Air blower
The present disclosure provides an air blower which comprises a housing provided with grip area; a motor disposed within the housing; an impeller disposed within the housing; a circuit board disposed within the housing; the circuit board is configured to be connected to the motor, and a conductive structure, one end of the conductive structure is configured to be connected to the circuit board, and another end of the conductive structure is configured to be exposed outward from the grip area.
1 . An air blower, comprising:
a housing provided with a grip area;
a motor disposed within the housing;
an impeller disposed within the housing;
a circuit board disposed within the housing; the circuit board is configured to be connected to the motor;
a conductive structure, one end of the conductive structure is configured to be connected to the circuit board, and another end of the conductive structure is configured to be exposed outward from the grip area; wherein
the conductive structure comprises a conductive wire and a conductive body;
the conductive wire is configured to be respectively connected to the circuit board and the conductive body;
the conductive body is configured to be exposed outside the housing corresponding to the grip area;
the housing is provided with an upper housing and a handle;
the handle comprises an upper cover and a base housing; the air blower comprises two conductive structures; wherein
both the conductive bodies of the two conductive structures are configured to respectively extend through the base housing and the upper cover, so as to be exposed outward;
the air blower comprises a blower cylinder, the blower cylinder is embedded within the upper housing;
the blower cylinder is provided with an air outlet end and an air inlet end;
the air outlet end and the air inlet end are respectively disposed on two sides of the housing;
the conductive body exposed outside the housing is disposed on the grip area;
the air blower further comprises a battery;
the battery is disposed within the handle;
the battery is disposed longitudinally along a length direction of the handle, perpendicular to the upper housing;
the air blower has at least two operation levels including a target operation level; a single operation duration of the air blower in the target operation level is less than or equal to a first preset value; and
the air blower further comprises:
an adjustment button including a first button; and
a controlling module configured to obtain a trigger duration for the adjustment button; in response to the trigger duration being more than or equal to a second preset value, triggering the target operation level; and in response to the trigger duration being less than the second preset value, switching between the at least two operation levels.
2 . The air blower according to claim 1 , wherein
the conductive structure is configured to be connected to a negative electrode of the circuit board.
3 . The air blower according to claim 1 , further comprising:
the adjustment button including at least the first button and a second button disposed on the handle; and
a lighting component disposed on a same side of the housing with the air outlet end;
wherein the first button is configured to turn on/off the lighting component, and/or adjust a light intensity, the lighting component faces an air blowing object together with the air outlet end, so as to illuminate the air blowing object and/or a target area in a dark environment; and
wherein the second button controls the battery to discharge at percentages of its maximum power, thereby adjusting a rotational speed of the motor, so as to be configured turn on/off an airflow, and/or adjust an air volume of the airflow.
4 . The air blower according to claim 3 , further comprising an air nozzle fixed to the air outlet end of the air blower via at least two bayonet structures provided on the air blower, so as to enhance a pressure of the airflow at the air outlet end or to extend a reach of the airflow.
5 . The air blower of claim 4 , further comprising multiple lighting components at different positions of the air blower to increase an illumination area and reduce shadow interference from a user gripping the air blower.
6 . The air blower according to claim 1 , further comprising a display assembly configured to display a remaining battery level, an airflow speed, an airflow temperature, the at least two operation levels, and/or a continuous single operation duration;
wherein the air blower is configured to indicate an operating time information of the air blower in a voice indication, a vibration indication and/or a visual indication; the operating time information includes a remaining single operation duration corresponding to the air blower operating in the target operation level in real time.
7 . The air blower according to claim 1 , wherein
the blower cylinder comprises a first sub-cylinder, a second sub-cylinder, and a third sub-cylinder, which are sequentially arranged from the air outlet end toward the air inlet end;
the air blower comprises further an air inlet grid;
an inner diameter of the blower cylinder outside the air inlet grid decreases from outside to inside;
the air blower comprises an arcuate slope surface, which is disposed on an outer side of the air inlet grid.
8 . An air blower, comprising:
a housing provided with a grip area;
a motor disposed within the housing;
an impeller disposed within the housing;
a circuit board disposed within the housing; the circuit board is configured to be connected to the motor; and
a conductive structure, one end of the conductive structure is configured to be connected to the circuit board, and another end of the conductive structure is configured to be exposed outward from the grip area;
the conductive structure comprises a conductive wire and a conductive body;
the conductive wire is configured to be respectively connected to the circuit board and the conductive body;
the conductive body is configured to be exposed outside the housing corresponding to the grip area;
the housing is provided with an upper housing and a handle;
the handle comprises an upper cover and a base housing; the air blower comprises two conductive structures; wherein
both the conductive bodies of the two conductive structures are configured to respectively extend through the base housing and the upper cover, so as to be exposed outward;
the air blower further comprises a blower cylinder, the blower cylinder is embedded within the upper housing;
the blower cylinder is provided with an air outlet end and an air inlet end;
the air outlet end and the air inlet end are respectively disposed on the two sides of the housing;
the conductive body exposed outside the housing is disposed on the a same side of the housing with the air outlet end;
the air blower comprises a battery;
the battery is disposed within the handle;
the battery is disposed longitudinally along a length direction of the handle, perpendicular to the upper housing;
the air blower further comprises:
an adjustment button including at least a first button and a second button disposed on the handle; and
a lighting component disposed on a same side of the housing with the air outlet end;
wherein the first button is configured to turn on/off the lighting component, and/or adjust a light intensity, the lighting component faces an air blowing object together with the air outlet end, so as to illuminate the air blowing object and/or a target area in a dark environment; and
wherein the second button controls the battery to discharge at percentages of its maximum power, thereby adjusting a rotational speed of the motor, so as to be configured turn on/off an airflow, and/or adjust an air volume of the airflow; and
the circuit board comprises a first circuit board, a second circuit board, and a third circuit board;
the first circuit board is disposed within one side of the handle, which is close to the battery, and the first circuit board is electrically respectively connected to the motor and the battery;
the second circuit board is disposed at a bottom of the battery, and the second circuit board is provided with a charge circuit, which is configured to charge the battery;
the third circuit board is disposed on a top of the battery, and the third circuit board is respectively electrically connected to the first button, and/or the second button.