EP3061155B1 - Electronic device - Google Patents
Electronic device Download PDFInfo
- Publication number
- EP3061155B1 EP3061155B1 EP14786659.4A EP14786659A EP3061155B1 EP 3061155 B1 EP3061155 B1 EP 3061155B1 EP 14786659 A EP14786659 A EP 14786659A EP 3061155 B1 EP3061155 B1 EP 3061155B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- connector part
- pull tab
- plug
- electronics device
- electronic device
- 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
Links
- 239000004020 conductor Substances 0.000 claims description 9
- 239000011810 insulating material Substances 0.000 claims description 3
- 238000012423 maintenance Methods 0.000 description 9
- 238000006073 displacement reaction Methods 0.000 description 6
- 238000003780 insertion Methods 0.000 description 3
- 230000037431 insertion Effects 0.000 description 3
- 238000010276 construction Methods 0.000 description 2
- 230000008878 coupling Effects 0.000 description 2
- 238000010168 coupling process Methods 0.000 description 2
- 238000005859 coupling reaction Methods 0.000 description 2
- 230000004888 barrier function Effects 0.000 description 1
- 230000000903 blocking effect Effects 0.000 description 1
- 238000007654 immersion Methods 0.000 description 1
- 230000013011 mating Effects 0.000 description 1
- 230000003287 optical effect Effects 0.000 description 1
- 230000007704 transition Effects 0.000 description 1
Images
Classifications
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R9/00—Structural associations of a plurality of mutually-insulated electrical connecting elements, e.g. terminal strips or terminal blocks; Terminals or binding posts mounted upon a base or in a case; Bases therefor
- H01R9/22—Bases, e.g. strip, block, panel
- H01R9/24—Terminal blocks
- H01R9/26—Clip-on terminal blocks for side-by-side rail- or strip-mounting
- H01R9/2625—Clip-on terminal blocks for side-by-side rail- or strip-mounting with built-in electrical component
- H01R9/2633—Clip-on terminal blocks for side-by-side rail- or strip-mounting with built-in electrical component with built-in switch
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/62—Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
- H01R13/629—Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances
- H01R13/633—Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances for disengagement only
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/66—Structural association with built-in electrical component
- H01R13/70—Structural association with built-in electrical component with built-in switch
- H01R13/707—Structural association with built-in electrical component with built-in switch interlocked with contact members or counterpart
Definitions
- Such electronic devices are used, in particular, as device modules of a modular control unit to be arranged next to one another on a mounting rail, to which bus subscribers can be clamped by means of electrical lines via a connector level.
- the connector level When replacing a device module, the connector level only has to be removed without the individual electrical conductors from the electronic device individually disconnected and later to the replaced electronic device must be reconnected.
- DE 10 2011 110 182 A1 discloses such a modular control device with at least one module which has a base module which can be latched onto a mounting rail, an electronics module which can be placed thereon and a plug connector module which can be plugged onto the electronic module part.
- a securing element is provided with a securing engagement portion.
- the securing engagement portion is movable in a first and in a second position and designed, for example, as a projection or bar.
- the connector module has a blocking portion that contacts the fuse actuating portion in the second assembled state. Removal or removal of the electronic module from the bass module is possible only when the connector module is disassembled.
- WO 2004/114466 A1 discloses a modular electronic device with an attachable thereto connector part, which can be removed via a pivotable pull tab from the electronic module. This pull tab is secured by a spring-loaded locking lever and can be pulled out only after displacement of the pull tab.
- the traction unit be one with a switch coupling switch trigger element has.
- the switching trigger element is designed so that the switch is actuated to displace the pull tab or a displacement of the pull tab from the operating state for removing the connector part of the base part by the switching trigger element.
- the electronic device with the help of the switch can be controlled so that it is essentially out of service or at least on the connector part no significant electrical voltages applied or currents flow.
- the switch is thus coupled to the electronic device or the control device, in which the electronic device is integrated, to transfer the electronic device in the transition to the other switching state by means of the Switzerlandbetruciststician in a state in which deducted the connector part without jeopardizing the functionality can be.
- the switching trigger element is designed as a protruding from the connector part nose on the pull tab is particularly advantageous.
- This nose can be designed to actuate a switch which is arranged on or in the base part and adjacent in the operating state. This allows a very simple construction of the Switzerlandbetuschistshim, in which by the displacement of the pull tab itself directly coupled to the nose switch in another switching state is added.
- the pull tab is pivotally mounted on the connector part and upon pivoting of the pull tab from the operating state, an operation of the switch is canceled by the nose. This ensures that the connector part can not be pulled away directly from the electronic device with the pull tab. Rather, it is ensured by the pivot bearing that the pull tab must first be pivoted under forced operation of the switch before the connector part can be removed by pulling on the pull tab of the electronic device. This ensures a sufficient period of time in which the electronic device can be brought into a state that allows the safe removal of the connector part in functional terms.
- the pull tab and the connector part have mutually cooperating locking elements which are designed to prevent a displacement of the pull tab in the operating state when the pull tab is pivoted away from the connector part and rests against the base part.
- locking elements ensures that the pull tab is fixed in position on the connector part in the operating state.
- the pull tab can not be easily pulled off by removing the connector part.
- the connector part itself is thereby locked to the electronic device. To remove the connector part, therefore, a pivoting of the pull tab with a forced operation of the switch is first required.
- the Switzerlandbet2011istsaku is made of several parts.
- the Switzerlandbet2011istsritt here has the pull tab and a separate from the pull tab switching trigger element.
- This switching trigger element is movably mounted on the connector part or the base part and forms a stop for the pull tab in one Operating position.
- the pull tab can thus be actuated only after relocation of the switching trigger element for removing the connector part of the base part.
- the connector part is thus fixed by the switching trigger element on the base part. This also ensures a functionally safe removal of the connector part from the base part.
- the switching trigger element may for example be a slidably mounted on the connector part or base part slide, wherein the slider has a cooperating with a switch, projecting switching member and in an operating position in which a first switching state of the switch is effected, the pull tab projects beyond. Only after moving the slide away from the pull tab is the pull tab released and can be pulled up by the base part and the connector part (upwards) in order to then pull the connector part away from the base part. In this case, however, first the slider and in the second step, the pull tab must be taken and pressed.
- the electronic device preferably has on the side opposite the connector part side a DIN rail latch for snapping onto a mounting rail. Furthermore, it is advantageous if the electronic device is a device module of a modular control device and has plug contacts on at least one of the side walls. With the help of these plug contacts, it is then possible to establish a data bus to provide a system voltage supply for the juxtaposed in a row on a DIN rail electronic equipment and / or loop through a power supply through a series of juxtaposed electronic devices and to create the possibility that at least one of the electronic devices connected bus subscribers are supplied with electrical power.
- FIG. 1 shows a perspective view of an electronic device 1, which comprises a formed of an insulating housing base module 2 and an integrally connected to the base module 2 or separately carried out thereof and on the base module 2 attachable electronic module 3.
- the electronic module 3 has at least one printed circuit board (not visible) which extends from the base module 2 in the direction of the upper side of the electronic device 1.
- the base module 2 together with the separate or integral electronic module 3 forms a base part 40.
- the base module 2 has a latching foot 4, which is designed in a manner known per se and for mounting the electronics housing 1 on the mounting rail (not shown) is provided.
- plug contacts 5 are further provided to establish a data bus and a system voltage supply for a number of juxtaposed on a mounting rail electronic devices 1. Furthermore, spaced from these plug contacts 5 power energy plug contacts 6 on the side walls of the base module 2 are present, these serve to provide a continuous electrical power supply connectable to the electronic device 1 bus subscribers (sensors, actuators or other devices).
- the electronics module 3 at the top has a free space 7 which is bordered by a vertically extending abutment edge 8.
- This free space 7 is provided for receiving a connector part (not shown), which adjoins the contact edge 8 in the mounted state.
- a latching finger 9 To lock the connector part with the electronic device 1 protrudes at the abutment edge 8, a latching finger 9. This latching finger 9 then interacts with a pull tab of the connector part.
- the electronic device 1 has on the upper side adjacent to the abutment edge 8 a slider 10 which is mounted on the upper side transversely to the extension direction of the abutment edge 8 slidably mounted on the electronic device 1 and in an operating position on the contact edge 8 in addition the free space 7 protrudes.
- This slider 10 thus forms a separate from the pull tab on the connector part switching trigger element.
- an invisible finger protrudes on the slider 10 in the interior of the electronic device 1, to cooperate with an electrical switch 13 arranged there.
- FIG. 2 allows this arrangement of the slider 10 in the operating position and the elastically resiliently mounted in the contact edge 8 nose 9 in the enlarged section M recognize again.
- FIG. 3 shows a partial sectional view in the region of the cutout M with the side wall of the electronic module 3 removed and now the connector part 11 attached.
- the electronic device 1 in its interior has a printed circuit board 12 with electronic components.
- the circuit board 12 carries a switch 13 which is in operative connection with the slider 10 at the top of the electronic device 1.
- the slider In the illustrated operating position, the slider is displaced in the direction of connector part 11 and projects beyond the connector part 11 with its free end partially. In this way, the connector part 11 is mechanically secured before pulling out of the electronic device 1.
- the switch 13 is brought into a switching position in which the electronic device 1 is activated.
- the slider 10 Before removing the connector part 11 of the electronic device 1, the slider 10 must be moved from the illustrated operating position to a maintenance position. In this case, the switch 13 is brought from the operating switching state to a maintenance switching state.
- the electronic device 1 is now designed so that the operation of the switch 13, the electronic device 1 is transferred to a maintenance state in which the removal of the connector part 11 functionally safe is possible. With the help of the switch 13 is thus intervened in the electrical or the electronic functionality of the electronic device 1, before the connector part 11 can be deducted from the electronic device 1 at all.
- the removal of the connector part 11 of the electronic device 1 is facilitated by a pull tab 14 which is connected to the connector part 11.
- latching arm arranged detent 9 When pulling out the pull tab arranged on an elastically resiliently connected to the electronic device 1 latching arm arranged detent 9 is displaced from the free space 7 to cancel the further locking of the connector part 11 to the electronic device 1.
- FIG. 4 lets a perspective view of the connector part 11 for the electronic device 1 from the FIGS. 1 to 3 detect. It is clear that the connector part 11 has a number of conductor insertion openings 15, which open in Portererklemman untiln in the interior of the connector part 11. The invisible Portererklemman give lead to plug contacts on the underside of the connector part 11, the contact with the insertion of the connector part 11 on a printed circuit board in the interior of the electronic device 1 traces on the circuit board.
- the connector part 11 has a pivot bearing 16, with which the connector part 11 can be pivoted to the insulating material of the electronic device 1. It is then then pivoted down into the free space 7 until the pull tab 14 adjoins the abutment edge 8. In the operating state then locks the latching lug 9 with a corresponding lug 17, which projects into a recess 18 of the pull tab 14.
- the pull tab 14 further has a projection 19, with which the resilient locking arm of the electronics housing 1 with its locking lug 9 from the free space 7, that is moved away from the connector part 11, when the pull tab 14th is pulled off to the top.
- FIG. 6 lets a perspective view of the connector part 11 for the embodiment of the electronic device 1 from the FIGS. 1 to 5 in the maintenance position. It is clear that the pull tab 14 has been pulled out at the top, ie beyond the defined by the conductor insertion opening 15 top of the connector part 11. This results in that the lower transverse edge or the transverse web 38 of the pull tab 14 is adjacent to the detent 17 of the connector part 11, so that in this way the latching connection between the corresponding detent 9 of the electronic device 1 and the detent 17 of the connector part 11 is canceled.
- FIG. 7 leaves an enlarged sectional view of the connector part 11 from FIG. 6 in the neckline L recognize. This is again clear that the pull tab 14 is mounted on both sides by means of a tongue and groove guide 21a, 21b slidably mounted on the connector part 11.
- FIG. 8 leaves a front view of the electronic device 1 from the FIGS. 1 to 7 detect. It is clear that the electronic module 3 is placed on the base module 2 and locked by means of a locking lug 22 on a locking tab 23 of the base module 2.
- FIG. 8 further shows the section lines BB and CC for the subsequent sectional views.
- FIG. 9 shows a side sectional view of the electronic device 1 in section BB recognize. It is clear that the connector part 11 is pivotally mounted with the pivot bearing 16 on the insulating housing 24 of the electronic device 1. In the illustrated embodiment, the connector part 11 is mounted on the base module 2. The electrical module 3 is placed on the base module 2, wherein the locking lug 22 is arranged on a resilient locking arm, wherein the locking arm points in the direction of the base module 2.
- the connector part 11 is placed on the electronic module 3, wherein the locking lug 9 engages over the corresponding latching lug 17 of the connector part 11 on the resilient latching arm. Thus, the connector part 11 is latched to the base part 40 of the electronic device 1.
- FIG. 10 leaves an enlarged sectional view in the region of the Switzerlandbetruciststician with the pull tab 14 and the latch 9 in the neck J of FIG. 9 detect.
- This section is also a sectional view in section BB.
- the resiliently mounted locking arm 9 projects beyond the corresponding locking lug 17 of the connector part 11 in order to releasably lock the connector part 11 to the electronic device 1.
- the pull tab 14 of the connector part 11 extends parallel to the latching finger with the latching lug 9 of the electronic device 1.
- the projection adjacent to the pull tab 14 to the resilient latching arm 25 to when pulling the pull tab 14, the resilient latching arm 25 and the locking lug. 9 to move away from the connector part 11 at the free end of the latching arm.
- In the maintenance position with pull tab 14 pulled out then adjoins the lower cross bar 38 of the pull tab 14 to the locking lug 17 of the connector part 1, in order to secure the pull tab 14 on the connector part 11 in this way.
- FIG. 11 lets a side sectional view of the electronic device 1 from the FIGS. 1 to 10 on average CC recognize. From this section it is clear that the pivot bearing 16 of the connector part 11 dips into a corresponding counter bearing 26 of the insulating housing of the base part 40. In this way, the connector part 11 is pivotally mounted on the base part 40 of the electronic device 1. On the opposite side of the pivot bearing 16, the connector part 11 adjoins the electronic module 3. The pull tab 14 is adjacent to the abutment edge 8 of the electronic module. 3
- FIG. 12 shows an enlarged sectional view of the electronic device 1 in section CC according to FIG. 11 recognize in the detail G It becomes clear that the latching finger 9 of the resilient latching arm 25 on the electronic module 3 dips into the recess 18 of the pull tab 14.
- FIG. 13 shows a second embodiment of an electronic device 1, which also has a base module 2 and an electronics module 3 mounted thereon with an integrated circuit board (not visible).
- the base module 2 and the electronics module 3 may be formed integrally or preferably in two parts for mating.
- the base module 2 forms, together with the electronic module 3, a base part 40 onto which a connector part 11 is plugged.
- a latching nose 27 protrudes at the free space 7 for a connector part (not shown) limiting contact edge 8 in the upper region of the electronic device 1. Furthermore, a switching opening 28 is provided in the abutment edge 8, which leads to a switch.
- a switch is understood here to be either a self-holding electrical switch or a pushbutton which must be subjected to a permanent force for a switching position.
- FIG. 14 Leaves a perspective cutaway view of the second embodiment of the electronic device FIG. 13 Detect in the section A in the region of the Switzerlandbetuschistsaku.
- the switching opening 28 becomes clearer, which leads to a switch / pushbutton (not visible) in the interior of the electronic device 1 on a printed circuit board, ie to an electrical switching element 13.
- FIG. 15 lets recognize a perspective view of a connector part 29 for this second embodiment of the electronic device 1.
- a pivot bearing 16 on the connector part 29 is present.
- a pull tab 30 is again arranged, which is however mounted differently than in the first embodiment.
- the pull tab 30 is pivotally mounted on the connector part 29 on the opposite side of the top, ie on the side facing the base module 2 side.
- the pull tab 30 has a cross member 31 which forms a latching stop. Furthermore, it can be seen that of the pull tab 30 projecting away from the connector part 29 nose 32 is present. These Nose 32 is provided for immersion in the switching opening 28 or for actuating a arranged in the interior of the electronic device 1 switch / button.
- FIG. 16 leaves an enlarged sectional view of the connector part 29 from FIG. 15 in section H recognize. It is again clear that the pull tab 30 is pivotally mounted with a bearing bar 33 in a bearing recess 34 of the connector part 29. In the illustrated operating position, the pull tab 30 is pivoted away from the connector part 29, so that in the upper region, a distance between the pull tab 30 and the connector part 29 is present.
- FIG. 17 leaves a perspective view of the connector part 29 from FIGS. 15 and 16 detect.
- the pull tab 30 is pivoted to a maintenance position in the direction of connector part 29.
- the nose 32 is pivoted to actuate a switch in the direction of connector part 29, so that it gets out of engagement of the switch 13 in this position.
- the switch 13 is placed in the electronic device 1 in a different switching position to ensure a functionally safe removal of the connector part 29.
- FIG. 18 leaves an enlarged perspective cutaway view of the connector part 29 on FIG. 17 in the maintenance position.
- the cross bar 31 is also shifted back in the direction of the connector part 29 by the pivoting to get out of engagement with the locking lug 27 on the electronic device 1.
- the connector part 29 can then safely and easily deducted from the electronic device 1 up / swung.
- FIG. 19 leaves a perspective view of the connector part 29 from characters 15 to 18 detect.
- the pull tab 30 is now deducted upwards. This is facilitated by a widened pull handle 35 at the upper edge of the pull tab 30.
- Such pulling up of the pull tab 30 is made possible by a suitable pivoting and sliding guide of the pull tab 30 on the connector part 29.
- the pull tab 30 is held for this purpose in the insulating housing of the connector part 29 in a V-shaped groove, the extension tapers conically to the pivot bearing 34.
- FIG. 20 shows an enlarged sectional view of the connector part 29 from FIG. 19 in section K.
- FIG. 21 shows a front view of the electronic device 1 of the second embodiment with the sectional lines BB and CC recognize.
- the base part 40 is formed from a base module 2 and an electronic module 3, which are designed separately and plugged.
- FIG. 22 shows the second embodiment of the electronic device 1 in the sectional side view in section CC. It is clear that the connector part 29 is in turn mounted with a pivot bearing 16 pivotally mounted on the base part 40. At the opposite side of the pivot bearing 16, the pull tab 30 is arranged, which is locked with its crosspiece 31 in the pivoted in the operating state position with a latching lug 27 of the insulating housing 24 of the electronic device 1.
- FIG. 23 leaves the electronic device 1 off FIG. 22 in the side sectional view CC in the enlarged section E recognize. It is again clear that the pull tab 30 is pivoted in the operating state by about 10 degrees +/- 5 degrees tolerance about the vertical axis, ie the perpendicular to a mounting rail or the support rail support surface of the locking foot 4. The pull tab locks with the crossbar 31 on the locking lug 27th
- FIG. 24 shows the second embodiment of the electronic device 1 in the side sectional view BB.
- the pull tab 30 is pivoted from the vertical to the operating state.
- the nose 32 which forms the switching trigger element, into the interior of the electronic module 3 in order to cooperate there with a switch 13.
- the switch 13 In this operating state, the switch 13 is brought into a defined switching position.
- the switch 13 is preferably closed to switch in this way the electronic device 1 in the operable state.
- the switch 13 is then opened when the nose 32 is pivoted out of the interior of the electronic device 1 in the direction of connector part 29. Then, the electronic device 1 is brought into a maintenance state in which the connector part 29 can be safely removed.
- FIG. 25 allows an enlarged detail G of the electronic device 1 of Figure 24 in section BB recognize.
- the switch 13 is offset by means of the nose 32 in the on state.
- the switch 13 is in this case a switching element, whereby “switch” is also understood to mean a "push-button".
- the switching element 13 is in particular an electromechanical switch, but can also be used as a non-contact switch, such. B. be designed as an optical switch in the manner of a light barrier or the like.
Landscapes
- Mounting Of Printed Circuit Boards And The Like (AREA)
- Details Of Connecting Devices For Male And Female Coupling (AREA)
Description
Die Erfindung betrifft ein Elektronikgerät mit
- einem aus einem Isolierstoffgehäuse gebildeten Basisteil,
- einer mindestens ein elektronisches, elektrisches und/oder elektromechanisches Bauelement tragenden Leiterplatte in dem Isolierstoffgehäuse, und
- einem Steckverbinderteil, das mindestens einen Leiteranschlusskontakt zum Anschluss eines elektrischen Leiters hat und das einen Steckkontaktanschluss zur elektrisch leitenden Kontaktierung des mindestens einen Leiteranschlusskontaktes mit dem Basisteil im Betriebszustand hat, wenn das Steckverbinderteil auf das Basisteil aufgesetzt ist,
- a base formed from an insulating housing,
- a printed circuit board carrying at least one electronic, electrical and / or electromechanical component in the insulating housing, and
- a connector part which has at least one conductor connection contact for connecting an electrical conductor and which has a plug contact connection for the electrically conductive contacting of the at least one conductor connection contact with the base part in the operating state when the connector part is placed on the base part,
Derartige Elektronikgeräte werden insbesondere als auf einer Tragschiene nebeneinander anzuordnende Gerätemodule einer modularen Steuerungseinheit eingesetzt, an die Busteilnehmer über eine Steckverbinderebene mittels elektrischer Leitungen anklemmbar sind. Beim Austausch eines Gerätemoduls muss die Steckverbinderebene nur noch abgezogen werden, ohne dass die einzelnen elektrischen Leiter vom Elektronikgerät einzeln abgeklemmt und später an das ausgetauschte Elektronikgerät wieder angeklemmt werden müssen.Such electronic devices are used, in particular, as device modules of a modular control unit to be arranged next to one another on a mounting rail, to which bus subscribers can be clamped by means of electrical lines via a connector level. When replacing a device module, the connector level only has to be removed without the individual electrical conductors from the electronic device individually disconnected and later to the replaced electronic device must be reconnected.
Ausgehend hiervon ist es Aufgabe der vorliegenden Erfindung, ein verbessertes Elektronikgerät mit einem an einem Basisteil gelagerten Steckverbinderteil zu schaffen, bei dem ein funktional sicheres Abziehen des Steckverbinderteils gewährleistet ist.Based on this, it is an object of the present invention to provide an improved electronic device with a mounted on a base part connector part, in which a functionally safe removal of the connector part is guaranteed.
Die Aufgabe wird durch das Elektronikgerät mit den Merkmalen des Anspruchs 1 gelöst. Vorteilhafte Ausführungsformen sind in den Unteransprüchen beschrieben.The object is achieved by the electronic device having the features of
Es wird vorgeschlagen, dass die Zugbetätigungseinheit ein mit einem Schalter koppelbares Schaltauslöseelement hat. Das Schaltauslöseelement ist dabei so ausgebildet, dass der Schalter zur Verlagerung der Zuglasche oder bei einer Verlagerung der Zuglasche aus dem Betriebszustand zum Abziehen des Steckverbinderteils von dem Basisteil durch das Schaltauslöseelement betätigt wird.It is suggested that the traction unit be one with a switch coupling switch trigger element has. The switching trigger element is designed so that the switch is actuated to displace the pull tab or a displacement of the pull tab from the operating state for removing the connector part of the base part by the switching trigger element.
Durch die Kopplung der Zugbetätigungseinheit mit einem Schalter kann somit in die elektrische/elektronische Funktionalität des Elektronikgeräts mit Hilfe des Schalters eingegriffen werden, wenn die Zugbetätigungseinheit zum Abziehen des Steckverbinderteils betätigt wird. Denkbar ist dabei, dass der Schalter bereits betätigt wird, um eine Verlagerung der Zuglasche überhaupt zu ermöglichen, d.h. durch eine Entriegelung der Zuglasche. Möglich ist aber auch, dass der Schalter direkt durch die Zuglasche bei der Verlagerung der Zuglasche betätigt wird. Damit wird sichergestellt, dass der Schalter durch die Zugbetätigungseinheit in einen anderen Schaltzustand überführt ist, bevor das Steckverbinderteil mit Hilfe der Zuglasche der Zugbetätigungseinheit vom Elektronikgerät abgezogen ist. Damit kann das Elektronikgerät mit Hilfe des Schalters so angesteuert werden, dass es im Wesentlichen außer Betrieb ist oder zumindest an dem Steckverbinderteil keine wesentlichen elektrischen Spannungen anliegen bzw. Ströme fließen. Der Schalter ist somit mit dem Elektronikgerät bzw. der Steuerungseinrichtung, in die das Elektronikgerät eingebunden ist, gekoppelt, um das Elektronikgerät bei der Überführung in den anderen Schaltzustand mit Hilfe der Zugbetätigungseinheit in einen Zustand zu überführen, bei dem das Steckverbinderteil ohne Gefährdung der Funktionalität abgezogen werden kann.By coupling the Zugbetätigungseinheit with a switch can thus be intervened in the electrical / electronic functionality of the electronic device by means of the switch when the Zugbetätigungseinheit is actuated to pull off the connector part. It is conceivable that the switch is already operated to allow a displacement of the pull tab at all, i. by unlocking the pull tab. It is also possible that the switch is actuated directly by the pull tab during the displacement of the pull tab. This ensures that the switch is transferred by the Zugbetätigungseinheit in a different switching state before the connector part is withdrawn by means of the pull tab of the Zugbetätigungseinheit from the electronic device. Thus, the electronic device with the help of the switch can be controlled so that it is essentially out of service or at least on the connector part no significant electrical voltages applied or currents flow. The switch is thus coupled to the electronic device or the control device, in which the electronic device is integrated, to transfer the electronic device in the transition to the other switching state by means of the Zugbetätigungseinheit in a state in which deducted the connector part without jeopardizing the functionality can be.
Besonders vorteilhaft ist es, wenn das Schaltauslöseelement als eine von dem Steckverbinderteil wegragende Nase an der Zuglasche ausgeführt ist. Diese Nase kann dabei zur Betätigung eines Schalters ausgebildet sein, der an oder in dem Basisteil angeordnet ist und im Betriebszustand angrenzt. Dies ermöglicht einen sehr einfachen Aufbau der Zugbetätigungseinheit, bei der durch die Verlagerung der Zuglasche selbst direkt ein mit der Nase gekoppelter Schalter in einen anderen Schaltzustand versetzt wird.It when the switching trigger element is designed as a protruding from the connector part nose on the pull tab is particularly advantageous. This nose can be designed to actuate a switch which is arranged on or in the base part and adjacent in the operating state. This allows a very simple construction of the Zugbetätigungseinheit, in which by the displacement of the pull tab itself directly coupled to the nose switch in another switching state is added.
Hierbei ist es besonders vorteilhaft, wenn die Zuglasche schwenkbar an dem Steckverbinderteil gelagert ist und bei Verschwenken der Zuglasche aus dem Betriebszustand heraus eine Betätigung des Schalters durch die Nase aufgehoben wird. Hierdurch wird sichergestellt, dass das Steckverbinderteil nicht direkt mit der Zuglasche vom Elektronikgerät weggezogen werden kann. Vielmehr wird durch die Schwenklagerung sichergestellt, dass die Zuglasche zunächst unter Zwangsbetätigung des Schalters verschwenkt werden muss, bevor das Steckverbinderteil durch Ziehen an der Zuglasche vom Elektronikgerät abgezogen werden kann. Dies stellt eine hinreichende Zeitspanne sicher, bei der das Elektronikgerät in einen Zustand gebracht werden kann, die das sichere Abziehen des Steckverbinderteils in funktionaler Hinsicht erlaubt.It is particularly advantageous if the pull tab is pivotally mounted on the connector part and upon pivoting of the pull tab from the operating state, an operation of the switch is canceled by the nose. This ensures that the connector part can not be pulled away directly from the electronic device with the pull tab. Rather, it is ensured by the pivot bearing that the pull tab must first be pivoted under forced operation of the switch before the connector part can be removed by pulling on the pull tab of the electronic device. This ensures a sufficient period of time in which the electronic device can be brought into a state that allows the safe removal of the connector part in functional terms.
Dabei ist es besonders vorteilhaft, wenn die Zuglasche und das Steckverbinderteil miteinander zusammenwirkende Rastelemente haben, die ausgebildet sind, um eine Verschiebung der Zuglasche im Betriebszustand, wenn die Zuglasche vom Steckverbinderteil weg verschwenkt ist und an dem Basisteil anliegt, zu verhindern. Mit solchen Rastelementen wird erreicht, dass die Zuglasche an dem Steckverbinderteil im Betriebszustand lagefixiert ist. Damit lässt sich die Zuglasche nicht einfach unter Abziehen des Steckverbinderteils herausziehen. Auch das Steckverbinderteil selbst ist hierdurch an dem Elektronikgerät verrastet. Zum Abnehmen des Steckverbinderteils ist daher zunächst ein Verschwenken der Zuglasche mit einer Zwangsbetätigung des Schalters erforderlich.It is particularly advantageous if the pull tab and the connector part have mutually cooperating locking elements which are designed to prevent a displacement of the pull tab in the operating state when the pull tab is pivoted away from the connector part and rests against the base part. With such locking elements ensures that the pull tab is fixed in position on the connector part in the operating state. Thus, the pull tab can not be easily pulled off by removing the connector part. Also, the connector part itself is thereby locked to the electronic device. To remove the connector part, therefore, a pivoting of the pull tab with a forced operation of the switch is first required.
In einer alternativen Ausführungsform ist es denkbar, dass die Zugbetätigungseinheit mehrteilig ausgeführt ist. Die Zugbetätigungseinheit weist hierbei die Zuglasche sowie ein von der Zuglasche separates Schaltauslöseelement aus. Dieses Schaltauslöseelement ist dabei beweglich an dem Steckverbinderteil oder dem Basisteil gelagert und bildet einen Anschlag für die Zuglasche in einer Betriebsposition. Die Zuglasche lässt sich somit erst nach Verlagerung des Schaltauslöseelementes zum Abziehen des Steckverbinderteils vom Basisteil betätigen. Das Steckverbinderteil ist somit durch das Schaltauslöseelement an dem Basisteil fixiert. Auch hierdurch ist ein funktional sicheres Abziehen des Steckverbinderteils vom Basisteil sichergestellt.In an alternative embodiment, it is conceivable that the Zugbetätigungseinheit is made of several parts. The Zugbetätigungseinheit here has the pull tab and a separate from the pull tab switching trigger element. This switching trigger element is movably mounted on the connector part or the base part and forms a stop for the pull tab in one Operating position. The pull tab can thus be actuated only after relocation of the switching trigger element for removing the connector part of the base part. The connector part is thus fixed by the switching trigger element on the base part. This also ensures a functionally safe removal of the connector part from the base part.
Das Schaltauslöseelement kann beispielsweise ein verschiebbar am Steckverbinderteil oder Basisteil gelagerter Schieber sein, wobei der Schieber ein mit einem Schalter zusammenwirkendes, vorstehendes Schaltglied hat und in einer Betriebsposition, bei der ein erster Schaltzustand des Schalters bewirkt wird, die Zuglasche überragt. Erst nach Verschieben des Schiebers von der Zuglasche weg wird die Zuglasche freigegeben und kann vom Basisteil und dem Steckverbinderteil (nach oben) hochgezogen werden, um das Steckverbinderteil dann vom Basisteil abzuziehen. Hierbei muss allerdings erst einmal der Schieber und im zweiten Schritt die Zuglasche ergriffen und betätigt werden.The switching trigger element may for example be a slidably mounted on the connector part or base part slide, wherein the slider has a cooperating with a switch, projecting switching member and in an operating position in which a first switching state of the switch is effected, the pull tab projects beyond. Only after moving the slide away from the pull tab is the pull tab released and can be pulled up by the base part and the connector part (upwards) in order to then pull the connector part away from the base part. In this case, however, first the slider and in the second step, the pull tab must be taken and pressed.
Das Elektronikgerät hat vorzugsweise auf der dem Steckverbinderteil gegenüberliegenden Seite einen Tragschienenrastfuß zum Aufrasten auf eine Tragschiene. Weiterhin ist es vorteilhaft, wenn das Elektronikgerät ein Gerätemodul einer modularen Steuerungseinrichtung ist und Steckkontakte an mindestens einer der Seitenwände hat. Mit Hilfe dieser Steckkontakte ist es dann möglich, einen Datenbus zu etablieren, eine Systemspannungsversorgung für die in einer Reihe nebeneinander auf einer Tragschiene aufgereihten Elektronikgeräte bereitzustellen und/oder eine Leistungsversorgung durch eine Folge von nebeneinander angeordneten Elektronikgeräten durchzuschleifen und die Möglichkeit zu schaffen, dass an mindestens einem der Elektronikgeräte angeschlossene Busteilnehmer mit elektrischer Leistung versorgt werden.The electronic device preferably has on the side opposite the connector part side a DIN rail latch for snapping onto a mounting rail. Furthermore, it is advantageous if the electronic device is a device module of a modular control device and has plug contacts on at least one of the side walls. With the help of these plug contacts, it is then possible to establish a data bus to provide a system voltage supply for the juxtaposed in a row on a DIN rail electronic equipment and / or loop through a power supply through a series of juxtaposed electronic devices and to create the possibility that at least one of the electronic devices connected bus subscribers are supplied with electrical power.
Die Erfindung wird nachfolgend anhand von Ausführungsbeispielen mit den beigefügten Zeichnungen näher erläutert. Es zeigen:
Figur 1- - Perspektivische Ansicht eines Elektronikgerätes mit einem Schaltauslöserelement ohne aufgestecktem Steckverbinderteil;
Figur 2- - Ausschnittsansicht des Elektronikgerätes aus
im Ausschnitt M;Figur 1 Figur 3- - Ausschnittsansicht des Elektronikgerätes aus
mit aufgestecktem Steckverbinderteil im Bereich des Schaltauslöseelementes;Figur 1 Figur 4- - Perspektivische Ansicht des Steckverbinderteils aus
für das Elektronikgerät;Figur 3 Figur 5- - Vergrößerte Ausschnittsansicht im Ausschnitt K des Steckverbinderteils aus
;Figur 4 Figur 6- - Perspektivische Ansicht des Steckverbinderteils aus
mit in die Entnahmeposition herausgezogener Zugbetätigungseinheit;Figur 4 Figur 7- - Vergrößerte Ausschnittsansicht der Steckverbinderteils aus Figur 6 im Ausschnitt L;
Figur 8- - Frontansicht auf das
Elektronikgerät aus Figur 1 mit den Schnittlinien C-C und B-B; Figur 9- - Seiten-Schnittansicht des Elektronikgerätes aus
Figur 1 mit aufgesetztem Steckverbinderteil im Schnitt B-B; Figur 10- - Vergrößerte Ausschnitts-Schnittansicht des Elektronikgerätes aus
Figur 9 im Schnitt B-B für den Ausschnitt J; Figur 11- - Seitenschnittansicht des Elektronikgerätes im Schnitt C-C mit aufgesetztem Steckverbinderteil;
Figur 12- - Vergrößerte Schnittansicht des Elektronikgerätes im Schnitt C-C im Ausschnitt G;
Figur 13- - Perspektivische Ansicht einer zweiten Ausführungsform eines Elektronikgerätes;
Figur 14- - Vergrößerte Auschnittsansicht im Ausschnitt A des Elektronikgerätes aus
Figur 13 ; Figur 15- - Perspektivische Ansicht einer zweiten Ausführungsform eines Steckverbinderteils mit Zugbetätigungseinheit im Betriebszustand;
Figur 16- - Perspektivische Ausschnittsansicht des Steckverbinderteils aus
Figur 15 im Ausschnitt H; Figur 17- - Perspektivische Ansicht des Steckverbinderteils aus
Figur 15 mit in die Entnahmeposition umgeschwenkten Zugbetätigungseinheit; Figur 18- - Vergrößerte Ausschnittsansicht des Steckverbinderteils aus Figur 17 im Ausschnitt J;
Figur 19- - Perspektivische Ansicht des Steckverbinderteils mit in die Entnahmeposition herausgezogener Zugbetätigungseinheit;
Figur 20- - Vergrößerte Ausschnittsansicht des Steckverbinderteils aus Figur 19 in Ausschnitt K;
- Figur 21
- - Frontansicht der zweiten Ausführungsform des Elektronikgerätes mit den Schnittlinien B-B und C-C;
Figur 22- - Seitenschnittansicht der zweiten Ausführungsform des Elektronikgerätes im Schnitt C-C;
Figur 23- - Vergrößerte Ausschnittsansicht des Elektronikgerätes im Schnitt C-C gemäß der
Figur 22 im Bereich der Zugbetätigungseinheit; Figur 24- - Seitenschnittansicht der zweiten Ausführungsform des Elektronikgerätes im Schnitt B-B;
Figur 25- - Vergrößerte Ausschnittsansicht des Elektronikgerätes aus
Figur 24 im Schnitt B-B im Ausschnitt G.
- FIG. 1
- - Perspective view of an electronic device with a switching trigger element without plugged connector part;
- FIG. 2
- - Partial view of the electronic device
FIG. 1 in section M; - FIG. 3
- - Partial view of the electronic device
FIG. 1 with plug connector part in the region of the switching trigger element; - FIG. 4
- - Perspective view of the connector part
FIG. 3 for the electronic device; - FIG. 5
- - Enlarged detail view in the cutout K of the connector part
FIG. 4 ; - FIG. 6
- - Perspective view of the connector part
FIG. 4 with pulled out into the removal position Zugbetätigungseinheit; - FIG. 7
- - Enlarged sectional view of the connector part of Figure 6 in the neck L;
- FIG. 8
- - Front view of the electronic device off
FIG. 1 with the cutting lines CC and BB; - FIG. 9
- - Side sectional view of the electronic device
FIG. 1 with attached Connector part in section BB; - FIG. 10
- - Enlarged sectional view of the electronic device
FIG. 9 in section BB for the section J; - FIG. 11
- - Side sectional view of the electronic device in section CC with attached connector part;
- FIG. 12
- - Enlarged sectional view of the electronic device in section CC in the cutout G;
- FIG. 13
- - Perspective view of a second embodiment of an electronic device;
- FIG. 14
- - Enlarged cut-out view in detail A of the electronic device
FIG. 13 ; - FIG. 15
- - Perspective view of a second embodiment of a connector part with Zugbetätigungseinheit in the operating state;
- FIG. 16
- - Perspective cutaway view of the connector part
FIG. 15 in section H; - FIG. 17
- - Perspective view of the connector part
FIG. 15 with the pull-actuation unit pivoted into the removal position; - FIG. 18
- - Enlarged partial view of the connector part of Figure 17 in the neck J;
- FIG. 19
- - Perspective view of the connector part with pulled out into the removal position Zugbetätigungseinheit;
- FIG. 20
- - Enlarged partial view of the connector part of Figure 19 in detail K;
- FIG. 21
- - Front view of the second embodiment of the electronic device with the section lines BB and CC;
- FIG. 22
- - side sectional view of the second embodiment of the electronic device in section CC;
- FIG. 23
- Enlarged sectional view of the electronic device in section CC according to the
FIG. 22 in the area of the train operating unit; - FIG. 24
- - Side sectional view of the second embodiment of the electronic device in section BB;
- FIG. 25
- - Enlarged partial view of the electronic device
FIG. 24 in section BB in section G.
Das Basismodul 2 hat einen Rastfuß 4, der in an sich bekannter Weise ausgeführt und zum Aufsetzen des Elektronikgehäuses 1 auf die Tragschiene (nicht dargestellt) vorgesehen ist.The
An den Seitenwänden des Basismoduls 2 sind weiterhin Steckkontakte 5 vorgesehen, um einen Datenbus und eine Systemspannungsversorgung für eine Anzahl von nebeneinander auf eine Tragschiene aufgesteckten Elektronikgeräten 1 zu etablieren. Weiterhin sind beabstandet von diesen Steckkontakten 5 Leistungs-Energie-Steckkontakte 6 an den Seitenwänden des Basismodul 2 vorhanden, diese dienen dazu, eine durchgehende elektrische Energieversorgung von an das Elektronikgerät 1 anschließbaren Busteilnehmern (Sensoren, Aktoren oder anderen Geräten) bereitzustellen.On the side walls of the
Deutlich wird, dass das Elektronikmodul 3 an der Oberseite einen Freiraum 7 hat, der durch eine senkrecht verlaufende Anlagekante 8 durchgrenzt ist. Dieser Freiraum 7 ist zur Aufnahme eines Steckverbinderteils (nicht dargestellt) vorgesehen, der im aufgesetzten Zustand an die Anlagekante 8 angrenzt. Zur Verriegelung des Steckverbinderteils mit dem Elektronikgerät 1 ragt an der Anlagekante 8 ein Rastfinger 9 hervor. Dieser Rastfinger 9 wirkt dann mit einer Zuglasche des Steckverbinderteils zusammen.It is clear that the
Um ein unbeabsichtigtes Abziehen des Steckverbinderteils zu verhindern hat das Elektronikgerät 1 auf der Oberseite angrenzend an die Anlagekante 8 einen Schieber 10, der auf der Oberseite quer zur Erstreckungsrichtung der Anlagekante 8 verschiebbar am Elektronikgerät 1 gelagert ist und in einer Betriebsposition über die Anlagekante 8 hinaus in den Freiraum 7 ragt.To prevent inadvertent removal of the connector part, the
Bei aufgesetztem Steckverbinderteil überragt der Schieber 10 damit auch das Steckverbinderteil und verhindert, dass das Steckverbinderteil vor dem Elektronikgerät 1 nach oben, d. h. entgegengesetzt zum Basisteil 40 abgezogen werden kann.When mounted connector part of the
Dieser Schieber 10 bildet somit ein von der Zuglasche am Steckverbinderteil separates Schaltauslöseelement. Hierzu ragt ein nicht sichtbarer Finger an dem Schieber 10 in den Innenraum des Elektronikgerätes 1 ein, um mit einem dort angeordneten elektrischen Schalter 13 zusammenzuwirken.This
Vor dem Abnehmen des Steckverbinderteils 11 von dem Elektronikgerät 1 muss der Schieber 10 aus der dargestellten Betriebsposition in eine Wartungsposition verschoben werden. Dabei wird der Schalter 13 aus dem Betriebsschaltzustand in einen Wartungs-Schaltzustand gebracht. Das Elektronikgerät 1 ist nun so ausgebildet, dass durch die Betätigung des Schalters 13 das Elektronikgerät 1 in einen Wartungszustand überführt wird, in dem das Abnehmen des Steckverbinderteils 11 funktional sicher möglich ist. Mit Hilfe des Schalters 13 wird somit in die elektrische bzw. die elektronische Funktionalität des Elektronikgerätes 1 eingegriffen, bevor das Steckverbinderteil 11 überhaupt von dem Elektronikgerät 1 abgezogen werden kann. Das Abziehen des Steckverbinderteils 11 von dem Elektronikgerät 1 wird durch eine Zuglasche 14 erleichtert, die an das Steckverbinderteil 11 angebunden ist. Bei Herausziehen der Zuglasche wird die an einem elastisch federnd an dem Elektronikgerät 1 angebundenen Rastarm angeordnete Rastnase 9 aus dem Freiraum 7 verlagert, um die weitere Verrastung des Steckverbinderteils 11 mit dem Elektronikgerät 1 aufzuheben.Before removing the
In dem der Zuglasche 14 gegenüberliegenden Abschnitt hat das Steckverbinderteil 11 ein Schwenklager 16, mit dem das Steckverbinderteil 11 schwenkbar an das Isolierstoffgehäuse des Elektronikgerätes 1 angelenkt werden kann. Es wird dann anschließend in den Freiraum 7 heruntergeschwenkt, bis die Zuglasche 14 an die Anlagekante 8 angrenzt. Im Betriebszustand verrastet dann die Rastnase 9 mit einer korrespondierenden Nase 17, die in eine Ausnehmung 18 der Zuglasche 14 hineinragt.In the section opposite the
Die Zuglasche 14 hat weiterhin einen Vorsprung 19, mit dem der federelastische Rastarm des Elektronikgehäuses 1 mit seiner Rastnase 9 aus dem Freiraum 7, d. h. von dem Steckverbinderteil 11 weg bewegt wird, wenn die Zuglasche 14 nach oben abgezogen wird.The
Ein unbeabsichtigtes Herausziehen der Zuglasche 14 wird durch einen Rücksprung 20 (Ausschnitt) an der Zuglasche 14 verhindert, wenn der Schieber 10 in der Betriebsposition das Steckverbinderteil 11 überragt und damit in den Rücksprung 20 eintaucht.An unintentional pulling out of the
Deutlich wird weiterhin, dass das Steckverbinderteil 11 auf das Elektronikmodul 3 aufgesetzt ist, wobei die Rastnase 9 an dem federelastischen Rastarm die korrespondierende Rastnase 17 des Steckverbinderteils 11 übergreift. Damit ist das Steckverbinderteil 11 an dem Basisteil 40 des Elektronikgerätes 1 verrastet.It is also clear that the
Deutlich wird, dass der federelastisch gelagerte Rastarm 9 die korrespondierende Rastnase 17 des Steckverbinderteils 11 überragt, um das Steckverbinderteil 11 lösbar an dem Elektronikgerät 1 zu verrasten. Die Zuglasche 14 des Steckverbinderteils 11 erstreckt sich dabei parallel zu dem Rastfinger mit der Rastnase 9 des Elektronikgeräts 1. Dabei grenzt der Vorsprung an der Zuglasche 14 an den federnden Rastarm 25 an, um beim Heraufziehen der Zuglasche 14 den federnden Rastarm 25 und die Rastnase 9 am freien Ende des Rastarms von dem Steckverbinderteil 11 weg zu verlagern. In der Wartungsposition bei herausgezogener Zuglasche 14 grenzt dann der untere Quersteg 38 der Zuglasche 14 an die Rastnase 17 des Steckverbinderteils 1 an, um auf diese Weise die Zuglasche 14 an dem Steckverbinderteil 11 zu sichern. In dieser Position ist der federnde Rastarm 25 mittels des Vorsprungs 19 so weit vom Steckverbinderteil 11 weg verlagert, dass die Verrastung zwischen Rastnase 9 und korrespondierender Rastnase 17 aufgehoben ist. Das Steckverbinderteil 11 kann dann von dem Elektronikgerät 1 und der darin befindlichen Leiterplatte durch Verschwenken abgezogen werden.It is clear that the resiliently mounted locking
Für den weiteren Aufbau kann im Wesentlichen auf das zum ersten Ausführungsbeispiel Vorhergesagte verwiesen werden.For the further construction, reference can essentially be made to what was predicted for the first exemplary embodiment.
Die Zugbetätigungseinheit der zweiten Ausführungsform des Elektronikgerätes 1 ist allerdings anders gestaltet, was nachfolgend erläutert wird.The Zugbetätigungseinheit the second embodiment of the
Es ist erkennbar, dass an der den Freiraum 7 für ein Steckverbinderteil (nicht dargestellt) begrenzenden Anlagekante 8 im oberen Bereich des Elektronikgerätes 1 eine Rastnase 27 vorspringt. Weiterhin ist in der Anlagekante 8 eine Schaltöffnung 28 vorgesehen, die zu einem Schalter führt. Unter einem Schalter wird dabei entweder ein selbsthaltender elektrischer Schalter oder aber ein Taster verstanden, der für eine Schaltposition dauerhaft mit Kraft beaufschlagt werden muss.It can be seen that at the
Auf der dem Schwenklager 16 gegenüberliegenden Seite ist wiederum eine Zuglasche 30 angeordnet, die jedoch anders als in dem ersten Ausführungsbeispiel gelagert ist. Die Zuglasche 30 ist auf dem der Oberseite gegenüber liegenden Ende, d. h. auf der zum Basismodul 2 hinweisenden Seite, schwenkbar an dem Steckverbinderteil 29 gelagert. Die Zuglasche 30 hat einen Querholm 31, der einen Rastanschlag bildet. Weiterhin ist erkennbar, dass von der Zuglasche 30 eine von dem Steckverbinderteil 29 wegragende Nase 32 vorhanden ist. Diese Nase 32 ist zum Eintauchen in die Schaltöffnung 28 oder zur Betätigung eines im Innenraum des Elektronikgerätes 1 angeordneten Schalters/Tasters vorgesehen.On the opposite side of the pivot bearing 16 a
Claims (9)
- Electronics device (1), comprising:- a base part (40) which is formed from an insulating-material housing (24),- a printed circuit board (12) in the insulating-material housing (24), which printed circuit board is populated with at least one electronic, electrical and/or electromechanical component, and- a plug-in connector part (11, 29) which has at least one conductor connection contact for connecting an electrical conductor and which has a plug-in contact connection for establishing electrically conductive contact between the at least one conductor connection contact and the base part (40) in the operating state when the plug-in connector part (11, 29) is fitted on the base part (40),wherein the plug-in connector part (11, 29) and the base part (40) have mounting elements (16, 26), which interact with each other, for mounting the plug-in connector part (11, 29) on the base part (40), and wherein the plug-in connector part (11, 29) has a pull-action operating unit which is mounted on the plug-in connector part (11, 29) such that it can be moved relative to the plug-in connector part (11, 29) and which has a pull tab (14, 30) for withdrawing the plug-in connector part (11, 29) from the base part (40), characterized in that the pull-action operating unit has a switching triggering element (10, 32) which can be coupled to an electrical switch (13) of the electronics device (1), wherein the switching triggering element (10, 32) is designed for the purpose that the electrical switch (13) is operated by the switching triggering element (10, 32) out of the operating state for withdrawing the plug-in connector part (11, 29) from the base part (40) for the purpose of moving the pull tab (14, 30) or in the event of a movement of the pull tab (14, 30).
- Electronics device (1) according to Claim 1, characterized in that the switching triggering element is a lug (32) on the pull tab (30), which lug projects away from the plug-in connector part (29), wherein the lug is designed for operating an electrical switch (13) which is arranged on or in the base part (40) or plug-in connector part (29) adjacent to the lug in the operating state.
- Electronics device (1) according to Claim 2, characterized in that the pull tab (30) is mounted in a pivotable manner on the plug-in connector part (29) and the lug (32), when the pull tab (30) is pivoted out of the operating state, operation of the electrical switch (13) by the lug (32) is cancelled.
- Electronics device (1) according to Claim 3, characterized in that the pull tab (30) and the plug-in connector part (29) have latching elements (27, 31) which interact with one another and are designed in order to prevent movement of the pull tab (30) in the operating state when the pull tab (30) is pivoted away from the plug-in connector part (29) and rests on the base part (40) .
- Electronics device (1) according to Claim 1, characterized in that the pull-action operating unit is multipartite and has the pull tab (14) and also a switching triggering element (10) which is separate from the pull tab (14), wherein the switching triggering element (10) is movably mounted on the plug-in connector part (11) or the base path (40) and forms a stop for the pull tab (14) in an operating position.
- Electronics device (1) according to Claim 5, characterized in that the switching triggering element is a slide (10) which is displaceably mounted on the plug-in connector part (11) or on the base part (40), wherein the slide (10) has a projecting switching member (50) which interacts with the electrical switch (13) and protrudes beyond the pull tab (14) in an operating position in which a first switching state of the electrical switch (13) is implemented.
- Electronics device (1) according to one of the preceding claims, characterized in that the electronics device (1) has, on that side which is situated opposite the plug-in connector part (11, 29), a mounting rail latching foot (4) for latching onto a mounting rail.
- Electronics device (1) according to one of the preceding claims, characterized in that the electronics device (1) has a device module of a modular control device with plug-in contacts (5, 6) on at least one side wall for establishing a data bus, for providing a system voltage supply and/or for providing a power supply for bus subscriber which can be connected at least one electronics device (1) of the control unit.
- Electronics device (1) according to Claim 8, characterized in that the electronics device (1) is an input module, an output module, an interface module, a motor control module, a field bus coupler or a field bus controller with a computer unit for executing a control program.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE201310111577 DE102013111577A1 (en) | 2013-10-21 | 2013-10-21 | electronic device |
PCT/EP2014/072336 WO2015059051A1 (en) | 2013-10-21 | 2014-10-17 | Electronic device |
Publications (2)
Publication Number | Publication Date |
---|---|
EP3061155A1 EP3061155A1 (en) | 2016-08-31 |
EP3061155B1 true EP3061155B1 (en) | 2018-12-12 |
Family
ID=51753214
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP14786659.4A Active EP3061155B1 (en) | 2013-10-21 | 2014-10-17 | Electronic device |
Country Status (4)
Country | Link |
---|---|
EP (1) | EP3061155B1 (en) |
CN (1) | CN105474467B (en) |
DE (1) | DE102013111577A1 (en) |
WO (1) | WO2015059051A1 (en) |
Families Citing this family (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US10411395B1 (en) | 2018-10-18 | 2019-09-10 | Dinkle Enterprise Co., Ltd. | Connector module with latch structure |
EP3644451B1 (en) * | 2018-10-24 | 2020-08-12 | Dinkle Enterprise Co., Ltd. | Connector module with latch structure |
BE1026797B1 (en) | 2018-11-26 | 2020-06-22 | Phoenix Contact Gmbh & Co | Modular switching device for controlling at least one electric drive |
DE102019128870A1 (en) * | 2019-10-25 | 2021-04-29 | Schneider Electric Industries Sas | Installation device |
EP4092801A1 (en) * | 2021-05-17 | 2022-11-23 | Hilti Aktiengesellschaft | Plug-in connection device for electrically connecting a cell module of a battery unit to an electronics module of the battery unit, battery unit and hand-held power tool |
Family Cites Families (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4718858A (en) * | 1986-06-16 | 1988-01-12 | Western Digital Corporation | Mechanical interconnect system for electronic units enclosed in stackable housings |
JP3683784B2 (en) * | 2000-07-10 | 2005-08-17 | アルプス電気株式会社 | Card connector device |
WO2004114466A1 (en) * | 2003-06-25 | 2004-12-29 | Crevis Co., Ltd. | Signal processing module of industrial machines |
DE202007005373U1 (en) * | 2007-04-12 | 2008-08-21 | Weidmüller Interface GmbH & Co. KG | Modular terminal block system |
US7938660B1 (en) * | 2009-11-13 | 2011-05-10 | Fujitsu Component Limited | Connector unit with a male connector having a control terminal with a switch |
DE102011110182A1 (en) | 2011-08-09 | 2013-02-14 | Pilz Gmbh & Co. Kg | Modular control device |
-
2013
- 2013-10-21 DE DE201310111577 patent/DE102013111577A1/en not_active Ceased
-
2014
- 2014-10-17 CN CN201480046904.6A patent/CN105474467B/en active Active
- 2014-10-17 WO PCT/EP2014/072336 patent/WO2015059051A1/en active Application Filing
- 2014-10-17 EP EP14786659.4A patent/EP3061155B1/en active Active
Non-Patent Citations (1)
Title |
---|
None * |
Also Published As
Publication number | Publication date |
---|---|
CN105474467A (en) | 2016-04-06 |
CN105474467B (en) | 2018-03-06 |
DE102013111577A1 (en) | 2015-04-23 |
EP3061155A1 (en) | 2016-08-31 |
WO2015059051A1 (en) | 2015-04-30 |
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