IP Library Granted Patent US 8,844,942
Granted Patent B1
US 8,844,942 · App. 13/169,742 · Granted Sep 30, 2014

Quick-load connector for a surgical tool

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Quick Facts
Patent No.
US 8,844,942
App. No.
13/169,742
Granted
Sep 30, 2014
Kind
B1
Abstract

A mechanical connector designed to connect an orthopedic tool to a handle or motor. The connector includes a locking ball and spring-load sleeve mechanism that compresses a ball into an annular groove of the tool drive shaft, locking the shaft in the connector. The tool drive shaft is released from the connector by applying a force to the housing in a proximal direction. A portion of the housing removes the locking ball from the groove of the tool drive shaft, unlocking the shaft from the connector as the housing travels in a proximal direction.

Claims (47)

1. A connector mechanism for a surgical tool, the mechanism comprising:

a) a housing comprising a housing sidewall surrounding a housing through-bore extending along a longitudinal axis from a housing proximal portion defining a housing proximal open end to a housing distal portion having a lip aligned substantially perpendicular to the axis and defining a housing distal open end;

b) a connector residing inside the housing through-bore, wherein the connector comprises a connector sidewall having a connector sidewall thickness surrounding a connector through-bore sized to receive a tool shaft, wherein the connector through-bore extends along the longitudinal axis from a connector proximal portion having a connector proximal open end to a connector distal portion having a connector distal open end;

c) at least one slot extending through the connector sidewall from an outer connector surface to the connector through-bore thereof, wherein the slot has an angled surface extending from the connector inner surface proximally and outwardly with respect to the longitudinal axis through the connector sidewall thickness;

d) a sleeve positioned between the housing and the connector, the sleeve comprising a sleeve sidewall having a sleeve thickness extending from a sleeve outer surface to a sleeve inner surface defining a sleeve through-bore extending along the longitudinal axis from a sleeve proximal portion having a sleeve proximal open end to a sleeve distal portion having a sleeve distal open end, wherein the sleeve is supported on an outer surface of the connector sidewall in an axially movable relationship therewith and wherein the sleeve distal portion has a cut-out comprising a frusto-conically shaped surface extending distally and outwardly with respect to the longitudinal axis from the sleeve inner surface at least part-way through the sleeve thickness to the sleeve distal open end;

e) a spring positioned circumferentially around the connector within the housing, wherein the spring biases between the housing proximal portion and the sleeve proximal portion; and

f) at least one locking ball received within the at least one slot, the ball being sized to extend only part-way into the connector through-bore from the slot,

g) wherein proximal axial movement of a tool shaft into the connector through-bore causes the at least one ball to move proximally and outwardly along the angled surface of the connector slot and into the sleeve cut-out as the biased sleeve moves proximally along the connector until the ball is laterally removed from the connector through-bore so that the tool shaft is receivable therein, and

h) wherein when an annular groove in the tool shaft is aligned with the ball, the biased sleeve moves in a distal direction, which causes the ball to move laterally into the tool shaft groove until the ball is captured therein by the connector slot and against the frusto-conical surface of the sleeve cut-out and the distal lip of the housing, and

i) wherein the housing is then manipulatable in a proximal direction to cause the lip to contact the ball and the distal sleeve end to thereby cause the ball to move along the angled surface of the connector slot as the housing simultaneously moves the biased sleeve proximally with the ball again moving along the frusto-conical surface of the sleeve cut-out to thereby laterally remove the ball from the tool shaft groove so that the tool shaft is manipulatable in a distal direction out of the connector through-bore.

2. The connector mechanism of claim 1 wherein the connector comprises a nozzle connected to a cylinder, the nozzle residing at the distal end of the cylinder.

3. The connector mechanism of claim 2 wherein the nozzle is connected to the cylinder such that a nozzle through-bore is a portion of the connector through-bore along the longitudinal axis.

4. The connector mechanism of claim 2 wherein the slot extending through the connector sidewall resides where the nozzle and cylinder connect.

5. The connector mechanism of claim 1 wherein the angled surface of the slot is angled from about 35° to about 55° with respect to the longitudinal axis of the connector.

6. The connector mechanism of claim 1 wherein, with the ball received in the groove of the tool shaft, an edge of the connector sidewall an interior surface at the slot is positioned below a centerline of the locking ball.

7. The connector mechanism of claim 1 wherein the housing has a ridge that protrudes from an outer housing surface and extends circumferentially around the housing.

8. The connector mechanism of claim 1 wherein the proximal portion of the connector is removably connectable to a surgical tool handle or a motor.

9. The connector mechanism of claim 1 being removably connectable to an orthopedic tool comprising the tool shaft.

10. The connector mechanism of claim 1 wherein, with respect to the longitudinal axis, the connector proximal portion protrudes axially beyond the housing proximal open end and the connector distal portion protrudes axially beyond the housing distal open end.

11. The connector mechanism of claim 1 wherein the lip at the distal housing portion is an annular lip.

12. A connector mechanism for a surgical tool, the mechanism comprising:

a) a housing comprising a housing sidewall surrounding a housing through-bore extending along a longitudinal axis from a housing proximal portion defining a housing proximal open end to a housing distal portion, having an annular lip aligned substantially perpendicular to the axis and defining a housing distal open end;

b) a connector residing inside the housing through-bore, wherein the connector comprises a connector sidewall having a connector sidewall thickness surrounding a connector through-bore sized to receive a tool shaft, wherein the connector through-bore extends along the longitudinal axis from a connector proximal portion having a connector proximal open end to a connector distal portion having a connector distal open end;

c) at least one slot extending through the connector sidewall from an outer connector surface to the connector through-bore thereof, wherein the slot has an angled surface extending from the connector inner surface proximally and outwardly with respect to the longitudinal axis through the connector sidewall thickness;

d) a sleeve positioned between the housing and the connector, the sleeve comprising a sleeve sidewall having a sleeve thickness extending from a sleeve outer surface to a sleeve inner surface defining a sleeve through-bore extending along the longitudinal axis from a sleeve proximal portion having a sleeve proximal open end to a sleeve distal portion having a sleeve distal open end, wherein the sleeve is supported on an outer surface of the connector sidewall in an axially movable relationship therewith and wherein the sleeve distal portion has a cut-out comprising a frusto-conically shaped surface extending distally and outwardly with respect to the longitudinal axis from the sleeve inner surface part-way through the sleeve thickness to a ledge extending to the sleeve distal open end;

e) a spring positioned circumferentially around the connector within the housing, wherein the spring biases between the housing proximal portion and the sleeve proximal portion; and

f) at least one locking ball received within the at least one slot, the ball being sized to extend only part-way into the connector through-bore from the slot,

g) wherein proximal axial movement of a tool shaft into the connector through-bore causes the at least one bail to move proximally and outwardly along the angled surface of the connector slot and into the sleeve cut-out as the biased sleeve moves proximally along the connector until the ball is laterally removed from the connector through-bore so that the tool shaft is receivable therein, and

h) wherein when an annular groove in the tool shaft is aligned with the ball, the biased sleeve moves in a distal direction, which causes the ball to move laterally into the tool shaft groove until the ball is captured therein by the connector slot and against the frusto-conical surface and the ledge of the sleeve cut-out and the distal lip of the housing, and

i) wherein the housing is then manipulatable in a proximal direction to cause the lip to contact the ball and the distal sleeve end to thereby cause the ball to move along the angled surface of the connector slot as the housing simultaneously moves the biased sleeve proximally with the ball again moving along the frusto-conical surface of the sleeve cut-out to thereby laterally remove the ball from the tool shaft groove so that the tool shaft is manipulatable in a distal direction out of the connector through-bore.

13. The connector mechanism of claim 12 wherein the angled surface of the slot is angled from about 35° to about 55° with respect to the longitudinal axis of the connector.

14. The connector mechanism of claim 12 wherein, with the ball received in the groove of the tool shaft, an edge of the connector sidewall at the slot is positioned below a centerline of the locking ball.

15. The connector mechanism of claim 12 wherein the housing has a ridge that protrudes from an outer housing surface and extends circumferentially around the housing.

16. The connector mechanism of claim 12 wherein the proximal portion of the connector is removably connectable to a surgical tool handle or a motor.

17. The connector mechanism of claim 12 being removably connectable to an orthopedic tool comprising the tool shaft.

18. The connector mechanism of claim 12 wherein, with respect to the longitudinal axis, the connector proximal portion protrudes axially beyond the housing proximal open end and the connector distal portion protrudes axially beyond the housing distal open end.

19. The connector mechanism of claim 12 wherein the lip at the distal housing portion is an annular lip.

20. A connector mechanism for a surgical tool, the mechanism comprising:

a) a housing comprising a housing sidewall surrounding a housing through-bore extending along a longitudinal axis from a housing proximal portion defining a housing proximal open end to a housing distal portion defining a housing distal open end;

b) a connector residing inside the housing through-bore, wherein the connector comprises a connector sidewall having a connector sidewall thickness surrounding a connector through-bore sized to receive a tool shaft, wherein the connector through-bore extends along the longitudinal axis from a connector proximal portion having a connector proximal open end to a connector distal portion having a connector distal open end;

c) at least one slot extending through the connector sidewall from an outer connector surface to the connector through-bore thereof, wherein the slot has an angled surface extending from the connector inner surface proximally and outwardly with respect to the longitudinal axis through the connector sidewall thickness;

d) a sleeve positioned between the housing and the connector, the sleeve comprising a sleeve sidewall having a sleeve thickness extending from a sleeve outer surface to a sleeve inner surface defining a sleeve through-bore extending along the longitudinal axis from a sleeve proximal portion having a sleeve proximal open end to a sleeve distal portion having a sleeve distal open end, wherein the sleeve is supported on an outer surface of the connector sidewall in an axially movable relationship therewith and wherein the sleeve distal portion has a cut-out comprising a frusto-conically shaped surface extending distally and outwardly with respect to the longitudinal, axis from the sleeve inner surface at least part-way through the sleeve thickness to the sleeve distal open end;

e) a spring positioned circumferentially around the connector within the housing, wherein the spring biases between the housing proximal portion and the sleeve proximal portion; and

f) at least one locking ball received within the at least one slot, the ball being sized to extend only part-way into the connector through-bore from the slot,

g) wherein proximal axial movement of a tool shaft into the connector through-bore causes the at least one ball to move proximally and outwardly along the angled surface of the connector slot and into the sleeve cut-out as the biased sleeve moves proximally along the connector until the ball is laterally removed from the connector through-bore so that the tool shaft is receivable therein, and

h) wherein when an annular groove in the tool shaft is aligned with the ball, the biased sleeve moves in a distal direction, which causes the ball to Move laterally into the tool shaft groove until the ball is captured therein by the connector slot and against the frusta-conical surface of the sleeve cut-out and the housing distal portion, and

i) wherein the housing is then manipulatable in a proximal direction to cause the housing distal portion to contact the ball and the distal sleeve end to thereby cause the ball to move along the angled surface of the connector slot as the housing simultaneously moves the biased sleeve proximally with the ball again moving along the frusto-conical surface of the sleeve cut-out to thereby laterally remove the ball from the tool shaft groove so that the tool shaft is manipulatable in a distal direction out of the connector through-bore.

Assignments (13)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 4, 2024
From: GREATBATCH LTD.
To: BANDERA ACQUISITION, LLC
Reel/Frame 069491/0456 →
SECOND LIEN PATENT SECURITY AGREEMENT Recorded Nov 1, 2024
From: VIANT AS&O HOLDINGS, LLC (F/K/A BANDERA ACQUISITION, LLC)
To: HPS INVESTMENT PARTNERS, LLC, AS COLLATERAL AGENT
Reel/Frame 069288/0915 →
RELEASE OF SECURITY INTEREST Recorded Oct 31, 2024
From: ROYAL BANK OF CANADA
To: VIANT AS&O HOLDINGS, LLC
Reel/Frame 069286/0564 →
SECURITY INTEREST Recorded Oct 31, 2024
From: VIANT AS&O HOLDINGS, LLC
To: UBS AG, STAMFORD BRANCH
Reel/Frame 069287/0709 →
RELEASE OF SECURITY INTEREST Recorded Oct 30, 2024
From: ROYAL BANK OF CANADA
To: VIANT AS&O HOLDINGS, LLC
Reel/Frame 069276/0081 →
RELEASE OF SECURITY INTEREST Recorded Oct 12, 2022
From: MANUFACTURERS AND TRADERS TRUST COMPANY (AS ADMINISTRATIVE AGENT)
To: GREATBATCH, INC.; GREATBATCH LTD.; ELECTROCHEM SOLUTIONS, INC.; NEURONEXUS TECHNOLOGIES, INC.; GREATBATCH-GLOBE TOOL, INC.; PRECIMED INC.; MICRO POWER ELECTRONICS, INC.
Reel/Frame 061659/0858 →
RELEASE OF SECURITY INTEREST Recorded Jan 6, 2022
From: MANUFACTURERS AND TRADERS TRUST COMPANY (AS ADMINISTRATIVE AGENT)
To: GREATBATCH, INC.; GREATBATCH LTD.; ELECTROCHEM SOLUTIONS, INC.; NEURONEXUS TECHNOLOGIES, INC.; GREATBATCH-GLOBE TOOL, INC.; PRECIMED INC.; MICRO POWER ELECTRONICS, INC.
Reel/Frame 060938/0069 →
CHANGE OF NAME Recorded Oct 12, 2018
From: BANDERA ACQUISITION, LLC
To: VIANT AS&O HOLDINGS, LLC
Reel/Frame 047221/0275 →
SECURITY INTEREST Recorded Jul 3, 2018
From: BANDERA ACQUISITION, LLC
To: ROYAL BANK OF CANADA, AS COLLATERAL AGENT
Reel/Frame 046472/0475 →
SECURITY INTEREST Recorded Jul 3, 2018
From: BANDERA ACQUISITION, LLC
To: ROYAL BANK OF CANADA, AS COLLATERAL AGENT
Reel/Frame 046472/0545 →
RELEASE OF SECURITY INTEREST Recorded Jul 2, 2018
From: MANUFACTURERS AND TRADERS TRUST COMPANY
To: GREATBATCH LTD.; PRECIMED INC.
Reel/Frame 046254/0113 →
SECURITY INTEREST Recorded Oct 27, 2015
From: GREATBATCH, INC.; GREATBATCH LTD.; ELECTROCHEM SOLUTIONS, INC.; NEURONEXUS TECHNOLOGIES, INC.; GREATBATCH-GLOBE TOOL, INC.; PRECIMED INC.; MICRO POWER ELECTRONICS, INC.
To: MANUFACTURERS AND TRADERS TRUST COMPANY
Reel/Frame 036980/0482 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 28, 2011
From: LANDOWSKI, STEVE; MARCHANT, KEVIN K.
To: GREATBATCH LTD.
Reel/Frame 026510/0854 →