Nova Patents
EP1538673A1

Protective device

Abstract

With a microwave FET, an incorporated Schottky junction capacitance or PN junction capacitance is small and such a junction is weak against static electricity. However, with a microwave device, the method of connecting a protecting diode cannot be used since this method increases the parasitic capacitance and causes degradation of the high-frequency characteristics. In order to solve the above problems, a protecting element, having a first n+-type region - insulating region - second n+-type region arrangement is connected in parallel between two terminals of a protected element having a PN junction, Schottky junction, or capacitor. Since discharge can be performed between the first and second n+ regions that are adjacent each other, electrostatic energy that would reach the operating region of an FET can be attenuated without increasing the parasitic capacitance.

EP1538673A1, drawing sheet 1
Sheet 1 of 27

Term

Term ended

Projected expiry passed 8 September 2023, 3 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

19 claims: 6 independent, 13 dependent

  1. 1
    A protecting element comprising:- a first high concentration impurity region, having two side surfaces;- a second high concentration impurity region, disposed so as to oppose one side surface of the first high concentration impurity region and being adequately wider in width than the first high concentration impurity region;- an insulating region, disposed at the periphery of the first and second high concentration impurity regions;- a first current path, formed in the insulating region between opposing surfaces of the first and second high concentration impurity regions and between vicinities of bottom surfaces of both of the regions and serving as a path for electron current and hole current;and - a second current path, formed in the insulating region so as to detour from the second high concentration impurity region to the other side surface of the first high concentration impurity region through regions adequately deeper than the first and second high concentration impurity regions and serving as a path for electron current and hole current;wherein the first and second high concentration impurity regions are arranged as two terminals for connection in parallel between two terminals of a protected element and electrostatic energy that is applied between the two terminals of the protected element is discharged between the first and second high concentration impurity regions and the electrostatic energy is thereby attenuated.
  2. 3
    A protecting element comprising:- a first high concentration impurity region, having two side surfaces;- a second high concentration impurity region, having two side surfaces and having one side surface disposed so as to mutually oppose one side surface of the first high concentration impurity region and also having a width equivalent to the width of the first high concentration impurity region;- an insulating region, disposed at the periphery of the first and second high concentration impurity regions;- a first current path, formed in the insulating region between opposing surfaces of the first and second high concentration impurity regions and between the vicinities of the bottom surfaces of both of the regions and serving as a path for electron current and hole current;and - a second current path, formed in the insulating region so as to detour from the other side surface of the second high concentration impurity region to the other side surface of the first high concentration impurity region through regions adequately deeper than the first and second high concentration impurity regions current path and serving as a path for electron current and hole current;wherein the first and second high concentration impurity regions are arranged as two terminals for connection in parallel between two terminals of a protected element and electrostatic energy that is applied between the two terminals of the protected element is discharged between the first and second high concentration impurity regions and the electrostatic energy is thereby attenuated.
  3. 16
    A protecting element comprising:- a first high concentration impurity region;- a second high concentration impurity region;and - an insulating region disposed at the periphery of and in contact with the first and second high concentration impurity regions;wherein with at least one of either of the first and second high concentration impurity regions, 10 µm or more of the insulating region is secured from a side opposite surface where the high concentration impurity regions oppose each other, the first and second high concentration impurity regions are arranged as two terminals and connected in parallel between two terminals of a protected element having a PN junction or Schottky junction, and electrostatic energy applied between the two terminals of the protected element is discharged between the first and second high concentration impurity regions and the electrostatic energy is thereby attenuated.
  4. 17
    A protecting element comprising:- a first high concentration impurity region;- a second high concentration impurity region;and - an insulating region disposed at the periphery of and in contact with the first and second high concentration impurity regions;wherein with at least one of either of the first and second high concentration impurity regions, 10 µm or more of the insulating region is secured from the side opposite surface where the high concentration impurity regions oppose each other, the first and second high concentration impurity regions are arranged as two terminals and connected in parallel between two terminals of a protected element forming a capacitor, and electrostatic energy applied between the two terminals of the protected element is discharged between the first and second high concentration impurity regions and the electrostatic energy is thereby attenuated.
  5. 18
    A protecting element comprising:- a first high concentration impurity region;- a second high concentration impurity region;and - an insulating region disposed at the periphery of and in contact with the first and second high concentration impurity regions;wherein 10 µm or more of the insulating region is secured in the direction of extension of surfaces where the first and second high concentration impurity regions oppose each other, the first and second high concentration impurity regions are arranged as two terminals and connected in parallel between two terminals of a protected element having a PN junction or Schottky junction, and electrostatic energy applied between the two terminals of the protected element is discharged between the first and second high concentration impurity regions and the electrostatic energy is thereby attenuated.
  6. 19
    A protecting element comprising:- a first high concentration impurity region;- a second high concentration impurity region;and - an insulating region disposed at the periphery of and in contact with the first and second high concentration impurity regions;wherein 10 µm or more of the insulating region is secured in the direction of extension of surfaces where the first and second high concentration impurity regions oppose each other, the first and second high concentration impurity regions are arranged as two terminals and connected in parallel between two terminals of a protected element forming a capacitor, and electrostatic energy applied between the two terminals of the protected element is discharged between the first and second high concentration impurity regions and the electrostatic energy is thereby attenuated.