IP Library Granted Patent US 10,863,413
Granted Patent B2
US 10,863,413 · App. 16/387,826 · Granted Dec 8, 2020

Equipment and method for the wireless operation of an IO-link communication system

Inventors: Stephan Franz (Uhingen, DE); Matthias Beyer (Metzingen, DE); Markus Rentschler (Dettingen, DE)
Assignee: Balluff GmbH
H04W40/24H04L12/40019H04L2012/4026H04W84/18
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,863,413
App. No.
16/387,826
Granted
Dec 8, 2020
Kind
B2
Abstract

Equipment for the wireless operation of IO-link devices in an IO-link communication network, including an IO-link master connected to a fieldbus a wire-bonded communication network and at least one wirelessly communicating IO-link device, has a wire-bonded IO-link device serving as a wireless IO-link device interface for the wireless communication with the at least one wirelessly communicating IO-link device.

Claims (29)

1. Equipment for the wireless operation of IO-link devices in an IO-link communication network, in which an IO-link master connected to a fieldbus by a wire-bonded communication connection and at least one wirelessly communicating IO-link device are provided,

wherein a wire-bonded IO-link device serving as a wireless IO-link device interface for the wireless communication with the at least one wirelessly communicating IO-link device is provided, and

wherein the IO-link device interface is provided by an additional wire-bonded IO-link master formed in a second unit with a wire-bonded IO-link device.

2. Equipment according to claim 1 , wherein the wireless IO-link device interface is provided by a W-master formed with a wire-bonded IO-link device in a first unit.

3. Equipment according to claim 1 , wherein the second unit is communicatively connected to the IO-link master via a wire-bonded IO-link connection, wherein the communication of the IO-link device formed in the second unit ( 400 ) with the communicating IO-link devices takes place via respective wire-bonded IO-link communication connections.

4. Equipment for the wireless operation of IO-link devices in an IO-link communication network, in which an IO-link master connected to a fieldbus by a wire-bonded communication connection and at least one wirelessly communicating IO-link device are provided,

wherein a wire-bonded IO-link device serving as a wireless IO-link device interface for the wireless communication with the at least one wirelessly communicating IO-link device is provided,

wherein the wireless IO-link device interface is provided by an IO-link device, which is formed in a third unit with a wire-bonded IO-link master and a wireless IO-link master,

wherein the wireless IO-link device interface formed in this way communicates with the at least one wirelessly communicating IO-link device via a wireless IO-link communication track, and

wherein the wireless IO-link device interface formed in such a way communicates with at least one wire-bonded IO-link device via a wire-bonded IO-link communication track by means of the integrated IO-link master.

5. A method for operating equipment for the wireless operation of IO-link devices in an IO-link communication network, in which an IO-link master connected to a fieldbus by a wire-bonded communication connection and at least one wirelessly communicating IO-link device are provided,

wherein a wire-bonded IO-link device serving as a wireless IO-link device interface for the wireless communication with the at least one wirelessly communicating IO-link device is provided, and

wherein the address space required for the wireless IO-link communication with the at least one wirelessly communicating IO-link device is generated by present process data already being used for the wireless communication between a wire-bonded IO-link master and a wireless IO-link device in the IO-link communication network.

6. The method according to claim 5 , wherein the allocation of the communication with the at least one wirelessly communicating IO-link device takes place via a masking inside the process data.

7. The method according to claim 6 , wherein the demasking of masked process data is carried out in a functional module of a memory-programmable controller present in an IO-link communication network.

8. The method according to claim 6 , wherein the demasking of masked process data is carried out in a wire-bonded IO-link master.

9. A method for operating equipment for the wireless operation of IO-link devices in an IO-link communication network, in which an IO-link master connected to a fieldbus by a wire-bonded communication connection and at least one wirelessly communicating IO-link device are provided,

wherein a wire-bonded IO-link device serving as a wireless IO-link device interface for the wireless communication with the at least one wirelessly communicating IO-link device is provided, and

wherein the address space required for the wireless IO-link communication with the at least one wirelessly communicating IO-link device is generated by means of routing of parameters.

10. A method for operating equipment for the wireless operation of IO-link devices in an IO-link communication network, in which an IO-link master connected to a fieldbus by a wire-bonded communication connection and at least one wirelessly communicating IO-link device are provided,

wherein a wire-bonded IO-link device serving as a wireless IO-link device interface for the wireless communication with the at least one wirelessly communicating IO-link device is provided, and

wherein the address space required for the wireless IO-link communication with the at least one wirelessly communicating IO-link device is generated by means of a postbox mechanism.

11. A method for operating equipment for the wireless operation of IO-link devices in an IO-link communication network, in which an IO-link master connected to a fieldbus by a wire-bonded communication connection and at least one wirelessly communicating IO-link device are provided,

wherein a wire-bonded IO-link device serving as a wireless IO-link device interface for the wireless communication with the at least one wirelessly communicating IO-link device is provided, and

wherein the address space required for the wireless IO-link communication with the at least one wirelessly communicating IO-link device is generated by means of an event FIFO memory.

12. Equipment according to claim 4 , wherein the wireless IO-link device interface communicates with a user interface of at least one additional wireless IO-link master via the wire-bonded IO-link communication track by means of the integrated IO-link master.

13. Equipment for the wireless operation of IO-link devices in an IO-link communication network, in which an IO-link master connected to a fieldbus by a wire-bonded communication connection and at least one wirelessly communicating IO-link device are provided,

wherein a wire-bonded IO-link device serving as a wireless IO-link device interface for the wireless communication with the at least one wirelessly communicating IO-link device is provided,

wherein the wireless IO-link device interface is provided by a wireless IO-link master, which communicates with at least one wirelessly communicating IO-link device via a wireless IO-link communication connection and provides a wire-bonded IO-link communication connection to at least one wire-bonded IO-link device via an IO-link master formed from a wirelessly communicating IO-link device and an IO-link master formed in a fourth unit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 15, 2019
From: FRANZ, STEPHAN; BEYER, MATTHIAS; RENTSCHLER, MARKUS
To: BALLUFF GMBH
Reel/Frame 049181/0635 →
Priority Claims (1)
DE 10 2018 109 607 · Apr 20, 2018 · national
Continuity (1)
Related Publication 20190327662A1 · Oct 24, 2019
Cited By (1)
US 12,613,823