Setting method for electronic torque tool
US-11565388-B2 · Jan 31, 2023 · US
US11701762B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11701762-B2 |
| Application number | US-202018017513-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 4, 2020 |
| Priority date | Aug 4, 2020 |
| Publication date | Jul 18, 2023 |
| Grant date | Jul 18, 2023 |
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A torque wrench ( 100, 400 ) may include a body ( 410 ), a force detector ( 420 ) operably coupled to the body and configured to detect a bending force applied to the body, and a user interface ( 140 ) operably coupled to the body and the force detector. The user interface may be configured to include a setting mode in which a variable feature of the torque wrench is adjustable. The user interface may be further configured to, when in the setting mode, adjust the variable feature based on the bending force applied to the body and detected by the force detector.
Opening claim text (preview).
That which is claimed: 1. A torque wrench comprising: a body; a force detector operably coupled to the body and configured to detect a bending force applied to the body; and a user interface operably coupled to the body and the force detector, wherein the user interface is configured to include a setting mode in which a variable feature of the torque wrench is adjustable, and wherein the user interface is further configured to, when in the setting mode, adjust the variable feature based on the bending force applied to the body and detected by the force detector. 2. The torque wrench of claim 1 , wherein the user interface comprises a display and processing circuitry, wherein the display is configured to display the variable feature, and wherein the processing circuitry is configured to increase the variable feature in response to the bending force being applied in a first direction, and decrease the variable feature in response to the bending force being applied in a second direction. 3. The torque wrench of claim 2 , wherein the processing circuitry is configured to adjust a rate of change of the variable feature based on a magnitude of the bending force. 4. The torque wrench of claim 3 , wherein the variable feature is adjusted at a first rate when the magnitude of the bending force is in a first range, and the variable feature is adjusted at a second rate when the magnitude of the bending force is in a second range, and wherein the first rate is lower than the second rate, and the first range has smaller values of the bending force than the second range. 5. The torque wrench of claim 2 , wherein the processing circuitry is configured to adjust a rate of change of the variable feature based on an amount of time the bending force is applied. 6. The torque wrench of claim 5 , wherein the variable feature is adjusted at a first rate when the bending force is applied less than a threshold amount of time, and the variable feature is adjusted at a second rate when the bending force is applied greater than the threshold amount of time, and wherein the first rate is lower than the second rate. 7. The torque wrench of claim 2 , wherein the processing circuitry is configured to adjust a step size of changes to the variable feature based on a magnitude of the bending force. 8. The torque wrench of claim 3 , wherein the variable feature is adjusted at a first step size when the magnitude of the bending force is applied less than a threshold amount of force, and the variable feature is adjusted at a second step size when the bending force is applied greater than the threshold amount of force, and wherein the first step size is smaller than the second step size. 9. The torque wrench of claim 2 , wherein the processing circuitry is configured to adjust a rate of change of the variable feature based on an amount of time the bending force is applied, and wherein the processing circuitry is configured to adjust a step size of changes to the variable feature based on a magnitude of the bending force. 10. The torque wrench of claim 1 , wherein the body comprises: a head including a driving member configured to be operably coupled to a socket; a lever arm operably coupled to the head at a first end thereof; and a handle portion disposed at a second end of the lever arm, wherein the bending force is applied by bending the head relative to the lever arm while holding the head with one hand and the handle portion with the other hand. 11. The torque wrench of claim 1 , wherein the force detector comprises a strain gauge. 12. The torque wrench of claim 1 , wherein the user interface comprises a selector configured to enable transitioning the torque wrench to the setting mode via operation of the selector. 13. The torque wrench of claim 12 , wherein the user interface comprises an first button configured to provide increasing step adjustments to the variable feature and a second button configured to provide decreasing step adjustments to the variable feature when in the setting mode. 14. The torque wrench of claim 13 , wherein the first and second buttons each have a fixed step size for adjustment of the variable feature, and wherein the user interface is configured to provide variable rate or step size adjustment of the variable feature based on the bending force applied. 15. The torque wrench of claim 1 , wherein the variable feature comprises a target torque setting, an angle setting or a menu navigation. 16. A torque adjuster configured to enable a torque setting of a torque wrench, the torque adjuster comprising: a force detector operably coupled to a body of the torque wrench and configured to detect a bending force applied to the body; and a user interface operably coupled to the body and the force detector, wherein the torque setting is variably adjustable via the user interface based on the bending force applied to the body and detected by the force detector. 17. The torque adjuster of claim 16 , wherein the user interface comprises a display and processing circuitry, wherein the display is configured to display the torque setting, and wherein the processing circuitry is configured to increase the torque setting in response to the bending force being applied in a first direction, and decrease the torque setting in response to the bending force being applied in a second direction. 18. The torque adjuster of claim 17 , wherein the processing circuitry is configured to adjust a rate of change of the torque setting based on a magnitude of the bending force or based on an amount of time the bending force is applied. 19. The torque adjuster of claim 17 , wherein the processing circuitry is configured to adjust a step size of changes to the torque setting based on a magnitude of the bending force. 20. The torque adjuster of claim 16 , wherein the user interface comprises a selector configured to enable transitioning the torque wrench to a setting mode in which the torque setting is adjustable via operation of the selector, and wherein the selector defines a fixed step size for adjustment of the target torque setting.
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