SAFETY SYSTEM HAVING A SAFETY SWITCH
20210108760 · 2021-04-15
Inventors
Cpc classification
F16P3/148
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16P3/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16P3/145
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16P3/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A safety system having a safety switch for monitoring a safe protective equipment status of movable protective equipment, having a base housing that comprises at least two part members that can be positioned with respect to one another, wherein a signal receiver is provided in one part member and a signal transmitter is provided in the other part member so that a safe state of the protective equipment is detectable by means of a control and evaluation unit, and having an interlocking device having an electromagnet and a retaining plate that is disposed opposite the electromagnet for locking or unlocking the protective equipment, wherein the control and evaluation unit is configured to unlock or lock the interlocking unit after checking and verifying the signal receiver, wherein a coil of the electromagnet forms a resonant circuit with the capacitor, with the control and evaluation unit being configured to control the resonant circuit cyclically by at least one pulse signal, and with the control and evaluation unit being configured to evaluate the pulse response from the resonant circuit and with at least one contact or with no contact between the electromagnet and the retaining plate being detectable by the control and evaluation unit in dependence on the pulse response.
Claims
1. A safety system having a safety switch for monitoring a safe protective equipment status of movable protective equipment, the safety system comprising: a base housing that comprises at least first and second part members that can be positioned with respect to one another, wherein a signal receiver is provided in the first part member and a signal transmitter is provided in the second part member so that a safe state of the protective equipment is detectable by means of a control and evaluation unit, and an interlocking device having an electromagnet and a retaining plate that is disposed opposite the electromagnet for locking or unlocking the protective equipment, wherein the control and evaluation unit is configured to unlock or lock the interlocking unit after checking and verifying the signal receiver, wherein a coil of the electromagnet forms a resonant circuit with the capacitor, with the control and evaluation unit being configured to control the resonant circuit cyclically by at least one pulse signal, and with the control and evaluation unit being configured to evaluate the pulse response from the resonant circuit and with at least one contact or with no contact between the electromagnet and the retaining plate being detectable by the control and evaluation unit in dependence on the pulse response.
2. The safety system in accordance with claim 1, wherein the resonant circuit is a parallel resonant circuit.
3. The safety system in accordance with claim 1, wherein a damping factor ξ amounts to at most 0.3.
4. The safety system in accordance with claim 3, wherein the damping factor ξ amounts to at most 0.2.
5. The safety system in accordance with claim 1, wherein a pulse width of the pulse signal amounts to a maximum of 6 ms.
6. The safety system in accordance with claim 5, wherein the pulse width of the pulse signal amounts to a maximum of 5 ms.
7. The safety system in accordance with claim 1, wherein an NPN transistor or an NPN transistor stage is arranged for the evaluation of the pulse response.
8. The safety system in accordance with claim 1, wherein the signal transmitter and the signal receiver are configured as an RFID system having an RFID transponder and an RFID reader.
Description
[0027] The invention will also be explained in the following with respect to further advantages and features with reference to the enclosed drawing and to embodiments. The Figures of the drawing show in:
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034] In the following Figures, identical parts are provided with identical reference numerals.
[0035]
[0036] The unit 19 can, for example in accordance with
[0037] The movable protective equipment 3 can be a door or a gate or similar for securing a hazardous zone.
[0038]
[0039] In accordance with
[0040] The cyclic interruption or switching off of the supply voltage VDD, that is shown in
[0041] The resonant circuit 15 from
[0042] The pulse response or stop response VS or pulse function or stop function of the resonant circuit, that is shown in
[0043]
[0044] The capacitor 14 in the oscillating circuit 15 will, for example, be discharged faster in accordance with
[0045] The control and evaluation unit 9, that is, for example, configured as a microcontroller, triggers the 5 ms long pulse at intervals of 500 ms and monitors the output signal VA or the output voltage. The control and evaluation unit 9 or the microcontroller checks the output signal VA, for example by polling, by software, or by an interrupt routine by software or hardware.
[0046]
[0047] If the retaining plate 12 is a few millimeters remote from the electromagnet 11, the capacitor 14 in the oscillating circuit 15 is discharged less fast in accordance with
[0048] If the retaining plate 12 is in contact or in electrical contact with the electromagnet 11, the capacitor 14 in the resonant circuit 15 is discharged most slowly during the pulse duration, for example, so that the stop response VS is a charge curve having an even longer time constant, in accordance with
[0049]
[0050] If the control and evaluation unit 9 detects the contact between the electromagnet 11 and the retaining plate 12, a pulse signal 18 is no longer generated by the control and evaluation unit 9, for example, and a continuous supply voltage VDD of, for example, 24 volts is applied to the electromagnet 11 without interruptions.
[0051] If the safety switch 2 is opened in accordance with
[0052] In accordance with
[0053] The evaluation of the stop response VS takes place, for example, by a simple transistor circuit accordance with
[0054] In accordance with
[0055] The parallel resonant circuit has the advantage that the coil 13 or the electromagnet 11 can be statically operated and the capacitor 14 has so-to-say no effect in the static operating mode since it is charged and thus forms an almost infinitely high resistance.
[0056] In accordance with
[0057] In accordance with
[0058] In accordance with
[0059] In this respect, a reducing voltage of the pulse response VS at the base connector results in a blocking of the transistor 16 and thus in a positive digitized voltage signal or output signal VA at the output of the transistor 16, namely at the collector-emitter path of the transistor 16.
[0060] The positive output signal VA of the transistor 16 is the longer, the slower the capacitor 14 is charged and the longer the time constant is in accordance with
[0061] A simple digital output VA signal at the outlet of the transistor 16 or of the transistor stage can thus be evaluated by the control and evaluation unit 9.
[0062] In accordance with
[0063] The RFID reader is arranged at the second part member 6 at which the electromagnet 11 is also arranged. The second part member 6 forms an active component having a connector for signal lines and a voltage supply. It can be determined by the RFID reader whether the RFID transponder is in the vicinity of the RFID reader. It can thereby be determined whether the first part member 5 is in the vicinity of the second part member 6.
REFERENCE NUMERALS
[0064] 1 safety system
[0065] 2 safety switch
[0066] 3 protective equipment
[0067] 4 base housing
[0068] 5 first part member
[0069] 6 second part member
[0070] 7 signal receiver
[0071] 8 signal transmitter
[0072] 9 control and evaluation unit
[0073] 10 interlocking unit
[0074] 11 electromagnet
[0075] 12 holding plate
[0076] 13 coil
[0077] 14 capacitor
[0078] 15 resonant circuit
[0079] 16 transistor
[0080] 17 RFID system
[0081] 18 pulse signal
[0082] 19 unit
[0083] 20 robot
[0084] 21 hazardous zone
[0085] 22 person
[0086] VDD supply voltage
[0087] VS stop response
[0088] VA output signal