Abstract:
A mouse adapted to stand or lie on a supporting surface is provided. The mouse includes a housing, a power source and a power switch unit. The power source is disposed in the housing. The power switch unit is disposed in the housing, and includes a pivot shaft, a weight element and a switch circuit board. The weight element pivots on the pivot shaft, wherein the weight element pivots between a first orientation and a second orientation. The switch circuit board is electrically connected to the power source, wherein the switch circuit board includes a first contact and a second contact, and when the weight element is in the second orientation, the weight element electrically connects the first contact to the second contact, and when the weight element is in the first orientation, the weight element is separated from the first contact and the second contact.
Abstract:
A mouse is provided. The mouse includes a first housing, a second housing and a battery module. The second housing is connected with the first housing in a detachable manner. The battery module is fixed on the second housing. The first housing includes a first engage member and the battery module includes a second engage member. The second engage member corresponds to the first engage member and engages with the second engage member. When the second housing is connected with the first housing, the engagement between the first engage member and the second engage member enables the battery module to engage with the first housing.
Abstract:
A keyboard adjusting heat dissipation efficiency of a heat dissipation unit disposed in a host device and including a switching unit, a control unit, and a communication port is disclosed. The switching unit is switched to different states. The control unit generates a control signal according to the state of the switching unit. The communication port transmits the control signal to the host device. The host device adjusts the heat dissipation efficiency of the heat dissipation unit according to the control signal.
Abstract:
A method of manufacturing a self-aligned stylus with high sphericity includes the steps of: forming a polymeric layer on a substrate; placing a sphere on the polymeric layer; softening the polymeric layer to make a portion of the sphere sink into the polymeric layer; forming a specific light absorbing layer on the polymeric layer; illuminating the sphere and the specific light absorbing layer with specific light such that the specific light is focused by the sphere to expose the polymeric layer to form an exposed portion and an unexposed portion; removing the specific light absorbing layer; and baking the polymeric layer and then removing the unexposed portion. A self-aligned stylus with high sphericity is also disclosed.