Abstract:
A moving mechanism of an electronic device is provided, including a first member, a second member, a sliding member slidably connected to the first member, and a pivot rotatably connecting the second member with the sliding member. When the first member slides relative to the sliding member, a latch member on the first member is pressed by the sliding member to a retracted position. When the sliding member is released from an initial angle and rotates relative to the second member, the latch member is pushed by a resilient element and is joined in a recess of the sliding member, thus preventing sliding between the first member and the sliding member.
Abstract:
A handheld electronic device including a first body, a second body and a linkage is provided. The second body is stacked on the first body, and a first fulcrum at an end of the second body is slidably disposed on the first body. The linkage provided with an end pivotally connected to the first body via a pivot and another end slidably disposed on the second body via a second fulcrum is located between the first body and the second body. When the electronic device is transformed from a retracted state to an expanded state, the second body slides relative to the first body and then the second fulcrum is raised to form an included angle between the first body and the second body.
Abstract:
A handheld electronic device including a first body, a second body, a sliding module, and a shielding member is provided. The sliding module drives the first body and the second body transforming between a retracting state and a spreading state. The sliding module includes a sliding member, a fixing member and a driving member. The sliding member has an opening and when the first body and the second body configure in the spreading state, a part of the opening is exposed. The shielding member is coupled to the driving member. When the first body and the second body are transformed from the retracting state to the spreading state, the driving member drives the shielding member sliding with respect to the sliding member to shield the part of the opening.
Abstract:
A sliding mechanism is provided, including a first member, a second member, a slider, a wire, and a flexible printed circuit (FPC). The first member and the slider are movable with respect to the second member. The wire connects the first member with the slider. The FPC is extended through a first opening of the slider and a second opening of the second member. When the first member slides with respect to the second member along a first direction, the slider and the FPC are dragged by the wire along a second direction opposite to the first direction.
Abstract:
An electronic device is provided, including a first module, a second module movable relative to the first module, and an elastic component. The second module has a slot and a convex surface on opposite sides thereof, wherein a sliding portion of the first module is movably received in the slot. When the second module moves relative to the first module to a closed or open position, the sliding portion abuts a first or second end surface of the slot. The elastic component is disposed in the first module and has a retractable end portion contacting the convex surface. When the second module moves with respect to the first module, the end portion slides along the convex surface and exerts an elastic force on the second module.
Abstract:
A connector and an electronic apparatus and a combination comprising the connector for first and second joints are disclosed. The connector includes a base, a plurality of first pins, and a plurality of second pins. The base has a first and a second connecting surface. The first pins are disposed on the first connecting surface and the quantity of the first pins is the same as the pin quantity of the first joint. In addition, the second pins are disposed on the second connecting surface and the total quantity of the second pins and the first pins is the same as the pin quantity of the second joint. The base may include two convex parts and a concave part. The first connecting surface and the second connecting surface are disposed on surfaces of the two convex parts respectively. The concave part accommodates the two convex parts.
Abstract:
A portable electronic device comprises a base, a cover and a linkage mechanism. The linkage mechanism comprises a first linkage assembly and a second linkage assembly. The first linkage assembly pivots to the cover. The second linkage assembly pivots to the first linkage assembly and the base, respectively. The second linkage assembly is movably installed on the base.
Abstract:
A wireless communication device having an antenna area includes at least a first component, a second component and a connector. The connector is made of ceramic material and is disposed in the antenna area for fixing and connecting the first component and the second component so as to avoid interference with the antenna. Adopting the ceramic connecters enables the wireless communication device to have the advantages of good locking performance, good antennal transmission efficiency and elegant appearance simultaneously and to provide an electrostatic shielding function.
Abstract:
For a communication device having a touch module or a touch display module, a near field communicable NFC antenna pattern is disposed on a component above a touch sensor unit of the touch module or the touch display module, which places the NFC antenna pattern away from the shielding easily generated from the metallic frame or metallic housing of the communication device. The NFC antenna pattern may be printed on a bottom side, a top side, or in the interior of a cover lens of the touch module or the touch display module, or on a surface of a deco film outside the cover lens. A ferrite sheet may also be disposed between the NFC antenna pattern and the touch sensor unit for further preventing electromagnetic interference from the touch sensor unit or other internal components.