Relay failure detection system

US9236209B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9236209-B2
Application numberUS-201414242673-A
CountryUS
Kind codeB2
Filing dateApr 1, 2014
Priority dateApr 3, 2013
Publication dateJan 12, 2016
Grant dateJan 12, 2016

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Abstract

Official abstract text for this publication.

A relay fault detection and correction system includes a signal detector structured to measure primary and secondary signals, and generates a fault output signal if the signals appear to be unterminated due to a relay not connecting the signals to the loads. A cycle circuit is structured to cause a relay controller to cycle a potentially under-performing relay between its states a number of times after the signal detector generates the fault output.

First claim

Opening claim text (preview).

What is claimed is: 1. A relay fault detection system structured to detect relay faults within a switching system, the relay fault detection system comprising: a first relay having an input structured to couple to a first signal, and having first and second outputs, the first output coupled to a termination resistor and the second output coupled to an output of the switching system, the first relay structured to couple the first signal to the first output or the second output of the first relay; a second relay having an input structured to couple to a second signal, and having first and second outputs, the second output coupled to a termination resistor and the first output coupled to the output of the switching system, the second relay structured to couple the second signal to the first output or the second output of the second relay; a control system structured to operate the first and second relays to make exactly one of the first or second signals an active signal on the output of the switching system; a first level detector coupled to the first signal and a second level detector coupled to the second signal, each of the first and second level detectors structured to generate a signal level output from the respective first signal and second signal; a first low threshold detector coupled to the first level detector and structured to detect a low signal level output of the first level detector as a signal fault when the first signal degrades below a low threshold value; a second low threshold detector coupled to the second level detector and structured to detect a low signal level output of the second level detector as a signal fault when the second signal degrades below the low threshold value; a first high threshold detector coupled to the first level detector and structured to detect a high signal level output of the first level detector in the presence of a first relay fault when the first signal is higher than a high threshold value; and a second high threshold detector coupled to the second level detector and structured to detect a high signal level output of the second level detector in the presence of a second relay fault when the second signal is higher than the high threshold value. 2. The relay fault detection system according to claim 1 , further comprising: an output relay having a first input coupled to the second output of the first relay and having a second input coupled to the first output of the second relay, the output relay including an output that is also the output of the switching system. 3. The relay fault detection system according to claim 2 , further comprising: a cycle circuit structured to cause the control system to cycle either the first relay, the second relay, the output relay, or any two or three of the relays between a first operative state and a second operative state a plurality of times after the high threshold detector generates a relay fault. 4. The fault detection system according to claim 1 , in which each of the first and second high threshold detectors is a comparator having a high threshold input and having an input coupled to the output of the respective first or second level detector. 5. The fault detection system according to claim 1 , in which each of the first and second high threshold detectors comprises: an Analog to Digital Converter (ADC) coupled to the output of the respective first or second level detector and structured to generate a digital representation of a signal level output by the respective first or second level detector; and a determiner structured to compare the output of the ADC the high threshold value. 6. The fault detection system according to claim 5 , in which the determiner comprises a software process running on a processor. 7. The fault detection system according to claim 1 , further comprising: a notification unit structured to generate a notification based on a presence of a relay fault, the notification including one or more of an entry in an error log, a sound, a light, a text message, or an email. 8. The relay fault detection system according to claim 1 , further comprising: a cycle circuit structured to cause the control system to cycle either the first relay, the second relay, or the output relay, or any two or three of the relays between a first operative state and a second operative state a plurality of times after the first or second high threshold detector generates a relay fault; and a notification unit structured to generate a notification based on a presence of a relay fault, the notification including one or more of an entry in an error log, a sound, a light, a text message, or an email. 9. An electronic changeover unit having a set of first inputs and a set of related second inputs, the electronic changeover unit comprising: a series of channels, in which each channel includes: a first relay having an input structured to couple to a first signal, and having first and second outputs, the first output coupled to a termination resistor and the second output coupled to a channel output, the first relay structured to couple the first signal to the first output or the second output of the first relay, a second relay having an input structured to couple to a second signal, and having first and second outputs, the second output coupled to a termination resistor and the first output coupled to the channel output, the second relay structured to couple the second signal to the first output or the second output of the second relay, a control system structured to operate the first and second relays to make exactly one of the first or second signals an active signal of the channel output, a first level detector coupled to the first signal and a second level detector coupled to the second signal, each of the first and second level detectors structured to generate a signal level output from the respective first signal and second signal, a first low threshold detector coupled to the first level detector and structured to detect a low signal level output of the first level detector as a signal fault when the first signal degrades below a low threshold value, a second low threshold detector coupled to the second level detector and structured to detect a low signal level output of the second level detector as a signal fault when the second signal degrades below a low threshold value; a first high threshold detector coupled to the first level detector and structured to detect a high signal level output of the first level detector in the presence of a first relay fault when the first signal is higher than a high threshold value; and a second high threshold detector coupled to the second level detector and structured to detect a high signal level output of the second level detector in the presence of a second relay fault when the second signal is higher than the high threshold value. 10. The electronic changeover unit according to claim 9 , further comprising: an output relay having a first input coupled to the second output of the first relay and having a second input coupled to the first output of the second relay, the output relay including an output that is also the output of the channel. 11. The electronic changeover unit according to claim 10 , further comprising: a cycle circuit structured to cause the control system to cycle either the first relay, the second relay, or the output relay, or any two or three of the relays between a first operative state and a second operative state a plurality of times after the first or second high threshold detector generates a relay fault. 12. The electronic changeover unit according to claim 10 , further comprising: a cycle circuit s

Assignees

Inventors

Classifications

  • H01H47/002Primary

    Monitoring or fail-safe circuits · CPC title

  • of relays, solenoids or reed switches (measuring contact resistance G01R27/205; high voltage magnetic switches G01R31/3271, G01R31/333; testing electric windings G01R31/72; monitoring of fail safe circuits H01H47/002) · CPC title

  • Electrical failure alarms · CPC title

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What does patent US9236209B2 cover?
A relay fault detection and correction system includes a signal detector structured to measure primary and secondary signals, and generates a fault output signal if the signals appear to be unterminated due to a relay not connecting the signals to the loads. A cycle circuit is structured to cause a relay controller to cycle a potentially under-performing relay between its states a number of tim…
Who is the assignee on this patent?
Tektronix Inc
What technology area does this patent fall under?
Primary CPC classification H01H47/002. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Jan 12 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).