摘要:
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 may further include a nosebridge that is removably coupled to the center frame support. The device may also include a lens assembly that is removably coupled to the center support or the nosebridge. The lens assembly may have a single lens, or a multi-lens arrangement configured to cooperate with display to correct for a user's ocular disease or disorder.
摘要:
A case for a device includes a plurality of walls defining a cavity and an opening to the cavity. A first one of the walls is opposite the opening and is configured as a support surface to support a portion of a first housing of the device and also has a first recess therein configured to receive a portion of at least a first end of a band of the device. A second one of the walls defines an edge of the opening that is configured to extend along a center support of the band with the optical element of the device being positioned between the second one of the walls and the support surface when the device is received in the cavity. The case also includes a lid configured to cover the opening and to selectively enclose the interior cavity.
摘要:
Methods and systems involving a potting process for selectively coating a target surface of a component. An example method may include: (1) dispensing a masking agent into a cavity, wherein the cavity is within a holder; (2) immersing a portion of a component that has a plurality of surfaces into the masking agent, such that at least one portion of a target surface from the plurality of surfaces is not immersed; (3) curing the masking agent such that the masking agent hardens on the portion of the plurality of surfaces of the component immersed in the masking agent; (4) coating the target surface with a coating agent; and (5) separating the masking agent from the portion of the plurality of surfaces of the component immersed in the masking agent.
摘要:
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 may further include a nosebridge that is removably coupled to the center frame support. The device may also include a lens assembly that is removably coupled to the center support or the nosebridge. The lens assembly may have a single lens, or a multi-lens arrangement configured to cooperate with display to correct for a user's ocular disease or disorder.
摘要:
Several methods, devices and systems that provide features for improved activity sport sessions are described. In one embodiment, a multifunctional device includes an inertial measurement unit to sense movements of an activity device (e.g., a board, a surfboard, a windsurfing board, etc.) during an activity sport session and to sense at least one input for indicating a target location during the activity sport session. The device also includes at least one processing unit coupled to the inertial measurement unit. The at least one processing unit is configured to designate a target location in response to the inertial measurement unit sensing an input for indicating the target location, to record the target location, to determine a current location of the activity device, and to compare the current location and the target location. In one example, the at least one processing unit is further configured to generate a directional output if the target location and current location are different.
摘要:
A device is configured to be worn on a user's head. In one aspect, the device includes a center frame support and first and second side arms. Each side arm has a first end connecting to the center frame support and a free end remote from the first end. The device also includes an extension arm that projects from one of the side arms in a direction proximate the center frame support. The extension arm is configured to present information to the user via a display device. The center frame support and the first and second side arms form a band worn on the user's head. In one embodiment, the free end of the first side arm is elongated relative to the free end of the second side arm to form an asymmetric U shape. In another embodiment, a removable or adjustable nose bridge couples to the center frame support.
摘要:
A wearable computing device includes a bone conduction transducer, an extension arm, a light pass hole, and a flexible touch pad input circuit. When a user wears the device, the transducer contacts the user's head. A display is attached to a free end of an extension arm. The extension arm is pivotable such that a distance between the display and the user's eye is adjustable to provide the display at an optimum position. The light pass hole may include a light emitting diode and a flash. The touch pad input circuit may be adhered to at least one side arm such that parting lines are not provided between edges of the circuit and the side arm.
摘要:
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 may further include a nosebridge that is removably coupled to the center frame support. The device may also include a lens assembly that is removably coupled to the center support or the nosebridge. The lens assembly may have a single lens, or a multi-lens arrangement configured to cooperate with display to correct for a user's ocular disease or disorder.
摘要:
Methods and devices for determining whether a head-mountable computing device is donned or doffed are disclosed. In one embodiment, a method is disclosed that includes receiving from at least one capacitive sensor data indicating a rate of change of capacitance, making a comparison of the rate of change of capacitance to a threshold rate of change of capacitance and, based on the comparison, determining whether the head-mountable computing device is donned or doffed. The method further includes, if the head-mountable computing device is donned, causing the head-mountable computing device to operate in a first state, and if the head-mountable computing device is doffed, causing the head-mountable computing device to operate in a second state, where the head-mountable computing device consumes less power in the second state than in the first state.