Highly resilient cantilever spring probe for testing ICs
A probe has a cantilever arm coupled to a base via an anchor. A surface of the arm facing the base or a surface of the base facing the arm has steps with contact points that contact the base when the arm is depressed. Alternatively, the surface of the arm and/or the surface of the base may be curved.
1. A probe, comprising:
a cantilever spring arm;
a base, coupled to the arm via an anchor at a first end of the arm; and
a tip, disposed on a second end of the arm;
wherein a surface of the arm facing the base has a stepped surface;
wherein a surface of the base facing the arm has a stepped structure
wherein the surface of the arm facing the base has a plurality of contact points, and
wherein spacing between the contact points decreases with distance from the anchor.
2. A probe, comprising:
a cantilever spring arm;
a base, coupled to the arm via an anchor at a first end of the arm; and
a tip, disposed on a second end of the arm;
wherein a surface of the base facing the arm has a stepped surface,
wherein the surface of the base facing the arm has a plurality of contact points, and
wherein spacing between the contact points decreases with distance from the anchor.
3. The probe of claim 2 , wherein the length of the steps of the stepped surface decrease with distance from the anchor.
4. The probe of claim 2 , wherein at least one of the plurality of contact points contacts the arm during IC testing to prevent overstress in the arm adjacent to the anchor while causing elastic energy to be stored further along the length of the arm.
5. The probe of claim 2 , wherein the arm comprises a plurality of layers formed using electroplating.
6. The probe of claim 2 , wherein the cantilever spring arm is overstressed before testing.
7. A probe card, comprising:
a space transformer;
a plurality of probes coupled to a surface of the space transformer; and
a printed circuit board communicatively coupled to the space transformer;
wherein the probes each comprise
a cantilever spring arm;
a base, coupled to the arm via an anchor at a first end of the arm; and
a tip, disposed on a second end of the arm;
wherein a surface of the base facing the arm has a stepped surface,
wherein the surface of the base facing the arm has a plurality of contact points, and
wherein spacing between the contact points decreases with distance from the anchor.
8. A method comprising:
aligning a wafer die bond pad with a probe tip of the probe of claim 2 ;
driving a wafer into the probe tip; and
electrically testing the wafer.