Abstract:
A receiving box for two hearing assistance devices including a housing, a cover, and an L-shaped hinge is provided. The housing includes a hinge recess, and two receiving slots independent of each other. The two receiving slots are configured to respectively receive the hearing assistance devices. The L-shaped hinge includes two opposite ends. One end is pivoted in the hinge recess, and the other end is fixed to the cover.
Abstract:
The disclosure provides a storage medium, an expansion base and an operation method thereof combined with a portable electronic device. The portable electronic device is pre-installed with an application program and includes a touch screen. The expansion base is paired with the portable electronic device and accommodates the portable electronic device. When the portable electronic device is accommodated inside the expansion base, a touch window on the surface of the expansion base exposes at least a portion of the touch screen, and the portable electronic device executes the application program to automatically adjust a size or a display position of a display image of the touch screen to correspond to the touch window.
Abstract:
A hinge structure including a first screw rod, a sliding rod, and a second screw rod is provided. The first screw rod comprises a threaded shaft. The sliding rod is sleeved on the threaded shaft. The second screw rod is sleeved on the sliding rod. The threaded shaft has a first helical slot. The sliding rod has a first guiding portion and a second guiding portion, and the first guiding portion is coupled to the first helical slot. The second screw rod has a second helical slot, and the second guiding portion is coupled to the second helical slot.
Abstract:
A portable electronic device adapted to be detachably connected to a cradle having a containing cavity is provided, wherein an inner wall of the containing cavity has a recess. The portable electronic device includes a body and a locking-and-releasing mechanism disposed in the body and including a driving unit and a latch. The driving unit is disposed in the body. The latch is connected to the driving unit and suitable for being driven by the driving unit to protrude out of the body or hide in the body. When the portable electronic device is disposed in the containing cavity, the driving unit drives the latch to protrude out of the body and be engaged with the recess. When the portable electronic device is going to be detached from the containing cavity, the driving unit drives the latch to be disengaged from the recess and move back in the body.
Abstract:
An electronic device includes a base, a rotating element and a sliding element. The rotating element is pivoted to the base. The sliding element is slidably disposed on the base. When the rotating element is rotated relative to the base and an included angle between the two is greater than a specific angle, the sliding element slides from a first position to a second position relative to the base.
Abstract:
An electronic device suitable for connecting with an expansion assembly is provided. The electronic device includes a main body and an expansion module. The expansion module is pivoted to the main body and suitable for rotating relative to the main body between an operating position and an accommodating position. When the expansion module is located at the operating position, the expansion assembly is suitable of being electrically connected to the expansion module and providing a supporting force to the main body.
Abstract:
An electronic device includes a body, a door, and a connection module. The body has an opening located at a side of the body. The door is pivoted to the body and capable of rotating between an opening position and a closing position in relative to the body for exposing or covering the opening. The connection module is slidably connected to the body. When the door is rotated to the opening position in relative to the body and exposes the opening, the door drives the connection module to slide to a working position in relative to the body, and when the door is rotated to the closing position in relative to the body and covers the opening, the door drives the connection module to slide to a retracted position in relative to the body.
Abstract:
An electronic device includes a body, a door, and a connection module. The body has an opening located at a side of the body. The door is pivoted to the body and capable of rotating between an opening position and a closing position in relative to the body for exposing or covering the opening. The connection module is slidably connected to the body. When the door is rotated to the opening position in relative to the body and exposes the opening, the door drives the connection module to slide to a working position in relative to the body, and when the door is rotated to the closing position in relative to the body and covers the opening, the door drives the connection module to slide to a retracted position in relative to the body.
Abstract:
A portable electronic device including a main body and a connector module is provided. The main body has a central region and a fringe region. A thickness of the central region is greater than a thickness of the fringe region, and the central region has a containing cavity. The connector module is slidably disposed in the containing cavity of the main body, and moves between an operation position and an accommodation position in relative to the main body.
Abstract:
A recording material of Ag1-xSbx (x=10.8˜25.5 at. %) films for WORM optical disk recording media is invented. The thermal analysis shows that the phase change temperature of AgSb film is between 250 and 270□. The optical property analysis shows that all the as deposited films have good optical absorption and high reflectivity. The X-ray Diffraction analysis shows that the as deposited film and the annealed film are kept at ∈′-AgSb crystalline phase. The TEM analysis shows that the grain size of the Ag80.9Sb19.1 film will grow after annealing. The dynamic test shows that the carrier-to-noise ratio (CNR) of the Ag80.9Sb19.1 optical disc is about 45 dB with λ=657 nm, NA=0.65 and a linear velocity of 3.5 m/s. These Ag1-xSbx films have good optical absorption, high reflectivity and good carrier-to-noise ratio. It can be used as the WORM optical disk recording film.