BI-AXIAL PROBE
    3.
    发明专利

    公开(公告)号:CA1091326A

    公开(公告)日:1980-12-09

    申请号:CA280501

    申请日:1977-06-14

    Applicant: BENDIX CORP

    Abstract: A probe for measuring coordinate positions on an object by sensing a displacement of the stylus which contacts the object. The probe is responsive to forces which result from the contact between the object and the stylus to indicate coordinate positions of the object. The probe includes a replaceable stylus having a shank portion defining an axis, with a transversely-extending portion extending from the shank portion for sensing forces exerted by objects in the axial direction away from the probe, while the stylus shank portion is responsive to forces in the radial and axial (toward the probe) directions. The probe is thus responsive to forces exerted on the stylus in any direction.

    METHOD OF MAKING COORDINATE MEASUREMENTS

    公开(公告)号:CA1169942A

    公开(公告)日:1984-06-26

    申请号:CA354604

    申请日:1980-06-23

    Applicant: BENDIX CORP

    Inventor: DEIS JEROME E

    Abstract: 380-79-0090 METHOD OF MAKING COORDINATE MEASUREMENTS A method of making measurements on a machine having a movable probe for measuring a part in which a present location of the probe is maintained and a past location (e.g., a part measurement) of the probe is also maintained (stored) and advantageously displayed. The measuring apparatus includes two sets of storage members, with the present position information of the probe stored in one set. The present probe position information is transferred to the other storage members in response to a control signal. The control signal, such as an electrical signal indicating contact with an object, causes measurements to be transferred from the one set of storage members to the second set of storage members and, advantageously, the transfer of further information to the second storage members may be locked out for a predetermined time or until an event occurs (such as a resetting signal). The first set of storage members continue to maintain present position information on the probe which may be moving, while an output device (display, etc.) is coupled to the second set of storage members and is not affected by the change in the first set of storage members. The present invention has application to multi-dimension measuring (e.g., coordinate measuring machines) and single dimension measuring (e.g., height gages).

    BE-AXIAL PROBE
    5.
    发明专利

    公开(公告)号:AU510631B2

    公开(公告)日:1980-07-03

    申请号:AU2911477

    申请日:1977-09-26

    Applicant: BENDIX CORP

    Abstract: A probe for measuring coordinate positions on an object by sensing a displacement of the stylus which contacts the object. The probe is responsive to forces which result from the contact between the object and the stylus to indicate coordinate positions of the object. The probe includes a replaceable stylus having a shank portion defining an axis, with a transversely-extending portion extending from the shank portion for sensing forces exerted by objects in the axial direction away from the probe, while the stylus shank portion is responsive to forces in the radial and axial (toward the probe) directions. The probe is thus responsive to forces exerted on the stylus in any direction.

    6.
    发明专利
    未知

    公开(公告)号:DE2743665A1

    公开(公告)日:1978-04-20

    申请号:DE2743665

    申请日:1977-09-28

    Applicant: BENDIX CORP

    Abstract: A probe for measuring coordinate positions on an object by sensing a displacement of the stylus which contacts the object. The probe is responsive to forces which result from the contact between the object and the stylus to indicate coordinate positions of the object. The probe includes a replaceable stylus having a shank portion defining an axis, with a transversely-extending portion extending from the shank portion for sensing forces exerted by objects in the axial direction away from the probe, while the stylus shank portion is responsive to forces in the radial and axial (toward the probe) directions. The probe is thus responsive to forces exerted on the stylus in any direction.

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