IP Library Granted Patent US 12,356,971
Granted Patent B2
US 12,356,971 · App. 18/458,346 · Granted Jul 15, 2025

Baitcaster with compound gear set

Inventors: Larry Pulkrabek (Superior, WI); Ty Warner (Superior, WI); Danny Uribe (Superior, WI); Ron Hedberg (Superior, WI)
Assignee: TrikaUSA Inc.
A01K89/0183F16H1/36F16H55/08F16H55/17F16H2055/176
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Quick Facts
Patent No.
US 12,356,971
App. No.
18/458,346
Granted
Jul 15, 2025
Kind
B2
Abstract

A baitcaster for retrieving a fishing line includes a spool, and a compound gear set. The spool is configured to be driven to take up the fishing line. The compound gear set includes a ring gear, first planet gears, second planet gears, and a second shaft. The ring gear is configured to receive an input torque from a first shaft. The first planet gears are driven by the ring gear. The second planet gears are driven by the first planet gears. The second shaft is driven by the second planet gears and is configured to drive the spool to take up the fishing line.

Claims (37)

1. A baitcaster for retrieving a fishing line, the baitcaster comprising:

a spool configured to be driven to take up the fishing line;

a compound gear set comprising:

a ring gear configured to receive a torque from a first shaft;

a plurality of first planet gears driven by the ring gear;

a plurality of second planet gears driven by the plurality of first planet gears; and

a second shaft driven by the plurality of second planet gears and configured to drive the spool to take up the fishing line, wherein both the first shaft and the second shaft are co-axial on an axis;

wherein a distal end of the first shaft terminates at a first location within an inner volume of the spool along the axis, and a first end of the second shaft begins at a second location within the inner volume of the spool along the axis.

2. The baitcaster of claim 1 , wherein the ring gear comprises a plurality of radially inwards facing teeth configured to engage teeth of the plurality of first planet gears.

3. The baitcaster of claim 1 , wherein the ring gear is rotatably coupled with the first shaft through a frictional engagement.

4. The baitcaster of claim 1 , wherein the compound gear set further comprises a carrier, wherein the second shaft is supported by the carrier and rotationally free relative to the carrier.

5. The baitcaster of claim 4 , further comprising a plurality of planet gear shafts, wherein each of the plurality of first planet gears is fixedly coupled with one of the plurality of planet gear shafts and each of the plurality of second planet gears is fixedly coupled with the one of the plurality of planet gear shafts.

6. The baitcaster of claim 5 , wherein the carrier comprises a plurality of bearings, each of the plurality of bearings configured to receive a corresponding one of the plurality of planet gear shafts and coupled with a corresponding bore of the carrier, wherein the plurality of planet gear shafts extend through or partially into the carrier and are supported by the carrier.

7. The baitcaster of claim 1 , wherein the plurality of second planet gears each have a number of teeth that is greater than a number of teeth of each of the plurality of first planet gears.

8. The baitcaster of claim 1 , wherein the plurality of first planet gears and the plurality of second planet gears are helical gears.

9. The baitcaster of claim 1 , wherein the first shaft and the second shaft are co-axial with each other, wherein the first shaft is configured to rotate in a first direction to drive the second shaft to rotate in a second direction that is opposite the first direction.

10. A compound gear set for a fishing reel, the compound gear set comprising:

a ring gear configured to receive an input torque from an input shaft;

a plurality of input planet gears driven by the ring gear;

a plurality of output planet gears driven by the plurality of input planet gears; and

an output shaft driven by the plurality of output planet gears and configured to drive a spool to take up fishing line, wherein both the input shaft and the output shaft are co-axial on an axis;

wherein a distal end of the input shaft terminates at a first location along the axis within an inner volume of the spool and a first end of the output shaft begins at a second location along the axis within the inner volume of the spool.

11. The compound gear set of claim 10 , wherein the ring gear comprises a plurality of radially inwards facing teeth configured to engage teeth of the plurality of input planet gears.

12. The compound gear set of claim 10 , wherein the ring gear is rotatably coupled with the input shaft through a frictional engagement.

13. The compound gear set of claim 10 , wherein the compound gear set further comprises a carrier, wherein the output shaft is supported by the carrier and rotationally free relative to the carrier.

14. The compound gear set of claim 13 , further comprising a plurality of planet gear shafts, wherein each of the plurality of input planet gears is fixedly coupled with one of the plurality of planet gear shafts and each of the plurality of output planet gears is fixedly coupled with the one of the plurality of planet gear shafts.

15. The compound gear set of claim 14 , wherein the carrier comprises a plurality of bearings, each of the plurality of bearings configured to receive a corresponding one of the plurality of planet gear shafts and coupled with a corresponding bore of the carrier, wherein the plurality of planet gear shafts extend through or partially into the carrier and are supported by the carrier.

16. The compound gear set of claim 10 , wherein the plurality of output planet gears each have a number of teeth that is greater than a number of teeth of each of the plurality of input planet gears.

17. The compound gear set of claim 10 , wherein the plurality of input planet gears and the plurality of output planet gears are helical gears.

18. The compound gear set of claim 10 , wherein the input shaft and the output shaft are co-axial with each other, wherein the input shaft is configured to rotate in a first direction to drive the output shaft to rotate in a second direction that is opposite the first direction.

19. A gear set for a baitcaster, the gear set comprising:

an input shaft configured to be driven by a handle about a shaft axis;

a plurality of planet gear shafts radially offset from the shaft axis, each defining an axis and configured to be driven to rotate about the axis;

a plurality of input planet gears, each fixedly coupled with a corresponding one of the plurality of planet gear shafts, the plurality of input planet gears configured to be driven to rotate by the input shaft; and

a plurality of output planet gears, each fixedly coupled with a corresponding one of the plurality of planet gear shafts, the plurality of output planet gears configured to drive an output shaft of the baitcaster, the output shaft configured to rotate about the shaft axis;

wherein a distal end of the input shaft terminates at a first location along the shaft axis within an inner volume of a spool and a first end of the output shaft begins at a second location along the shaft axis within the inner volume of the spool.

20. The gear set of claim 19 , wherein the output shaft comprises a plurality of teeth configured to engage the plurality of output planet gears to drive the spool to take up fishing line.

Continuity (3)
Continuation 17073137 · Oct 16, 2020
Provisional Application 62916439 · Oct 17, 2019
Related Publication 20230397591A1 · Dec 14, 2023
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