Safety switch
11139130 ยท 2021-10-05
Assignee
Inventors
Cpc classification
H01H3/20
ELECTRICITY
H01H9/18
ELECTRICITY
H01H36/0013
ELECTRICITY
H01H36/006
ELECTRICITY
A42B3/0453
HUMAN NECESSITIES
International classification
Abstract
A safety switch includes an actuator that has a first possible actuator position and a second possible actuator position and a blocker that has a first possible blocker position and a second possible blocker position. The first possible blocker position overlaps with the second possible actuator position. The safety switch includes a device for generating an electrical signal representative of a current position of the actuator. When the actuator is in the first possible actuator position and the blocker is in the first possible blocker position, the blocker prevents movement of the actuator from the first possible actuator position to the second possible actuator position without first moving the blocker from the first possible blocker position to the second possible blocker position.
Claims
1. A safety switch comprising: an actuator, the actuator having a first possible actuator position and a second possible actuator position; a blocker, the blocker having a first possible blocker position and a second possible blocker position, the first possible blocker position overlapping with the second possible actuator position; and means for generating an electrical signal representative of a current position of the actuator; whereas when the actuator is in the first possible actuator position and the blocker is in the first possible blocker position, the blocker prevents movement of the actuator from the first possible actuator position to the second possible actuator position without first moving the blocker from the first possible blocker position to the second possible blocker position; wherein the actuator and the blocker are made from a material that is clear or translucent.
2. The safety switch of claim 1, wherein the means for generating the electrical signal representative of the current position of the actuator comprises a permanent magnet that is mechanically coupled to the actuator and a magnetic sensor, the magnetic sensor situated such that the magnetic sensor generates the electrical signal only when the actuator is in the first possible actuator position in which the permanent magnet is in proximity of the magnetic sensor.
3. The safety switch of claim 1, wherein the means for generating the electrical signal representative of the current position of the actuator comprises a permanent magnet that is mechanically coupled to the actuator and a magnetic sensor, the magnetic sensor situated such that the magnetic sensor generates the electrical signal only when the actuator is in the second possible actuator position in which the permanent magnet is in proximity of the magnetic sensor.
4. The safety switch of claim 1, wherein the means for generating the electrical signal representative of the current position of the actuator comprises a permanent magnet that is mechanically coupled to the actuator, a second permanent magnet that is mechanically coupled to the blocker, and two magnetic sensor arranged such that a first magnetic sensor of the two magnetic sensors generates the electrical signal only when the actuator is in the first possible actuator position in which the permanent magnet is in proximity of the magnetic sensor and a second magnetic sensor of the two magnetic sensors generates the electrical signal only when the blocker is in the second possible blocker position in which the second permanent magnet is in proximity of the magnetic sensor.
5. The safety switch of claim 1, wherein the actuator and the blocker are movably positioned within a guide, the guide having detents; one detent for the first actuator position, a second detent for the second actuator position and first blocker position; and a third detent for the second blocker position.
6. A method of safely switching a state of an electrical apparatus, the method comprising: starting with an actuator in a first actuator position and a blocker being adjacent to the actuator in a first blocker position; first, moving the blocker from the first blocker position to a second blocker position that is distal from the actuator; second, moving the actuator from the first actuator position to a second actuator position with is the same as the first blocker position; whereas moving of the actuator from the first actuator position to the second actuator position is precluded without first moving the blocker from the first blocker position to the second blocker position; and making the actuator and the blocker of a material that permits the passing of light through the actuator and the blocker.
7. The method of claim 6, further comprising electrically sensing whether the actuator is in the first actuator position or in the second actuator position.
8. The method of claim 7 further comprising electrically controlling an electronic device to operate in a specific mode only when the actuator is in the second actuator position.
9. The method of claim 6, further comprising electrically sensing whether the blocker is in the first blocker position or in the second blocker position.
10. The method of claim 6, further comprising electrically sensing whether the actuator is in the first actuator position or in the second actuator position and electrically sensing whether the blocker is in the first blocker position or in the second blocker position.
11. The method of claim 10, further comprising electrically controlling an electronic device to operate in a specific mode only when the actuator is in the second actuator position and the blocker is in the second blocker position.
12. The method of claim 6, further comprising forcing the actuator and blocker to travel along a guide, the guide having detents that define the first actuator position; the second actuator position and the first blocker position; and the second blocker position.
13. A safety switch comprising: an actuator, the actuator physically interfaced to a permanent magnet, the actuator having a first possible actuator position and a second possible actuator position defined by a first detent and a second detent respectfully located along a guide which movably supports the actuator; a blocker, the blocker having a first possible blocker position and a second possible blocker position, the first possible blocker position overlapping with the second possible actuator position defined by the second detent and a third detent respectfully located along the guide which movably supports the blocker; and a magnetic sensor, the magnetic sensor situated such that the magnetic sensor generates a first electrical signal when the actuator is in the first possible actuator position in which the permanent magnet is in proximity of the magnetic sensor and the magnetic sensor generates a second electrical signal when the actuator is in the second possible actuator position in which the permanent magnet is distal from the magnetic sensor; whereas when the actuator is in the first possible actuator position and the blocker is in the first possible blocker position, the blocker prevents movement of the actuator from the first possible actuator position to the second possible actuator position without first moving the blocker from the first possible blocker position to the second possible blocker position.
14. The safety switch of claim 13, further comprising a second permanent magnet that is physically interfaced to the blocker and a second magnetic sensor arranged such that the second magnetic sensor generates a third electrical signal only when the blocker is in the second possible blocker position in which the second permanent magnet is in proximity of the second magnetic sensor and the second magnetic sensor generates a fourth electrical signal only when the blocker is in the first possible blocker position in which the second permanent magnet is in proximity of the second magnetic sensor.
15. The safety switch of claim 13, wherein the actuator and the blocker each comprise a material that permits light to pass through the actuator and the blocker.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention can be best understood by those having ordinary skill in the art by reference to the following detailed description when considered in conjunction with the accompanying drawings in which:
(2)
(3)
DETAILED DESCRIPTION
(4) Reference will now be made in detail to the presently preferred embodiments of the invention, examples of which are illustrated in the accompanying drawings. Throughout the following detailed description, the same reference numerals refer to the same elements in all figures.
(5) Throughout this description, for clarity reasons only, the safety switch 1 is described as part of a marker system 5 that is affixed to a helmet 7. In this, other parts of the marker system 5 such as light emitters 34 are shown but do not limit the overall concept and inventiveness of the safety switch 1. Further, it is fully anticipated that the safety switch 1 be constructed as an integral device using any known electrical connecting device such as magnetic switches or sensors (e.g., reed relays), optical switches and light blockers, electrical contacts, etc. In the examples shown here, only magnetic switches are shown for clarity reasons.
(6) It is important for a marker system 5 to emit as much light as possible given the limited power obtained from an internal power source (e.g., battery). In such an application of a marker system 5, as most of the safety switch 1 is fabricated from clear or translucent materials so as to transmit as much light from the light emitters 34 outside of the enclosure 5, some of which light passes through the actuator 10 and blocker 14. In such, the size of the permanent magnet 12 is kept to a minimum as required to be sensed by the magnetic switch 30, thereby the permanent magnet 12 blocks as little light as possible when the light emitters 30 emit light.
(7) Referring to
(8) Likewise, when the actuator 10 is in the second actuator position (center position) and the blocker 14 is in the second blocker position (right-most position), the safety switch 1 cannot be inadvertently changed back to the original position (e.g., cannot progress for the mode shown in
(9) Note that although the permanent magnet 12 is shown in the actuator 10, it is equally anticipated that the permanent magnet be in the blocker 14 and the location of the magnetic switch 30 be either centrally located or located beneath the right-most position to provide the safe operation of the safety switch 1.
(10) Referring to
(11) The following table indicates one possible set of operations based upon positions of the actuator 10 and blocker 14:
(12) TABLE-US-00001 Actuator Blocker Position Position No emission 1.sup.st 1.sup.st Invisible light 1.sup.st 2.sup.nd Visible light 2.sup.nd 2.sup.nd
(13) The following table indicates another possible set of operations based upon positions of the actuator 10 and blocker 14:
(14) TABLE-US-00002 Actuator Blocker Position Position No emission 1.sup.st 1.sup.st or 2.sup.nd Visible light 2.sup.nd 2.sup.nd
(15) As above, the blocker 14 prevents the actuator 10 from moving as in order to move the blocker 14, the actuator 10 must push the blocker along the guide 20 and forces of friction prevent movement of both the actuator 10 and the blocker 14 at the same time. Therefore, in order for the user to move the actuator 10 from the first actuator position (left-most position as in
(16) Likewise, when the actuator 10 is in the second actuator position (center) and the blocker 14 is in the second blocker position (right-most position as in
(17) Note that it is fully anticipated that the safety switch 1 have more than three positions such as four positions with any number of modes as defined by the number of permanent magnets 12/16 and magnetic switches 30/32 and the locations of such in one or more actuators 10 and blockers 14. For example, a safety switch 1 having two actuators 10 each with a permanent magnet 12 alternating with two blockers 14 without permanent magnets 12 and several magnetic switches 30/32. In this, five unique modes are possible if there is a single blank position as in the above description, though more unique modes are anticipated by providing additional blank positions.
(18) Again, although shown using permanent magnets 12/14 and magnetic switches 30/32, the same safety switch 1 is anticipated to use any known device that converts physical position into an electrical signal including electrical contacts, magnetic sensors, and light interrupter/sensors.
(19) Equivalent elements can be substituted for the ones set forth above such that they perform in substantially the same manner in substantially the same way for achieving substantially the same result.
(20) It is believed that the system and method as described and many of its attendant advantages will be understood by the foregoing description. It is also believed that it will be apparent that various changes may be made in the form, construction and arrangement of the components thereof without departing from the scope and spirit of the invention or without sacrificing all of its material advantages. The form herein before described being merely exemplary and explanatory embodiment thereof. It is the intention of the following claims to encompass and include such changes.