IP Library › Patent Application 17368992
Patent Application
App. No. 17/368,992

BATTERY OPERATED TISSUE CORING DEVICE

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Quick Facts
Patent No.
US None
App. No.
17/368,992
Abstract

A surgical instrument comprises an end effector configured to core tissue, a handle operatively coupled to the end effector, wherein the handle comprises a trigger to actuate the end effector, the handle comprising a battery dock, the battery dock comprising a protruding member; and a battery unit attachable to the battery dock, wherein the battery unit is in electrical contact with at least one of the handle and the end effector when attached to the battery dock.

Claims (60)

1 . A surgical instrument comprising:

an end effector comprising:

a first clamping element comprising a helical coil;

a second clamping element, the second clamping element being positioned to oppose at least a portion of the first clamping element;

a first and second electrode configured for delivery of radiofrequency energy for sealing tissue; and

a cutting element configured for transection of at least a portion of the sealed tissue;

a handle operatively coupled to the end effector, wherein the handle comprises a trigger to actuate the end effector, the handle comprising a battery dock;

the battery dock comprising a protruding member; and

a battery unit attachable to the battery dock, wherein the battery unit is in electrical contact with at least one of the handle and the end effector when attached to the battery dock, and wherein the battery unit comprises:

a casing;

an anode and a cathode positioned within the casing; and

a translatable discharge drain, wherein, upon attachment of the battery unit to the battery dock, the protruding member contacts the discharge drain and the discharge drain translates with respect to casing to electrically couple the anode of the battery unit to the cathode of the battery unit.

2 . The surgical instrument of claim 1 , wherein the discharge drain comprises a first contact and a second contact, and at least one resistive element electrically coupled to the first and second contact, wherein, upon attachment of the battery unit to the battery dock, the discharge drain electrically couples the anode to the cathode through the at least one resistive element.

3 . The surgical instrument of claim 1 , wherein the anode comprises a first anode and the cathode comprises a first cathode, wherein the battery unit comprises a second anode and a second cathode positioned within the casing and wherein, upon attachment of the battery unit to the battery dock, the discharge drain electrically couples the second anode to the second cathode.

4 . A surgical instrument comprising:

an end effector configured to core tissue;

a handle operatively coupled to the end effector, wherein the handle comprises a trigger to actuate the end effector, the handle comprising a battery dock;

the battery dock comprising a protruding member; and

a battery unit attachable to the battery dock, wherein the battery unit is in electrical contact with at least one of the handle and the end effector when attached to the battery dock, and wherein the battery unit comprises:

a casing;

an anode and a cathode positioned within the casing; and

a translatable discharge drain, wherein, upon attachment of the battery unit to the battery dock, the protruding member contacts the discharge drain and the discharge drain translates with respect to casing to electrically couple the anode of the battery unit to the cathode of the battery unit.

5 . The surgical instrument of claim 4 , wherein the discharge drain comprises a first contact and a second contact, and at least one resistive element electrically coupled to the first and second contact, wherein, upon attachment of the battery unit to the battery dock, the discharge drain electrically couples the anode to the cathode through the at least one resistive element.

6 . The surgical instrument of claim 4 , wherein the anode comprises a first anode and the cathode comprises a first cathode, wherein the battery unit comprises a second anode and a second cathode positioned within the casing and wherein, upon attachment of the battery unit to the battery dock, the discharge drain electrically couples the second anode to the second cathode.

7 . A surgical instrument comprising:

an end effector configured for coring tissue, wherein the end effector comprises:

a first clamping element comprising a helical coil and a first electrode;

a second clamping element comprising a second electrode, the second clamping element being positioned to oppose at least a portion of the first clamping element; and

a cutting element configured for transection of tissue; and

a battery assembly, comprising a control circuit comprising a battery, a memory coupled to the battery, and a processor coupled to the memory and the battery, wherein the processor is configured to generate a digital waveform; and

a handle assembly comprising a first stage circuit coupled to the processor, the first stage circuit comprising a digital-to-analog (DAC) converter and a first stage amplifier circuit, wherein the DAC is configured to receive the digital waveform and convert the digital waveform into an analog waveform, wherein the first stage amplifier circuit is configured to receive and amplify the analog waveform,

wherein the battery assembly and the end effector are configured to mechanically and electrically connect to the handle assembly, and

wherein the end effector is configured to receive the analog waveform.

8 . A surgical instrument comprising:

an end effector configured for coring tissue;

a battery assembly, comprising a control circuit comprising a battery, a memory coupled to the battery, and a processor coupled to the memory and the battery, wherein the processor is configured to generate a digital waveform; and

a handle assembly comprising a first stage circuit coupled to the processor, the first stage circuit comprising a digital-to-analog (DAC) converter and a first stage amplifier circuit, wherein the DAC is configured to receive the digital waveform and convert the digital waveform into an analog waveform, wherein the first stage amplifier circuit is configured to receive and amplify the analog waveform,

wherein the battery assembly and the end effector are configured to mechanically and electrically connect to the handle assembly, and

wherein the end effector is configured to receive the analog waveform.

9 . A surgical instrument, comprising:

a control circuit comprising a memory coupled to a processor, wherein the processor is configured to cause generation of a digital waveform;

a handle assembly comprising a common first stage circuit coupled to the processor, the common first stage circuit configured to receive the digital waveform, convert the digital waveform into an analog waveform, and amplify the analog waveform; and

an end effector assembly configured for coring tissue, wherein the end effector assembly comprises:

at least one clamping element comprising a helical coil, a first electrode coupled to the common first stage circuit to receive an analog waveform;

element being positioned to oppose at least a portion of the at least one clamping element; and

a cutting element configured for transection of tissue,

wherein the end effector assembly is configured to mechanically and electrically connect to the handle assembly.

10 . A surgical instrument, comprising:

a control circuit comprising a memory coupled to a processor, wherein the processor is configured to cause generation of a digital waveform;

a handle assembly comprising a common first stage circuit coupled to the processor, the common first stage circuit configured to receive the digital waveform, convert the digital waveform into an analog waveform, and amplify the analog waveform; and

an end effector assembly configured for coring tissue, wherein the end effector assembly is configured to mechanically and electrically connect to the handle assembly.

11 . A surgical instrument comprising:

a handle operatively coupled to an instrument, wherein the handle comprises a trigger to actuate a function of the instrument, the handle comprising a battery dock;

the battery dock comprising a protruding member; and

a battery unit attachable to the battery dock, wherein the battery unit is in electrical contact with at least one of the handle and the instrument when attached to the battery dock, and wherein the battery unit comprises:

a casing;

an anode and a first cathode positioned within the casing; and

a translatable discharge drain, wherein, upon attachment of the battery unit to the battery dock, the protruding member contacts the discharge drain and the discharge drain translates with respect to casing to electrically couple the first anode of the battery unit to the first cathode of the battery unit.

12 . The surgical instrument of claim 11 , wherein the discharge drain comprises a first contact and a second contact, and at least one resistive element electrically coupled to the first and second contact, wherein, upon attachment of the battery unit to the battery dock, the discharge drain electrically couples the anode to the cathode through the at least one resistive element.

13 . The surgical instrument of claim 11 , wherein the anode comprises a first anode and the cathode comprises a first cathode, wherein the battery unit comprises a second anode and a second cathode positioned within the casing and wherein, upon attachment of the battery unit to the battery dock, the discharge drain electrically couples the second anode to the second cathode.

Assignments (3)
NUNC PRO TUNC ASSIGNMENT Recorded Jan 30, 2026
From: COHN, WILLIAM; KUHN, MATTHEW; MILLS, CHRIS
To: ETHICON, INC.
Reel/Frame 073643/0174 →
NUNC PRO TUNC ASSIGNMENT Recorded Jan 30, 2026
From: NGUYEN, STEVEN; SHARMA, TUSHAR
To: ETHICON, INC.
Reel/Frame 073643/0290 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2022
From: ETHICON, INC.
To: PRANA THORACIC, INC.
Reel/Frame 061820/0056 →