IP Library › Granted Patent US 11,975,427
Granted Patent B2
US 11,975,427 · App. 17/826,871 · Granted May 7, 2024

Method for controlling an electric motor of a power tool

Inventors: Chi Hoe Leong (Penang Island, MY); Ju-Lien Tan (Gelugor Penang, MY); Kah Hooi Tan (Pulau Pinang, MY); Moritz Stiefel (Filderstadt, DE); Sim Teik Yeoh (Gelugor Penang, MY)
Assignee: ROBERT BOSCH GMBH
B25B23/1475B25B23/0064B25F5/00
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Quick Facts
Patent No.
US 11,975,427
App. No.
17/826,871
Granted
May 7, 2024
Kind
B2
Abstract

A method for controlling an electric motor of a power tool having a receptacle for a tool, at least a current of the electric motor and/or a rotation speed of the electric motor during an impact operating mode of the electric motor being detected as a parameter, a driving time of the electric motor for the impact operating mode being specified as a function of the detected parameter. A method is also described for controlling an electric motor of a power tool having a receptacle for a tool for unscrewing a screw from a mating part.

Claims (34)

1. A method for controlling an electric motor of a power tool having a receptacle for a tool for unscrewing a screw from a mating part, the method comprising:

stopping the electric motor in the context of unscrewing a screw when a torque delivered by the electric motor decreases below a predefined limit value or when the screw has been unscrewed a predefined number of revolutions out of a seated position; and

detecting the delivered torque on the basis of a current that is consumed by the electric motor, and the rotation speed of the electric motor being at least reduced when the current decreases below the predefined limit value.

2. The method as recited in claim 1 , wherein at least one of the predefined limit value and the number of revolutions is specified by an operator.

3. The method as recited in claim 1 , wherein the torque is ascertained on the basis of a change over time in the current that is consumed by the electric motor in the context of unscrewing the screw, and the rotation speed of the electric motor is at least reduced when the current decreases faster than a time-related comparison gradient.

4. The method as recited in claim 3 , wherein at least one of the predefined limit value and the comparison gradient is specified as a function of a seating torque of the screw.

5. A method for controlling an electric motor of a power tool having a receptacle for a tool for unscrewing a screw from a mating part, comprising:

detecting a seating torque of the screw; and

performing different control methods for unscrewing the screw as a function of the seating torque of the screw,

wherein the different control methods for unscrewing the screw are selected as a function of at least one of:

i) a rotation speed of the electric motor predefined by an operator, and

ii) an actuation speed of a switch for predefining the rotation speed.

6. The method as recited in claim 5 , further comprising:

applying control to the electric motor in a first phase in accordance with the rotation speed predefined by an operator;

detecting a current of the electric motor during the first phase;

comparing the detected current with a predefined limit value;

upon exceedance of the predefined limit value, applying control to the electric motor during a subsequent second phase with a predefined second rotation speed, the predefined second rotation speed being a maximum rotation speed;

detecting the current of the electric motor during the second phase; and

recognizing a disengaged screw as a function of the detected current during the second phase and one of reducing the rotation speed of the electric motor or

stopping the electric motor being stopped when the disengaged screw is recognized;

wherein the predefined limit value depends on at least one of the seating torque and the rotation speed predefined by the operator.

7. The method as recited in claim 5 , further comprising:

applying control to the electric motor in a first phase in accordance with a rotation speed predefined by an operator;

detecting a time span during which the electric motor remains in the first phase with aid of a counter;

upon exceedance of a predefined time span, applying control to the electric motor during a subsequent second phase with a predefined second rotation speed, the predefined second rotation speed being a maximum rotation speed;

detecting a current of the electric motor during the second phase;

recognizing a disengaged screw as a function of the detected current of the electric motor during the second phase; and

reducing the rotation speed of the electric motor or stopping the electric motor when the disengaged screw is recognized.

8. The method as recited in claim 5 , wherein the seating torque of the screw is estimated on the basis of a current that is consumed by the electric motor in the context of unscrewing the screw in an initial phase.

9. A method for controlling an electric motor of a power tool having a receptacle for a tool for unscrewing a screw from a mating part, comprising:

detecting a seating torque of the screw;

performing different control methods for unscrewing the screw as a function of the seating torque of the screw,

recognizing a disengaged screw as a function of at least one of: a current falling below a predefined limit value, and a predefined negative time-related gradient being exceeded; and

when the disengaged screw is recognized, one of reducing a rotation speed of the electric motor, or stopping the electric motor.

Priority Claims (2)
DE 10 2014 211 894.8 · Jun 20, 2014 · national
DE 10 2015 211 119.9 · Jun 17, 2015 · national
Continuity (2)
Division 15312715
Related Publication 20220281086A1 · Sep 8, 2022
Cited By (2)
US 12,719,399 US 12,726,150