Abstract:
A user activation of an image capture function of a mobile device is received. The image capture function is for a surround image mode. Two or more camera lenses are approximately concurrently activated. A front-side image from a first camera lens and a rear-side image from a second camera lens can be optically captured. A second front-side image from the first camera lens and a second rear-side image from the second camera lens can be optically captured responsive to a manual pan/tilt/zoom operation of the front-side or rear-side lense. Content from the front-side images and content from the rear-side images are recorded in a non-transitory storage medium of the mobile device within a single file for a surround mode image.
Abstract:
A user activation of an image capture function of a mobile device is received. The image capture function is for a surround image mode. Two or more camera LENSs are approximately concurrently activated. Responsive to activating the LENSs, two or more front-side images from a first camera LENS and two or more rear-side image from a second camera LENS are optically captured. Content from the front-side images and content from the rear-side images are recorded in a non-transitory storage medium of the mobile device within a single file for a surround mode image.
Abstract:
A user activation of an image capture function of a consumer electronic device is received. The image capture function is for a surround image mode. Two or more camera lenses of a consumer electronic device case are approximately concurrently activated. Responsive to activating the lenses, a front-side image from a first camera lens and a rear-side image from a second camera lens are optically captured. Content from the front-side image and content from the rear-side are recorded in a non-transitory storage medium of the mobile device within a single file for a surround mode image.
Abstract:
A 360 degree camera device that has a housing and cooling mechanism which manages heat created by the devices components and allows the device to continuously run for at least 24 hours.
Abstract:
A screw based coupler mechanism can include a head, a shank, and/or a helical ridge wrapped around the shank. The shank can include an electronic connector with one or more electronic pin outs. The shank can be configured to be physically and electronically mated to an electronic device. The electronic device can include a base and a hollow region surrounded by a matching helical ridge which securely mate the component to the shank. In one embodiment, the electronic device can be a panoramic camera which can be secured to a screw based coupler of a mounting platform.
Abstract:
An accelerometer within fixed lenses of a 360 degree camera can be polled for a first sensor reading for a motion data. The data can be changes in a magnitude and/or a direction of a yaw, pitch, and/or roll movement. A second sensor reading of a different motion data from a different accelerometer within a base of the camera affixed to a surface can be obtained. The different motion data can be changes in a magnitude and/or a direction of a yaw, pitch, and/or roll movement. A delta between the datas can be determined, when lens shake or camera shake is detected within at least one of the plurality of fixed lenses. Optics within each of the fixed lenses or camera image sensors can be adjusted based on the delta during media capture.
Abstract:
A 360 degree camera device that has a housing and cooling mechanism which manages heat created by the devices components and allows the device to continuously run for at least 24 hours.
Abstract:
A 360° camera can be embedded within a fire pull station of a fire alarm system, the fire alarm system can include at least one of a fire detection component, a signaling component, and control panel. The fire pull station can include a mounting bracket and a housing. The mounting bracket can securely affixes the station to a surface. The housing can include of at least one of a power source, a pull, and a circuitry. The 360° camera can include an image sensor and a 360° lense array. The camera can obtain electrical power from the power source of the station.
Abstract:
A user activation of an image capture function of a mobile device is received. The image capture function is for a surround image mode. Two or more camera lenses of a mobile device case are approximately concurrently activated. Responsive to activating the lenses, a front-side image from a first camera lens and a rear-side image from a second camera lens are optically captured. Content from the front-side image and content from the rear-side are recorded in a non-transitory storage medium of the mobile device within a single file for a surround mode image.
Abstract:
A system and method of the present invention present a web based music station. The system includes a website having at least two engine components such as a table of a playlist and a table of a content references. A system includes a controller with an algorithm incorporated therein. The algorithm is configured to retrieve various images and music pre-stored in the controller and presents these images and the music to the users. The system tries to reconstruct the “logical priority chains” of user perception as it relates to both the music and the images. The system then clusterizes picks of the music and the images and the users. The system then binds both music and images together using non-linear mapping to determine preference of each user.