EP2949428A2 - Electric tool, in particular a screw-driving tool, with rotation direction switch - Google Patents
Electric tool, in particular a screw-driving tool, with rotation direction switch Download PDFInfo
- Publication number
- EP2949428A2 EP2949428A2 EP15168063.4A EP15168063A EP2949428A2 EP 2949428 A2 EP2949428 A2 EP 2949428A2 EP 15168063 A EP15168063 A EP 15168063A EP 2949428 A2 EP2949428 A2 EP 2949428A2
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- European Patent Office
- Prior art keywords
- switch
- rotation
- power tool
- locking
- tool according
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Classifications
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H9/00—Details of switching devices, not covered by groups H01H1/00 - H01H7/00
- H01H9/02—Bases, casings, or covers
- H01H9/06—Casing of switch constituted by a handle serving a purpose other than the actuation of the switch, e.g. by the handle of a vacuum cleaner
- H01H9/063—Casing of switch constituted by a handle serving a purpose other than the actuation of the switch, e.g. by the handle of a vacuum cleaner enclosing a reversing switch
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B25—HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
- B25B—TOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
- B25B21/00—Portable power-driven screw or nut setting or loosening tools; Attachments for drilling apparatus serving the same purpose
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H9/00—Details of switching devices, not covered by groups H01H1/00 - H01H7/00
- H01H9/02—Bases, casings, or covers
- H01H9/06—Casing of switch constituted by a handle serving a purpose other than the actuation of the switch, e.g. by the handle of a vacuum cleaner
- H01H2009/065—Battery operated hand tools in which the battery and the switch are directly connected
Definitions
- the invention relates to a power tool, in particular a screwdriver, with a drive motor and a Gasgebeschalter with a pusher which is movable against a spring force and can be locked in a closed position, and with a direction of rotation switch for controlling the direction of rotation.
- Such power tools are known in the art.
- the accelerator switch With the accelerator switch, the power tool can be started and, if necessary, the speed set.
- a reversal of direction for switching between clockwise and counterclockwise is useful, for which purpose a corresponding direction of rotation switch is provided.
- a locking of the accelerator switch in its closed position is additionally possible, including an additional actuator is usually provided.
- Known power tool is a Gasgebeschalter and a separate slide switch provided to reverse the direction of rotation.
- a suitable control circuit ensures that the switch for reversing the direction of rotation does not cause a reversal of the direction of rotation during the running drive.
- this machine also has a locking button for locking the accelerator switch in its closed position.
- a disadvantage of such power tools is the use of different controls, which usually requires a two-handed operation required.
- the design of the power tool is complicated by the use of different switching elements and increases the susceptibility to interference.
- the invention has the object to improve a power tool according to the aforementioned type such that the simplest possible locking of the accelerator switch is enabled in a closed position.
- the object of the invention is achieved in this way.
- the direction of rotation switch is used in addition to the locking of the accelerator switch in a closed position.
- the arrangement is such that only in the full throttle position of the accelerator switch locking by means of the direction of rotation switch is possible.
- the direction of rotation switch is biased by means of a spring element such that the locking of the accelerator switch in the closed position by actuation of the accelerator switch under the action of the spring element is solvable.
- the direction of rotation switch comprises a slide which is arranged in a direction transverse to the direction of movement of the accelerator switch such that the pusher protrudes with a locking lug into a recess of the slider, wherein at least one edge side of the recess an extension, in particular Form of an undercut, is provided, in which the locking tab is movable and lockable in the closed position.
- a spring element is provided, which is coupled to the direction of rotation switch in order to act on the locking lug in a locking position in the direction to release the lock.
- the spring element by means of a plunger, which is connected to the direction of rotation switch, be biased upon movement of the direction of rotation switch in a locking position.
- the spring element is simultaneously stretched by the movement of the direction of rotation switch in its locking position to automatically cause a release of the lock when pressing the accelerator switch.
- a first extension to such an edge side of the recess is provided that a locking of the accelerator switch in the "clockwise" position is possible.
- a second extension on one of the first extension opposite edge side of the recess is provided, so that a lock in the position "anti-clockwise rotation” is possible.
- a plunger is provided at each end of the spring element, which is coupled to the direction of rotation switch to bias the spring element upon movement in a locking position for clockwise rotation and in a locking position for counterclockwise rotation respectively for releasing the lock.
- the spring element may in this case preferably be formed as a helical spring, which is held in a spring housing substantially parallel to the direction of movement of the direction of rotation switch.
- a locking element is provided on each extension for receiving the locking tab on which the locking tab is held when moving the direction of rotation switch in the locking position under the action of the bias of the accelerator switch and secured against movement of the direction of rotation switch and counteracting operation of the accelerator switch the effect of its bias releasable and releasable from the lock.
- the direction of rotation switch is coupled in its center position for switching between clockwise and counterclockwise rotation with the accelerator switch, that a movement of the accelerator switch is blocked in a closed position.
- the direction of rotation switch is electrically nonfunctional when the accelerator switch is in the on position.
- a control is preferably provided which is programmed so that when operating the Gasgebeschalters is first queried whether the direction of rotation switch is in the clockwise or anti-clockwise, then started depending on the position of the direction of rotation switch the engine in clockwise or anticlockwise and preferably according to the position of the direction of rotation switch is controlled in its speed.
- the controller is programmed so that after starting the engine, the position of the direction of rotation switch for the direction of rotation is no longer relevant.
- FIG. 1 an inventive power tool is shown in the form of a screwdriver and designated overall by the numeral 10.
- the power tool 10 has a pistol-shaped housing 12, with a center handle 24, on which a Gasgebeschalter 26 is provided with a pusher 28 for actuating an electric motor 14 is.
- the electric motor 14 is coupled via a gear 16 and a means for torque shutdown upon reaching a predetermined torque with a chuck 20 in which a tool, such as a bit can be clamped.
- the Abschaltmoment can be adjusted by adjusting an adjustment ring 22 at the outer end of the housing 12.
- an accumulator receptacle 30 is provided at the lower end of the pistol grip 24, to which a rechargeable battery can be interchangeably coupled.
- a direction of rotation switch 32 is provided, which is designed as a slide switch. By moving the direction of rotation switch 32 to the right, the clockwise position is activated, while the left-hand rotation is activated by a shift of the direction of rotation switch 32 to the left.
- the Gasgebeschalter 26 and the direction of rotation switch 32 are mechanically coupled to each other and form a switch unit 25, the in Fig. 2 enlarged in perspective is shown.
- the direction of rotation switch 32 has a slider 38 which is displaceable in a direction perpendicular to the direction of actuation 34 36.
- the slider 38 is arranged directly above the pusher 28 and has a recess 44 in which a push-up element 28 protruding upward from the pusher 28 is movable.
- an extension 46 is provided in the form of an undercut into which the locking tab 48 can be inserted at a corresponding position of pusher 28 and slider 38 and locked therein.
- Fig. 3 shows the switch unit 25 seen from the back of the pusher 28, in befindlichem in full throttle gas trigger switch, with the direction of rotation switch in the clockwise position, but without locking.
- the switch unit 25 is received on a base body 40, with which the connection to the housing 12 is made and to which on the opposite side of the pusher 28, a board 42 for the controller 18 of the power tool 10 is received.
- the slider 38 cooperates with a spring element 60 in the form of a helical spring, which in a spring housing 52 (FIG. Fig. 12 ) is recorded.
- the coil spring is actuated via an extension 54 of the slider 38, so that the coil spring in displacement of the slider 38 in Fig. 3 is biased to the right over the plunger 56.
- a latching element 50 is further provided on which the locking lug 48 on movement into the locking position and releasing the trigger 28 of the trigger switch 26 under the action of the spring tension the accelerator switch 26 is locked.
- the locking tab 48 moves under the spring tension of the accelerator switch 26 to the outside, so that there is a locking on the locking element 50.
- Fig. 3 to 11 is not the spring housing 52 directly visible, but only the built-over guide 51 of the switch right / left rotation.
- a longitudinal web 58 is additionally shown on the slider 38, which extends in the longitudinal direction of the slider 38 via the recess 44. Furthermore, starting from the middle of the longitudinal web 58, a transverse web 59 can be seen, which extends to the rear in the direction of the spring housing 52.
- the longitudinal web 58 serves only to stiffen the slider 38 and has no function, since its height is dimensioned so that the locking tab 48 can move freely underneath within the recess 44.
- the cross bar 59 extends further in the direction of the locking lug 58 down so that it blocks an operation of the pusher 28 when the slider 38 is in the middle position between right and left rotation and thus the locking lug 48 immediately in front of the crosspiece 59 is located.
- Fig. 5 shows the switch unit 25 in the clockwise position with the accelerator switch in full throttle position, but in the unlocked position.
- Fig. 6 shows the switch unit 25 after moving the slider 38 from the position according to Fig. 5 in the locking position, so that the locking lug 48 is locked in the extension 46 in the form of the undercut.
- Fig. 7 shows the switch unit 25 in the same position, but in this case the spring housing 52 is partially cut free, so that the recorded therein coil spring 60 can be seen. In the locking position shown, the coil spring 60 is tensioned by means of the plunger 62.
- the lock could be released directly by moving the slider 38.
- Fig. 5 to 12 is a slightly opposite embodiment of the switch unit designated overall by the numeral 25a.
- corresponding reference numerals are used for corresponding parts.
- a second extension 66 in the form of an undercut is provided on the edge side of the recess 44 on the opposite side of the first extension 46, whose shape and design completely corresponds to the first extension 46.
- the second extension 66 makes it possible to lock the slider 38 in the anti-clockwise position as well.
- Fig. 8 shows the switch unit 25a in the starting position, ie when the pusher 28 is not actuated and with the slider 38 in the middle position between clockwise and counterclockwise rotation, so that an actuation of the pusher 28 is blocked by the transverse web 59.
- Fig. 9 shows the switch unit 25a in the full throttle position with the handle 28 pressed in the clockwise direction, with locking by the engagement of the locking tab 48 in the extension 46th
- Fig. 10 shows the switch unit 25a in the full throttle position when the trigger 28 is actuated, locked in the anti-clockwise position by the locking lug 48 engages in the extension 66 in the form of the second undercut and is engaged there by means of the associated locking element.
- Fig. 11 shows the switch unit 25a in the same position as at Fig. 10 , ie in the full throttle position when the trigger 28 is actuated and when the locking nose 48 is engaged in the counterclockwise position.
- the spring housing 52 is partially cut free, so that the spring element 60 can be seen in the form of the helical spring.
- the coil spring in this case is tensioned by a plunger 64 connected to the slider 38, which is opposite to the aforementioned plunger 62.
- Fig. 12 shows the switch unit 25a in the position according to Fig. 11 but with slide 38 removed for better visibility.
- a Hall switch For switching between clockwise and counterclockwise rotation, a Hall switch is used, which is actuated by means of a magnet, which is connected to the slide 38.
- the Hall sensor (not shown) is disposed on the board 42 and cooperates with the magnet (not shown).
- the controller 18 of the power tool 10 is constructed such that, starting from the machine in the idle state by actuation of the accelerator switch 26, a start contact for starting the motor 14 is triggered. Subsequently, the controller 18 first queries whether the direction of rotation switch 32 is in the clockwise or anticlockwise position. Only then is the engine 14 started and regulated according to the position of the accelerator switch 26 in its speed. If the pusher 28 pushed so far that the full throttle position results, so the Gasgebeschalter 26 can be locked in the full throttle by the direction of rotation switch 32, since the position of the direction of rotation switch 32 after the start of the motor 14 for the direction of rotation of the motor 14 is no longer relevant ,
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Control Of Throttle Valves Provided In The Intake System Or In The Exhaust System (AREA)
- Push-Button Switches (AREA)
- Rotary Switch, Piano Key Switch, And Lever Switch (AREA)
- Mechanical Control Devices (AREA)
Abstract
Es wird ein Schrauber mit einem Antriebsmotor (14) und einem Gasgebeschalter (26) angegeben, mit einem Drücker (28), der gegen eine Federkraft bewegbar ist und in einer Einschaltstellung arretierbar ist, und mit einem Drehrichtungsschalter (32) zur Steuerung der Drehrichtung, wobei der Gasgebeschalter (26) mit dem Drehrichtungsschalter (32) derart mechanisch gekoppelt ist, dass der Gasgebeschalter (26) in einer Einschaltstellung mittels des Drehrichtungsschalters (32) arretierbar ist.It is a screwdriver with a drive motor (14) and a Gasgebeschalter (26) indicated with a pusher (28) which is movable against a spring force and can be locked in a closed position, and with a direction of rotation switch (32) for controlling the direction of rotation, wherein the accelerator switch (26) is mechanically coupled to the direction of rotation switch (32) such that the accelerator switch (26) can be locked in a closed position by means of the direction of rotation switch (32).
Description
Die Erfindung betrifft ein Elektrowerkzeug, insbesondere einen Schrauber, mit einem Antriebsmotor und einem Gasgebeschalter mit einem Drücker, der gegen eine Federkraft bewegbar ist und in einer Einschaltstellung arretierbar ist, und mit einem Drehrichtungsschalter zur Steuerung der Drehrichtung.The invention relates to a power tool, in particular a screwdriver, with a drive motor and a Gasgebeschalter with a pusher which is movable against a spring force and can be locked in a closed position, and with a direction of rotation switch for controlling the direction of rotation.
Derartige Elektrowerkzeuge sind im Stand der Technik bekannt. Mit dem Gasgebeschalter kann das Elektrowerkzeug gestartet und ggf. die Drehzahl eingestellt werden. Insbesondere bei Bohrmaschinen und Schraubern ist eine Drehrichtungsumkehr zur Umschaltung zwischen Rechts- und Linkslauf sinnvoll, wozu ein entsprechender Drehrichtungsschalter vorgesehen ist. Bei zahlreichen Elektrowerkzeugen ist zusätzlich noch eine Arretierung des Gasgebeschalters in seiner Einschaltstellung möglich, wozu in der Regel ein zusätzliches Betätigungsorgan vorgesehen ist.Such power tools are known in the art. With the accelerator switch, the power tool can be started and, if necessary, the speed set. Especially with drills and screwdrivers a reversal of direction for switching between clockwise and counterclockwise is useful, for which purpose a corresponding direction of rotation switch is provided. In many power tools, a locking of the accelerator switch in its closed position is additionally possible, including an additional actuator is usually provided.
Bei einem aus der
Nachteilig bei derartigen Elektrowerkzeugen ist die Verwendung verschiedener Bedienelemente, was in der Regel eine Zweihandbedienung erforderlich macht. Außerdem wird durch die Verwendung verschiedener Schaltelemente der Aufbau des Elektrowerkzeugs verkompliziert und die Störanfälligkeit vergrößert.A disadvantage of such power tools is the use of different controls, which usually requires a two-handed operation required. In addition, the design of the power tool is complicated by the use of different switching elements and increases the susceptibility to interference.
Vor diesem Hintergrund liegt der Erfindung die Aufgabe zugrunde, ein Elektrowerkzeug gemäß der eingangs genannten Art derart zu verbessern, dass eine möglichst einfache Arretierung des Gasgebeschalters in einer Einschaltstellung ermöglicht ist.Against this background, the invention has the object to improve a power tool according to the aforementioned type such that the simplest possible locking of the accelerator switch is enabled in a closed position.
Diese Aufgabe wird bei einem Elektrowerkzeug gemäß der eingangs genannten Art dadurch gelöst, dass der Gasgebeschalter mit dem Drehrichtungsschalter derart mechanisch gekoppelt ist, dass der Gasgebeschalter in einer Einschaltstellung mittels des Drehrichtungsumschalters arretierbar ist.This object is achieved with a power tool according to the type mentioned above in that the accelerator switch is mechanically coupled to the direction of rotation switch such that the accelerator switch can be locked in a closed position by means of the direction of rotation switch.
Die Aufgabe der Erfindung wird auf diese Weise gelöst.The object of the invention is achieved in this way.
Erfindungsgemäß wird der Drehrichtungsschalter zusätzlich zur Arretierung des Gasgebeschalters in einer Einschaltstellung genutzt. Auf diese Weise kann bei geeigneter Anordnung eine einfache Einhandbedienung gewährleistet werden. Vorzugsweise ist die Anordnung so getroffen, dass lediglich in der Vollgasstellung des Gasgebeschalters eine Arretierung mittels des Drehrichtungsschalters möglich ist.According to the invention the direction of rotation switch is used in addition to the locking of the accelerator switch in a closed position. In this way, a simple one-hand operation can be ensured with a suitable arrangement. Preferably, the arrangement is such that only in the full throttle position of the accelerator switch locking by means of the direction of rotation switch is possible.
Erfindungsgemäß ist ein einfacher und zuverlässiger Aufbau gewährleistet und gleichzeitig eine sichere Einhandbedienung.According to the invention a simple and reliable construction is ensured and at the same time a safe one-handed operation.
In weiter bevorzugter Ausführung der Erfindung ist der Drehrichtungsschalter mittels eines Federelements derart vorgespannt, dass die Arretierung des Gasgebeschalters in der Einschaltstellung durch Betätigung des Gasgebeschalters unter Wirkung des Federelements lösbar ist.In a further preferred embodiment of the invention, the direction of rotation switch is biased by means of a spring element such that the locking of the accelerator switch in the closed position by actuation of the accelerator switch under the action of the spring element is solvable.
Auf diese Weise ist jederzeit gewährleistet, dass die Arretierung des Gasgebeschalters durch nochmaliges Drücken aufgehoben werden kann. Dies bedeutet eine erhöhte Funktionssicherheit.In this way, it is ensured at all times that the locking of the accelerator switch can be canceled by pressing again. This means increased reliability.
Gemäß einer weiteren Ausgestaltung der Erfindung umfasst der Drehrichtungsschalter einen Schieber, der in einer Richtung quer zur Bewegungsrichtung des Gasgebeschalters derart angeordnet ist, dass der Drücker mit einer Arretiernase in eine Ausnehmung des Schiebers hervorsteht, wobei an mindestens einer Randseite der Ausnehmung eine Erweiterung, insbesondere in Form eines Hinterschnitts, vorgesehen ist, in die die Arretiernase in der Einschaltstellung bewegbar und arretierbar ist.According to a further embodiment of the invention, the direction of rotation switch comprises a slide which is arranged in a direction transverse to the direction of movement of the accelerator switch such that the pusher protrudes with a locking lug into a recess of the slider, wherein at least one edge side of the recess an extension, in particular Form of an undercut, is provided, in which the locking tab is movable and lockable in the closed position.
Auf diese Weise ergibt sich eine einfache und zuverlässige Konstruktion.This results in a simple and reliable construction.
Gemäß einer weiteren Ausgestaltung der Erfindung ist ein Federelement vorgesehen, das mit dem Drehrichtungsschalter gekoppelt ist, um die Arretiernase in einer Arretierungsstellung in Richtung zum Lösen der Arretierung zu beaufschlagen.According to a further embodiment of the invention, a spring element is provided, which is coupled to the direction of rotation switch in order to act on the locking lug in a locking position in the direction to release the lock.
Auf diese Weise wird ein sicheres Lösen der Arretierung bei Betätigung des Gasgebeschalters unter Wirkung des Federelementes gewährleistet.In this way, a secure release of the locking is ensured upon actuation of the accelerator switch under the action of the spring element.
Hierzu kann das Federelement mittels eine Stößels, der mit dem Drehrichtungsumschalter verbunden ist, bei Bewegung des Drehrichtungsumschalters in eine Arretierstellung vorspannbar sein.For this purpose, the spring element by means of a plunger, which is connected to the direction of rotation switch, be biased upon movement of the direction of rotation switch in a locking position.
Auf diese Weise wird durch die Bewegung des Drehrichtungsumschalters in seine Arretierstellung gleichzeitig das Federelement gespannt, um bei Betätigen des Gasgebeschalters automatisch ein Lösen der Arretierung zu bewirken.In this way, the spring element is simultaneously stretched by the movement of the direction of rotation switch in its locking position to automatically cause a release of the lock when pressing the accelerator switch.
In weiterer Ausgestaltung der Erfindung ist eine erste Erweiterung an einer solchen Randseite der Ausnehmung vorgesehen, dass eine Arretierung des Gasgebeschalters in der Stellung "Rechtslauf" ermöglicht ist.In a further embodiment of the invention, a first extension to such an edge side of the recess is provided that a locking of the accelerator switch in the "clockwise" position is possible.
Auf diese Weise wird eine Arretierung des Gasgebeschalters in der bevorzugten Arbeitsstellung Rechtslauf ermöglicht.In this way, a locking of the accelerator switch in the preferred working position clockwise is possible.
Gemäß einer weiteren Ausgestaltung der Erfindung ist eine zweite Erweiterung an einer der ersten Erweiterung gegenüberliegenden Randseite der Ausnehmung vorgesehen, so dass eine Arretierung in der Stellung "Linkslauf" ermöglicht ist.According to a further embodiment of the invention, a second extension on one of the first extension opposite edge side of the recess is provided, so that a lock in the position "anti-clockwise rotation" is possible.
Auf diese Weise kann sowohl in der Stellung Rechtslauf als auch in der Stellung Linkslauf auf einfache Weise eine Arretierung des Gasgebeschalters ermöglicht werden.In this way, both in the right-handed position and in the left-hand rotation position, a locking of the accelerator switch can be made possible in a simple manner.
Gemäß einer weiteren Ausgestaltung der Erfindung ist an jedem Ende des Federelements ein Stößel vorgesehen, der mit dem Drehrichtungsumschalter gekoppelt ist, um das Federelement bei Bewegung in einer Arretierungsstellung für Rechtslauf und in eine Arretierungsstellung für Linkslauf jeweils zum Lösen der Arretierung vorzuspannen.According to a further embodiment of the invention, a plunger is provided at each end of the spring element, which is coupled to the direction of rotation switch to bias the spring element upon movement in a locking position for clockwise rotation and in a locking position for counterclockwise rotation respectively for releasing the lock.
Auf diese Weise wird eine Vorspannung des Federelements sowohl in der Stellung Rechtslauf als auch in der Stellung Linkslauf auf einfache Weise gewährleistet.In this way, a bias of the spring element is ensured in both the right-handed position and the left-hand rotation in a simple manner.
Das Federelement kann hierbei vorzugsweise als Schraubenfeder ausgebildet sein, die in einem Federgehäuse im Wesentlichen parallel zur Bewegungsrichtung des Drehrichtungsumschalters gehalten ist.The spring element may in this case preferably be formed as a helical spring, which is held in a spring housing substantially parallel to the direction of movement of the direction of rotation switch.
Auf diese Weise wird eine einfache Spannung des Federelements durch eine Bewegung des Schiebers des Drehrichtungsumschalters gewährleistet.In this way, a simple tension of the spring element is ensured by a movement of the slide of the direction of rotation switch.
Gemäß einer weiteren Ausgestaltung der Erfindung ist an jeder Erweiterung zur Aufnahme der Arretiernase ein Rastelement vorgesehen, an dem die Arretiernase bei Verschieben des Drehrichtungsschalters in die Arretierposition unter Wirkung der Vorspannung des Gasgebeschalters gehalten und gegen eine Bewegung des Drehrichtungsschalters gesichert ist und bei Betätigung des Gasgebeschalters entgegen der Wirkung seiner Vorspannung lösbar und aus der Arretierung freigebbar ist.According to a further embodiment of the invention, a locking element is provided on each extension for receiving the locking tab on which the locking tab is held when moving the direction of rotation switch in the locking position under the action of the bias of the accelerator switch and secured against movement of the direction of rotation switch and counteracting operation of the accelerator switch the effect of its bias releasable and releasable from the lock.
Auf diese Weise wird die mechanische Arretierung in der Einschaltstellung des Gasgebeschalters durch Zusammenwirken des Rastelementes mit der Arretiernase des Drehrichtungsschalters gewährleistet und gleichzeitig sichergestellt, dass die Arretierung bei Betätigung des Gasgebeschalters freigegeben wird.In this way, the mechanical locking is ensured in the closed position of the accelerator switch by interaction of the locking element with the locking lug of the direction of rotation switch and at the same time ensures that the lock is released upon actuation of the accelerator switch.
Gemäß einer weiteren Ausgestaltung der Erfindung ist der Drehrichtungsschalter in seiner Mittelstellung zum Umschaltung zwischen Rechts- und Linkslauf derart mit dem Gasgebeschalter gekoppelt, dass eine Bewegung des Gasgebeschalters in eine Einschaltstellung blockiert ist.According to a further embodiment of the invention, the direction of rotation switch is coupled in its center position for switching between clockwise and counterclockwise rotation with the accelerator switch, that a movement of the accelerator switch is blocked in a closed position.
Auf diese Weise ist sichergestellt, dass ein Einschalten des Elektrowerkzeugs dann, wenn sich der Drehrichtungsschalter nicht eindeutig in einer Stellung für Rechtslauf oder Linkslauf befindet, ein Einschalten verhindert wird, um so Fehlfunktionen zu vermeiden.In this way, it is ensured that switching on the power tool, when the rotation direction switch is not clearly in a position for clockwise or counterclockwise rotation, a switching is prevented, so as to avoid malfunction.
Gemäß einer weiteren Ausgestaltung der Erfindung ist der Drehrichtungsschalter bei in Einschaltstellung befindlichem Gasgebeschalter elektrisch funktionslos.According to a further embodiment of the invention, the direction of rotation switch is electrically nonfunctional when the accelerator switch is in the on position.
Hierzu ist vorzugsweise eine Steuerung vorgesehen, die derart programmiert ist, dass beim Betätigen des Gasgebeschalters zunächst abgefragt wird, ob sich der Drehrichtungsschalter in Stellung Rechtslauf oder Linkslauf befindet, danach in Abhängigkeit von der Stellung des Drehrichtungsschalters der Motor im Rechtslauf oder Linkslauf gestartet und vorzugsweise gemäß der Stellung des Drehrichtungsschalters in seiner Drehzahl geregelt wird.For this purpose, a control is preferably provided which is programmed so that when operating the Gasgebeschalters is first queried whether the direction of rotation switch is in the clockwise or anti-clockwise, then started depending on the position of the direction of rotation switch the engine in clockwise or anticlockwise and preferably according to the position of the direction of rotation switch is controlled in its speed.
Weiter bevorzugt ist die Steuerung derart programmiert, dass nach dem Anlaufen des Motors die Stellung des Drehrichtungsschalters für die Drehrichtung nicht mehr relevant ist.More preferably, the controller is programmed so that after starting the engine, the position of the direction of rotation switch for the direction of rotation is no longer relevant.
Ist der Gasgebeschalter einmal betätigt, so dass der Motor des Elektrowerkzeugs angelaufen ist, wird auf diese Weise eine Aktivierung des Drehrichtungsschalters unterbunden, so dass Fehlfunktionen vermieden werden.Once the accelerator switch is actuated so that the motor of the power tool has started, in this way an activation of the direction of rotation switch is prevented, so that malfunctions are avoided.
Es versteht sich, dass die vorstehend genannten und die nachstehend noch zu erläuternden Merkmale der Erfindung nicht nur in der jeweils angegebenen Kombination, sondern auch in anderen Kombinationen oder in Alleinstellung verwendbar sind, ohne den Rahmen der Erfindung zu verlassen.It is understood that the features of the invention mentioned above and those yet to be explained below can be used not only in the particular combination indicated, but also in other combinations or in isolation, without departing from the scope of the invention.
Weiter Merkmale und Vorteile der Erfindung ergeben sich aus der nachfolgenden Beschreibung bevorzugter Ausführungsbeispiele unter Bezugnahme auf die Zeichnung. Es zeigen:
- Fig. 1
- ein erfindungsgemäßes Elektrowerkzeug in Form eines Schraubers in seiner Seitenansicht, bei abgenommenem Gehäuseoberteil;
- Fig. 2
- eine perspektivische Ansicht der aus Gasgebeschaltern und Drehrichtungsschalter gebildeten Schaltereinheit, von der Drückerseite her gesehen;
- Fig. 3
- die Schaltereinheit gemäß
Fig. 2 von der rückseitigen Seite des Drückers aus gesehen, bei betätigtem Drücker, während sich der Drehrichtungsschalter in der Stellung Rechtslauf befindet; - Fig. 4
- die Schaltereinheit in ihrer Ausgangsstellung, ohne dass der Gasgebeschalter gedrückt ist, mit dem Drehrichtungsschalter in Mittelstellung;
- Fig. 5
- die Schaltereinheit gemäß
Fig. 4 , jedoch bei gedrücktem Gasgebeschalter, mit Arretierschalter in Stellung Linkslauf, jedoch ohne Arretierung; - Fig. 6
- die Schaltereinheit gemäß
Fig. 5 , jedoch arretiert in Stellung Rechtslauf; - Fig. 7
- die Schaltereinheit gemäß
Fig. 6 , wobei jedoch das Federgehäuse teilweise freigeschnitten ist, um die darin aufgenommene Feder erkennbar zu machen; - Fig. 8
- eine abgewandelte Ausführung der Schaltereinheit, die sowohl eine Arretierung in der Stellung Rechtslauf als auch in der Stellung Linkslauf ermöglicht, in der Ausgangsposition bei gelöstem Gasgebeschalter und Drehrichtungsschalter in Mittelstellung;
- Fig. 9
- die Schaltereinheit gemäß
Fig. 8 bei gedrücktem Gasgebeschalter und Drehrichtungsschalter in der Stellung Rechtslauf, arretiert in der Vollgasstellung; - Fig. 10
- die Schaltereinheit gemäß
Fig. 9 , in Vollgasstellung, jedoch arretiert in der Stellung Linkslauf; - Fig. 11
- die Schaltereinheit gemäß
Fig. 10 mit teilweise freigeschnittenem Federgehäuse, um die darin aufgenommene Schraubenfeder erkennbar zu machen und - Fig. 12
- die Schaltereinheit gemäß
Fig. 11 , jedoch in der Stellung Rechtslauf, ohne den Schieber des Drehrichtungsschalters.
- Fig. 1
- an inventive power tool in the form of a screwdriver in its side view, with the housing upper part removed;
- Fig. 2
- a perspective view of the switch unit formed from Gasgebeschaltern and direction switch, seen from the pusher side;
- Fig. 3
- the switch unit according to
Fig. 2 seen from the back of the pusher, with the trigger pressed, while the direction switch is in the clockwise position; - Fig. 4
- the switch unit in its initial position, without the accelerator switch is pressed, with the direction switch in the middle position;
- Fig. 5
- the switch unit according to
Fig. 4 , but with the trigger switch pressed, with locking switch in the counterclockwise position, but without locking; - Fig. 6
- the switch unit according to
Fig. 5 , but locked in position clockwise; - Fig. 7
- the switch unit according to
Fig. 6 but with the spring housing partially cut free to reveal the spring received therein; - Fig. 8
- a modified version of the switch unit, which allows both a lock in the clockwise direction and in the counterclockwise position, in the starting position with dissolved accelerator switch and direction switch in the middle position;
- Fig. 9
- the switch unit according to
Fig. 8 with the accelerator switch pressed and direction switch in the clockwise direction, locked in the full throttle position; - Fig. 10
- the switch unit according to
Fig. 9 , in full throttle position, but locked in the counterclockwise position; - Fig. 11
- the switch unit according to
Fig. 10 with partially cut spring housing to make the recorded therein coil spring recognizable and - Fig. 12
- the switch unit according to
Fig. 11 , but in the right-hand position, without the slider of the direction-of-rotation switch.
In
Am Übergang des Mittelhandgriffs 24 zum oberen Teil des Gehäuses 12, in dem der Elektromotor 14 und das Getriebe 16 aufgenommen sind, ist ein Drehrichtungsumschalter 32 vorgesehen, der als Schiebeschalter ausgeführt ist. Durch Verschieben des Drehrichtungsumschalters 32 nach rechts wird die Stellung Rechtslauf aktiviert, während durch ein Verschieben des Drehrichtungsschalters 32 nach links die Stellung Linkslauf aktiviert wird.At the transition of the center handle 24 to the upper part of the
Der Gasgebeschalter 26 und der Drehrichtungsschalter 32 sind miteinander mechanisch gekoppelt und bilden eine Schaltereinheit 25, die in
Während der Gasgebeschalter 26 durch Betätigung seines Drückers 28 gegen die Kraft eines eingebauten Federelementes in der Richtung 34 verschoben werden kann, weist der Drehrichtungsschalter 32 einen Schieber 38 auf, der in einer zur Betätigungsrichtung 34 senkrechten Richtung 36 verschiebbar ist. Dabei ist der Schieber 38 unmittelbar oberhalb des Drückers 28 angeordnet und weist eine Ausnehmung 44 auf, in der eine vom Drücker 28 nach oben hervorstehende Arretiernase 48 bewegbar ist. Auf einer Randseite der Ausnehmung 44 ist eine Erweiterung 46 in Form eines Hinterschnitts vorgesehen, in die die Arretiernase 48 bei entsprechender Stellung von Drücker 28 und Schieber 38 eingeschoben und darin arretiert werden kann.While the
Die Schaltereinheit 25 ist an einem Grundkörper 40 aufgenommen, mit dem die Verbindung zum Gehäuse 12 hergestellt wird und an dem auf der dem Drücker 28 gegenüberliegenden Seite eine Platine 42 für die Steuerung 18 des Elektrowerkzeugs 10 aufgenommen ist.The
Der Schieber 38 wirkt mit einem Federelement 60 in Form einer Schraubenfeder zusammen, die in einem Federgehäuse 52 (
Wird der Schieber 38 aus der in
Wird nun der Gasgebeschalter 26 nach dem Loslassen nochmals leicht gedrückt, so wird der Drücker 28 gegen die Wirkung der Federspannung nach innen gedrückt, so dass die Arretiernase 48 vom Rastelement 50 abhebt. Damit ist die Arretierung freigegeben und nunmehr wird der Schieber 38 unter Wirkung der im Federgehäuse eingeschlossenen gespannten Schraubenfeder zurück in seine Freigabestellung bewegt, so dass der Drücker 28 des Gasgebeschalters 26 bei Loslassen in seiner Ausgangsstellung zurückgelangt.If now the
In
In den
Wird nun, wie vorstehend bereits erwähnt, der Drücker 28 nochmals betätigt, so wird dieser vom Rastelement 50 abgehoben, so dass die Verrastung freigegeben ist und sich der Schieber 38 unter der Wirkung der Schraubenfeder 60 aus der Arretierstellung in die in
Alternativ könnte die Arretierung unmittelbar durch Verschieben des Schiebers 38 gelöst werden.Alternatively, the lock could be released directly by moving the
In den
Der einzige Unterschied zur zuvor beschriebenen Schaltereinheit 25 besteht darin, dass zusätzlich zur Arretierung in der Stellung Rechtslauf auch eine Arretierung in der Stellung Linkslauf ermöglicht ist. Hierzu ist an der Randseite der Ausnehmung 44 auf der der ersten Erweiterung 46 gegenüberliegenden Seite eine zweite Erweitung 66 in Form eines Hinterschnitts vorgesehen, deren Form und Ausführung vollständig der ersten Erweiterung 46 entspricht. Die zweite Erweiterung 66 erlaubt es, den Schieber 38 auch in der Stellung Linkslauf zu arretieren.The only difference to the previously described
Bei nochmaliger Betätigung des Drückers 28 wird somit die Arretiernase 48 vom zugeordneten Rastelement (nicht dargestellt) abgehoben und unter Wirkung des Federelements 60 aus der Arretierstellung heraus bewegt, so dass der Drücker 28 bei Loslassen wieder in seine Ausgangsstellung zurückgelangt.Upon repeated actuation of the
Zum Umschalten zwischen Rechts- und Linkslauf wird ein Hall-Schalter verwendet, der mittels eines Magneten betätigt wird, der mit dem Schieber 38 verbunden ist. Der Hall-Sensor (nicht dargestellt) ist auf der Platine 42 angeordnet und wirkt mit dem Magneten (nicht dargestellt) zusammen.For switching between clockwise and counterclockwise rotation, a Hall switch is used, which is actuated by means of a magnet, which is connected to the
Die Steuerung 18 des Elektrowerkzeugs 10 ist derart aufgebaut, dass ausgehend von der Maschine im Ruhezustand durch eine Betätigung des Gasgebeschalters 26 ein Startkontakt zum Anlaufen des Motors 14 ausgelöst wird. Anschließend fragt die Steuerung 18 zunächst ab, ob der Drehrichtungsschalter 32 sich in Stellung Rechtslauf oder Linkslauf befindet. Erst dann wird der Motor 14 gestartet und gemäß der Stellung des Gasgebeschalters 26 in seiner Drehzahl geregelt. Wird der Drücker 28 soweit durchgedrückt, dass sich die Vollgasstellung ergibt, so kann der Gasgebeschalter 26 in der Vollgasstellung durch den Drehrichtungsschalter 32 arretiert werden, da die Stellung des Drehrichtungsschalters 32 nach dem Anlauf des Motors 14 für die Drehrichtung des Motors 14 nicht mehr relevant ist.The
Claims (14)
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE102014107494.7A DE102014107494A1 (en) | 2014-05-27 | 2014-05-27 | Power tool, in particular screwdriver, with direction switch |
Publications (3)
Publication Number | Publication Date |
---|---|
EP2949428A2 true EP2949428A2 (en) | 2015-12-02 |
EP2949428A3 EP2949428A3 (en) | 2015-12-30 |
EP2949428B1 EP2949428B1 (en) | 2016-12-14 |
Family
ID=53188919
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP15168063.4A Not-in-force EP2949428B1 (en) | 2014-05-27 | 2015-05-19 | Electric tool, in particular a screw-driving tool, with rotation direction switch |
Country Status (3)
Country | Link |
---|---|
EP (1) | EP2949428B1 (en) |
CN (1) | CN105269506B (en) |
DE (1) | DE102014107494A1 (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP3659754A1 (en) * | 2018-11-29 | 2020-06-03 | Robert Bosch GmbH | Hand machine tool |
EP3784429A4 (en) * | 2018-04-27 | 2022-04-06 | Milwaukee Electric Tool Corporation | COMPACT MULTI-MATERIAL CUTTING TOOL |
Families Citing this family (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE102017100089B4 (en) | 2016-01-15 | 2019-01-17 | Defond Electrical Industries Ltd. | triggering device |
JP6814032B2 (en) | 2016-11-24 | 2021-01-13 | 株式会社マキタ | Electric work machine |
Citations (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE10001459A1 (en) | 2000-01-15 | 2001-07-26 | Mets Owerke Gmbh & Co | Electric handtool e.g. drill or screwdriver, has drive motor provided with motor reversal device with detection of angular position of motor brush bridge and operating switch position for safe operation |
Family Cites Families (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE2631994C3 (en) * | 1976-07-16 | 1985-07-11 | Metabowerke KG Closs, Rauch & Schnizler, 7440 Nürtingen | Hand tool with a work spindle driven by a motor |
DE3342412A1 (en) * | 1983-11-24 | 1985-06-05 | Black & Decker Inc., Newark, Del. | SWITCH ARRANGEMENT FOR THE DIRECTION OF SWITCHING OF AN ELECTRIC TOOL, ESPECIALLY A DRILLING OR IMPACT DRILLING MACHINE |
DE4439590C2 (en) * | 1994-11-05 | 1997-04-24 | Bosch Gmbh Robert | Hand tool |
GB2382044A (en) * | 2001-11-20 | 2003-05-21 | Black & Decker Inc | A power tool having a handle and a pivotal tool body |
GB2382226A (en) * | 2001-11-20 | 2003-05-21 | Black & Decker Inc | Switch mechanism for a power tool |
DE10345136A1 (en) * | 2003-09-29 | 2005-04-21 | Bosch Gmbh Robert | Cordless drill/driver, comprising spring supported switch extending across full front of handle |
DE102009027705A1 (en) * | 2009-07-15 | 2011-01-20 | Robert Bosch Gmbh | Hand-held power tool |
JP5760957B2 (en) * | 2011-11-02 | 2015-08-12 | マックス株式会社 | Rotating tool |
DE102012220423A1 (en) * | 2012-11-09 | 2014-05-15 | Robert Bosch Gmbh | Hand tool machine i.e. cordless screwdriver, has pistol-shaped machine housing including main handle, and operating element attached to side of machine housing, where side of machine housing turns away toward main handle |
-
2014
- 2014-05-27 DE DE102014107494.7A patent/DE102014107494A1/en not_active Withdrawn
-
2015
- 2015-05-19 EP EP15168063.4A patent/EP2949428B1/en not_active Not-in-force
- 2015-05-25 CN CN201510271227.4A patent/CN105269506B/en not_active Expired - Fee Related
Patent Citations (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE10001459A1 (en) | 2000-01-15 | 2001-07-26 | Mets Owerke Gmbh & Co | Electric handtool e.g. drill or screwdriver, has drive motor provided with motor reversal device with detection of angular position of motor brush bridge and operating switch position for safe operation |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP3784429A4 (en) * | 2018-04-27 | 2022-04-06 | Milwaukee Electric Tool Corporation | COMPACT MULTI-MATERIAL CUTTING TOOL |
EP3659754A1 (en) * | 2018-11-29 | 2020-06-03 | Robert Bosch GmbH | Hand machine tool |
Also Published As
Publication number | Publication date |
---|---|
CN105269506A (en) | 2016-01-27 |
EP2949428B1 (en) | 2016-12-14 |
DE102014107494A1 (en) | 2015-12-03 |
EP2949428A3 (en) | 2015-12-30 |
CN105269506B (en) | 2017-08-08 |
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