Systems, methods, and devices for fluid data sensing
US-9541429-B2 · Jan 10, 2017 · US
US12136299B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12136299-B2 |
| Application number | US-201917277422-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 18, 2019 |
| Priority date | Sep 18, 2018 |
| Publication date | Nov 5, 2024 |
| Grant date | Nov 5, 2024 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
Aspects herein include filtration systems with multitiered data exchange capabilities. In an embodiment, a filtration system with multitiered data exchange capabilities is included. The system can include a first data communication tier including a filter element, the filter element storing data, and a first sensor. The system can include a second data communication tier including a reader device in communication with the first sensor. The system can include a third data communication tier including an engine control unit (ECU) in communication with the reader device, wherein the ECU stores data. The second data communication tier receives data from the first data communication tier and the third data communication tier. The second data communication tier executes operations on the received data to create a processed data set. Further, the second data communication tier sends the processed data set to the third data communication tier. Other embodiments are also included herein.
Opening claim text (preview).
The invention claimed is: 1. A filtration system with multitiered data exchange capabilities comprising: a first data communication tier comprising a filter element, the filter element comprising a data storage element for storing data; and a first sensor associated with the filter element; a filter element housing configured to removably receive the filter element, wherein the filter element is configured to be removed from the filter element housing and replaced with a second filter element; a second data communication tier comprising a reader device in communication with at least one of the filter element and the first sensor; and a third data communication tier comprising an engine control unit (ECU) in communication with the reader device, wherein the ECU stores data; wherein the second data communication tier receives data from the first data communication tier and the third data communication tier; wherein the second data communication tier executes operations on the received data to create a processed data set; wherein the second data communication tier sends the processed data set to the data storage element of the filter element; wherein the second data communication tier sends the processed data set to the third data communication tier; wherein the filtration system is configured to detect a power on stage, and upon detecting the power on stage, the first data communication tier is configured to send data regarding a unique identifier of the filter element to the second data communication tier and/or the third data communication tier; wherein the second data communication tier and/or the third data communication tier is configured to: store the unique identifier of the filter element; compare the unique identifier of the filter element to one or more previously stored unique identifiers; and if the unique identifier of the filter element does not match the previously stored unique identifiers, record an indication that a new filter element has been installed along with a timestamp. 2. The filtration system with multitiered data exchange capabilities of claim 1 , wherein the processed data set include information regarding an expected end-of-life for the filter element or a portion thereof. 3. The filtration system with multitiered data exchange capabilities of claim 1 , wherein the processed data set include information regarding percent life remaining for the filter element or a portion thereof. 4. The filtration system with multitiered data exchange capabilities of claim 1 , wherein the processed data set include information regarding percent life consumed for the filter element or a portion thereof. 5. The filtration system with multitiered data exchange capabilities of claim 1 , wherein the processed data set include information regarding miles remaining for the filter element or a portion thereof. 6. The filtration system with multitiered data exchange capabilities of claim 1 , wherein the processed data set include information regarding hours remaining for the filter element or a portion thereof. 7. The filtration system with multitiered data exchange capabilities of claim 1 , wherein the operations performed by the second data communication tier on the received data include averaging at least a portion of the received data. 8. The filtration system with multitiered data exchange capabilities of claim 1 , wherein the operations performed by the second data communication tier on the received data include calculating at least one of the mean and the standard deviation of at least a portion of the received data. 9. The filtration system with multitiered data exchange capabilities of claim 1 , wherein the operations performed by the second data communication tier on the received data include filtering elements of the received data. 10. The filtration system with multitiered data exchange capabilities of claim 1 , wherein the operations performed by the second data communication tier on the received data include disposing portions of the received data. 11. The filtration system with multitiered data exchange capabilities of claim 1 , wherein the operations performed by the second data communication tier on the received data include normalizing the received data. 12. The filtration system with multitiered data exchange capabilities of claim 1 , wherein the first sensor is at least one selected from the group consisting of a pressure sensor, a temperature sensor, and a proximity sensor. 13. The filtration system with multitiered data exchange capabilities of claim 1 , the first data communication tier further comprising a second sensor configured to generate data. 14. The filtration system with multitiered data exchange capabilities of claim 13 , wherein the second sensor is at least one selected from the group consisting of a pressure sensor, a temperature sensor, and a proximity sensor. 15. The filtration system with multitiered data exchange capabilities of claim 1 , wherein the second data communication tier sends data to the first data communication tier specifying previous filter elements installed in the filtration system. 16. The filtration system with multitiered data exchange capabilities of claim 1 , wherein the filter element has previously been installed in a different filtration system and the data storage element is configured to store information pertaining to the previous filtration system and to transmit the information to the second data communication tier and/or the third data communication tier. 17. A filtration system with multitiered data exchange capabilities comprising: a first data communication tier comprising a filter element, the filter element comprising a data storage element; a filter element housing configured to removably receive the filter element, wherein the filter element is configured to be removed from the filter element housing and replaced with a second filter element; a second data communication tier comprising a reader device comprising a processing circuit; and a communication circuit; and wherein the filtration system is configured to detect a power on stage, and upon detecting the power on stage, the first data communication tier is configured to send data regarding a unique identifier of the filter element to the second data communication tier; wherein the second data communication tier is configured to: store the unique identifier of the filter element; compare the unique identifier of the filter element to one or more previously stored unique identifiers; and if the unique identifier of the filter element does not match the previously stored unique identifiers, record an indication that a new filter element has been installed along with a timestamp. 18. The filtration system of claim 17 , the data from the first data communication uniquely identifying the filter element comprising a product serial number.
communicating information to a remotely located station (transmission systems for measured values G08C) · CPC title
for the intake of internal combustion engines or turbines · CPC title
by temperature measuring · CPC title
by pressure measuring · CPC title
Filter condition indicators · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.