Abstract:
An example of a waterproof hinge and button configuration for a head mounted device is provided. A magnet may be attached to the button, and a sensor may be positioned adjacent to the button to detect movement of the button. For example, the sensor may detect when the button is fully pressed, partially pressed, or not pressed at all by the level of magnetic flux density detected by the sensor. In addition, the sensor may detect an opened or closed position of the hinge based on the magnetic field polarity of the magnet. Due to the implementation of the sensor, the electrical components of the button are able to be removed so as to make the button-hinge configuration waterproof.
Abstract:
An example of a hinge mechanism for a head mounted device is provided. Aspects of the disclosure relate generally to folding the head mounted device in a secure fashion for convenient storage and transportation. The head mounted device may have an asymmetrical shape with an enlarged and elongated first side arm. In this regard, the hinge mechanism allows the head mounted device to fold at an angle so as not to interfere with a second side arm of the head mounted device. The head mounted device may also implement a flexguard component configured to bend along with the hinge structure so as to protect internal components that become exposed due to the folding of the hinge. An axial cam system is also implemented to allow for the secure and comfortable folding and opening of the head mounted device.
Abstract:
A head-wearable device includes a center support extending in generally lateral directions, a first side arm extending from a first end of the center frame support and a second side arm extending from a second end of the center support. The device further includes an extension arm configured to present information to the user via a display element. The extension arm extends at least partially along the first side arm on a first side of the center support and further extends from the first side arm to a display end that supports the display element in a position on a second side of the center support. The extension arm has a joint therein configured for movement of the display element at least in a direction having a lateral component relative to the center support.
Abstract:
A head-mounted device includes a central frame support and at least one removably connected optics arm. The at least one optics arm has first and second free ends that are removably connected to a second end of the central frame support at a point between the first and second free ends. The optics arm extends away from the central frame support and is configured to present information to the user via a display device.
Abstract:
An example of a hinge mechanism for a head mounted device is provided. Aspects of the disclosure relate generally to folding the head mounted device in a secure fashion for convenient storage and transportation. The head mounted device may have an asymmetrical shape with an enlarged and elongated first side arm. In this regard, the hinge mechanism allows the head mounted device to fold at an angle so as not to interfere with a second side arm of the head mounted device. The head mounted device may also implement a flexguard component configured to bend along with the hinge structure so as to protect internal components that become exposed due to the folding of the hinge. An axial cam system is also implemented to allow for the secure and comfortable folding and opening of the head mounted device.
Abstract:
A head-mounted device includes a central frame support and at least one removably connected optics arm. The at least one optics arm has first and second free ends that are removably connected to a second end of the central frame support at a point between the first and second free ends. The optics arm extends away from the central frame support and is configured to present information to the user via a display device.