Abstract:
A lens device is disclosed. The lens device includes a fixed lens barrel, a rotating lens barrel, and a sensor. The rotating lens barrel is sleeved within the fixed lens barrel. The sensor is disposed within the fixed lens barrel for detecting the position of the rotating lens barrel.
Abstract:
A retaining mechanism, used for retaining an electronic component including a support bracket having an end part formed with an engaging hole, includes a mounting block having a mounting hole for receiving the end part of the support bracket, and a through hole communicating with the mounting hole. A seat body covers the mounting block, and has a bolt hole communicating with and disposed above the through hole, and a limiting slot communicating with one side of the bolt hole. A locking bolt includes a shank disposed slidably in the bolt hole, and a stopper block connected transversely to the bottom portion and slidable upward and downward along the limiting slot. The shank has a bottom portion adapted to engage releasably the engaging hole when the through hole is aligned with the engaging hole.
Abstract:
An unloading mechanism includes a base and a pushing component installed on the base for pushing an electronic component out of a computer device. The unloading mechanism further includes a latch for latching the pushing component. When the electronic component pushes a first end of the pushing component in a first direction, a second end of the pushing component drives the latch to move in a second direction. The unloading mechanism further includes a first resilient component connected between the latch and the base for driving the latch to move in a direction opposite to the second direction, and a second resilient component connected between the pushing component and the base for driving the pushing component to move in a direction opposite to the first direction.
Abstract:
A fixing mechanism includes a bottom plate, a base, an engaging component and a resilient component. The engaging component is installed on the base for engaging a side of a board. The engaging component includes a main body, a pivoting portion connected to an end of the main body and pivoted to the base, a hook portion connected to another end of the main body for hooking the side of the board, a handle portion connected to another end of the main body for driving the hook portion to separate from the side of the board, and a pin portion installed on a side of the main body. The resilient component sheathes with the pin portion for driving the engaging component to pivot relative to the base. An end of the resilient component contacts with the main body, and the other end of the resilient component contacts with the base.
Abstract:
A fixing mechanism includes a bottom plate, a base, an engaging component and a resilient component. The engaging component is installed on the base for engaging a side of a board. The engaging component includes a main body, a pivoting portion connected to an end of the main body and pivoted to the base, a hook portion connected to another end of the main body for hooking the side of the board, a handle portion connected to another end of the main body for driving the hook portion to separate from the side of the board, and a pin portion installed on a side of the main body. The resilient component sheathes with the pin portion for driving the engaging component to pivot relative to the base. An end of the resilient component contacts with the main body, and the other end of the resilient component contacts with the base.
Abstract:
A speaker module includes a casing whereon an opening is formed. The casing includes a blocking structure disposed on a side of the opening. The speaker module further includes a first speaker device, which includes a first housing, a first speaker unit disposed inside the first housing, and an engaging component connected to an end of the first housing for engaging with the blocking structure when the first housing is pulled out of the casing through the opening and for rotating relative to the blocking structure so as to adjust an angle of the first speaker unit. The speaker module further includes a second speaker device connected to the first speaker device and capable of passing through the opening, which includes a second housing connected to the first housing in a slidable manner relative to the first housing, and a second speaker unit disposed inside the second housing.
Abstract:
A power supply device includes a transformer and a heat-dissipating mechanism. The heat-dissipating mechanism includes a heat-dissipating fan unit and an activating unit. The heat-dissipating fan unit is connected pivotally to the transformer, and is pivotable relative to the transformer to lie on a top surface of the transformer. An inclination angle of the heat-dissipating fan unit relative to the top surface of the transformer is adjustable. The activating unit includes a control switch for controlling activation of the heat-dissipating fan unit.
Abstract:
An unloading mechanism includes a base and a pushing component installed on the base for pushing an electronic component out of a computer device. The unloading mechanism further includes a latch for latching the pushing component. When the electronic component pushes a first end of the pushing component in a first direction, a second end of the pushing component drives the latch to move in a second direction. The unloading mechanism further includes a first resilient component connected between the latch and the base for driving the latch to move in a direction opposite to the second direction, and a second resilient component connected between the pushing component and the base for driving the pushing component to move in a direction opposite to the first direction.