Claims
- 1. A device for inspecting a three-dimensional surface structure of a substantially flat test piece, the device comprising:
an optical sensor operable to detect, in three-dimensions, at least a partial area of the surface of the test piece; a positioning device operable to position said optical sensor and the test piece relative to one another; a first memory operable to store setpoint values associated with geometric properties of the surface structure; a second memory operable to store tolerance values indicating a relative tolerance range for the geometric properties; an arithmetic logic unit operable to calculate limit values of an absolute tolerance range; and a display unit operable to display a defect if a measured value of at least one of the geometric properties of at least one of the inspected surface structures does not fall within a respective range of the absolute tolerance range.
- 2. A device as claimed in claim 1 configured to inspect solder paste printing on a printed circuit board.
- 3. A device as claimed in claim 2, wherein the surface structure to be inspected is a solder paste deposit located on a terminal area for component connection on a printed circuit board and the geometric properties comprise at least one of an area, a height, and a volume of the solder paste deposit, and an offset of the solder paste deposit relative to the terminal area.
- 4. A device as claimed in claim 1, further comprising:
outputting means for outputting the measured value corresponding to one of the geometric properties of an inspected surface structure.
- 5. A device as claimed in claim 4, wherein the outputting means is a screen on which measured values of a geometric property that do not fall within a respective absolute tolerance range are highlighted.
- 6. A device as claimed in claim 5, wherein the highlighting is affected by using a particular color for the geometric properties that do not fall within their respective tolerances in contrast to measured values of other geometric properties that do fall within their respective absolute tolerance range.
- 7. A device as claimed in claim 4, further comprising:
input means for inputting information regarding whether a measured value of a geometric property that does not fall within the absolute tolerance range should be evaluated as a defect, wherein the arithmetic logic unit is configured such that when the measured value is not evaluated as a defect, the absolute tolerance range of the geometric property is adjusted corresponding to the measured value.
- 8. A device as claimed in claim 1, wherein said optical sensor records a height image of the surface structure to be inspected and the height image or a gray scale image is displayed on the display unit.
- 9. A surface structure inspection method, comprising:
generating a measured value by measuring a geometric property of a three-dimensional surface structure; calculating a limit value of an absolute tolerance range from a stored setpoint value for the geometric property and a stored relative tolerance value for the geometric property; comparing the measured value and the limit value; and generating an defect indication if the measured value fails to lie within the limit value.
- 10. The method according to claim 9, further comprising:
detecting a manually input signal used to evaluate the measured value as not indicative of a defect; and automatically updating the limit value of the absolute tolerance range to encompass the measured value.
- 11. A device for inspecting the surface of a three-dimensional structure, the device comprising:
a first memory operable to store setpoint values for geometric properties of the three-dimensional structure; a second memory operable to store relative tolerance values corresponding to the setpoint values; and a logic unit operable to automatically calculate absolute tolerance values for the geometric properties, wherein the absolute tolerance values are based on respective values of the stored relative tolerance values and the stored setpoint values.
- 12. A device as claimed in claim 11, further comprising:
a measuring device operable to measure actual values for the geometric properties of the three-dimensional structure; a comparator operable to compare the actual values and the absolute tolerance values; and a defect determiner operable to determine whether a result of the comparison of the actual values and the absolute tolerance values constitutes a defect.
- 13. A device as claimed in claim 12, further comprising:
an output device operable to highlight, with respect to corresponding absolute tolerance values, those actual values that result in a defect determination by said defect determiner; and an input device operable to receive manual input from an operator, wherein the manual input is used to determine whether the absolute tolerance value, corresponding to a defect, should be adjusted in accordance with the corresponding actual value.
Priority Claims (1)
Number |
Date |
Country |
Kind |
299 16 075.0 |
Sep 1999 |
DE |
|
Parent Case Info
[0001] This is a Continuation of International Application PCT/DE00/02855, with an international filing date of Aug. 22, 2000, which was published under PCT Article 21(2) in German, and the disclosure of which is incorporated into this application by reference.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/DE00/02855 |
Aug 2000 |
US |
Child |
10095005 |
Mar 2002 |
US |