Abstract:
An optical structure of the optical mouse is disclosed, which comprises a light source providing an incident light beam transmitted onto a target surface at a specific incident angle and a photosensor pre-disposed at an angle of between 1 and 179 degrees or between 181 and 359 degrees so as to be aligned to stand at a right angle with respect to a path of the reflected version and thus achieve a proper acquirement of luminance and image of the reflected version of the incident light from the target surface.
Abstract:
An electronic device supporting mechanism includes a base, a top cover, a first supporting member and a second supporting member. The first supporting member and the second supporting member are rotatable relative to the base to a supporting position or a storing position. In a case that the first supporting member and the second supporting member are rotated to the supporting portion, an electronic device can be supported. Whereas, in a case that the first supporting member and the second supporting member are rotated to the storing position, the first supporting member and the second supporting member are respectively stored within two receiving spaces of the base. The electronic device supporting mechanism is advantageous for protecting the supporting components and is easily carried.
Abstract:
A mouse with multi-configurable buttons is provided. The mouse with multi-configurable buttons comprises a housing, a cylinder module and a signal processing device. The housing has an opening, and the cylinder module is received in the housing and partially exposed through the opening. The cylinder module at least comprises a first click portion and the second click portion, and the signal processing device at least comprises a first switch and a second switch. When the first click portion is exposed through the opening, the first click portion is used for activating the first switch. In contrast, when the second portion is exposed through the opening, the second click portion is used for activating the first and the second switch. Therefore, the mouse with multi-configurable buttons provides at least two configuration status via rotating the rotating cylinder to satisfy different user demands.
Abstract:
A mouse with a rotatable operation module is provided. The mouse includes a mouse housing and the operation module. The mouse housing has a sidewall. A hollow portion is formed in the sidewall for installing the operation module. The operation module includes a positioning member, a rotary member and a signal generating module. By rotating the rotary member, the operation module is rotated accordingly.
Abstract:
A mouse includes a main body, an engaging device, and a detachable cover. The main body has a top surface and an insertion slot. The insertion slot is recessed from the top surface of the main body. The cover is used for detachably covering the top surface of the main body. The cover has an extension arm. After the top surface of the main body is covered by the cover, the extension arm is inserted into the insertion slot and engaged with the engaging device, so that the cover is securely fixed on the main body to cover the main body.
Abstract:
A storage device for a tablet personal computer is provided. The storage device includes a base and an upper cover for fixing the tablet personal computer. The base includes a foldable structure. When the foldable structure is folded and stacked on a side of the base, a receiving space for fixing a keyboard device is defined by the base and the foldable structure. In such way, the tablet personal computer and the keyboard device can be simultaneously stored within the storage device.
Abstract:
A handheld electronic device and a button input device for use with a handheld electronic device are provided. The handheld electronic device includes a first casing and a second casing. The second casing is slidable with respect to the first casing. The first casing includes a fire button. The second casing includes an auxiliary button and a receiving part for storing the auxiliary button. When the second casing is slid with respect to the first casing, the auxiliary button is rotated with respect to the second casing. As such, the auxiliary button is moved from the receiving part to a surface the first casing for facilitating the user to press.
Abstract:
A wheel mouse includes a base, a circuit board, a scroll wheel, a wheel swing member, two tilt switches, and a mode-switching element. The wheel swing member has an extension arm. The mode-switching element has an engaging part. The mode-switching element is penetrated through the base and the circuit board and partially protruded outside the surface of the base. By moving the mode-switching element to a first position or a second position, the engaging part is engaged with or separated from the extension arm, so that the wheel mouse is selectively operated in a third-axial wheel operating mode or a tilt wheel operating mode.
Abstract:
A chargeable wireless mouse includes a mouse body, a battery, a charging slot and a wireless signal receiver. A magnetic element and a conducting member are disposed within the charging slot. The wireless signal receiver includes a USB connecting part, a metallic plate and a charging plate. The wireless signal receiver is connected with a computer host via a USB connecting port. When the wireless signal receiver is accommodated within the charging slot, the metallic plate is magnetically attracted by the magnetic element such that the wireless signal receiver is fixed in the charging slot. At the same time, the charging plate is contacted with the conducting member such that electricity is transmitted from the receiver circuit board to the chargeable battery.
Abstract:
A wheel mouse includes a first scroll wheel, a second scroll wheel, a first encoder, a second encoder and a control unit. The first encoder generates a first rotation signal according to the rotating condition of the first scroll wheel. The second encoder generates a second rotation signal according to the rotating condition of the second scroll wheel. The control unit is electrically connected to the first encoder and the second encoder for executing a corresponding function in response to the first rotation signal and the second rotation signal. The control unit executes a first function when only the first rotation signal is generated. The control unit executes a second function when only the second rotation signal is generated. The control unit executes a third function when the first rotation signal and the second rotation signal are simultaneously generated.