IP Library › Granted Patent US 12,506,808
Granted Patent B1
US 12,506,808 · App. 19/203,215 · Granted Dec 23, 2025

Method for transmitting event data from a field device to a remote computing device, computer program product, field device, and system

Inventors: Christoph Meske (Berlin, DE); Hendrik Rathmann (Berlin, DE); Sven Wille (Berlin, DE)
Assignee: Knick Elektronische Messgeräte GmbH & Co. KG
H04L67/12
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Quick Facts
Patent No.
US 12,506,808
App. No.
19/203,215
Granted
Dec 23, 2025
Kind
B1
Abstract

A method for transmitting event data ( 21 ), in particular operator event data and/or status event data, from a field device ( 2 ) to a remote computing device ( 3 ), includes: generating the event data ( 21 ) using the field device ( 2 ) on the basis of an event, providing an availability signal ( 22 b ), which signals the availability of the event data ( 21 ), for transmission ( 32 ) via a digital communication interface ( 15 ) to the remote computing device ( 3 ), and providing the event data ( 21 ) for transmission via the digital communication interface ( 15 ) to the remote computing device ( 3 ), the event data ( 21 ) being provided separately from the availability signal ( 22 b ). Computer program product, field device ( 2 ) for carrying out the above method, and system ( 1 ) including the field device ( 2 ).

Claims (40)

1 . A method for transmitting ( 33 ) operator event data ( 21 ) from a field device ( 2 ) to a remote computing device ( 3 ), comprising:

controlling and/or monitoring a laboratory and/or production process by the field device ( 2 );

generating ( 31 ) the operator event data ( 21 ) using the field device ( 2 ) based on an operating action of a user on a user interface of the field device;

providing an availability signal ( 22 b ), wherein the availability signal ( 22 b ) signals availability of the operator event data ( 21 ) for transmission ( 32 ) via a digital communication interface ( 15 ) to the remote computing device ( 3 );

transmitting ( 33 ) the availability signal ( 22 b ) via the digital communication interface ( 15 ) to the remote computing device ( 3 ) in a data packet,

providing the operator event data ( 21 ) for transmission ( 33 ); and

transmitting ( 33 ) the operator event data ( 21 ) via the digital communication interface ( 15 ) to the remote computing device ( 3 ) in a separate data packet,

wherein providing the operator event data and transmitting ( 33 ) the operator event data ( 21 ) is automated and triggered by the operating action of the user, and

wherein the operator event data ( 21 ), after being generated, is stored in a buffer memory of the field device ( 2 ) merely for providing the operator event data ( 21 ) for transmission ( 33 ) and, after the transmitting, the operator event data ( 21 ) is stored in a remote data storage device for centralized saving.

2 . The method according to claim 1 , wherein there is a time interval of at most 1 hour between the operating action of the user and transmitting of the operator event data.

3 . The method according to claim 1 ,

wherein the operator event data ( 21 ) are transmitted only to the remote computing device ( 3 ) after digitally authenticating the remote computing device ( 3 ) and/or via a designated physical and/or digital connection.

4 . The method according to claim 1 , wherein the field device ( 2 ) is used to perform measurement tasks or control tasks.

5 . The method according to claim 1 , wherein the availability signal ( 22 b ) and/or the operator event data ( 21 ) are provided on a digital communication interface ( 15 ) configured as a fieldbus.

6 . The method according to claim 1 , wherein the transmitting ( 33 ) the operator event data ( 21 ) is performed via acyclic data exchange.

7 . The method according to claim 1 , wherein the availability signal ( 22 b ) is provided at least until transmitting ( 33 ) the operator event data ( 21 ) is complete.

8 . The method according to claim 1 , wherein the operator event data ( 21 ) are generated in response to a change in a configuration of the field device ( 2 ).

9 . The method according to claim 1 , wherein the operator event data ( 21 ) comprise an individual event identifier ( 21 a ).

10 . The method according to claim 1 , wherein the operator event data ( 21 ) comprise a user identifier ( 21 h ).

11 . The method according to claim 1 , wherein transmitting ( 33 ) the operator event data ( 21 ) is performed at least in part as human-readable text.

12 . The method according to claim 11 , further comprising generating the human-readable text in one of a plurality of languages in accordance with a language setting.

13 . The method according to claim 1 , further comprising receiving a confirmation of receipt regarding the operator event data ( 21 ).

14 . The method according to claim 13 , further comprising deleting ( 36 ) the operator event data ( 21 ) from the field device ( 2 ) based on the confirmation of receipt, the confirmation of receipt being assigned to the operator event data ( 21 ) by an individual event identifier.

15 . The method according to claim 1 , further comprising configuring a scope of information of the operator event data ( 21 ) to be generated.

16 . The method according to claim 1 , wherein the operator event data ( 21 ) comprise a check value for determining an integrity of the operator event data ( 21 ).

17 . A computer program product stored in a non-transitory memory comprising instructions which cause a computer to carry out a method for transmitting ( 33 ) operator event data ( 21 ) from a field device ( 2 ) to a remote computing device ( 3 ), the method comprising:

controlling and/or monitoring a laboratory and/or production process by the field device ( 2 );

generating ( 31 ) the operator event data ( 21 ) using the field device ( 2 ) based on an operating action of a user;

providing an availability signal ( 22 b ), wherein the availability signal ( 22 b ) signals availability of the operator event data ( 21 ) for transmission ( 32 ) via a digital communication interface ( 15 ) to the remote computing device ( 3 );

transmitting ( 33 ) the availability signal ( 22 b ) via the digital communication interface ( 15 ) to the remote computing device ( 3 ) in a data packet,

providing the operator event data ( 21 ) for transmission ( 33 ) separately from the availability signal ( 22 b ); and

transmitting ( 33 ) the operator event data ( 21 ) via the digital communication interface ( 15 ) to the remote computing device ( 3 ) in a separate data packet,

wherein the operator event data ( 21 ) relates to a change in a configuration of the field device ( 2 ),

wherein providing the operator event data and transmitting ( 33 ) the operator event data ( 21 ) is automated and triggered by the change in the configuration of the field device ( 2 ), and

wherein the operator event data ( 21 ), after being generated, is stored in a buffer memory of the field device ( 2 ) merely for providing the operator event data ( 21 ) for transmission ( 33 ) and, after the transmitting, the operator event data ( 21 ) is stored in a remote data storage device for centralized saving.

18 . A field device ( 2 ) for controlling and/or monitoring a laboratory and/or production process, comprising:

a computing unit ( 2 ) for generating event data ( 21 ), and

a digital communication interface ( 15 ) for transmitting ( 32 , 33 ) the operator event data ( 21 ),

wherein the field device is configured to carry out the method according to claim 1 .

19 . The field device ( 2 ) according to claim 18 , wherein the digital communication interface ( 15 ) is a data bus interface.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2025
From: MESKE, CHRISTOPH; RATHMANN, HENDRIK; WILLE, SVEN
To: KNICK ELEKTRONISCHE MESSGERÄTE GMBH & CO. KG
Reel/Frame 071144/0126 →
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