Low-dispersion component in an electronic chip
A method of manufacturing electronic chips containing low-dispersion components, including the steps of: mapping the average dispersion of said components according to their position in test semiconductor wafers; associating, with each component of each chip, auxiliary correction elements; activating by masking the connection of the correction elements to each component according to the initial mapping.
1. An integrated circuit chip, comprising:
a main capacitor having first and second electrodes;
a first correction capacitor having first and second electrodes, the first electrode of the first correction capacitor being contiguous with the first electrode of the main capacitor, and the second electrodes of the main capacitor and first correction capacitor being spaced apart from each other;
a metallization adjacent to the main capacitor and the first correction capacitor;
first and second terminals, the first terminal being electrically coupled to the first electrode of the main capacitor and the second terminal being electrically coupled to the metallization;
an insulating layer on the metallization;
a conductive main pad and conductive first and second pads on the insulating layer;
a main conductive via extending through the insulating layer and electrically connecting the main pad to the metallization; and
a first auxiliary conductive via extending through the insulating layer and electrically connecting the metallization to one of the first and second conductive pads.
2. The integrated circuit chip of claim 1 , wherein:
the metallization includes first and second metallizations lines;
the main pad is directly over the first metallization line and the main conductive via electrically connections the main pad to the first metallization line;
the first and second conductive pads are directly over the second metallization line and the first auxiliary conductive via connects one of the first and second conductive pads to the second metallization line.
3. The integrated circuit chip of claim 2 , wherein the metallization includes a third metallization line, the integrated circuit chip further comprising:
a second correction capacitor having first and second electrodes, the first electrode of the second correction capacitor being contiguous with the first electrodes of the main capacitor and the first correction capacitor, and the second electrodes of the main capacitor and first and second correction capacitors being spaced apart from each other;
third, fourth, fifth, and sixth conductive pads directly over the third metallization line, the third and fifth conductive pads being electrically coupled to the second electrode of the second correction capacitor and the fourth and sixth conductive pads being electrically insulated from the second electrode of the second correction capacitor, wherein one of the third, fourth, fifth, and sixth conductive pads is electrically coupled to the third metallization line.
4. The integrated circuit chip of claim 3 , wherein:
the first, second, and third metallization lines extend lengthwise parallel to each other in a first direction;
the third and fourth conductive pads are aligned with portions of the first conductive pad and portions of the main conductive pad in a second direction perpendicular to the first direction; and
the fifth and sixth conductive pads are aligned with portions of the second conductive pad and portions of the main conductive pad in the second direction.
5. The integrated circuit chip of claim 4 , wherein one of the third, fourth, fifth, and sixth conductive pads is electrically coupled to the third metallization by a second auxiliary conductive via that is aligned with the main and first auxiliary conductive vias in the second direction.
6. An electronic circuit chip, comprising:
a main capacitor having first and second electrodes each of doped polysilicon;
a dielectric between the first and second electrodes and including a stack of dielectric layers;
a first correction capacitor having first and second electrodes, the first electrode of the first correction capacitor being contiguous with the first electrode of the main capacitor, and the second electrodes of the main capacitor and first correction capacitor being spaced apart from each other;
a metallization adjacent to the main capacitor and the first correction capacitor;
first and second terminals, the first terminal being electrically coupled to the first electrode of the main capacitor and the second terminal being electrically coupled to the metallization;
a conductive main pad and conductive first and second pads on the insulating layer;
a main conductive via electrically connecting the main pad to the metallization; and
a first auxiliary conductive via extending through the insulating layer and electrically connecting the metallization to one of the first and second conductive pads.
7. The electronic chip of claim 6 , wherein the stack of dielectric layers includes a succession of silicon oxide, nitride, and oxide layers.
8. The integrated circuit chip of claim 6 , wherein:
the metallization includes first and second metallizations lines;
the main pad is directly over the first metallization line and the main conductive via electrically connections the main pad to the first metallization line;
the first and second conductive pads are directly over the second metallization line and the first auxiliary conductive via connects one of the first and second conductive pads to the second metallization line.
9. The integrated circuit chip of claim 8 , wherein the metallization includes a third metallization line, the integrated circuit chip further comprising:
a second correction capacitor having first and second electrodes, the first electrode of the second correction capacitor being contiguous with the first electrodes of the main capacitor and the first correction capacitor, and the second electrodes of the main capacitor and first and second correction capacitors being spaced apart from each other;
third, fourth, fifth, and sixth conductive pads directly over the third metallization line, the third and fifth conductive pads being electrically coupled to the second electrode of the second correction capacitor and the fourth and sixth conductive pads being electrically insulated from the second electrode of the second correction capacitor, wherein one of the third, fourth, fifth, and sixth conductive pads is electrically coupled to the third metallization line.
10. The integrated circuit chip of claim 9 , wherein:
the first, second, and third metallization lines extend lengthwise parallel to each other in a first direction.
11. The integrated circuit chip of claim 10 , wherein the third and fourth conductive pads are aligned with portions of the first conductive pad and portions of the main conductive pad in a second direction perpendicular to the first direction.
12. The integrated circuit chip of claim 11 , wherein, the fifth and sixth conductive pads are aligned with portions of the second conductive pad and portions of the main conductive pad in the second direction.