EP1498926A2 - Kontaktsystem mit Magnetauslöser - Google Patents
Kontaktsystem mit Magnetauslöser Download PDFInfo
- Publication number
- EP1498926A2 EP1498926A2 EP04015072A EP04015072A EP1498926A2 EP 1498926 A2 EP1498926 A2 EP 1498926A2 EP 04015072 A EP04015072 A EP 04015072A EP 04015072 A EP04015072 A EP 04015072A EP 1498926 A2 EP1498926 A2 EP 1498926A2
- Authority
- EP
- European Patent Office
- Prior art keywords
- contact
- release
- holding part
- lever
- control lever
- 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.)
- Withdrawn
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Classifications
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H71/00—Details of the protective switches or relays covered by groups H01H73/00 - H01H83/00
- H01H71/10—Operating or release mechanisms
- H01H71/1081—Modifications for selective or back-up protection; Correlation between feeder and branch circuit breaker
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H71/00—Details of the protective switches or relays covered by groups H01H73/00 - H01H83/00
- H01H71/10—Operating or release mechanisms
- H01H71/50—Manual reset mechanisms which may be also used for manual release
- H01H71/504—Manual reset mechanisms which may be also used for manual release provided with anti-rebound means
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H77/00—Protective overload circuit-breaking switches operated by excess current and requiring separate action for resetting
- H01H77/02—Protective overload circuit-breaking switches operated by excess current and requiring separate action for resetting in which the excess current itself provides the energy for opening the contacts, and having a separate reset mechanism
- H01H77/06—Protective overload circuit-breaking switches operated by excess current and requiring separate action for resetting in which the excess current itself provides the energy for opening the contacts, and having a separate reset mechanism with electromagnetic opening
Definitions
- the invention relates to a contact system with magnetic release according to the preamble of claim 1 and an installation switching device, in particular a main circuit breaker, with such a contact system according to the preamble of the claim 15th
- Such a contact system and such a service switching device with a generic Contact system is described for example in DE 195 26 592 C2 and is by the company ABB Stotzmaschine GmbH, Heidelberg, under the product name S710 offered in the market.
- a short-circuit current can be applied to such an installation switching device for the duration of more than 30 half waves. So in the zero crossings of the short-circuit current the at least one contact point is not always closed, the must Inertia of the impact anchor should be so large that they pass through a zero crossing of the Short-circuit current that can keep at least one contact point open. In order to are in principle for the mechanical reduction of the service switching device Set limits.
- the object of the invention is a generic contact system with magnetic release and a generic service switching device with the same switching capacity more compact, smaller and thus cheaper to build.
- a holding part when a short-circuit current occurs, a holding part is in the Movement space of the contact lever in the open position - in the following Also referred to as the opening space of the contact lever - in a latching position and when the short-circuit current extinguished againumbled, wherein the contact lever when reducing the short-circuit current through the holding part located in the latching position is prevented from falling back from the release position to the closed position.
- the contact lever is thus mechanical prevented by the holding part from falling back into the closed position, and not more solely by the inertia of the impact anchor, as in the above
- Due to the inventive design of the contact system eliminates the constraint of a minimum inertia of the impact anchor, thus is a much more compact, smaller and thus cheaper construction of the contact system and thus the installation switching device possible.
- a coupling device thus makes it possible to control the position of the holding part on the impact armature whose Position in turn correlated with the strength of the short-circuit current, creating a particularly simple and compact control of the holding part as a function of the short-circuit current is feasible.
- a further advantageous embodiment of the invention provides that the Coupling device one in a - fixed relative to the magnetic release - axis and about this rotatably mounted, in non-positive and / or positive connection with the pusher standing control lever and one with the control lever and the holding part comprising a cooperating transmission part.
- the contact lever in one - based on the Magnetic release fixed - axis and this is pivotally mounted, in closed position near the tripping end of the magnetic release, in tripping position brought by the impact anchor in a remote from the trigger end position is, and that the holding part after occurrence of a short circuit between the in his Trigger position located contact lever and the tripping end of the magnetic release is inserted.
- An advantageous embodiment of the invention may also be characterized that the holding part guided approximately transversely to the release direction transversely displaceable is. This is a very simple and compact way, a holding part in the opening space the contact lever on and out again.
- control lever is a fixed rotatably mounted, permanently resiliently against the release direction acted double arm.
- An inventive installation switching device has a main current path on, which is a series connection of at least one first contact point, a magnetic trigger, which brings the first contact point in the open position, and a first, via a switching lock a second contact opening thermal Shutter contains, as well as arranged in parallel at least to the first contact point Parallel current path, which has a current limiting resistor and a second, via the switch lock the second contact opening opens, thermal release contains, wherein the first contact point and the magnetic trigger as inventive Contact system with magnetic release are carried out as described above.
- the second contact point is arranged in the main current path, and the first and / or second thermal release only act via the switch lock the second contact point.
- Another very advantageous embodiment of the invention provides that the second Contact point and the coil of the magnetic release electrically outside the parallel current path are arranged in the main current path.
- a current limiting resistor with a higher value greater than 0.5 ohms can be mechanically constructed much smaller than small current limiting resistors with values of about 0.5 ohms and less. Because at a larger current-limiting Resistance will lower the current and therefore the resistance heat flow to be dissipated via its surface. Thus, a much more compact, smaller and thus cheaper construction of a service switching device possible. Of the lower power would be in a service switching device according to the prior art However, it is no longer sufficient to open the first point of contact via the impact anchor to keep.
- a contact system 3 has a contact point formed by a fixed contact piece 2 and a movable contact piece 4, at a contact-side lever arm 32 of a mounted in a contact lever axis 34 Contact lever 30 is located. Furthermore, the contact system 3 has a magnetic release 1 with a tripping end 5 and an opposite Coupling end 6, which in a magnetic release housing 12 a plunger anchor 10th with a plunger-end 10a includes, which in closed position - this is in Fig. 1 shown - the magnetic release housing 12 extends beyond the coupling end 6 axially. At the coupling end 6, a holding plate 8 is attached to the plunger armature 10, so that between the holding plate 8 and the plunger anchor 10, a gap 7 is formed.
- the plunger armature 10 cooperates with a striking armature 9, which is the magnetic release housing 12 trigger side axially surmounted.
- the plunger anchor 10 with the impact anchor 9 is longitudinally displaceably mounted in the triggering direction A in the magnetic release housing 12.
- the magnetic release 1 comprises a magnetic core 11, the one has central bore, so that the impact armature 9 penetrate the magnetic core 11 can. Between the magnetic core 11 and the plunger anchor 10 extends Air gap 13.
- the magnetic release housing 12 is surrounded by a coil 14, whose electrical Connecting cables are not shown here, and the possibly by the Installation switching device flowing current leads.
- the magnetic release 1 further comprises a yoke 15 parallel to the longitudinal direction the magnetic release housing 12 extending first and second Jochstegen 16, 20, and a clutch side, i. on the contact lever 30 remote end of the trigger 1 located, and a trigger-side yoke leg 17, 18.
- a control lever holding plate 50 for receiving a - based on the magnetic release 1 - stationary Joystick axis 68 of a control lever 60 mounted, as well as a triggering direction A and parallel to the control lever bearing slot 52 arranged retaining slot 54th
- the control lever 60 is as a rocker with a first arm 65 and one approximately vertical second arm 64 executed.
- a coupling slot 66 is inserted so that it is with the holding slot 54 at least partially covered when the control lever 60 in the control lever axis 68 is stored.
- a coupling arm 62 Approximately perpendicular to the first arm 65 and thus approximately in alignment with the second arm 64 of the control lever 60 is integrally formed on this a coupling arm 62, via whose free end of the control lever 60 in the gap 7 positive and / or non-positive is coupled to the plunger anchor 10.
- a bearing plate 19 is attached, which is the contact lever axis 34 receives, so that the contact lever 30 in relation to the magnetic release 1 fixed axis 34 and is mounted pivotally about this.
- switch-on position is the trigger-side lever arm 33 of the contact lever 30 in the vicinity the tripping end 5 of the magnetic release.
- the contact lever 30 has on the contact-side lever arm 32, in the vicinity of the contact lever axis 34, an approximately perpendicular to the longitudinal direction of the contact lever 30 arranged on a Federangriffsarm 31, at its free end a Contact lever shackle spring attacks and the contact lever with a force F1 clockwise acted upon, whereby in closed position the necessary contact force between the fixed and the movable contact piece 2, 4, is applied.
- a holding member 40 On a leg extension 18a of the trigger-side yoke leg 18 is in the arrow direction H, perpendicular to the release direction A, longitudinally displaceable a holding member 40 is attached.
- the holding part 40 is an approximately T-shaped body having an approximately vertical for release direction A oriented holding part web 46 and a right angle to the holding part web 46 integrally formed holding part-leg 41. At which the contact lever facing End of the holding part web 46, a detent 42 is formed.
- the catch is However, not absolutely necessary for the inventive function of the device and could also be omitted.
- both Long holes 44, 43 are formed by a recess extending obliquely to the release direction A. 45 connected, so that a total of a cranked recess 49 results.
- leg extension 18a On the leg extension 18a is further a guide plate 48 with a therein recessed, in the release direction extending guide slot 47 is attached.
- the control part 60 and the holding part 40 are connected via a coupling rod 70 with each other connected.
- This coupling rod can also be, for example, a U-shaped bracket.
- the coupling rod 70 is connected to a holding part end 74 in which by the overlap of bent recess 49 out with the guide slot 47 formed space.
- the function of the contact system 3 with magnetic release 1 is the following: In closed position - As shown in Fig. 1 - the contact point is closed and the movable Contact piece 4 is pressed against the fixed contact piece 2 due to the spring force F1.
- the position of the coupling rod is such that its holding part end 74 in the the holding part web 46 and the contact lever 30 facing first slot 44 is located.
- the short-circuit current continues to flow through the coil over several half waves 14, the magnetic field weakens periodically at each current zero crossing, so that the air gap 13 increases periodically slightly.
- This condition is shown in FIG.
- the forced by the coupling with the solenoid plunger 10 thereby periodic Rotation of the control lever 60 counterclockwise about the control lever axis 68 causes a shift of the control part 70 in the release direction A, so that the Holding part end 74 of the control part 70 in the web 46 and contact lever 30-facing away Slot 43 of the holding part leg 41 moves, but maximum up to Approach of the oblique recess 45.
- the holding member 40 is not characterized postponed.
- the trigger-side lever arm 33 of the contact lever 30 thus falls on the Locking nose 42, so that the contact point remains open.
- FIG. 4 shows a further embodiment possibility for an inventive Contact system 203 with magnetic release 201.
- Components with the same function as the described above in Fig. 1 to 3 bear in FIGS. 4 to 6 the same, however by 200 increased reference numerals.
- the contact system 203 has a fixed contact point 202 and at least one movable one Contact point 204 which on a contact-side lever arm 232 of an in a contact lever axis 234 mounted contact lever 230 is located. Further points the contact system 203 a magnetic release 201 with a tripping end 205 and an opposite end 206 on this.
- the magnetic release 205 comprises in a solenoid actuator housing 212 a plunger 210 with a plunger-end 210a, which in switched-on - this is shown in Fig. 4 - the magnetic release housing 212 at the end 206 axially surmounted.
- the plunger armature 210 cooperates with a striking armature 209, which the magnetic release housing 212 axially projects beyond the trigger side.
- the connection between Immersion anchor 210 and impact anchor 209 is not shown in Figs. 4 to 6.
- Likewise not shown is also present in the magnetic release 201 magnetic core.
- the plunger armature 210 with the impact armature 209 is longitudinally displaceable in the release direction mounted in the magnetic release housing 212.
- the magnetic release housing 212 is surrounded by a coil 214, the electrical Zuund Has discharges 214a, 214b and optionally by the service switching device flowing electricity leads.
- the magnetic trigger 201 further comprises a yoke 215 parallel to the longitudinal direction the magnetic release housing 212 extending first and second Jochstegen 216, 220, as well as a trigger side and a opposite Yoke legs 218, 217.
- Jochstege 216, 220 can also be a closed Housing be used, then the side walls of this housing would be to be regarded as yoke bridges.
- a bearing plate 219 is mounted on the trigger side, which is the contact lever axis 234 receives, so that the contact lever 230 in relation to the Magnetic release 201 fixed axis 234 and is mounted pivotally about this.
- In Switching position is the trigger-side lever arm 233 of the contact lever 230th near the tripping end 205 of the magnetic release 201.
- a control lever retaining plate 241 is attached to the yoke web 220 on the release side, which receives a control lever axis 268 of a control lever 260.
- the control lever 260 is as a rocker with a coupling arm 262 and an approximately at right angles formed this molded coupling arm 264.
- About the related to the Magnetic release 201 fixed control lever axis 268 of the control lever 260 is related rotatably mounted on the magnetic release 201.
- the contact lever 230 has a radially away from the contact lever axis 234 approximately perpendicular to the contact lever 230 standing spring attack arm 231. On whose At the free end a restraining spring 235 attacks with its first end, the second end of the Shackle spring engages the free end of the coupling arm 264 of the control lever 260.
- the holding part 240 is in essentially a cuboid body.
- transfer lever arm 265th formed in the knee of the rocker of the control lever 260 is at this a transfer lever arm 265th formed.
- the transfer lever arm 265 acts via a transmission spring 269 the holding part 240 together.
- the function of the contact system 203 with magnetic release 201 is the following: In closed position - As shown in Fig. 4 - the contact point is closed and the movable Contact 204 is due to the spring force of the spring 235 with the necessary Contact force against the fixed contact 202 pressed.
- FIG. 5 shows the state when a short-circuit current flows through the coil 214.
- the Magnetic field attracts the plunger anchor 210 and the percussion anchor 209 rapidly becomes the triggering direction A moves. He acts on the coupling arm 262 of the control lever 260 that this is rotated clockwise.
- This rotational movement causes two things: First, the coupling arm 262 against the trigger-side lever arm 233 of the contact lever 230 is pressed, so that the contact lever 230 rotates counterclockwise and thereby the movable contact piece 204 is torn away from the fixed contact piece 202, whereby the contact point opens. At the same time arises between the trigger side lever arm 233 and the Tripping end 205 of the magnetic release 201 an opening space 280th
- the transfer lever arm 265 slides over the transfer spring 269 Holding part 240 under the trigger-side lever arm 233 of the contact lever 265 in the Opening space 280.
- the short-circuit current continues to flow through the coil over several half waves 214, the magnetic field weakens periodically at each current zero crossing.
- the contact lever 230 rotates clockwise again, but at the maximum so far until it falls onto the holding part 240, whereby a further rotation of the contact lever 230 is prevented in the direction of closing the contact point.
- the contact point is thus kept open by the holding part 240. This condition is shown in Figure 6.
- Fig. 7 shows a circuit arrangement for a service switching device.
- Main current path 118 is a first contact point 111 and a second contact point 119; both are connected in series.
- a first thermal release 136 which is on a switch lock 121 acts as well as a magnetic trigger 140.
- the magnetic trigger 140 is via the line of action 141 with the first contact point 111 connected. He puts her in the open position when he comes from a short circuit current is flowed through.
- the magnetic release 140 and the via the line of action 141 with this connected first contact point 111 are by a contact system with Magnetic release executed, as described above in FIGS. 1 to 3 and 4 to 6 has been.
- a parallel-current path 115 is connected, in which a resistance body 116 is arranged. Electrically in series with the resistor body Switched 116 is located in the parallel current path 115, a second thermal Trigger 120, also referred to herein as a selective bimetal, and which also acts on the switching mechanism 121.
- the coil of the magnetic release 140 is located electrically outside of the Parallel current path 115.
- the switching mechanism 121 is connected via the line of action 123 with the second contact point 119.
- the action lines of the thermostatic bimetals 120, 136 on the switch lock are with designated by the reference numerals 124 and 125.
- the first and second thermal releases 136, 124 act on the switching mechanism 121 only on the second contact point 119th
- the switch according to FIG. 7 is to switch off a short circuit, then over the magnetic shutter 140 first the contact point 111 is opened, via the action line 141 as described above in FIGS. 1 to 3 and 4 to 6. In this case then the current commutated into the parallel current path and through the resistor body 116 limited, the second contact point 119 is still closed.
- the resistance value of the resistance body 116 is greater than 0.5 ohms and thus higher than it is in prior art products such as the one above mentioned switch S71 0 the company ABB Stotz contact GmbH, is used.
- Advantageous has the effect that the lower current makes the mechanical variable the resistance body can be chosen smaller, because he has less heat loss dissipate.
- the current is limited by the larger resistance to a value that is no longer large enough so that the magnetic trigger 140 alone the Contact point 111 could keep open.
- a holding part 40 and 240 in the Opening space under the contact lever 30 or 230 of the contact point 111 pushed, so that the pad 111 even at low, by a large resistance value 116 strongly limited short-circuit current, yet with the help of the holding part 40 and 240th is kept open.
- the delay time of the selective acting bimetallic strip 120 is longer than is a half - wave duration of the short - circuit current, so it comes before opening the second contact point 119 via the switching mechanism 121 to one or more zero crossings of the electricity. Since the holding part 40 or 140 when triggered in the opening space was pushed under the contact lever 30 or 230 of the contact point 111, remains at the zero crossings of the short-circuit current, the pad 111 also then open when the magnetic release 140 is built so small and compact that the Mass inertia of the plunger armature is no longer sufficient, the contact point 111 during keep the zero crossings open. Otherwise, the first contact point 111 would after Go through each zero crossing again opened, resulting in an oscillation with accordingly high material wear would result.
- the first thermal release 136 speaks at the end of its delay time and acts on the action line 125 so on the Rear derailleur 121, that the second contact point 119 is opened.
- the current in the main current path is thus interrupted.
- the trip coil is de-energized and the Plunger anchor drops again, so that the holding part 40, 240 under the contact lever 30, 230 is pulled out and the contact point 111 closes again.
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Abstract
Description
- Fig. 1
- ein erfindungsgemäßes Kontaktsystem mit Magnetauslöser in Einschaltstellung,
- Fig. 2
- das Kontaktsystem nach Fig. 1 in Auslösestellung,
- Fig. 3
- das Kontaktsystem nach Fig. 1 bei verringertem Kurzschlussstrom,
- Fig. 4
- eine weitere Ausführungsform eines erfindungsgemäßen Kontaktsystems mit Magnetauslöser in Einschaltstellung,
- Fig. 5
- das Kontaktsystem nach Fig. 4 in Auslösestellung,
- Fig. 6
- das Kontaktsystem nach Fig. 4 bei verringertem Kurzschlussstrom, und
- Fig. 7
- ein elektrisches Schaltbild eines erfindungsgemäßen Installationsschaltgerätes.
Claims (18)
- Kontaktsystem mit wenigstens einer Kontaktstelle, gebildet aus einem festen Kontaktstück (2, 202) und einem beweglichen Kontaktstück (4, 204), einem wenigstens eine Spule und einen Schlaganker (9, 209) umfassenden und ein Auslöseende und ein gegenüberliegendes Kupplungsende aufweisenden Magnetauslöser (1, 201), und einem Kontakthebel (30, 230), der bei Auftreten eines Kurzschlussstromes unter Einwirkung des Schlagankers (9, 209) in seiner Auslöserichtung von einer Einschaltstellung entgegen der Kraftwirkung einer Kontakthebel-Fesselfeder durch einen Öffnungsraum hindurch in eine Auslösestellung bewegbar ist,
dadurch gekennzeichnet, dass bei Auftreten eines Kurzschlussstromes ein Halteteil (40, 240) in den Öffnungsraum (80, 280) des Kontakthebels in eine Rastposition einund bei dauerhaftem Verlöschen des Kurzschlussstromes wieder herausbringbar ist, und der Kontakthebel (30, 230) bei Verringerung des Kurzschlussstromes, beispielsweise beim Nulldurchgang, durch das Halteteil (40, 240) in Rastposition am Zurückfallen aus der Auslösestellung in die Einschaltstellung gehindert ist. - Kontaktsystem nach Anspruch 1, dadurch gekennzeichnet, dass zwischen dem Schlaganker (9, 209) und dem Halteteil 40, 240) eine Koppelvorrichtung vorgesehen ist, so dass der Schlaganker (9, 209) über die Koppelvorrichtung mit dem Halteteil (40, 240) verbunden und die Lage des Halteteils über den Schlaganker steuerbar ist.
- Kontaktsystem nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Koppelvorrichtung einen in einer - bezogen auf den Magnetauslöser (1, 201) ortsfesten - Achse (68, 268) und um diese drehbar gelagerten, in kraft- und/oder formschlüssiger Verbindung mit dem Schlaganker (9, 209) stehenden Steuerhebel (60, 260) und ein mit dem Steuerhebel (60, 260) und dem Halteteil (40, 240) zusammenwirkendes Übertragungsteil (70, 265) umfasst.
- Kontaktsystem nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Kontakthebel (30, 230) in einer bezogen auf den Magnetauslöser (1, 201) ortsfesten Achse (34, 234) und um diese schwenkbar gelagert ist, sich in Einschaltstellung nahe des Auslöseendes (5, 205) des Magnetauslösers (1, 201) befindet, in Auslösestellung durch den Schlaganker (9, 209) in eine von dem Auslöseende (5, 205) entfernte Position gebracht ist, und dass das Halteteil (40, 240) nach Auftreten eines Kurzschlusses zwischen den in seiner Auslösestellung befindlichen Kontakthebel (30, 230) und das Auslöseende (5, 205) des Magnetauslösers (1, 201) eingefügt ist.
- Kontaktsystem nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass das Halteteil (40, 240) in etwa senkrecht zur Auslöserichtung transversal verschieblich geführt ist.
- Kontaktsystem nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Steuerhebel (60, 260) ein ortsfest drehbar gelagerter, dauernd federnd entgegen der Auslöserichtung beaufschlagter Doppelarmhebel ist.
- Kontaktsystem nach einem der Ansprüche 1 bis 6, dadurch gekennzeichnet, dass der Magnetauslöser (1, 201) einen Tauchanker (10, 210) in einem Magnetauslösergehäuse (12, 212) umfasst, der in Einschaltstellung das Magnetauslösergehäuse (12, 212) kupplungsseitig axial überragt, und dass am Kupplungsende an einem Tauchankerabschnitt eine Halteplatte (8) angebracht ist, so dass zwischen der Halteplatte (8) und dem Tauchanker (10) ein Zwischenraum (7) entsteht.
- Kontaktsystem nach Anspruch 7, dadurch gekennzeichnet, dass der Magnetauslöser (1, 201) ein Joch (15, 215) mit wenigstens einem Jochsteg (16, 20) sowie einem kupplungsseitigen und einem auslöseseitigen Jochschenkel (17, 18) umfasst, dass an dem kupplungsseitigen Jochschenkel (17) eine Steuerhebel-Halteplatte (50) angebracht ist, dass die Steuerhebel-Achse (68) in der Steuerhebel-Halteplatte (50) gelagert ist, und dass die Steuerhebel-Halteplatte (50) mit einem in etwa in Auslöserichtung A verlaufenden Halterungs-Langloch (54) versehen ist.
- Kontaktsystem nach Anspruch 8, dadurch gekennzeichnet, dass an dem Ende des ersten Arms (65) des Steuerhebels (60) eine Steuerhebel-Fesselfeder angreift und dass in dem zweiten Arm (64) ein Koppel-Langloch (66) so eingebracht ist, dass es sich mit dem Halterungs-Langloch (54) zumindest teilweise überdeckt.
- Kontaktsystem nach Anspruch 9, dadurch gekennzeichnet, dass in etwa senkrecht zu dem ersten Arm (65) des Steuerhebels ein Kupplungsarm (62) angeformt ist, der an seinem freien Ende in dem Zwischenraum (7) form- und/oder kraftschlüssig mit dem Tauchanker (10) gekoppelt ist.
- Kontaktsystem nach Anspruch 10, dadurch gekennzeichnet, dass das Halteteil (40) einen in etwa rechtwinklig zur Auslöserichtung orientierten Halteteil-Steg (46) und einen rechtwinklig an dem Halteteil-Steg (46) angeformten Halteteil-Schenkel (41) aufweist; dass in dem Halteteil-Schenkel (41) ein dem Halteteil-Steg (46) und dem Kontakthebel (30) zugewandtes erstes Langloch (44) und ein zu diesem parallel versetztes, dem Halteteil-Steg (46) und dem Kontakthebel (30) abgewandtes Langloch (43) eingebracht ist; und dass beide Langlöcher (44, 43) durch eine schräge Ausnehmung (45) verbunden sind.
- Kontaktsystem nach Anspruch 11, dadurch gekennzeichnet, dass das Übertragungsteil eine Koppelstange (70) ist mit einem Halteteil-Ende (74), das in den Langlöchern (44, 43) und der schrägen Ausnehmung (45) des Halteteils (40) geführt ist und mit einem Steuerhebel-Ende (72), das in dem durch die Überlappung des Halteteil-Langlochs (54) mit dem Koppel-Langloch 66) gebildeten Raum geführt ist.
- Kontaktsystem nach einem der Ansprüche 1 bis 6, dadurch gekennzeichnet, dass das Übertragungsteil ein an den Steuerhebel angeformter Hebelarm (265) ist.
- Kontaktsystem nach Anspruch 13, dadurch gekennzeichnet, dass das Halteteil (240) ein im Wesentlichen quaderförmiger Körper ist.
- Installationsschaltgerät mit einem Hauptstrompfad (118), der eine Reihenschaltung von wenigstens einer ersten Kontaktstelle (111), einem magnetischen Auslöser (140), der die erste Kontaktstelle (111) in Offenstellung bringt, und einem ersten, über ein Schaltschloss (121) eine zweite Kontaktstelle (119) öffnenden, thermischen Auslöser (136) enthält, und mit einem parallel wenigstens zur ersten Kontaktstelle (111) angeordneten Parallelstrompfad (115), der einen strombegrenzenden Widerstand (116) und einen zweiten, über das Schaltschloss (121) die zweite Kontaktstelle (119) öffnenden, thermischen Auslöser (124) enthält, dadurch gekennzeichnet, dass die erste Kontaktstelle (111) und der magnetische Auslöser (140) als Kontaktsystem mit Magnetauslöser gemäß einem der Ansprüche 1 bis 14 ausgeführt sind.
- lnstallationsschaltgerät nach Anspruch 15, dadurch gekennzeichnet, dass die zweite Kontaktstelle (119) in dem Hauptstrompfad (118) angeordnet ist und der erste und/oder zweite thermische Auslöser (136, 124) über das Schaltschloss (121) nur auf die zweite Kontaktstelle (119) wirken.
- Installationsschaltgerät nach Anspruch 16, dadurch gekennzeichnet, dass die zweite Kontaktstelle (119) und die Spule des magnetischen Auslösers (140) elektrisch außerhalb des Parallelstrompfades (115) in dem Hauptstrompfad (118) angeordnet sind.
- Installationsschaltgerät nach einem der Ansprüche 15 bis 17, dadurch gekennzeichnet, dass der strombegrenzende Widerstand (116) größer als 0,5 Ohm ist.
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE10332358 | 2003-07-17 | ||
| DE2003132358 DE10332358A1 (de) | 2003-07-17 | 2003-07-17 | Kontaktsystem mit Magnetauslöser |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP1498926A2 true EP1498926A2 (de) | 2005-01-19 |
| EP1498926A3 EP1498926A3 (de) | 2007-03-07 |
Family
ID=33461958
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP04015072A Withdrawn EP1498926A3 (de) | 2003-07-17 | 2004-06-26 | Kontaktsystem mit Magnetauslöser |
Country Status (2)
| Country | Link |
|---|---|
| EP (1) | EP1498926A3 (de) |
| DE (1) | DE10332358A1 (de) |
Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE102011008829A1 (de) * | 2011-01-19 | 2012-07-19 | Abb Ag | Installationsschaltgerät |
| WO2015110156A1 (en) * | 2014-01-23 | 2015-07-30 | Abb Ag | Electromagnetic circuit breaker for low voltage dc applications |
| CN111816526A (zh) * | 2020-08-07 | 2020-10-23 | 上海瑞忒尔电气技术有限公司 | 一种断路器脱扣器的动衔铁 |
| CN114955835A (zh) * | 2022-04-26 | 2022-08-30 | 中铁二十局集团有限公司 | 一种预制钢箱梁悬臂拼装施工方法 |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN101630610B (zh) * | 2008-07-15 | 2011-06-29 | 浙江正泰电器股份有限公司 | 断路器的电磁装置 |
Family Cites Families (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE654161C (de) * | 1933-01-29 | 1937-12-16 | Frida Strauss Geb Ruppel | Kontaktanordnung |
| US2325717A (en) * | 1940-12-04 | 1943-08-03 | Westinghouse Electric & Mfg Co | Circuit breaker |
| FR88705E (de) * | 1964-09-02 | 1967-06-02 | ||
| BE772520A (fr) * | 1971-09-13 | 1972-01-17 | Vynckier Belg Werkhuizen | Stroomonderbrekingselement. |
| FR2226745B2 (de) * | 1973-04-19 | 1978-03-03 | Legrand Sa | |
| NL8703170A (nl) * | 1987-12-31 | 1989-07-17 | Holec Syst & Componenten | Elektromagnetische schakelaar. |
| FR2642893B1 (fr) * | 1989-02-03 | 1991-04-19 | Telemecanique Electrique | Contacteur-inverseur protege utilisant un systeme de transmission multifonctionnel pour la commande d'interrupteurs de confirmation |
| DE19526592C2 (de) * | 1995-07-21 | 1999-04-15 | Abb Patent Gmbh | Elektrischer Schalter, insbesondere Leitungsschutzschalter |
-
2003
- 2003-07-17 DE DE2003132358 patent/DE10332358A1/de not_active Withdrawn
-
2004
- 2004-06-26 EP EP04015072A patent/EP1498926A3/de not_active Withdrawn
Cited By (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE102011008829A1 (de) * | 2011-01-19 | 2012-07-19 | Abb Ag | Installationsschaltgerät |
| DE102011008829B4 (de) * | 2011-01-19 | 2012-08-09 | Abb Ag | Installationsschaltgerät |
| WO2015110156A1 (en) * | 2014-01-23 | 2015-07-30 | Abb Ag | Electromagnetic circuit breaker for low voltage dc applications |
| CN111816526A (zh) * | 2020-08-07 | 2020-10-23 | 上海瑞忒尔电气技术有限公司 | 一种断路器脱扣器的动衔铁 |
| CN114955835A (zh) * | 2022-04-26 | 2022-08-30 | 中铁二十局集团有限公司 | 一种预制钢箱梁悬臂拼装施工方法 |
Also Published As
| Publication number | Publication date |
|---|---|
| EP1498926A3 (de) | 2007-03-07 |
| DE10332358A1 (de) | 2005-02-03 |
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