IP Library Granted Patent US 11,209,258
Granted Patent B2
US 11,209,258 · App. 16/477,345 · Granted Dec 28, 2021

Machine tool apparatus

Inventors: John Anthony Styles (Bristol, GB); Paul Anthony Taylor (Stroud, GB); Derek Marshall (Hawkesbury Upton, GB)
Assignee: RENISHAW PLC
G01B5/008G01B21/047G05B19/402G01B2210/58G05B2219/37231
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Quick Facts
Patent No.
US 11,209,258
App. No.
16/477,345
Granted
Dec 28, 2021
Kind
B2
Abstract

A touch trigger probe interface for a machine tool is described that includes a probe communication portion for receiving probe event information from a touch trigger probe. A machine tool communication portion is also provided for outputting probe event information to a numerical controller of the machine tool. The machine tool communication portion outputs the probe event information as digital data packets, for example over a digital data bus. The digital data packets may include a time stamp and/or the touch trigger probe interface may receive timing information from the machine tool. A touch trigger probing system and a machine tool system including the probe interface are also described.

Claims (22)

1. A touch trigger probe interface configured to interface a touch trigger probe to a machine tool, the touch trigger probe interface comprising a probe communication portion configured to receive probe event information from the touch trigger probe and a machine tool communication portion configured to output probe event information to a numerical controller of the machine tool,

wherein the machine tool communication portion outputs the probe event information as digital data packets comprising timing information about when a probe event occurred.

2. An interface according to claim 1 , wherein the machine tool communication portion is configured to communicate with the numerical controller over a digital data bus, the digital data packets being passed to the numerical controller over the digital data bus.

3. An interface according to claim 2 , wherein the digital data bus is an industrial Ethernet connection.

4. An interface according to claim 1 , wherein each digital data packet comprising probe event information includes a time stamp indicating a time the probe event occurred.

5. An interface according to claim 1 , wherein the machine tool communication portion is configured to receive timing data from the numerical controller of the machine tool.

6. An interface according to claim 5 , wherein the received timing data is in the form of a series of digital data packets sent by the numerical controller at regularly defined intervals.

7. An interface according to claim 5 , wherein the timing data comprises a clock message that is received from the numerical controller.

8. An interface according to claim 1 , wherein the machine tool communication portion is configured to receive machine position information in the form of digital data packets.

9. An interface according to claim 8 , comprising a buffer to store received machine position information.

10. An interface according to claim 8 , wherein the received machine position information comprises a series of machine position data values output by the numerical controller of the machine tool.

11. An interface according to claim 8 , wherein the probe communication portion is configured to receive machine position data directly from position measurement devices of the machine tool.

12. An interface according to claim 8 , wherein the digital data packets output by the machine communication portion to report probe event information describe a machine position at which the probe event occurred.

13. An interface according to claim 1 , wherein the machine tool communication portion outputs additional data to the numerical controller.

14. An interface according to claim 1 , wherein the probe event information comprises a trigger event that indicates the touch trigger probe has reached a predefined positional relationship with an object.

15. An interface according to claim 1 , wherein the probe communication portion comprises a wireless communications portion for wireless communication with an associated touch trigger probe.

16. A touch trigger probing system, comprising a touch trigger probe interface according to claim 1 and a touch trigger probe, the touch trigger probe having a transmission portion for transmitting probe event information to the probe communication portion of the touch trigger probe interface.

17. A system according to claim 16 , where the touch trigger probe comprises a deflectable stylus.

18. A system according to claim 16 , wherein the touch trigger probe is a spindle mountable touch trigger probe.

19. A system according to claim 16 , wherein the touch trigger probe comprises a non-contact tool-setter.

20. A machine tool system comprising a machine tool having a numerical controller and a touch trigger probe interface according to claim 1 or a touch trigger probing system, comprising a touch trigger probe interface according to claim 1 and a touch trigger probe, the touch trigger probe having a transmission portion for transmitting probe event information to the probe communication portion of the touch trigger probe interface.

21. A machine tool system according to claim 20 , wherein the numerical controller includes a rolling buffer that stores a plurality of machine position data values.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2019
From: STYLES, JOHN ANTHONY; TAYLOR, PAUL ANTHONY; MARSHALL, DEREK
To: RENISHAW PLC
Reel/Frame 049726/0850 →
Priority Claims (1)
GB 1700879 · Jan 18, 2017 · national
Continuity (1)
Related Publication 20190376777A1 · Dec 12, 2019
Cited By (3)
US 12,521,833 US 12,678,907 US 12,738,971