Abstract:
A heat pipe structure includes a hollow tube body and a plurality of capillary structures. A first region and a second region are defined in the hollow tube body. The capillary structure is disposed on the first region. A diameter of the second region is larger than a diameter of the first region.
Abstract:
An input device and a method of switching an input mode of the input device are provided. The input device includes a main body, a state detecting module, a touchpad and a control unit. The main body includes a top surface, a bottom surface and a side surface connected the bottom and top surfaces. The state detecting module includes a first state detecting unit disposed at the bottom surface and a second state detecting unit disposed at the side surface. The first and second state detecting units detect a using state of the input device and generate first and second detecting signals, respectively. The control unit is electrically connected to the state detecting module and the touchpad, and the control unit switches the touchpad to a first control mode or a second control mode according to the first and second detecting signals.
Abstract:
An operation method for application program preview interface which is stored in a storage unit and executed in a computer system. The operation method includes the steps of: displaying a plurality of operation modes on a first display area; selecting one of the operation modes in accordance with a first indicating signal; and displaying at least one selectable object on a second display area, wherein the selectable object is an application program opened or executed in the selected operation mode.
Abstract:
A battery module with a battery housing includes a first conducting layer, at least one battery cell, a second conducting layer, an insulating layer, and a detecting circuit. The first conducting layer is disposed inside the battery housing. The battery cell is disposed inside the battery housing and opposite to the first conducting layer. The second conducting layer is disposed on the battery cell. The insulating layer is disposed between the first conducting layer and the second conducting layer. The first conducting layer, the second conducting layer, and the insulating layer form an internal capacitor. The detecting circuit is electrically connected with the first conducting layer and the second conducting layer for detecting a capacitance value of the internal capacitor.
Abstract:
An electronic device includes an upper cover, a lower cover combined with the upper cover, and a heat conducting pillar. An accommodating space is formed by the upper cover and the lower cover. The heat conducting pillar is disposed in the accommodating space and physically connected with the upper cover and the lower cover to balance the temperature of the upper cover and the lower cover.
Abstract:
A virtual mouse is provided. The virtual mouse is coupled to an electronic device. The virtual mouse includes a touch unit, a detecting unit and a processing unit. The touch unit receives at least one touch event and outputs an input signal according to each of the at least one touch event, respectively. The detecting unit detects the at least one touch event to obtain a first parameter corresponding to each of the at least one touch event, respectively. The processing unit compares the first parameter corresponding to each of the at least one touch event with a first default value, respectively, to obtain a first comparing result corresponding to each of the at least one touch event. Whether the processing unit transmits the input signal to the electronic device is determined according to each of the first comparing result.
Abstract:
A portable electronic system includes a portable device and a mobile device. The portable device includes a base, a bearing seat, and a connecting element. The base includes a fan and at least one first opening. The bearing seat includes at least one second opening. The connecting element connects the base and the bearing seat and includes a passage. The mobile device is detachably disposed at the bearing seat and includes at least one third opening. The base and the mobile device have corresponding passage and openings to bring heat airflow from inside of the mobile device to outside of the mobile device.
Abstract:
A cover assembly applied to an electronic device is disclosed. The electronic device includes a first component and a second component, and an opening is formed between the first component and the second component. The cover assembly includes a cover element, at least one first moving element, at least one second moving element and an elastic element. The cover element is disposed in the opening, attached to the second component, and abutted against the first component. The first moving element is connected to the cover element and includes at least one first moving part. The second moving element is connected to the second component and includes at least one second moving part. The elastic element is connected between the first moving element and the second moving element, and provides an elastic force to make the cover element continuously abutted against the first component and cover the opening.
Abstract:
A casing structure and an electronic device with the casing structure are disclosed. The casing structure includes a first casing, a second casing, a fixing element and a locking element. The second casing has a turning portion and an opening. The opening is formed at the turning portion. The fixing element is disposed in the first casing and corresponds to the opening. The locking element has an end part and a fixing part. The fixing part passes through the opening along a normal line direction of the opening to fix on the fixing element, so as to make the second casing connected to the first casing, and make the end part aligned to the second casing.
Abstract:
An image capturing device includes an image capturing module and a base module. The image capturing module includes a sub base unit and an image capturing unit. The image capturing unit generates an image signal to the sub base unit. The base module receives the image signal from the sub base unit and transmits the image signal to an electronic device via wireless transmission.