Abstract:
In one example, a keyboard assembly for an electronic device is disclosed. The keyboard assembly may include a keyboard and an upper case having a space for accommodating the keyboard. The keyboard may be bonded to the upper case by at least one laser spot weld.
Abstract:
Example implementations relate to modular keyboards. In an example, a modular keyboard can include a keyboard module including keys, where the keyboard module includes a plurality of locking mechanisms, and a lattice removably coupled by the plurality of locking mechanisms to the keyboard module, where the lattice comprises a keyboard overlay.
Abstract:
Devices, systems, and methods of the present disclosure are directed to facilitating control of a graphical user interface associated with performing a medical procedure. Inputs can be received from a plurality of input devices interacting with respective sets of input options displayed on respective portions of the graphical user interface. One of the input devices can be operable by a physician, during a medical procedure, to navigate a set of input options to modify a graphical representation of at least one of a medical device and an anatomic structure displayed on the graphical user interface.
Abstract:
본 발명은 가변형 점자모듈이 구비된 버튼에 관한 것으로서, 더욱 상세하게는 시각 장애인이 손의 감각을 이용해 정보를 획득 할 수 있도록 다수의 돌기가 상하로 움직이며 점자, 도형, 이미지 등의 정보를 디스플레이 하는 가변형 점자모듈이 구비된 버튼을 제공한다.
Abstract:
A multi-language keyboard is disclosed. The multi-language keyboard includes a plurality of keys, a plurality of chambers, a plurality of characters, and a plurality of light sources. Each key includes an upper surface and a lower surface. The plurality of chambers is formed on the lower surface of the each key. Each character is in a plurality of languages. A character in a language is written on a region on the upper surface associated with each chamber. The plurality of light sources is disposed in each of the plurality of chambers. The plurality of light sources enables switching between the plurality of languages.
Abstract:
The invention relates to a button, base for buttons and a keyboard with such button, which are used in electronic equipment for data entry, requiring keyboards. The button for a keyboard includes a body for the button (4), a contact element (5) with a contact layer (6), an elastic spring element (3) and a detachable cap (8) which is detachably attached to the upper surface of the body of the button (4), an upper surface of the cap forming the contact- working surface of the button has inscription, which indicates the function of the button. The detachable cap (8) has a head (10) and at least one coupling element (11), projecting from its lower size, wherein the coupling element (11) is inserted into its corresponding in shape and position coupling opening (9) provided in the body of the button (4). The coupling elements can have at its lower end engaging element in order to be engaged with a respective supporting element provided in the body of the button (4) at the lower end of the corresponding through hole opening.
Abstract:
The present invention is about manufacturing a laptop shaped keyboard and display screen. The said keyboard and screen can be encased in metal, composite material, polymer and plastic materials and /or a combination of some or all of the mentioned materials or indeed, any other materials. The keyboard, display screen and case can be of different sizes or weights. The display screen can be of different resolutions and types. It is advisable to use less energy consuming one. Different coating also can be applied. The case can have its own rechargeable battery to power the display screen, keyboard and other peripherals such as memory and or different possible digital and/or analogue outlets.
Abstract:
The description relates to laminated input devices, such as keyboards. One example can include a laminated light-distribution assembly and a key assembly adhered in light receiving relation to the laminated light-distribution assembly as a laminated input device having a neutral axis in the light-distribution assembly.
Abstract:
According to various embodiments, an information distribution method may be provided. The information distribution method may include: receiving computer program execution information related to an execution of a computer program from a first computing device; receiving keystroke information related to input to the computer program from the first computing device; and transmitting the computer program execution information and the keystroke information to at least one further computing device.
Abstract:
A system includes a surface having a demarcated area and discrete areas disposed on the surface. The discrete areas may each be configured to receive user input. At least a portion of the discrete areas overlap the demarcated area. The system further includes a sensing layer disposed underneath the surface. The sensing layer may be configured to sense force applied to the surface in response to the user input.