EP2932285B1

A magnetic field sensor and method of fabricating a magnetic field sensor having a plurality of vertical hall elements arranged in at least a portion of a polygonal shape

Abstract

This record has no abstract on file.

EP2932285B1, drawing sheet 1
Sheet 1 of 9

Term

7.2 yearsleft in the term

Expires 25 November 2033.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

16 claims: 2 independent, 14 dependent

  1. 1
    A magnetic field sensor (100; 110; 120; 130; 150; 170; 190), comprising:a semiconductor substrate (101;111;121;131;151;171;191) having a planar surface (101a;111a;121a;131a;151a;171a;191a);a plurality of primary vertical Hall elements (103;113;123;133;153;173;193) disposed on the planar surface, wherein each one of the plurality of primary vertical Hall elements comprises a respective plurality of primary vertical Hall element contacts (106a-e;116a-e) arranged in a respective line, wherein the lines of primary vertical Hall element contacts are arranged in a pattern representative of at least a portion of a polygonal shape, wherein the plurality of primary vertical Hall elements (103;113;123;133;153;173;193) includes a primary vertical Hall element (102a;112a;132a;152a;172a;192a) having a respective line of vertical Hall element contacts not parallel to a line of vertical Hall element contacts of another one (102b;112b;132b;152b;172b;192b) of the plurality of primary vertical Hall elements, wherein each one of the plurality of primary vertical Hall elements is configured to generate a respective magnetic field signal indicative of a projected component (109) of a magnetic field projected upon the plane of the planar surface (101a;111a;121a;131a;151a;171a;191a) relative to an angular position of the respective vertical Hall element;and an electronic circuit (108;118;126;140;160;176;196) disposed on the planar surface and coupled to each one of the plurality of primary vertical Hall elements, wherein the electronic circuit is configured to generate an output signal (108a;118a;126a;140a;160a;176a;196a) indicative of an angle of the projected component (109) of the magnetic field, wherein the electronic circuit comprises: first and second vertical Hall element driving circuits (86a, 86b);characterized by : the magnetic field sensor further comprising a plurality of secondary vertical Hall elements (122a-f;136a-c;156a-c) disposed on the planar surface (121a;131a;151a), wherein each one of the secondary vertical Hall elements comprises a respective plurality of secondary vertical Hall element contacts arranged in a respective line, wherein each one of the plurality of secondary vertical Hall elements is arranged in a respective group with a respective one of the plurality of primary vertical Hall elements (112a-f;132a-c;152a-c) and electronically coupled in parallel with the respective one of the plurality of primary vertical Hall elements, wherein each line of secondary vertical Hall element contacts is geometrically arranged at a predetermined angle with a respective line of primary vertical Hall element contacts to form a plurality of parallel groups of vertical Hall elements;and wherein the electronic circuit further comprises: a selection circuit (74) coupled between the first and second vertical Hall element driving circuits and the plurality of parallel groups of vertical Hall elements and configured to switch couplings between the first and second vertical Hall element driving circuits and a changing two of the plurality of parallel groups of vertical Hall elements in sequence, wherein, during a time when one of the plurality of parallel groups of vertical Hall elements is being driven by one of the first and second vertical Hall element driving circuits and processed by the electronic circuit, the next in the sequence of the plurality of parallel groups of vertical Hall elements is being driven by the other of the first and second vertical Hall element driving circuits;and a switching circuit coupled to the plurality of parallel groups of vertical Hall elements and configured to select from among the plurality of parallel groups of vertical Hall elements such that selected ones of the plurality of parallel groups of vertical Hall elements generate respective magnetic field signals at different times on the same signal path.
  2. 2
    The magnetic field sensor of Claim 1, wherein the plurality of primary vertical Hall elements (103) comprises a common primary implant region in the planar surface (101a) of the substrate (101).
  3. 3
    The magnetic field sensor of Claim 1, wherein the plurality of primary vertical Hall elements (113;123;133;153;173;193) comprises separate primary implant regions (114a-f;134a-c;154a-c;174a-c;194a-c) in the planar surface (111a;121a;131a;151a;171a;191a) of the substrate (111;121;131;151;171;191) and does not comprise a common primary implant region in the planar surface of the substrate.
  4. 4
    The magnetic field sensor of Claim 1, wherein the lines of primary vertical Hall element contacts (112a-f) are arranged in straight lines and in a pattern representative of a polygonal shape.
  5. 5
    The magnetic field sensor of Claim 1, wherein the lines of primary vertical Hall element contacts (132a-c;152a-c) are arranged in straight lines and in a pattern representative of half of a polygonal shape.
  6. 6
    The magnetic field sensor of Claim 5, wherein the electronic circuit (140;160) is further configured to use the plurality of primary vertical Hall elements arranged in a pattern representative of half of a polygonal shape to generate additional magnetic field signals representative of output signals as may be generated by vertical Hall elements that would otherwise form missing sides of the polygonal shape, whereby to generate output magnetic field signals representative of the entire polygonal shape.
  7. 7
    The magnetic field sensor of Claim 1, wherein the plurality of secondary vertical Hall elements comprises a common secondary implant region in the planar surface of the substrate.
  8. 8
    The magnetic field sensor of Claim 1, wherein for each group of vertical Hall elements, output signals of the primary and secondary vertical Hall elements are coupled in parallel, and the electronic circuit is arranged to provide independent drive signals to the primary and secondary vertical Hall elements, respectively.
  9. 9
    A method of fabricating a magnetic field sensor (100; 110; 120; 130; 150; 170; 190), comprising:providing a semiconductor substrate (101;111;121;131;151;171;191) having a planar surface (101a;111a;121a;131a;151a;171a;191a);forming, on the planar surface, a plurality of primary vertical Hall elements (103;113;123;133;153;173;193), wherein each one of the plurality of primary vertical Hall elements comprises a respective plurality of vertical Hall element contacts arranged in a respective line of primary vertical Hall element contacts (106a-e;116a-e), wherein the lines of primary vertical Hall element contacts are arranged in a pattern representative of at least a portion a polygonal shape, wherein the plurality of primary vertical Hall elements (103;113;123;133;153;173;193) includes a primary vertical Hall element (102a;112a;132a;152a;172a;192a) having a respective line of vertical Hall element contacts not parallel to a line of vertical Hall element contacts of another one (102b;112b;132b;152b;172b;192b) of the plurality of primary vertical Hall elements, wherein each one of the plurality of primary vertical Hall elements is configured to generate a respective magnetic field signal indicative of a projected component (109) of a magnetic field projected upon the plane of the planar surface (101a;111a;121a;131a;151a;171a;191a) relative to an angular position of the respective vertical Hall element;and forming, on the semiconductor substrate, an electronic circuit (108;118;126;140;160;176;196) coupled to each one of the plurality of primary vertical Hall elements, wherein the electronic circuit is configured to generate an output signal (108a;118a;126a;140a;160a;176a;196a) representative of an angle of the projected component (109) of the magnetic field, wherein forming the electronic circuit comprises: forming first and second vertical Hall element driving circuits (86a, 86b);characterized by the method further comprising forming, on the planar surface (121a;131a;151a), a plurality of secondary vertical Hall elements (122a-f;136a-c;156a-c), wherein each one of the secondary vertical Hall elements comprises a respective plurality of secondary vertical Hall element contacts arranged in a respective line, wherein each one of the plurality of secondary vertical Hall elements is arranged in a respective group with a respective one of the plurality of primary vertical Hall elements (112a-f;132a-c;152a-c) and electronically coupled in parallel with the respective one of the plurality of primary vertical Hall elements, wherein each line of secondary vertical Hall element contacts is geometrically arranged at a predetermined angle with a respective line of primary vertical Hall element contacts to form a plurality of parallel groups of vertical Hall elements;and wherein forming the electronic circuit further comprises: forming a selection circuit (74) coupled between the first and second vertical Hall element driving circuits and the plurality of parallel groups of vertical Hall elements and configured to switch couplings between the first and second vertical Hall element driving circuits and a changing two of the plurality of parallel groups of vertical Hall elements in sequence, wherein, during a time when one of the plurality of parallel groups of vertical Hall elements is being driven by one of the first and second vertical Hall element driving circuits and processed by the electronic circuit, the next in the sequence of the plurality of parallel groups of vertical Hall elements is being driven by the other of the first and second vertical Hall element driving circuits;and forming a switching circuit coupled to the plurality of parallel groups of vertical Hall elements and configured to select from among the plurality of parallel groups of vertical Hall elements such that selected ones of the plurality of parallel groups of vertical Hall elements generate respective magnetic field signals at different times on the same signal path.
  10. 10
    The method of Claim 9, wherein the forming the plurality of primary vertical Hall elements (103) comprises forming a common primary implant region in the planar surface (101a) of the substrate (101).
  11. 11
    The method of Claim 9, wherein the forming the plurality of primary vertical Hall elements (113;123;133;153;173;193) comprises forming separate primary implant regions (114a-f;134a-c;154a-c;174a-c;194a-c) in the planar surface (111a;121a;131a;151a;171a;191a) of the substrate (111;121;131;151;171;191) and not forming a common primary implant region in the planar surface of the substrate.
  12. 12
    The method of Claim 9, wherein the lines of primary vertical Hall element contacts (112a-f) are arranged in straight lines and in a pattern representative of a polygonal shape.
  13. 13
    The method of Claim 9, wherein the lines of primary vertical Hall element contacts (132a-c;152a-c) are arranged in straight lines and in a pattern representative of half of a polygonal shape.
  14. 14
    The method of Claim 13, wherein the plurality of primary vertical Hall elements arranged in a pattern representative of half of a polygonal shape are configured to generate additional magnetic field signals representative of output signals as may be generated by vertical Hall elements that would otherwise form missing sides of the polygonal shape, whereby to generate output magnetic field signals representative of the entire polygonal shape.
  15. 15
    The method of Claim 9, wherein the forming the plurality of secondary vertical Hall elements comprises forming a common secondary implant region in the planar surface of the substrate.
  16. 16
    The method of Claim 9, further comprising:for each group of vertical Hall elements, coupling output signals of the primary and secondary vertical Hall elements in parallel, and providing independent drive signals to the primary and secondary vertical Hall elements, respectively.