Limit switch
09552935 ยท 2017-01-24
Assignee
Inventors
Cpc classification
H01H21/28
ELECTRICITY
H01H3/16
ELECTRICITY
International classification
H01H3/16
ELECTRICITY
H01H21/28
ELECTRICITY
Abstract
The invention relates to a limit switch comprising: a body (1) and a head (2), an actuation member (3), a shaft (30) that can be actuated in rotation about an axis of rotation (Y) by pivoting of the actuation member (3), a plunger (4), a cam mechanism for converting the rotational movement of the shaft (30) into a translational movement of the plunger (4) and vice versa, the cam mechanism comprising: a first cam (7) and a first cam follower (70), arranged to generate between them a first non-zero rotational torque over a first range of rotation of the shaft (30), a second cam (8) and a second cam follower (80), arranged to generate between them a second non-zero rotational torque over a second range of rotation of the shaft.
Claims
1. A limit switch comprising: a body and a head arranged on a main axis; an actuation member fixed to the head and actuatable by pivoting in a pivoting plane; a shaft actuatable in rotation about an axis of rotation by pivoting of the actuation member; a plunger mounted on a spring; a cam mechanism arranged on the shaft and on the plunger to convert the rotational movement of the shaft into a translational movement of the plunger and vice versa; and a switching device controlled by the plunger, wherein the cam mechanism includes a first cam and a first cam follower, arranged to cooperate with one another so as to generate between them a first non-zero rotational torque over a first range of rotation of the shaft in a direction of rotation of the shaft, and a second cam and a second cam follower, arranged to cooperate with one another so as to generate between them a second non-zero rotational torque over a second range of rotation of the shaft, situated beyond the first range of rotation in the same direction of rotation of the shaft, the first cam follower and the second cam follower being juxtaposed on the plunger.
2. The limit switch according to claim 1, wherein the first rotational torque is zero over the second range of rotation of the shaft.
3. The limit switch according to claim 1, wherein the first cam and the second cam are juxtaposed along the shaft.
4. The limit switch according to claim 1, wherein the spring is a compression spring stressing the plunger in translation in an axial direction.
5. The limit switch according to claim 1, wherein the actuation member is a lever or a flexible rod.
6. The limit switch according to claim 1, wherein the head is fixed removably to the body and oriented about the main axis relative to the body.
7. The limit switch according to claim 1, wherein the shaft is housed inside the head.
8. The limit switch according to claim 1, wherein the switching device is housed inside the body.
9. The limit switch according to claim 1, wherein the plunger is arranged between the shaft and the switching device.
10. The limit switch according to claim 1, wherein the pivoting plane of the actuation member is parallel to the main axis and at right angles to the axis of rotation of the shaft.
11. The limit switch according to claim 1, wherein the actuation member is movable by pivoting to plus or minus 90 relative to a rest position situated along the main axis.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) Other features and advantages will emerge from the following detailed description, given with respect to the attached drawings in which:
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DETAILED DESCRIPTION OF AT LEAST ONE EMBODIMENT
(9) A mechanical limit switch typically comprises a body 1, generally of parallelepipedal form, and a head 2 fixed to the body. The head is assembled on the body on an axis called main axis (X). As is known, the head 2 is preferentially removable relative to the body 1 so as to be able to assume different orientations about the main axis.
(10) The limit switch comprises an actuation member 3 fixed to the head 2, consisting, for example, of a lever or of a flexible rod, and positioned on the path of the object 6 whose movement is to be detected. This actuation member 3 can move by pivoting. It is fixed to a shaft 30 that can move in rotation about an axis of rotation (Y). Advantageously, this axis of rotation is at right angles to the main axis (X) and situated in the same plane thereof. The shaft 30 is driven in rotation about its axis by the actuation member 3 when the latter is stressed by pivoting. Initially, the actuation member 3 is in a rest position, for example along the main axis (X).
(11) The limit switch also comprises a plunger 4 arranged to cooperate with the shaft 30. This plunger 4 can move in translation in a direction parallel to the main axis (X) and is held against the shaft 30 by a spring 40, preferentially a compression spring. The limit switch comprises a cam mechanism arranged on the plunger 4 and on the shaft 30 to convert the rotational movement of the shaft 30 into a translational movement of the plunger 4 upon an action on the actuation member 3, or to convert the translational movement of the plunger 4 stressed by its spring 40 into a rotational movement of the shaft 30 upon the reaction movement.
(12) The limit switch comprises a switching device 5 controlled by the plunger 4 in translation. An electrical signal is transmitted by the switch when the switching device 5 is in the closed state. Depending on the configuration of the limit switch (normally open or normally closed), the electrical signal will be transmitted when the actuation member 3 is in the rest position or in the actuated position.
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(17) To remedy this problem, the invention consists in producing a cam mechanism which comprises two cams and two distinct cam followers.
(18) Over a first range of rotation of the shaft 30 about its axis (Y), the plunger 4 is driven in translation via a first cam 7 and a first cam follower 70 and over a second range of rotation of the shaft 30 about its axis (Y), the plunger 4 is driven in translation via a second cam 8 and a second cam follower 80.
(19) Advantageously, between 0 and (90-), the first cam 7 and the first cam follower 70 generate between them a non-zero rotational torque allowing for a rotation of the shaft 30 about its axis (Y) in both directions of rotation. Between (90-) and 90, the second cam 8 and the second cam follower 80 generate between them a non-zero rotational torque allowing for a rotation of the shaft 30 about its axis (Y) in both directions of rotation.
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(23) The principle of the invention is better illustrated in
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(32) By virtue of a simple and economical solution, the invention thus allows the actuation member of a limit switch to pivot to plus or minus 90 relative to its rest position, without the risk of becoming blocked.