IP Library › Granted Patent US 12,540,626
Granted Patent B2
US 12,540,626 · App. 19/276,301 · Granted Feb 3, 2026

Portable fan with predictable battery life and method for predicting battery life thereof

Inventor: Caixia Zhu (Shenzhen, CN)
Assignee: Shenzhen Weiteshijia Technology Co., Ltd
F04D25/084H02J7/0049H02J2207/30
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Quick Facts
Patent No.
US 12,540,626
App. No.
19/276,301
Granted
Feb 3, 2026
Kind
B2
Abstract

A portable fan with predictable battery life and a method for predicting battery life thereof. The portable fan includes a fan body, where a circuit board assembly and a storage battery are installed in a shell of the fan body, a microprocessor and a current collector are encapsulated in the circuit board assembly, a load and a display device are provided on the fan body, and the display device includes a function lighting display area and a battery life display area. According to the portable fan, the display device can be used to indicate a working mode that the fan body is currently turned on and the working battery life that the storage battery can provide under the corresponding working mode. An intuitive and standard time unit is used for indication, so that a clear visual perception effect is achieved.

Claims (17)

1 . A portable fan with predictable battery life, comprising a fan body, wherein the fan body comprises a shell, and a circuit board assembly ( 1 ) and a storage battery ( 2 ) are installed in the shell, wherein a microprocessor and a current collector are encapsulated in the circuit board assembly ( 1 ), a load and a display device ( 4 ) are provided on the fan body, the load comprises a drive fan blade group ( 3 ), the display device ( 4 ) comprises a function lighting display area ( 41 ) and a battery life display area ( 42 ), and the storage battery ( 2 ), the load and the display device ( 4 ) are all electrically connected with the circuit board assembly ( 1 ),

wherein the load comprises a semiconductor refrigeration device ( 5 ), the semiconductor refrigeration device ( 5 ) comprises a cold and hot semiconductor ( 52 ), a conductor ( 51 ) and a heat sink ( 54 ), a semiconductor installation through hole ( 53 ) is provided in the shell and surrounded by an air inlet ( 55 ) of the fan, the semiconductor installation through hole ( 53 ) penetrates through a wall surface of the shell, two opposite side wall surfaces of the cold and hot semiconductor ( 52 ) are provided as a cooling working surface and a heating working surface, respectively, the cold and hot semiconductor ( 52 ) is embedded in the semiconductor installation through hole ( 53 ), the cooling working surface is provided toward an outer side of the shell, the heating working surface is provided toward an inner side of the shell, the outer side of the cooling working surface is covered with the conductor ( 51 ), the conductor ( 51 ) is in heat conduction connection with the cooling working surface, and the heating working surface is in heat conduction connection with the heat sink ( 54 ).

2 . The portable fan with predictable battery life according to claim 1 , wherein the microprocessor is a Digital Signal Processor (DSP) or a Microcontroller (MCU).

3 . The portable fan with predictable battery life according to claim 1 , wherein the current collector is a current sensor or a current collecting circuit.

4 . The portable fan with predictable battery life according to claim 1 , wherein the function lighting display area ( 41 ) and the battery life display area ( 42 ) are provided in the same display area on the display device ( 4 ), and the function lighting display area ( 41 ) and the battery life display area ( 42 ) are capable of being alternately switched and displayed.

5 . The portable fan with predictable battery life according to claim 1 , wherein both the conductor and the heat sink are aluminum alloy members.

6 . The portable fan with predictable battery life according to claim 1 , wherein the circuit board assembly ( 1 ) is electrically connected with a control button and a power input interface.

7 . The portable fan with predictable battery life according to claim 6 , wherein the control button comprises a power switch ( 11 ) and a function mode switching button ( 12 ).

8 . The portable fan with predictable battery life according to claim 6 , wherein the power input interface is a Type-C interface ( 13 ).

9 . A portable fan with predictable battery life, comprising a fan body, wherein the fan body comprises a shell, and a circuit board assembly ( 1 ) and a storage battery ( 2 ) are installed in the shell, wherein a microprocessor and a current collector are encapsulated in the circuit board assembly ( 1 ), a load and a display device ( 4 ) are provided on the fan body, the load comprises a drive fan blade group ( 3 ), the display device ( 4 ) comprises a function lighting display area ( 41 ) and a battery life display area ( 42 ), and the storage battery ( 2 ), the load and the display device ( 4 ) are all electrically connected with the circuit board assembly ( 1 ), wherein a method for predicting battery life of a portable fan is as follows:

S1) initializing a battery capacity, turning on the load to work until the power of the storage battery runs out, wherein when the power of the storage battery is incapable of supporting to turn on the load with a minimum power consumption for operation independently, it is considered that the power has run out, and the microprocessor resets the total remaining current of the storage battery;

S2) connecting the power input interface with an external power supply by using a charging cable to charge the storage battery;

S3) collecting, by the current collector, current values flowing into the storage battery in a charging process, and integrating, by the microprocessor, the collected current values in time, wherein the integration process is expressed as the accumulation of the current values at discrete time points, that is, Σ(I[n]×Δt), where I[n] denotes a current value at an n-th time, Δt denotes a time interval, and the total remaining current is updated at the same time after each integration;

S4) turning on the load, collecting, by the current collector, current values flowing out of the storage battery in a working process of the load, subtracting, by the microprocessor, the collected current values in time, updating the total remaining current at the same time after each subtraction, and at the same time, calculating, by the microprocessor, current consumption of the load per unit time according to the collected subtracted total current value, calculating, by the microprocessor, the remaining battery life in the current load environment with a formula of “total remaining current÷current consumption per unit time”, converting the remaining battery life into the time unit corresponding to the display device to be displayed to a user on the “battery life display area” of the display device, and at the same time, the “function lighting display area” on the display device displaying the current load situation;

S5) switching, by the control button, the type of the turned-on load, displaying the turned-on load to a user through the “function lighting display area”, and at the same time, the “battery life display area” on the display device displaying battery life in view of the current load situation to a user;

S6) in the use process, if there is an obvious time difference in battery life, performing the above S1 operation again to initialize the battery capacity for correcting the consistency of the current hardware environment and ensuring the accuracy of battery life.

10 . The portable fan with predictable battery life according to claim 9 , wherein the time unit of the battery life display area is in “seconds”, or “minutes”, or “hours” or “days”.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2025
From: ZHU, CAIXIA
To: SHENZHEN WEITESHIJIA TECHNOLOGY CO., LTD
Reel/Frame 071789/0730 →
Priority Claims (1)
CN 202510815240.5 · Jun 18, 2025 · national
Continuity (1)
Related Publication 20250347284A1 · Nov 13, 2025
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Cited By (3)
US 1,134,799 US 1,136,164 US 1,137,613