Method and Apparatus for a Clipper
An electric clipper having a body, a motor disposed within the body, a clipper head that operably couples to the body and that is powered by the motor, a power actuator configured to power on and off the motor such that when the motor is powered on by the power actuator the motor operates at a normal level of performance and at least one boost actuator configured to provide increased operating performance of the clipper head when actuated by a user. By one approach the increased operating performance is provided for only a set amount of time.
1 . A method comprising:
providing an electric clipper, wherein the electric clipper comprises:
a body having an exterior surface;
at least one battery disposed within the body;
a motor disposed within the body;
a clipper head, operably coupled to the body, that is powered by the motor and that is configured to clip hair;
a power actuator integrated with the exterior surface of the body that is configured to selectively connect and disconnect the at least one battery and the motor to thereby power on and off the motor in response to corresponding actuations by a user such that when the motor is powered on by the power actuator the motor operates at a normal level of performance;
at least one boost actuator integrated with the exterior surface of the body and configured to provide increased operating performance of the clipper head when actuated by a user; and
a vacuum at least partially disposed within the body and being selectively connectable and disconnectable from the battery.
2 . The method of claim 1 wherein the body of the electric clipper has at least two opposing sides and wherein the at least one boost actuator is located on a first one of the two opposing sides.
3 . The method of claim 2 wherein another of the at least one boost actuator is located on a second one of the two opposing sides, such that both opposing sides of the body have a corresponding boost actuator that each independently, when actuated by a user, provide increased operating performance of the clipper head.
4 . The method of claim 1 wherein the vacuum comprises a fan driven system.
5 . The method of claim 1 wherein the vacuum comprises a turbine driven system.
6 . The method of claim 1 wherein the vacuum comprises a vacuum pump.
7 . The method of claim 1 wherein operation of the vacuum is directly coupled to operation of the electric clipper.
8 . The method of claim 1 further comprising a separate actuator that controls actuation of the vacuum.
9 . The method of claim 1 wherein the vacuum comprises a bin configured to store foreign matter during operation of the vacuum.
10 . An electric clipper comprising:
a body having an exterior surface;
at least one battery disposed within the body;
a motor disposed within the body;
a clipper head, operably coupled to the body, that is powered by the motor and that is configured to clip hair;
a power actuator integrated with the exterior surface of the body that is configured to selectively connect and disconnect the at least one battery and the motor to thereby power on and off the motor in response to corresponding actuations by a user such that when the motor is powered on by the power actuator the motor operates at a normal level of performance;
at least one boost actuator integrated with the exterior surface of the body and configured to provide increased operating performance of the clipper head when actuated by a user; and
a vacuum at least partially disposed within the body and being selectively connectable and disconnectable from the battery.
11 . The electric clipper of claim 10 wherein the body of the electric clipper has at least two opposing sides and wherein the at least one boost actuator is located on a first one of the two opposing sides.
12 . The electric clipper of claim 11 wherein another of the at least one boost actuator is located on a second one of the two opposing sides, such that both opposing sides of the body have a corresponding boost actuator that each independently, when actuated by a user, provide increased operating performance of the clipper head.
13 . The electric clipper of claim 10 wherein the vacuum comprises a fan driven system.
14 . The electric clipper of claim 10 wherein the vacuum comprises a turbine driven system.
15 . The electric clipper of claim 10 wherein the vacuum comprises a vacuum pump.
16 . The electric clipper of claim 10 wherein operation of the vacuum is directly coupled to operation of the electric clipper.
17 . The electric clipper of claim 10 further comprising a separate actuator that controls actuation of the vacuum.
18 . The electric clipper of claim 10 wherein the vacuum comprises a bin configured to store foreign matter during operation of the vacuum.