In such a strand of an antenna signal Hausverteilozoes then a terminating resistor must be connected to the output of the last antenna box. For this purpose, specific terminating resistors are used, which can be connected and fixed, for example, in the cable bed for the output cable. Due to the wave resistance-compliant termination of the strand the highest possible return loss should be achieved.
  • the last one to be installed is a terminal box, which is provided with an integrated terminating resistor instead of the output cable connection device. Without such a termination resistor in the last can, reflections would otherwise occur in the line that would help to adversely affect the signal.
  • a generic multimedia box in the manner of an "antenna socket" is from the DE 81 25 222 U1 known. Shown is an antenna socket with two coaxial plug-in connections, where, for example, a coaxial cable for receiving a television and / or radio program can be plugged. Furthermore, this prior art antenna socket comprises a connection space for connecting two coaxial cables, which are held by means of a cable clamp. As a result, the coaxial cables to be connected are fixed on the cover plate.
  • a multimedia box is also for example from the DE 199 38 074 A1 known. It comprises at least one connection device for connecting an input cable and a connection device for connecting an output cable.
  • the socket is shielded and has a cable compartment and a circuit space, which are separated by a bottom plate.
  • a basically comparable junction box is also from the DE 198 29 653 A1 known.
  • the EP 0 447 660 A1 describes a connection device for data networks. This comprises a switching device which is connected to an unoccupied subscriber line device Connects a terminating resistor between an inner conductor and ground. If the subscriber line device is occupied, the connection between the inner conductor and ground is opened via the terminating resistor. This ensures a corresponding circuit in the immediate signal transmission path between the coaxial cable provided with a connector and the connection device.
  • the DE 101 07 100 A1 shows a plug-in device with integrated diagnostic and evaluation circuit, which also takes place with plugged cable, a switch for switching the cable with the diagnostic and evaluation circuit.
  • From the DE 90 00 935 U1 is a junction box with a Connection device for a data network as known to remove. It includes a functional plug with a cable and a functional socket, which are tuned to each other as a functional fineness. In this case, several function sockets may be provided as output terminals in an embodiment of this publication.
  • the object of the present invention is therefore to provide an improved multimedia socket in general and an antenna socket in particular.
  • the multimedia box according to the invention is characterized in that it comprises an integrated switching device.
  • This switching device is designed so that it is actuated by an inserted and connected output cable, i. is forced in particular forced. If no output cable is connected, the multimedia socket acts e.g. as a terminal box with effective terminating resistor. However, if an output cable is connected, in which in the relevant cable bed, for example, a coaxial cable Deaniques, fixed and electrically contacted, z.
  • an integrated switching device is forcibly operated, so that the multimedia box automatically becomes a through-can, which loop through the antenna signal.
  • This measure can be a single multimedia box be used either as a through-outlet or as a terminal box.
  • This construction ensures that the multimedia box according to the invention always acts as a terminal box in the delivery state. If an output cable is connected to the multimedia socket as mentioned above, the integrated switching device is actuated and the multimedia socket is switched to a through-socket. If a connected cable is again removed, the switching device is switched back to its initial position, so that the multimedia socket with respect to this cable connection again becomes a terminal box.
  • the invention can be realized particularly advantageously in that in the bottom, which separates the cable closing space of a circuit space in the multimedia box, an opening or bore 41a is inserted through which protrudes an actuating or triggering portion of the inventively provided actuator, to make the desired detection or wiring when the output cable is connected.
  • the solution according to the invention is particularly suitable for connecting coaxial cables. Because by the operated switch when installing or removing a coaxial cable can be provided in the multimedia socket terminating resistor of appropriate size, usually in the order of 75 Q, on or off, depending on whether the multimedia box as End or through box is used.
  • the solution according to the invention is equally suitable for connecting other cables, for example for connecting twisted pair cables, fiber optic cables, but also if the multimedia box z. B. has multiple outputs for connecting different cable types. In each case when a corresponding cable is connected to the respective output, the switching device provided according to the invention is forcibly actuated.
  • this switching device - especially for coaxial cables - a terminator can be switched on or off.
  • this switching device especially for coaxial cables - a terminator can also be detected automatically by the forced operation switch device, whether an output cable is connected or not.
  • an evaluation and / or triggering of a sequential circuit desired for this switching state can then be effected by means of an electronic circuit provided in the multimedia socket.
  • the invention has a number of advantages.
  • the invention when using coaxial cables, the invention has the significant advantage that in the case of a terminal box no terminator must be mounted separately by the fitter on site.
  • no terminator in the case of a terminal box no terminator must be mounted separately by the fitter on site.
  • installation errors in a home distribution network are avoided, which could occur when, for example, terminators or when a terminator is connected in one case with the other, and in the other case without capacitive isolation, in particular in satellite reception systems where a DC voltage is also supplied across the inner conductor .
  • Such faulty circuits could well have fatal consequences, especially in the case of satellite receiving systems, which would then flow over the terminator used without capacitive separation, an unacceptably high current.
  • FIG. 1a and 1b Based on FIG. 1a and 1b are first schematic embodiments a multimedia box according to the invention shown.
  • FIGS. 1a and 1b is dashed lines the housing 1 of the multimedia box indicated, which, for example, a first means 2 for connecting an input cable 4 and a second means 3 for connecting an output cable 6 has.
  • the one input connection device 2 for connecting an input cable 4 comprises an inner conductor contact device 2a and an outer conductor contact device 2b.
  • a corresponding output connection device 3 with an inner conductor and outer conductor contact device 3a, 3b is ultimately also provided for connecting an output cable 6, as described below with reference to FIG. 1b is explained in more detail.
  • the input and the output cable 4, 6 each consist of a coaxial cable, whose ends are deposited accordingly, so that the associated inner conductor 13 and the outer conductor 15 on the outer insulation 17 sufficiently far beyond and corresponding to the multimedia socket to the mentioned connection devices. 2 , 3 in the inner and outer conductor can be connected.
  • the multimedia box in the housing 1 comprises a transformer or directional coupler 19, which decouples a portion of the supplied by the input cable high-frequency power through the Auskoppeltier 19b.
  • FIG. 1a and 1b further show a switching device 25 associated with the output connection device 3, to which a terminating resistor 27 with or without a series-connected capacitor 29 is connected to terminate the transmission path.
  • the switching device 25 in this case has an actuating device 125, via which the switching device 25 can be switched between the open and closed positions, preferably against the force of a spring device 26th
  • the illustrated multimedia box acts as terminated by the terminating resistor 27 Enddose.
  • Termination resistor 27 This ensures that there is no faulty operation and in the case of a terminal box in the absence of output cable, the multimedia box always as an end box with effective Termination resistor 27 works.
  • the aforementioned integrated terminating resistor 27 can be optimally adjusted with respect to its size, taking into account the clamping and contacting mechanism, so that a very high return loss is achieved.
  • FIG. 2a and 2 B is a corresponding schematic representation reproduced, which differs from the embodiment according to FIG. 1a and 1b only differs in that no on / off switch is used as the switching device 25 (whose one switching contact is always connected to the primary transmission path 19a between input device 2 and output device 3), but a switch, depending on the switching position with either one switching contact 25a (with the connection of the terminating resistor 27) or in its other switching position is electrically connected to the switching contact 25b, in which the terminating resistor is ineffective and the box acts as a through-outlet. Then the RF signals coming from the input cable 4 are fed via the primary path 19a of the transformer / coupler 19 correspondingly into the output cable 6 for forwarding to a next multimedia socket.
  • the functionality is identical to FIG. 1a and 1b in which the terminating resistor 27 is preferably disconnected or connected with the additionally provided capacitor 29 (which is important in the case of satellite receiving systems in which DC components are also transmitted via the inner conductors).
  • the multimedia box comprises a cable connection space 31, namely with two cable beds 33 provided with transverse ribs 32, once for connecting a coaxial input or coaxial output cable 4, 6, wherein in the area of the transverse ribs 32 the corresponding remote and exposed End region of the outer conductor 15 of a coaxial cable 4, 6 rests and thereby contacted with the electrically conductive housing 1, whereas the front side protruding inner conductor 11 protrudes into the inner conductor connection region 34 and there by a screw-operated clamping tongue 35 is known to be mechanically clamped and electrically contacted.
  • the structure is designed accordingly for the input and the output cable.
  • the inner conductor connection region 34 corresponds to the input as well as the output cable of the inner conductor contact device 2 a or 3 a
  • the so-called cable bed 33 corresponds to the one on the hand FIGS. 1a to 1b described outer conductor contact means 2b and 3b corresponds (see FIGS. 1a to 2b ).
  • the forms in FIG. 1a In plan view, left inner conductor terminal 34 with the cable bed 33 located in front of the input terminal device 2 for connecting an input cable 4 and in the FIGS. 3a and 3b right inner conductor connection region 34 with the upstream cable bed 33, the outer conductor connection device 3 for connecting an output cable. 6
  • the cable connection space 31 thus formed can be folded over an end cap 37 are high-frequency sealed, the end cap 37 is usually held on a plastic strap 38 pivotally mounted on the housing 1 of the multimedia box.
  • the multimedia box is constructed like conventional antenna sockets, namely ultimately with a generally approximately cylindrical housing, which is closed at the bottom with a housing cover and in which the coaxial interfaces 23 are formed on the opposite terminal side and with an almost completely encircling mounting flange 39 provided with mounting holes 39a.
  • two coaxial interfaces 23a and 23b are provided adjacent to a third interface 23c for the multimedia box, each comprising female (cylindrical) outer conductors 123b and concentric inner conductors 123a lying on the left with a male inner conductor 123a (male configuration ) and two in FIG. 3a and 3b right-hand or lower-lying sleeve-shaped inner conductors 123a (female configuration), via which corresponding coaxial plug-in or screw connectors (couplers) can be connected, for example, to connect a television or radio.
  • Figure 3c shows a corresponding perspective view of the multimedia box from its underside ago, with removed shielding housing cover, so that in the lower circuit space 44 lying a circuit board 46th is visible.
  • FIGS. 4a to 4c shows a schematic representation of the switching device, in an abstract representation along the line IV-IV in FIG. 3a , wherein the sectional view shown exactly by the pin-shaped actuator 125 leads.
  • FIG. 4a In the illustration according to FIG. 4a is a detail of the mentioned bottom plate 41 can be seen, above which the cable bed 33 is located for the output cable 6.
  • a printed circuit board 46 on which, for example, the terminating resistor 27, the capacitor 29 and, if necessary, other electronic components or components can be located.
  • an electrically non-conductive material actuator 125 is pin-shaped and is slidably held by a bore 41a in the bottom plate 41 and an axially aligned bore 46a in the printed circuit board 46, wherein the pin-shaped switching device 125 has a radially projecting flange stop 125a, in the initial position shown in accordance with FIG. 4a abuts against the bottom plate 41, ie in the illustrated embodiment on the underside 41d of the bottom plate 41 or a separate stop formed thereon or associated therewith.
  • This leaf spring 26a pushes the switching device 25 against the bottom plate 41 in its initial position shown.
  • an electrically conductive switching spring 125c which is fixedly connected to the actuating device 125, contacted at corresponding contact points 25a, 25b on the underside 46c of the printed circuit board 46 resting, about what, for example, an electrical connection from the inner conductor of the input cable 4 via the transmission path 19a with the mentioned terminating resistor 27 is implemented depending on the application or configuration used with or without series-connected capacitor 29, the multimedia box is thus connected as a terminal box.
  • the switching contacts also move away 125c of a switch connection or switching bridge 125'c of corresponding contact points 25a, 25b on the printed circuit board 46, thus lift off from the contact points 25a, 25b, thereby forming an in FIGS. 4a and 4b not shown in detail and preferably located on the printed circuit board 46 terminating resistor 27 is decoupled from the transmission path and is switched from the inner conductor of the input cable via the transmission path 19a to the inner conductor 13 of the output cable 6, the multimedia box is thus thus in a throughput state.
  • the switching device would automatically by the force of the spring means 26 in their in FIG. 4a shown starting position be switched back, in which even when connected input cable 4, the multimedia box then automatically acts again as a terminal box, so forcibly and functionally correct said termination 27 is switched on again.
  • the actuating device 125 is located in the section of the output cable 6 to be connected, in which the outer conductor 15 is exposed.
  • the actuating projection or the end face 125d of the switching device 25 could also be in that region of the end of the coaxial cable 6, in which now the inner conductor 13 projects freely or in which the coaxial cable is also provided with the outer insulation 17.
  • the switching contacts 125c are in an extractively three-dimensional representation together with the leaf-shaped spring device 26 with reference to FIG Figure 4c can be seen (without printed circuit boards and other parts), from which it can be seen that in that the two radially opposite switching contacts 125c are conductively connected via a central annular section to form a switching bridge 125'c and, in the embodiment shown, is formed as a one-piece metal part or with a spring part which preferably rests against the contact points 46 under corresponding slight spring tension.
  • FIG. 5 Based on FIG. 5 is only schematically shown a modification insofar as not a leaf spring 26a, but a coil spring 26b is used, which is biased in this case under axial pressure, and located on the top 46d of the printed circuit board 46 on the one hand and on the annular stop 125a the actuator 125 is supported to the other, thus thus the actuator 125, as in the previous embodiment, in the in FIG. 5 shown initial position presses, for example, when not connected output cable of the mentioned terminating resistor 27 is effective.
  • a coil spring 26b which is biased in this case under axial pressure, and located on the top 46d of the printed circuit board 46 on the one hand and on the annular stop 125a the actuator 125 is supported to the other, thus thus the actuator 125, as in the previous embodiment, in the in FIG. 5 shown initial position presses, for example, when not connected output cable of the mentioned terminating resistor 27 is effective.
  • FIG. 6 Based on FIG. 6 a further modification is shown in which, for example, via two contact springs 48a and 48b, which are contacted at corresponding contact points 46 'of the printed circuit board 46, a permanent electrical connection to the terminating resistor 27 is made.
  • the contact springs 48a and 48b are thus part of the switching device 25th
  • the mentioned leaf spring 26a comparable to the embodiment according to FIGS. 4a and 4b is used, the actuator 125 ends below the angle to each other tapered and in contact contact portions 48a and 48b, wherein the actuator 125 is made of a dielectric material, that acts as an insulator.
  • the pin-shaped actuator 125 axially displaced against the force of the spring device 26, the leading operating tip 125e (ie, the actuating head 125e) increasingly immersed in the space between the contact portions 48a and 48b and is further axially shifted down so that the contact surfaces 48a and 48b are bent away from each other elastically, so that the contact is interrupted, so that in this switching position of the example mentioned terminator 27 is turned off, so the multimedia box here again acts as a through-can in this switching state.
  • FIG. 7 is an embodiment with a strip spring 26, 26a shown, in which case only one contact spring 25d is used, whose rear portion is mechanically connected and electrically contacted, for example, by soldering to the printed circuit board and whose leading portions 25c can be contacted with a contact 25a on the underside of the printed circuit board. If the pin-shaped actuator 125 axially in the illustration according to FIG. 7 shifted downward (when an output cable 6 is connected as mentioned), the contact 125a of the contact tongue 25d lifts from the contact point 25a, thereby preventing, for example, the connection to a terminating resistor.
  • an on / off switch 15 may be provided, which is always connected to the transmission path 19a and is only in the closed position with unoccupied output, with the connection of the terminating resistor 27, and the inlaid Output cable 6 is pivoted in its open position, so that the terminating resistor 27 is disconnected.
  • FIG. 8 is shown schematically that as a switching device 25 is not an on / off switch but a switch is used which produces in the initial position shown by a connection or solder 25 'an electrical connection to the terminating resistor 27, wherein the switching contact 125c connected to the output cable. 6 is switched to its second position by the downwardly displaced in Figure 8 pin-shaped actuator (switching pin), in which the corresponding contact 25h at the end of the contact spring 25d of the corresponding mating contact which connects to the terminating resistor 27, lifts and a second contact 25e contacts the counter-contact 25a, so that now an electrical connection is made on the primary transmission path 19 from the input 2 to the output 3, the box thus forms a through-can in this state.
  • switching pin switching pin
  • FIG. 9 is one too FIG. 8 shown similar embodiment, in which case the leading end of the spring 25d has no electrical contact with the printed circuit board.
  • an on-off switch can be realized, which is suitable for the detection of whether an output cable is connected.
  • the invention is just as feasible if the connected cables, for example, consist of twisted pair cables, a fiber optic cable or any combination, especially if multiple inputs and outputs are provided.
  • the cables could be connected accordingly so that the respective switching pin 125 comes to rest radially to the cable in question, so when connecting the output cable in the radial direction to the cable an adjusting force is introduced to the actuating pin in the longitudinal direction to the desired switching make.
  • the solution according to the invention with the relevant switching device can also be provided separately for two or more of these outputs or even for all these outputs, so that it can be determined separately for each output corresponding cable is connected. If this output is provided for connecting a coaxial cable, a separate switching device with an associated separate terminating resistor can be provided in particular for each such coaxial output.
  • the switching device can also be designed differently, namely not as an axially displaceable actuating pin but as a pivoting lever, which is adjusted accordingly by an inserted and connected cable, etc.
  • the switching can also be designed so that, depending on the deflection of the actuating or switching pin 125, for example, more than two switching positions can be realized.
  • a switching position "not connected” to be detected when a coaxial output cable 6 is not connected but for example, two other switching positions be detectable in which, for example, not only detectable that a coaxial output cable 6 is connected, but for example, whether a coaxial output cable with "larger diameter” or in contrast with "smaller diameter” is connected.
  • the terminating resistor 27 and a capacitor 29, possibly connected in series are arranged on the printed circuit board 46 for galvanic isolation.
  • the terminator may be a wired component, which is either housed in the circuit space 44 of the multimedia box or in the cable connection compartment.
  • the placement of the terminating resistor on the printed circuit board 46 is particularly advantageous if the mentioned capacitive separation in the form of a capacitor 29 is provided or even required, since in this case, the resistors and capacitors required for this cost placed with other components on the circuit board and can be soldered.
  • a triggering device 1125a may be provided with a permanently installed switching pin 125, namely, when the switching pin 125 made of an electrically conductive material or at least coated with an electrically conductive material and thereby electrically insulated from the bottom plate 41 (electrically isolated) mounted in the region of the outer conductor of a coaxial cable to be connected while electrically connected to the circuit board 46 is. This is based on the sectional representation according to FIG. 11 explained. Is according to FIG.
  • an output cable 6 is connected in the region of the output connection device 3, there is a direct electrical connection from the cable outer conductor 15 via the triggering section 125d to the printed circuit board 21 via the aforementioned electrically conductive switching or trigger pin 125, 125 '. This is the electrical resistance in this section very low and can be evaluated by an electrical circuit. If no output cable is mounted, this corresponds to the state of an opened switch.
  • the corresponding schematic representation is based on FIG. 11 played.
  • the illustrated switching pin 125 which also insofar as an electrically conductive trigger pin 125 ' is referred to, installed movable and electrically isolated to the bottom plate 41 in the region of the output cable outer conductor 15 and thereby electrically connected to a corresponding connection point on the circuit board 46.
  • the presence of a connected output cable 6 can then be detected via the circuitry detection, for example, an electrical resistance between outer conductor 15 of a connected output cable 6 via the switching or release pin 125, 125 'to the circuit board 46.
  • the galvanic connection between the outer conductor 19 of a connected output cable 6 and the printed circuit board producing switching or release pin 125, 125 ' is thus thus part of a so designed release device 1125a.
  • switching devices were shown in which a switching pin was deflected by a connected output cable from its rest position. Based on the last discussed embodiment according to FIG. 11 In contrast, a fixed switching pin has been used, which establishes a galvanic connection between the outer conductor 15 of a connected coaxial output cable 6 and a connection point on the printed circuit board 46, this electrical connection can then be evaluated accordingly to determine whether an output cable 6 connected is or not.
  • the switching device may include an inductively, capacitively, optically and / or magnetically operating proximity switch 1125, that is to say a corresponding modified switching device 25, via which the switching process is triggered in the presence of a connected output cable 6. This is only an example FIG.
  • an output cable 6 is connected above it-as shown by the other exemplary embodiments-a coaxial cable 6 (in particular its outer conductor) would be present in the immediate vicinity by means of this tripping device 1125b, ie by the inductive, capacitive, optical or magnetic switch 1125, for example 15 are detected, so that a corresponding detection signal can be passed to the circuit board.
  • the triggering device 1125b is electrically connected to the associated switch 1125 via a trigger pin 125 or a trigger line to the printed circuit board 46.
  • the switch assembly in question can be anchored and supported by a pin-shaped base 125 on the printed circuit board 46, optionally also have a mechanical connection to the bottom plate 41.
  • a changeover from end to run mode and vice versa would be in deviation from the illustrated embodiments in principle and then possible, if a switching device 25 is provided in the multimedia box with, which is not forcibly operated when connecting an output cable, but the at is housed elsewhere and, for example, externally operable separately, namely, for example, by an externally accessible switch, button, slide switch, rotary switch or by using a coding on the output cable clamp etc.
  • a malfunction would not be excluded because the switch could be operated or not operated, regardless of whether an output cable is actually connected or not.
  • the solution according to the invention offers significant advantages.

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Claims (17)

  1. Boîtier multimédia avec les caractéristiques suivantes :
    - avec au moins un dispositif de raccordement d'entrée (2) destiné à raccorder un câble d'entrée (4),
    - avec au moins un dispositif de raccordement de sortie (3) destiné à raccorder un câble de sortie (6),
    - avec au moins un local de raccordement des câbles (31) blindé contre le rayonnement électromagnétique et un local de montage (44), le local de raccordement des câbles (31) étant séparé du local de montage (44) par une plaque de fond (41),
    - des bancs de câblage (33) sont prévus dans le local de raccordement des câbles (31) pour raccorder un câble d'entrée (4) et un câble de sortie (6),
    caractérisé par les autres caractéristiques suivantes
    - le boîtier multimédia comprend un dispositif de commutation (25) situé dans le local de montage (44),
    - le dispositif de commutation (25) est commuté dans une position de commutation pour un câble de sortie (6) si le dispositif de raccordement de sortie (3) est inoccupé,
    - le dispositif de commutation (25) est commuté dans une autre position de commutation si un câble de sortie (6) est raccordé au dispositif de raccordement de sortie (3),
    - une ouverture ou un évidement (41a, 141a) est prévu dans la plaque de fond (41),
    - le dispositif de commutation (25) comprend
    a) un dispositif de commande (125) avec une section de commande ou une section de déclenchement (125d), qui traverse l'ouverture (41a) et dépasse ainsi jusque dans la région du dispositif de raccordement de sortie (3),
    ou
    b) un dispositif de déclenchement (1125b), qui présente ou comprend un détecteur de proximité (1125) inductif, capacitif, optique ou magnétique destiné à détecter un câble de sortie (6) raccordé, disposé dans la région de l'évidement (141a).
  2. Boîtier multimédia selon la revendication 1, caractérisé en ce que le dispositif de commutation (25) est commuté dans sa position de sortie si le câble de sortie (6) n'est pas raccordé, commutation dans laquelle une liaison de transmission (19a) provenant du dispositif de raccordement d'entrée (2) est reliée par une résistance terminale (27) ou par un condensateur (29) raccordé en série à la résistance terminale (27) avec une masse et/ou un conducteur extérieur (15) du câble d'entrée (4).
  3. Boîtier multimédia selon la revendication 1 ou 2, caractérisé en ce que le dispositif de commutation (25) est commuté dans sa seconde position de commutation si le câble de sortie (6) est raccordé dans le dispositif de commutation de sortie (3), position dans laquelle une résistance terminale (27) est séparée de la liaison de transmission (19a).
  4. Boîtier multimédia selon l'une quelconque des revendications 1 à 3, caractérisé en ce que le dispositif de commande (125) est un dispositif de déclenchement (125a) avec une broche de commutation (125) ou une broche de déclenchement (125') conduisant l'électricité et avec une borne de raccordement reliées électriquement (galvaniquement) à une plaque conductrice (46), dont la section de déclenchement (125d) est mise en contact avec le conducteur extérieur (15) si un câble de sortie (6) coaxial est raccordé.
  5. Boîtier multimédia selon la revendication 4, caractérisé en ce que la broche de commutation (125) ou la broche de déclenchement (125') conduisant l'électricité est installée de façon immobile et isolée électriquement de la plaque de fond (41) dans la région du conducteur extérieur (15) d'un câble de sortie (6) raccordé et est raccordée avec la plaque conductrice (46) ou avec un contact s'y trouvant, au moyen duquel une résistance électrique différente peut être détectée au moyen de la technique de commutation si un câble de sortie (6) est raccordé, par opposition à un dispositif de sortie/de raccordement (3) inoccupé.
  6. Boîtier multimédia selon l'une quelconque des revendications 1 à 3, caractérisé en ce que le détecteur de proximité (1125) est relié électriquement à la plaque conductrice (46) via une broche de déclenchement (125) ou un circuit de déclenchement.
  7. Boîtier multimédia selon l'une quelconque des revendications 1 à 3, caractérisé en ce que le dispositif de commande (125) est mobile axialement et est déplacé axialement en raccordant l'extrémité d'un câble de sortie (6), le dispositif de commande (125) au niveau du câble de sortie (6) raccordé pouvant être réglé contre la force d'un dispositif à ressort (26) ou réglé à partir de sa position de sortie dans au moins une position de commutation différente.
  8. Boîtier multimédia selon l'une quelconque des revendications 1 à 3, caractérisé en ce que le dispositif de commande (125) est disposé de façon à pivoter autour d'un axe (126) et/ou est retenu.
  9. Boîtier multimédia selon la revendication 8, caractérisé en ce qu'une position de pivotement différente du dispositif de commande (125) peut être détectée.
  10. Boîtier multimédia selon l'une quelconque des revendications 1 à 9, caractérisé en ce que le dispositif de commutation (25) comprend un contacteur/disjoncteur.
  11. Boîtier multimédia selon l'une quelconque des revendications 1 à 9, caractérisé en ce que le dispositif de commutation (25) comprend un commutateur inverseur.
  12. Boîtier multimédia selon l'une quelconque des revendications 6 à 9, caractérisé en ce que le boîtier multimédia comprend un boîtier (1) et une plaque conductrice (46) prévue à l'intérieur du boîtier (1), et en ce qu'un circuit de détection situé sur la plaque conductrice (46) est prévu pour détecter et/ou évaluer la position de commutation du dispositif de commutation (25), le dispositif de commutation (25) permettant au moins deux positions de commutation, à savoir une position de commutation dans laquelle le dispositif de commutation (25) est fermé et une autre position de commutation dans laquelle le dispositif de commutation (25) est ouvert ou interrompu.
  13. Boîtier multimédia selon l'une quelconque des revendications 6 à 10, caractérisé en ce que la plaque de fond (41) séparant le local de raccordement des câbles (31) du local de montage (44) conduit l'électricité ou est blindé.
  14. Boîtier multimédia selon l'une quelconque des revendications 1 à 13, caractérisé en ce que le dispositif de commande (125) du dispositif de commutation (25) est conçu en forme de broche et est introduit de façon à se déplacer axialement par l'alésage (41a) dans la plaque de fond (41) et un autre alésage ainsi aligné (46a) dans la plaque conductrice (46), le dispositif à ressort (26) étant prévu dans l'espace entre la plaque de fond (41) et la plaque conductrice (46) et le dispositif de commande (125) agissant conjointement avec un dispositif de mise en contact électrique avec une fonction d'ouverture et de fermeture.
  15. Boîtier multimédia selon l'une quelconque des revendications 6 à 14, caractérisé en ce que le boîtier multimédia comprend au moins deux ou plusieurs dispositifs de raccordement de sortie (3), un dispositif de commutation (25) étant affecté à au moins deux, plusieurs ou tous les dispositifs de raccordement de sortie (3).
  16. Boîtier multimédia selon la revendication 15, caractérisé en ce qu'une résistance terminale (27) séparée ou une résistance terminale séparée avec un condensateur (29) branché en série est affectée à chacun des dispositifs de commutation (25) prévus.
  17. Boîtier multimédia selon l'une quelconque des revendications 1 à 16, caractérisé en ce que le dispositif de commutation (25) comporte au moins trois positions de commutation, à savoir une position de commutation si le dispositif de raccordement de sortie (3) est inoccupé, ainsi que deux autres positions de commutation, si le dispositif de raccordement de sortie (3) est occupé, qui dépendent des différentes propriétés géométriques d'un câble de sortie (6) raccordable ou des différents dispositifs de codage installés au niveau du câble de sortie (6).
EP11009329.1A 2010-12-23 2011-11-24 Boîtier multimédia Active EP2469666B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102010055963A DE102010055963B4 (de) 2010-12-23 2010-12-23 Multimedia-Dose

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EP2469666A2 EP2469666A2 (fr) 2012-06-27
EP2469666A3 EP2469666A3 (fr) 2014-03-05
EP2469666B1 true EP2469666B1 (fr) 2015-09-30

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102012019452A1 (de) * 2012-10-04 2014-04-10 Kathrein-Werke Kg Multimedia-Dose
DE102013002473A1 (de) * 2013-02-14 2014-08-14 Kathrein-Werke Kg Multimedia-Dose
WO2016049857A1 (fr) * 2014-09-30 2016-04-07 华为技术有限公司 Antenne et terminal mobile
PL3174167T3 (pl) * 2015-11-30 2021-09-06 Teleste Oyj Przedłużacz kabla koncentrycznego
DE102018103733B3 (de) 2018-02-20 2019-06-27 Ifm Electronic Gmbh Lichtleiteranschluss und dessem Verwendung in einem Lichtleiterverstärker

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Publication number Priority date Publication date Assignee Title
DE1164521B (de) * 1961-08-22 1964-03-05 Anton Kathrein Aelteste Spezia Antennen-Steckdose
DE8125222U1 (de) * 1981-08-29 1981-12-03 Adolf Strobel Antennenfabrik GmbH & Co KG, 5060 Bergisch Gladbach Antennensteckdose
DE3341356A1 (de) * 1983-11-15 1985-05-23 Kathrein-Werke Kg, 8200 Rosenheim Koaxialkabel-anschlussvorrichtung
US4971569A (en) * 1989-06-21 1990-11-20 Apple Computer, Inc. Self-terminating coaxial tap connector
DE9000935U1 (fr) * 1990-01-29 1990-07-19 "Telegaertner" Karl Gaertner, 7049 Steinenbronn, De
DE9003258U1 (fr) * 1990-03-20 1990-05-23 Pvt Praezisions-Verbindungstechnik Und Steuerungsbau Gmbh, 7031 Steinenbronn, De
DE9113236U1 (fr) * 1991-10-24 1991-12-12 Christian Schwaiger Kg, 8506 Langenzenn, De
US5278570A (en) * 1992-09-08 1994-01-11 Motorola, Inc. Combined coaxial connector and radio frequency switch assembly
DE4327986C2 (de) * 1993-08-20 1997-03-06 Schwaiger Kg Christian Koaxialer Steckverbinder
US5702261A (en) * 1996-04-10 1997-12-30 Insert Enterprise Co., Ltd. Auto-termination network cable connector
GB2336480A (en) * 1998-01-29 1999-10-20 Whitaker Corp Coaxial switching connector
DE19829653C2 (de) * 1998-07-02 2000-08-31 Kathrein Werke Kg Antennensteckdose
DE19938074C2 (de) * 1999-08-12 2002-09-26 Kathrein Werke Kg Modulare Antennensteckdose
US6281783B1 (en) * 2000-01-13 2001-08-28 Signal Catv System, Inc. Auto resistance matching means for distribution boxes
DE10107100A1 (de) * 2001-02-13 2002-12-05 Profichip Gmbh Steckvorrichtung mit integrierter Diagnose- und Auswerteschaltung und zuschaltbarem Abschlusswiderstand

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DE102010055963B4 (de) 2012-11-29
EP2469666A2 (fr) 2012-06-27
EP2469666A3 (fr) 2014-03-05
DE102010055963A1 (de) 2012-06-28

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