Abstract:
An electronic device includes a cover, a main body, a plurality of components, each has an on working state and an off working state respectively corresponding to an angle range, an angle measuring apparatus, a presetting unit to preset a relationship between the on and of working states of each component and corresponding angle ranges; a memory for storing the relationship as a table, an angle measuring unit to detect current angle value between the main body and the cover; a state determining unit to determine the angle range which the detected current angle value is in; a determining unit to determine whether a current working state of the components is same as the determined working state; and an updating unit to record the determined working state as an updated working state when they are not same.
Abstract:
An exemplary touch sensitive robot includes a body, a touch sensor, a driver, and a controller. The body includes a control panel. The touch sensor includes a first conductive belt wrapped on the body, a second conductive belt provided around but spaced away from the first conductive belt, a power source applying a voltage to two distal ends of the first conductive voltage, and a voltage sensor interconnected between an end of the first conductive belt and an end of the second conductive belt. The second conductive belt is electrically deformable and contacts the first conductive belt when touched by a user so that a measured voltage of the voltage sensor change dependently of the location of the touch. The controller is for controlling the driver to spin the body based upon the measured voltage to orient the control panel to the user.
Abstract:
A battery lock for locking a battery of an electronic apparatus is provided. The battery lock includes a sliding button and a sliding member. The sliding button includes a sliding part for sliding the battery lock. The sliding member includes a base part and a side part extended from the base part. The sliding button is assembled on the base part of the sliding member detachably. At least one pushing part are fixed on the side part of the sliding member to lock the battery of the electronic apparatus.
Abstract:
A simulated eye is capable of being changed between a normal state and a dilated state. The simulated eye includes a circuit board, a controller electrically connected to the circuit board, a simulated iris electrically connected to the circuit board, and a simulated pupil. When the simulated iris is irradiated with light, the size of the colored area of the simulated iris is changeable by operationally powering on and powered off the simulated iris via the controller, whereby the simulated eye is changed between the normal state and the dilated state.
Abstract:
An electronic device assembly comprises a protecting panel an electronic device, which comprises a shell with a front cover and a back cover and a display panel received in the shell. A plurality of sliding grooves is opened in the shell and extends from the front cover to the back cover. The protective cover is slidably set in the sliding grooves so as to cover the display panel in a first state or expose the display panel in a second state.
Abstract:
A charging system includes a robot and a charging apparatus for charging the robot. The robot includes a casing and at least one power receiving terminal. The casing defines at least one slot receiving the at least one power receiving terminal. The charging apparatus includes at least one deformable power supply terminal. The at least one power receiving terminal is pressed to be deformed by the casing of the robot.
Abstract:
An electronic device includes a keypad, and a body having a touch screen. The keypad attached to the touch screen, includes an obverse surface and a reverse surface. A protrusion is protruded from the obverse surface and is configured to receive user input operation, an attaching member is mounted on the reverse surface and is configured to attach the keypad to the touch screen, a hollow portion is defined in the reserve surface corresponding to the protrusion, and a pressing member is mounted in the hollow portion and is configured for touching the touch screen when the protrusion is pressed.
Abstract:
An electronic device includes a main body and a port connector. The main body includes a printed circuit board, a bottom plate and a side plate cooperatively defining a opening. The printed circuit board is fixed parallelly to the bottom plate. The port connector includes an outer angled plate having a first wall, a second wall, and first pins and second pins. The first wall is attached to the bottom plate and defines first ports. The second wall is attached to the side plate and defines second ports. Each of the first pins is retained within one of the first ports and contacting the printed circuit board. Each of the second pins is retained within one of the second ports and contacting the printed circuit board.
Abstract:
A support device adjustable in 3-DOF includes a base, a pitching arm, a rolling arm, a yawing arm, a pitching drive unit, a rolling drive unit, a yawing drive unit, and a controller. The rolling arm rotatably interconnects the pitching arm and the yawing arm. The pitching, rolling, and yawing drive units are configured for automatically driving the pitching, rolling, and yawing arms about pitch, roll, and yaw axes respectively. The roll axis is perpendicular to the pitch and yaw axes. The controller is configured for controlling the pitching, rolling and yawing drive units in response to control inputs. In use, a display panel can be attached to the yawing arm and automatically pitch, roll, and/or yaw by the respective drive units under control of the controller, to achieve an optimum viewing angle.
Abstract:
An electronic device includes a cover, a main body, an angle measuring apparatus, a memory for storing working states of components of the electronic device; a presetting unit configured to preset relationship of predetermined working states of components in the electronic device and corresponding angle ranges between the main body and the cover; an angle measuring unit configured to control the angle measuring apparatus to detect current angle value between the main body and the cover; a state determining unit configured to determine the predetermined working state of components of the electronic device; a control unit configured to determine whether the current working state of the components is the same as the determined working state; and an updating unit configured to record the determined working state as the updated working state of the components when the current state of the components is different from the determined working state.