Abstract:
A pivot apparatus adapted to connect a host and a display includes a rotary base having a first part and a second part, a connecting plate, a pivot component, a first connecting rod and a hook. The first part is embedded at the host. The second part has a rotary shaft embedded at a first edge of the connecting plate. The pivot component is pivotally connected between a rear surface of the display and a second edge of the connecting plate. The first connecting rod is slidably disposed at the connecting plate and has at least a locking hole. The hook is disposed at the rear surface and passes through the connecting plate to be slidably disposed in the locking hole. The hook is used to interfere with the first connecting rod to restrict the rotation of the display by the pivot component relative to the connecting plate.
Abstract:
A mobile phone with a stepless motion function is provided and includes a mobile phone body, an upper cover which can be movably provided outside the mobile phone body, and a pushing device including a first end part and a second end part, wherein the first end part is fixedly provided at the upper cover, and the second end part is fixedly provided at the mobile phone body, whereby the upper cover can move at a constant velocity from a first position to a second position relatively to the mobile phone body. Therefore, the mobile phone with a stepless motion function of the invention enables the upper cover to move at a constant velocity at the mobile phone body to increase the tactile sensation of the mobile phone.
Abstract:
A computer includes a computer case, a motherboard, a cable box, a power supply and a peripheral component. The computer case has a first disk drive slot and a second disk drive slot within the inner portion thereof. The cable box is installed in the first disk drive slot. The power supply is connected with the cable box through a power cord. The peripheral component is installed in the second disk drive slot, wherein electricity is transmitted from the power supply to the peripheral component through the cable box.
Abstract:
An electronic device includes a housing, a button plate, a support element and a printed circuit board. The housing has an opening. The button plate is disposed at the opening of the housing, has a central region and two sides, wherein the button plate is mounted to the housing through the two ends of the two sides formed by elastic arms respectively. The support element is disposed under the central region of the button plate for defining the button plate into left and right parts. The printed circuit board is located underneath the support element, has two switches located respectively corresponds to the left and right parts of the button plate.
Abstract:
A rotating mechanism and an electronic device using the same are provided. The rotating mechanism is disposed at the electronic device. The electronic device includes a first casing and a second casing. The rotating mechanism includes a first gear and a second gear. The first gear is coupled to the first casing. The second gear is coupled to the second casing. The second gear is engaged with the first gear, and then the first casing is capable of rotating relatively to the second casing.
Abstract:
The invention discloses an electronic apparatus comprising a motherboard, a connector, a card member and a first holder. The connector is disposed on the motherboard and the card member is disposed on the connector. The motherboard comprises a first fixing portion and the card member comprises a second fixing portion. The first holder comprises a third fixing portion fixed to the first fixing portion of the motherboard and a fourth fixing portion fixed to the second fixing portion of the card member. Accordingly, once the motherboard or the card member is hit or pulled by an external force, since two ends of the first holder respectively fix the card member and the motherboard, the card member will not be detached from the connector, such that the card member can be connected to the connector well.
Abstract:
The present invention provides a display device capable of automatically adjusting display orientation and the display segment arrangement thereof. The display device is provided for an electronic product. The display device includes: a segment display device, a position detection device and a decoding circuit. The segment display device has plural display segments arranged on the electronic device. The position detection device is arranged on the electronic product for generating a first status signal or a second status signal based on the electronic product being positioned horizontally or vertically. The decoding circuit connects to the segment display device and the position detection device for receiving a numerical signal and displaying the numerical signal on the segment display device based on the first status signal or second status signal.
Abstract:
A computer has a first BIOS unit, a second BIOS unit, a bus, a detecting unit, and a first delay unit. The detecting unit is connected to the bus, the first BIOS unit, and the second BIOS unit operationally. In addition, the first delay unit is electrically connected to the detecting unit for controlling the detecting unit to check a status of a bus signal on the bus after a predetermined delay time. Accordingly, the detecting unit may enable the first BIOS unit or the second BIOS unit to boot the computer system according to the state of the bus signal.
Abstract:
A notebook computer includes a main portion, a display, and a touch sensitive unit. The main portion includes a housing has a first identifying portion formed on an external surface and a second identifying portion formed on an internal surface that corresponding to each other. The second identifying portion is identifiably served, and the touch sensitive unit is disposed in the second identifying portion. With such manner, the touch sensitive unit is thus unexposed, and assembling of the touch sensitive unit is facilitated.
Abstract:
There is provided an optical disc drive designed for reading data stored in an optical disc. The optical disc drive includes a body, a driving module, a body wrapping unit, and an access module designed for reading data stored in the optical disc. The driving module and the access module are both disposed in the body. The driving module has a circuit board and a driving element disposed on the circuit board, and the body has a plurality of latching structures. The driving mechanism is secured to the body with the use of the latching structures, and the driving mechanism is secured at one side of the latching structures. Moreover, the body wrapping unit used to cover the body has at least a limiting portion which is positioned at another side of a portion of the latching structures.