IP Library Granted Patent US 7,337,551
Granted Patent B2
US 7,337,551 · App. 11/191,660 · Granted Mar 4, 2008

Probe head for a coordinate measuring machine

Assignee: Carl Zeiss Industrielle Messtechnik GmbH
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Quick Facts
Patent No.
US 7,337,551
App. No.
11/191,660
Granted
Mar 4, 2008
Kind
B2
Abstract

A probe head for a coordinate measuring machine has a replaceable, miniaturized probe system with a stylus. The stylus is rigid and forms a structural unit together with a membrane-type sensor system that is deformed in a predetermined way when a force acts on the stylus. The structural unit is permanently fixed to a probe holder and can be handled together with the probe holder when the stylus is being replaced.

Claims (32)

1. A probe head for a coordinate measuring machine, comprising:

a probe system having a membrane-type sensor system with sensor elements and a stylus that is fixed to the sensor system,

a probe holder, and

a probe receptacle,

wherein the membrane-type sensor system is of silicon-based construction and is deformed in a predetermined way when a force acts on the stylus,

wherein the sensor elements are configured for detecting a deformation of the sensor system,

wherein the stylus and the membrane-type sensor system form a structural unit which is permanently connected to the probe holder, and

wherein the probe holder is configured to be replaceably connected to the probe receptacle in order to replaceably mount the structural unit on the coordinate measuring machine.

2. The probe head of claim 1 , wherein the probe holder is constructed like a sleeve.

3. The probe head of claim 1 , wherein the probe holder provides for a mechanical fastening of the structural unit in the probe receptacle, the probe head further comprising a connector for electrically contacting the sensor elements, with the connector being structurally separate from the mechanical fastening of the structural unit in the probe receptacle.

4. The probe head of claim 3 , wherein the connector comprises spring pins for making contact with the sensor elements.

5. The probe head of claim 4 , wherein the sensor system comprises a rear side facing away from the stylus, the sensor elements being configured to be contacted from the rear side.

6. The probe head of claim 1 , wherein the probe holder has a rear section that is configured to be connected to the probe receptacle via a conical fit.

7. The probe head of claim 1 , wherein the probe holder comprises a front section, the sensor system being mounted in the vicinity of said front section.

8. The probe head of claim 1 , wherein the probe holder comprises a rear side having a radial rear portion, the sensor system being mounted on the radial rear portion.

9. The probe head of claim 8 , wherein the sensor system is adhered to the radial rear portion.

10. The probe head of claim 1 , wherein the probe holder has a central opening, the stylus projecting through the central opening.

11. The probe head of claim 1 , wherein the sensor system has a thickened edge, the stylus being arranged in the middle of the sensor system, and a membrane area being located between the thickened edge and the middle.

12. A probe head for a coordinate measuring machine, comprising:

a miniaturized probe system comprising a membrane-type sensor system and a stylus, the stylus being rigid and forming a structural unit together with the membrane-type sensor system, and

a replaceable probe holder,

wherein the membrane-type sensor system deforms in a pre-determined way when a force acts on the stylus, and

wherein the probe system is permanently connected to the probe holder such that the structural unit can be handled together with the probe holder when the stylus is being replaced.

13. The probe head of claim 12 , wherein the probe holder is constructed like a sleeve.

14. The probe head of claim 12 , further comprising a probe receptacle, wherein the probe holder has a rear section configured to be connected to the probe receptacle.

15. The probe head of claim 14 , wherein the probe receptacle extends along an axis, and wherein the probe holder is configured to be connected to the probe receptacle in a predetermined rotary position relative to the axis.

16. The probe head of claim 14 , wherein the probe receptacle extends along an axis and comprises a front end section, and wherein the probe holder is configured to be connected to the front end section.

17. The probe head of claim 12 , wherein the sensor system comprises a rear side facing away from the stylus and comprises electric sensor elements arranged on the rear side, the electric sensor elements being configured for detecting any deformation of the sensor system.

18. The probe head of claim 17 , further comprising spring pins for making contact with the sensor elements.

19. The probe head of claim 18 , further comprising a spring pin holder for holding a plurality of spring pins.

20. The probe head of claim 12 , wherein the sensor system has a thickened edge, wherein the stylus is arranged in the middle of the sensor system, and wherein a membrane area is located between the thickened edge and the middle.

21. The probe head of claim 12 , wherein the sensor system is of silicon-based construction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2005
From: ROTH, ROLAND; DOMINICUS, WALTER; STRAUSS, WOLFGANG; SEITZ, KARL
To: CARL ZEISS INDUSTRIELLE MESSTECHNIK GMBH
Reel/Frame 016622/0992 →
Priority Claims (2)
DE 103 04 827 · Jan 31, 2003 · national
DE 103 14 304 · Mar 25, 2003 · national
Continuity (2)
Continuation PCTEP031458400 · Dec 19, 2003
Related Publication 20060010702A1 · Jan 19, 2006