EP0892275A2

Method and apparatus for testing semiconductor and integrated circuit structures

Abstract

A method of testing a semiconductor structure such as a finished or part-finished semiconductor wafer, a die on such a wafer, part of such a die, or even one functional element (e.g. a transistor or memory cell) of such a die. The method includes the steps of charging at least a part of the semiconductor structure; applying an electric field perpendicular to a surface of the structure while charging so as to determine charging potential and polarity (i.e. charging either positively or negatively); interrogating the structure including the charged part with a charged particle beam, such as an electron beam, so as to obtain voltage contrast data for the structure; and analyzing the data to determine the functionality of the element. Apparatus according to the invention for testing semiconductor structures, includes: a system for applying charge to at least part of the semiconductor structure, such as an electron beam, flood gun or mechanical probe; an electric field generator, typically an electrode spaced from the surface of the structure, which applies an electric field perpendicular to a surface of the structure so as to determine the potential and polarity of the charge applied to the element (i.e. positive or negative charge); a charged particle beam device such as an electron beam for interrogating the charged element; and a detector such as a secondary electron detector which obtains voltage contrast data from the structure on interrogation with the charged particle beam.

EP0892275A2, drawing sheet 1
Sheet 1 of 12

Term

Term ended

Projected expiry passed 9 July 2018, 8.2 years ago.

  1. Priority
  2. Filed
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61 claims: 9 independent, 52 dependent

  1. 1
    A method of testing a semiconductor structure, comprising:a) charging an element of the semiconductor structure;b) applying an electric field perpendicular to a surface of the structure while charging so as to determine charging potential and polarity;c) interrogating the structure including the charged element with a charged particle beam so as to obtain voltage contrast data for the structure;and d) analyzing the data to determine the functionality of the element.
  2. 19
    Apparatus for testing semiconductor structures, comprising:a) means for applying charge to an element of the semiconductor structure;b) an electric field generator which applies an electric field perpendicular to a surface of the structure so as to determine the potential and polarity of the charge applied to the element;c) a charged particle beam device for interrogating the charged element;and d) a detector which obtains voltage contrast data from the structure on interrogation with the charged particle beam.
  3. 42
    A method of testing a part-finished semiconductor wafer on which diffusion contacts have been formed at a surface of a substrate, comprising:a) charging the surface to a potential relative to the substrate;b) interrogating the diffusion contacts with a charged particle beam so as to obtain voltage contrast data for the contacts;and d) analyzing the data to determine the functionality of the contacts.
  4. 46
    A method of testing a part-finished semiconductor wafer comprising a substrate on which transistors have been formed, comprising:a) charging at least part of a transistor to a potential relative to the substrate;b) interrogating the transistor with a charged particle beam so as to obtain voltage contrast data for the contacts;and c) analyzing the data to determine the functionality of the transistor.
  5. 52
    A method of testing a part-finished semiconductor wafer comprising a substrate on which polysilicon and polysilicide local interconnects have been formed, comprising:a) charging at least part of the wafer to a potential at a first polarity so as to generate a forward bias to the substrate;b) interrogating the interconnects with a charged particle beam so as to obtain voltage contrast data indicative of open faults for the interconnects;c) charging at least part of the wafer to a potential at a second;and d) interrogating the interconnects with a charged particle beam so as to obtain voltage contrast data indicative of short faults for the interconnects.
  6. 53
    A method of testing a part-finished semiconductor wafer comprising a substrate on which metal lines have been formed, comprising:a) charging the metal lines to a potential relative to the substrate;b) interrogating the metal lines with a charged particle beam so as to obtain voltage contrast data for the lines;and c) analyzing the data to detect defects in the metal lines.
  7. 57
    A method of testing a part-finished semiconductor wafer comprising a substrate on which a plurality of vias connecting metal lines have been formed, comprising:a) charging the surface of the wafer;and b) interrogating the vias with a charged particle beam so as to obtain voltage contrast data for the vias;and c) analyzing the data to detect open vias.
  8. 59
    A method of testing a semiconductor wafer having memory structures formed thereon, the memory structures comprising memory cells, word lines and bit lines, the method comprising:a) charging the surface of the wafer to a positive potential;b) discharging the surface of the wafer;c) selectively charging the word lines;d) interrogating the bit lines with a charged particle beam so as to obtain voltage contrast data for the bit lines;and c) analyzing the data to detect defective memory cells.
  9. 60
    A method of testing a semiconductor structure, comprising:a) applying electron beam of relatively low energy relative to the structure to negatively charge electrically floating portions of the structures;b) interrogating the structure including the charged portions with a charged particle beam so as to obtain voltage contrast data for the structure;and c) analyzing the data to determine the functionality of the structure.