IP Library Granted Patent US 12687380
Granted Patent B2
US 12687380 · App. 18/048,550 · Granted Jul 21, 2026

Precision cutting guide system

Inventor: Michael Donnell (Sandy, UT)
G01B3/1061G01B3/1069
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Quick Facts
Patent No.
US 12687380
App. No.
18/048,550
Granted
Jul 21, 2026
Kind
B2
Abstract

This disclosure extends to systems, apparatus, and methods for indicating the desired placement of material in relation to a cutting machine to achieve a desired cut. A digital precision guide system comprising a digital guide rail configured to be positioned adjacent to a cutting machine, wherein the digital guide rail and a user interface comprising a processor, wherein the processor is configured to receive at least a desired cut length from the user interface and indicate the desired cut length away from a blade of the cutting machine. The desired cut length may be indicated by actuating an LED indicator tick mark or moving a trop member to an appropriate position for placement of the material to be cut. The system may further include at least one of a digital tape measure or a digital angle measurement device.

Claims (40)

1 . A digital precision guide system comprising:

a guide rail configured to be positioned adjacent to a cutting machine;

an indicator assembly for indicating a position for positioning of a first end of a substrate placed on the guide rail to be cut by the cutting machine to obtain a substrate of a desired length, comprising

a moveable stop member that is disposed adjacent to the guide rail, and

a drive assembly,

wherein the moveable stop member is actuated by the drive assembly to move to a position that corresponds to the desired cut length away from a blade of the cutting machine, such that when the first end of the substrate placed on the guide rail is in contact with the stop member, the length of the substrate from contact with the stop member to a point of cutting corresponds to the desired cut length,

a stop lock assembly attached to the moveable stop member for preventing movement of the moveable stop member during cutting, the moveable stop member comprising a carriage and a locking mechanism;

a user interface in communication with a processor, wherein the processor is configured to receive at least a desired cut length from the user interface and actuate the indicator assembly to indicate the position for positioning the first end of the substrate placed on the guide rail that corresponds to the desired cut length away from a blade of the cutting machine.

2 . The digital precision guide system of claim 1 , wherein the moveable stop member is attached to a slide member disposed on a slide rail attached to the guide rail.

3 . The digital precision guide system of claim 2 , wherein the drive assembly comprises a belt that is driven by a motor controlled by the processor, wherein the slide member is connected to the belt.

4 . The digital precision guide system of claim 2 , wherein the drive assembly comprises a threaded shaft that is rotated by a motor controlled by the processor, wherein the slide member is connected to the threaded shaft.

5 . The digital precision guide system of claim 2 , wherein the moveable stop member is pivotally attached to the slide member, such that the moveable stop member can be rotated away from the guide rail and thereby allow the cutting machine to be used in a normal manner without the moveable stop member.

6 . The digital precision guide system of claim 1 , further comprising at least one of a digital tape measure or a digital angle measurement device configured to wirelessly transmit a desired cut length or cut angle to the processor.

7 . The digital precision guide system of claim 1 , wherein the guide rail is formed from multiple sections of guide rail assemblies that may be connected to form a guide rail assembly of a desired length.

8 . The digital precision guide system of claim 1 , wherein the locking mechanism comprises a magnet that is brought into contact with a metal portion of the guide rail.

9 . The digital precision guide system of claim 1 , wherein the locking mechanism is actuated by a handle disposed on the carriage.

10 . A digital precision guide system, comprising:

a guide rail configured to be positioned adjacent to a cutting machine;

an indicator assembly for indicating a position for positioning of a first end of a substrate placed on the guide rail to be cut by the cutting machine to obtain a substrate of a desired length, comprising a plurality of LED indicator tick marks disposed on the guide rail, wherein the plurality of LED indicator tick are separated along the guide rail by set intervals and are actuated by illuminating a corresponding LED indicator of the plurality of LED indicator tick marks;

a user interface in communication with a processor, wherein the processor is configured to receive at least a desired cut length from the user interface and actuate the indicator assembly to indicate the position for positioning the first end of the substrate placed on the guide rail that corresponds to the desired cut length away from a blade of the cutting machine.

11 . A precision guide system comprising:

a guide rail configured to be positioned adjacent to a cutting machine;

an indicator assembly for indicating a position for positioning of a first end of a substrate placed on the guide rail to be cut by the cutting machine to obtain a substrate of a desired length, comprising

a moveable stop member that is disposed adjacent to the guide rail, and

a drive assembly,

wherein the moveable stop member is actuated by the drive assembly to move to a position that corresponds to the desired cut length away from a blade of the cutting machine, such that when the first end of the substrate placed on the guide rail is in contact with the stop member, the length of the substrate from contact with the stop member to a point of cutting corresponds to the desired cut length,

a stop lock assembly attached to the moveable stop member for preventing movement of the moveable stop member during cutting, the moveable stop member comprising a carriage and a locking mechanism;

a processor configured to receive at least a desired cut length and actuate the indicator assembly to indicate the position for positioning the first end of the substrate placed on the guide rail that corresponds to the desired cut length away from a blade of the cutting machine.

12 . The precision guide system of claim 11 , wherein the moveable stop member is attached to a slide member disposed on a slide rail attached to the guide rail.

13 . The precision guide system of claim 11 , wherein the drive assembly comprises a belt that is driven by a motor controlled by the processor.

14 . The precision guide system of claim 11 , wherein the drive assembly comprises a threaded shaft that is rotated by a motor controlled by the processor.

15 . The precision guide system of claim 11 , wherein the moveable stop member is pivotally attached to the system, such that the moveable stop member can be rotated away from the guide rail and thereby allow the cutting machine to be used in a normal manner without the moveable stop member.

16 . The precision guide system of claim 11 , further comprising at least one of a digital tape measure or a digital angle measurement device configured to wirelessly transmit a desired cut length or cut angle to the processor.

17 . The precision guide system of claim 11 , wherein the guide rail is formed from multiple sections of guide rail assemblies that may be connected to form a guide rail assembly of a desired length.

18 . The precision guide system of claim 11 , wherein the locking mechanism comprises a magnet that is brought into contact with a metal portion of the guide rail.

19 . The precision guide system of claim 11 , wherein the locking mechanism is actuated by a handle disposed on the carriage.

20 . A precision guide system comprising:

a guide rail configured to be positioned adjacent to a cutting machine;

an indicator assembly for indicating a position for positioning of a first end of a substrate placed on the guide rail to be cut by the cutting machine to obtain a substrate of a desired length, comprising a plurality of LED indicator tick marks disposed on the guide rail, wherein the plurality of LED indicator tick are separated by set intervals and are actuated by illuminating a corresponding LED indicator of the plurality of LED indicator tick marks;

a processor configured to receive at least a desired cut length and actuate the indicator assembly to indicate the position for positioning the first end of the substrate placed on the guide rail that corresponds to the desired cut length away from a blade of the cutting machine.