IP Library Granted Patent US 10,760,932
Granted Patent B2
US 10,760,932 · App. 16/055,220 · Granted Sep 1, 2020

Methods to shorten calibration times for powered devices

Inventor: Michael A. Zemlok (Prospect, CT)
Assignee: Covidien LP
G01D18/008A61B17/07207A61B2017/00017A61B2017/00022A61B2017/00084A61B2017/00119A61B2017/00154A61B2017/00181A61B2017/00199A61B2017/00367A61B2017/00393A61B2017/00398A61B2017/00464A61B2017/00473A61B2017/00477A61B2017/00482A61B2017/00725A61B2017/00734A61B2017/2927A61B2017/2931A61B2017/320052A61B2090/0811
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Quick Facts
Patent No.
US 10,760,932
App. No.
16/055,220
Granted
Sep 1, 2020
Kind
B2
Abstract

A calibration method for a hand-held surgical instrument is disclosed. The hand-held instrument includes a drive motor, a firing rod controlled by the drive motor and having at least one indicator, and a sensor configured to detect the at least one indicator. A microcontroller includes a pulse modulation algorithm stored therein to control the drive motor. The microcontroller executes a calibration algorithm to adjust at least one program coefficient in the pulse modulation algorithm.

Claims (54)

1. A method for calibrating a surgical instrument comprising:

initiating translation of a firing rod;

detecting the translation of the firing rod;

determining a time between when translation of the firing rod is initiated and when the translation is detected by a sensor;

comparing the time with a predetermined time; and

displaying the translation of the firing rod, the detecting the translation of the firing rod, and the comparing of the time with the predetermined time on a video display with corresponding voice pronouncements.

2. The method of claim 1 , wherein:

initiating translation of the firing rod includes a drive motor configured to translate the firing rod; and

adjusting at least one program coefficient in a pulse modulation algorithm based on a comparison between the time and the predetermined time, the pulse modulation algorithm stored in a memory.

3. The method of claim 2 , further comprising:

determining a linear speed of the firing rod; and

selecting the predetermined time based on the determined linear speed of the firing rod.

4. The method of claim 3 , wherein if the time is less than the predetermined time, the at least one program coefficient is adjusted so that the firing rod is translated a relatively shorter distance.

5. The method of claim 3 , wherein if the time is greater than the predetermined time, the at least one program coefficient is adjusted so that the firing rod is translated a relatively longer distance.

6. A surgical instrument comprising:

a firing rod translatable along an axis of the surgical instrument;

a sensor configured to detect translational motion of the firing rod along the axis, the sensor determining a linear speed of the firing rod;

a microcontroller having a pulse modulation algorithm stored therein, the microcontroller receiving the time from the position calculator and comparing the time to a predetermined time and adjusting the at least one program coefficient based on the comparison between the time and the predetermined time, wherein the microcontroller selects the predetermined time based on the linear speed of the firing rod; and

a position calculator configured to determine a time between when the firing rod begins translational motion along the axis and when the sensor detects the translational motion of the firing rod along the axis, wherein the microcontroller executes a calibration algorithm to adjust at least one program coefficient in the pulse modulation algorithm.

7. The surgical instrument of claim 6 , wherein the microcontroller executes displaying on a video display the time of detecting of the translation of the firing rod, the comparing of the time with the predetermined time, and the adjusting the at least one program coefficient in the pulse modulation algorithm based on the comparison between the time and the predetermined time with corresponding voice pronouncements.

8. The surgical instrument of claim 6 , wherein the sensor detecting the translational motion of the firing rod is enabled by at least one indicator on the firing rod.

9. A method of assembling a power head of a surgical instrument comprising:

mounting a set of operating components of a power head on a chassis such that the set of operating components has a proper configuration for alignment in at least two orthogonal planes when the chassis and the set of components mounted thereon are deployed within an interior volume encompassed by a housing of the power head; and

deploying the set of operating components mounted on the chassis within the interior volume encompassed by the housing, wherein deploying the set of operating components mounted on the chassis within the interior volume provides the proper configuration for alignment in the at least two orthogonal planes of the set of operating components.

10. The method of assembling a power head according to claim 9 ,

wherein mounting the set of operating components on the chassis occurs outside of the housing and prior to deploying the set of operating components mounted on the chassis within the interior volume.

11. The method of assembling a power head according to claim 9 ,

wherein mounting of the set of operating components on the chassis includes removably attaching a loading unit to an endoscopic portion,

the loading unit including an end effector being in mechanical cooperation with a firing rod of the power head so that the firing rod drives a surgical function of the end effector; and

configuring a control system that includes sensors coupled to a drive motor of the power head, to the firing rod, and to the loading unit wherein the sensors of the control system are configured to guide deploying the set of operating components mounted on the chassis within the interior volume to provide the proper configuration for alignment in the at least two orthogonal planes of the set of operating components,

the control system including a microcontroller coupled to the sensors, the microcontroller configured to determine the operating status of the power head as a function of the detected operating parameters of the proper configuration for alignment in at least two orthogonal planes of the set of operating components mounted on the chassis.

12. The method of assembling a power head according to claim 9 , comprising:

removing the chassis from the interior volume encompassed by the housing, thereby concurrently removing the set of operating components of the power head;

mounting a replacement set of operating components on the chassis; and

deploying the set of replacement operating components mounted on the chassis within the interior volume,

wherein deploying the replacement set of operating components mounted on the chassis within the interior volume provides the proper configuration for alignment of the replacement set of operating components in the at least two orthogonal planes.

13. The method of assembling a power head according to claim 12 ,

wherein mounting the set of replacement operating components on the chassis occurs outside of the housing and prior to deploying the set of replacement operating components mounted on the chassis within the interior volume.

14. The method of assembling a power head according to claim 9 ,

wherein mounting the set of replacement operating components on the chassis includes:

the chassis formed from metal,

the housing formed from a polymer, and

the set of operating components includes at least one electrical component, and electrically grounding the at least one electrical component.

15. The method of assembling a power head according to claim 9 ,

wherein mounting the set of replacement operating components on the chassis includes:

the power head having a housing formed of two halves that are attached to each other at least two boss locators on each housing half, the boss locators disposed to align the two housing halves to each other,

the chassis having at least two boss locator ports that are configured and disposed to align with the at least two boss locators on each housing half, and

joining the two housing halves together such that the at least two boss locator ports align with the at least two boss locators on each housing half.

16. The method of assembling a power head according to claim 15 ,

wherein mounting the set of replacement operating components on the chassis includes:

the power head has a firing rod that causes ejection of surgical fasteners,

the chassis further includes a slot configured and disposed as a datum for alignment in the at least two orthogonal planes of the firing rod with respect to the power head;

positioning the slot as a datum; and

aligning the firing rod with respect to the power head.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2018
From: ZEMLOK, MICHAEL A.
To: COVIDIEN LP
Reel/Frame 046558/0372 →