IP Library Granted Patent US 9,358,016
Granted Patent B2
US 9,358,016 · App. 14/047,536 · Granted Jun 7, 2016

Drill with depth measurement system

Inventors: Joseph C. McGinley (Casper, WY); Kevin D. Simmons (San Francisco, CA); Peter A. Privitera (San Francisco, CA); Henry K. Sim (Mountain View, CA); Shigeru Tanaka (Half Moon Bay, CA); David J. Rinaldis (Redwood City, CA); Graham R. Faulknor (San Mateo, CA); Martin A. Leugers (San Francisco, CA)
Assignee: McGinley Engineered Solutions, LLC
A61B17/16A61B17/1615A61B17/1622A61B17/1626A61B17/148A61B17/162A61B2019/462
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Quick Facts
Patent No.
US 9,358,016
App. No.
14/047,536
Granted
Jun 7, 2016
Kind
B2
Abstract

A measurement system and method for determining a depth of penetration of a working portion of a surgical instrument (e.g., a rotating drill bit in a bore). A first sensor outputs a first signal representative of a displacement of the leading edge of the drill bit in the bore. A second sensor outputs a second signal representative of a force applied to the leading edge of the drill bit. A processor outputs a third signal representative of the depth of penetration of the leading edge of the drill bit when the leading edge of the drill bit passes from a first medium having a first density to a second medium having a second density. The third signal is based on the first and second signals.

Claims (18)

1. A hand held drill including a drill bit penetration measuring system for determining with respect to a reference point, a depth of penetration of a leading edge of a drill bit in a bore, the drill comprising:

a hand held drill house comprising a drive motor;

a chuck for engagement with a shank of a drill bit at a proximal potion thereof, wherein the chuck is operable to constrain a drill bit engaged by the chuck to limit relative axial movement relative to an axis of rotation about which the drill bit is rotated by the drive motor during drilling;

a displacement sensing arm extending from a passageway extending through the drill housing, wherein the passageway is selectively opened from a proximal end thereof to a distal end thereof, wherein the displacement sensing arm is freely moveable relative to the leading edge of the drill bit in a direction parallel to the axis of rotation, wherein the displacement sensing arm is releasably engageable with a bushing member that is constrainedly moveable along the axis of rotation with respect to a drill bit engaged by the chuck; and

a displacement sensor disposed in a fixed relative position with respect to the drill bit engaged by the chuck at least in a direction corresponding to the axis of rotation, the displacement sensing arm being adapted for relative movement with respect to the displacement sensor, wherein the displacement sensor is operative to output a first signal representative of the displacement of the drill sensing arm relative to the displacement sensor, wherein the displacement sensor is disposed internally to the hand held drill housing;

wherein the movement of the displacement sensing arm relative to the drill corresponds to displacement of the bushing relative to a drill bit engaged by the chuck.

2. The drill according to claim 1 , wherein at least a portion of the displacement sensing arm extends from the drill housing parallel to and offset from the axis of rotation.

3. The drill according to claim 2 , wherein at least a portion the displacement sensing arm extends towards a drill bit engaged by the chuck.

4. The drill according to claim 3 , wherein the displacement sensing arm comprises a hole engageable with a post of the bushing to effectuate corresponding movement of the displacement sensing arm and the bushing.

5. The drill according to claim 3 , wherein the displacement sensor comprises a linear variable differential displacement transducer (LVDT), wherein a coil of the LVDT is disposed in the housing and the displacement sensing arm comprises a moveable core displaceable with respect to the coil of the LVDT.

6. The drill according to claim 5 , wherein the displacement sensor comprises a total measureable travel of at least about 6.4 cm.

7. The drill according to claim 6 , wherein the drill has a resolution of at least about 0.06 mm.

8. The drill according to claim 5 , wherein the displacement sensing arm is biased to a distal position relative to a drill bit engaged by the chuck.

9. The drill according to claim 8 , wherein the displacement sensing arm is selectively removable from the drill housing.

10. The drill according to claim 9 , wherein the displacement sensing arm is selectively retainable in a proximal position.

11. The drill according to claim 1 , wherein the chuck comprises a removable assembly engaged to a drive motor by way of a coupling receiver, wherein the removable assembly is attached to the drill by way of a release mechanism.

12. The drill according to claim 1 , further comprising:

a light emitter operable to emit light in a direction toward the drill bit retained by the chuck.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 7, 2013
From: MCGINLEY, JOSEPH C.; SIMMONS, KEVIN D.; PRIVITERA, PETER A.; SIM, HENRY K.; TANAKA, SHIGERU; RINALDIS, DAVID J.; FAULKNOR, GRAHAM R.; LEUGERS, MARTIN A.
To: MCGINLEY ENGINEERED SOLUTIONS, LLC
Reel/Frame 031357/0026 →
Continuity (2)
Continuation 14018252 · Sep 4, 2013
Related Publication 20150066037A1 · Mar 5, 2015