Alarm handling in loop-powered field device

US12474193B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12474193-B2
Application numberUS-202318168648-A
CountryUS
Kind codeB2
Filing dateFeb 14, 2023
Priority dateMar 7, 2022
Publication dateNov 18, 2025
Grant dateNov 18, 2025

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A field device comprising measurement circuitry; loop current circuitry; voltage measurement circuitry; and a controller configured to: acquire a first value of a process variable; determine if the voltage received by the field device is sufficient to support a first loop current; control, when the voltage is insufficient to support the first loop current, the loop current to an alarm current lower than a predefined alarm threshold current; acquire a second value of the process variable and a present voltage received by the field device; determine a second loop current; determine, based on the present voltage and an estimation of a loop impedance, whether or not the present voltage is sufficient for supporting the second loop current; and control, when it is determined that the present voltage received by the field device from the current loop is sufficient, the loop current from the alarm current to the second loop current.

First claim

Opening claim text (preview).

What is claimed is: 1 . A field device comprising: measurement circuitry for determining a value of a process variable using energy received via a two-wire current loop; loop current circuitry for controlling a loop current flowing through the current loop; voltage measurement circuitry for providing a signal indicative of a voltage received by the field device from the current loop; and a controller coupled to the measurement circuitry, the loop current circuitry, and the voltage measurement circuitry, the controller being configured to: acquire a first value of the process variable from the measurement circuitry; determine if the voltage received by the field device from the current loop is sufficient to support a first loop current representing the first value of the process variable; control, when it is determined that the voltage received by the field device from the current loop is insufficient to support the first loop current, the loop current circuitry to control the loop current to an alarm current lower than a predefined alarm threshold current; acquire a second value of the process variable from the measurement circuitry and a signal from the voltage measurement circuitry indicating a present voltage received by the field device from the current loop; determine a second loop current representing the second value of the process variable; determine, based on the signal indicating the present voltage received by the field device from the current loop and an estimation of a loop impedance of the current loop as seen by the field device, whether or not the present voltage received by the field device from the current loop is sufficient for supporting the second loop current; and control, when it is determined that the present voltage received by the field device from the current loop is sufficient for supporting the second loop current, the loop current circuitry to change the loop current from the alarm current to the second loop current. 2 . The field device according to claim 1 , wherein the controller is configured to: control the loop current circuitry to control the loop current to a first test current lower than the predefined alarm threshold current; acquire, from the voltage measurement circuitry a signal indicative of a first voltage received by the field device from the current loop when the loop current is controlled to the first test current; control the loop current circuitry to control the loop current to a second test current lower than the predefined alarm threshold current, different from the first test current; acquire, from the voltage measurement circuitry a signal indicative of a second voltage received by the field device from the current loop when the loop current is controlled to the second test current; and estimate the loop impedance based on the first test current, the second test current, the first voltage, and the second voltage. 3 . The field device according to claim 2 , wherein the controller is configured to estimate the loop impedance based on a relation between a difference between the first voltage and the second voltage, and a difference between the first test current and the second test current. 4 . The field device according to claim 1 , wherein the controller is configured to determine if the voltage received by the field device from the current loop is sufficient to support the first loop current by: controlling the loop current circuitry to control the loop current to the first current; acquiring a value indicative of an actual loop current; and determining, when a difference between the first current and the actual loop current is greater than a predefined difference, that the voltage received by the field device from the current loop is insufficient to support the first loop current. 5 . The field device according to claim 4 , wherein the controller is configured to: acquire, from the voltage measurement circuitry, a time series of voltages received by the field device from the current loop; and only carry out the actions according to claim 4 when the voltage received by the field device from the current loop is lower than a predefined voltage. 6 . The field device according to claim 1 , wherein the field device is a radar level gauge, comprising a signal propagating device, for determining a filling level of a product in a tank, wherein the measurement circuitry comprised in the radar level gauge includes: a transceiver for generating electromagnetic signals, providing an electromagnetic transmit signal to the signal propagating device, and receiving from the signal propagating device an electromagnetic reflection signal resulting from reflection of the transmit signal at a surface of the product; and processing circuitry for determining the filling level based on the transmit signal and the reflection signal. 7 . A method of operating a field device coupled to a two-wire current loop, the field device comprising measurement circuitry, loop current circuitry, voltage measurement circuitry, and a controller coupled to the measurement circuitry, the loop current circuitry, and the voltage measurement circuitry, the method comprising: acquiring a first value of a process variable from the measurement circuitry; determining if a voltage received by the field device from the current loop is sufficient to support a first loop current representing the first value of the process variable; controlling, when it is determined that the voltage received by the field device from the current loop is insufficient to support the first loop current, the loop current circuitry to control the loop current to an alarm current lower than a predefined alarm threshold current; acquiring a second value of the process variable from the measurement circuitry and a signal from the voltage measurement circuitry indicating a present voltage received by the field device from the current loop; determining a second loop current representing the second value of the process variable; determining, based on the signal indicating the present voltage received by the field device from the current loop and an estimation of a loop impedance of the current loop as seen by the field device, whether or not the present voltage received by the field device from the current loop is sufficient for supporting the second loop current; and controlling, when it is determined that the present voltage received by the field device from the current loop is sufficient for supporting the second loop current, the loop current circuitry to change the loop current from the alarm current to the second loop current. 8 . The method according to claim 7 , further comprising: controlling the loop current circuitry to control the loop current to a first current lower than the predefined alarm threshold current; acquiring, from the voltage measurement circuitry a signal indicative of a first voltage received by the field device from the current loop when the loop current is controlled to the first current; controlling the loop current circuitry to control the loop current to a second current lower than the predefined alarm threshold current, different from the first current; acquiring, from the voltage measurement circuitry a signal indicative of a second voltage received by the field device from the current loop when the loop current is controlled to the second current; and estimating the loop impedance based on the first test current, the second test current, the first voltage, and the second voltage. 9 . The method according to claim 8 , wherein the loop impedance is estimated based on a relation between a difference between the first voltage and the second voltage, and a difference betwe

Assignees

Inventors

Classifications

  • Measuring two or more variables by means not covered by a single other subclass · CPC title

  • Electrical failure alarms · CPC title

  • G01F23/284Primary

    Electromagnetic waves · CPC title

  • G01D21/00Primary

    Measuring or testing not otherwise provided for · CPC title

  • G01D5/14Primary

    influencing the magnitude of a current or voltage · CPC title

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What does patent US12474193B2 cover?
A field device comprising measurement circuitry; loop current circuitry; voltage measurement circuitry; and a controller configured to: acquire a first value of a process variable; determine if the voltage received by the field device is sufficient to support a first loop current; control, when the voltage is insufficient to support the first loop current, the loop current to an alarm current l…
Who is the assignee on this patent?
Rosemount Tank Radar Ab
What technology area does this patent fall under?
Primary CPC classification G01F23/284. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Nov 18 2025 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 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).