Abstract:
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.
Abstract:
A band or frame for wearing on a person's head, as for example eyewear, is provided with a frame that has an inner frame member that is slidable relative to an outer frame element for stiffness or sizing adjustment of the band.
Abstract:
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.
Abstract:
An example method includes detecting a signal that represents a strain of a frame of a wearable computing device and causing the wearable computing device to perform a function based on the detected signal. The method may also include generating a representation of the detected signal, comparing the representation of the signal to a threshold value, and causing the wearable computing device to perform a function based on the comparison to the threshold value. An example wearable computing device and an example non-transitory computer readable medium related to the example method are also disclosed herein.
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 wearable device assembly is provided that includes a bone conduction transducer (BCT) and an elastomeric isolation member that provides acoustic isolation between the BCT and a housing of the head-mounted wearable device assembly. The elastomeric isolation member may be a polyurethane material having a hardness (durometer) on the order of 60 A. The material arrangement and durometer may be chosen to provide a frequency response and/or acoustic leakage within a predetermined range, which results in high quality sound reproduction for the wearer. The elastomeric isolation member may be secured to an interior portion of the housing by a pair of mounting posts. The elastomeric isolation member physically and acoustically separates the BCT from the interior of the housing and other components therein.
Abstract:
A wearable device assembly includes a device module having a component housing with a display configured to present information to the user, an auxiliary housing unit remote from the component housing, and a connecting member extending between the housing unit and the auxiliary housing unit. The device also includes a head retention structure having a center support with a nosepiece extending therefrom, a first side arm extending from the center frame support on a first side thereof, and an attachment arm extending from the center support on a second side thereof. The device module and the head retention structure are configured for releasable assembly together by removably attaching a first attachment feature on the connecting arm with the second attachment feature on the retention member. When assembled together, the device assembly is wearable on the head of the user.
Abstract:
A bone conduction transducer for a wearable computing system is provided. The bone conduction transducer includes a magnetic diaphragm configured to vibrate in response to a time-changing magnetic field generated by an electromagnetic coil operated according to electrical input signals. The magnetic diaphragm is elastically suspended over the electromagnetic coil to allow excursion toward and away from the coil by a pair of cantilevered leaf springs projected from opposing sides of the transducer to connect to opposing sides of the magnetic diaphragm. The bone conduction transducer is included in the wearable computing system to be worn against a bony structure of the wearer that allows acoustic signals to propagate to the wearer's inner ear and achieve sound perception in response to vibrations in the bone conduction transducer.