Portable power bank with far-infrared radiation
Patent Information
- Application Number
- TW115205108
- Authority / Receiving Office
- TW · TW
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2026-06-04
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2036-06-03
Smart Images

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Abstract
Claims
1. A portable power bank with far-infrared radiation, comprising a thin-film far-infrared emitting component and a portable power bank component; wherein: The thin-film far-infrared light-emitting component includes a flexible carrier plate and multiple far-infrared LEDs, with the far-infrared LEDs disposed on the flexible carrier plate. The portable power supply component includes a housing, a circuit board, a microcontroller, an input port, an output port, a battery pack, a display unit, and a control switch. The housing is a shell-shaped structure with an internal accommodating space. The circuit board is disposed within the accommodating space, and the microcontroller is mounted on the circuit board. The battery pack, the microcontroller, the input port, the output port, the display unit, the control switch, and the far-infrared LEDs are electrically connected. The on / off mode of the far-infrared LEDs is controlled by operating the control switch via the microcontroller.
2. The mobile power supply with far-infrared radiation as described in claim 1, wherein, The wavelength of the light emitted by the far-infrared LED is between 450 nanometers and 1500 nanometers.
3. A portable power source with far-infrared radiation as described in claim 1 or 2, wherein, The far-infrared LEDs mentioned herein are arranged in one of the following ways: matrix arrangement, multi-layer ring arrangement, or random arrangement.
4. The mobile power supply with far-infrared radiation as described in claim 3, wherein, The far-infrared LEDs mentioned herein are connected in parallel, in series, or partially in series to form a group, and then the groups are connected in parallel.
5. A portable power source with far-infrared radiation as described in claim 1 or 2, wherein, The far-infrared LEDs mentioned herein are connected in parallel, in series, or partially in series to form a group, and then the groups are connected in parallel.