Abstract:
This application is directed to a physical assembly including a magnet mount for physically receiving a physical module that includes a housing having a rear surface of a first shape. The magnet mount includes a first surface, a second surface and a magnetic material. The first surface is configured to attach to a mounting surface. The second surface has a second shape that is substantially complementary to the first shape, and is configured to engage the rear surface of the housing of the physical module. The magnetic material is disposed between the first and second surfaces and configured to magnetically couple to a magnetic material of the physical module. When the physical module is magnetically coupled to the magnet mount, an adjustable union between the magnet mount and the physical module is formed permitting adjustment of an angle of orientation of the physical module with respect to the magnet mount.
Abstract:
This application discloses a stand assembly that includes an upper portion for holding electronic components and a lower portion for supporting the upper portion. The lower portion including a base, a joint, and a second fastener structure configured to mate with a first fastener structure of the upper portion. The first fastener structure and the joint are configured to respectively provide a first degree of freedom of motion and a second degree of freedom of motion of the upper portion with respect to the lower portion. Movement of the upper portion at the first degree of freedom has substantially consistent resistance through first part of a first full range of motion associated with the first degree of freedom of motion. Movement of the upper portion at the second degree of freedom has substantially consistent resistance through a second full range of motion associated with the second degree of freedom.
Abstract:
This application discloses a camera including a holding element and a base assembly. The holding element further includes a camera portion for holding a camera sensor, an extended portion that extends from the camera portion, and a fastener structure coupled to an end of the extended portion. The base assembly further includes a base shaped to rest against a supporting surface, and a joint structure configured to mate with the fastener structure. The fastener structure and the joint structure are configured to provide a first degree of freedom of motion and a second degree of freedom of motion of the holding element with respect to the base. The movement of the receiving element at the first degree of freedom is unlimited in a first direction of travel, and the movement of the receiving element at the second degree of freedom is limited in a second direction of travel.
Abstract:
This application discloses a stand assembly that includes a receiving element for physically receiving a module, and a base assembly for supporting the receiving element. The receiving element further includes a module holding structure, an extended portion, and a first fastener structure coupled to an end of the extended portion. The base assembly includes a base, and a second fastener structure coupled to the base at a joint and configured to mate with the first fastener structure. The first fastener structure and the joint are configured to respectively provide a first degree of freedom of motion and a second degree of freedom of motion of the receiving element with respect to the base. The movement of the receiving element at the first degree of freedom is unlimited in a first direction of travel associated with the first degree of freedom.
Abstract:
This application discloses a stand assembly that includes a receiving element for physically receiving a module, and a base assembly for supporting the receiving element. The receiving element further includes a module holding structure, an extended portion, and a first fastener structure coupled to an end of the extended portion. The base assembly includes a base, and a second fastener structure coupled to the base at a joint and configured to mate with the first fastener structure. The first fastener structure and the joint are configured to respectively provide a first degree of freedom of motion and a second degree of freedom of motion of the receiving element with respect to the base. The movement of the receiving element at the first degree of freedom has substantially consistent resistance through first part of a first full range of motion associated with the first degree of freedom of motion.
Abstract:
This application discloses a stand assembly that includes a receiving element for physically receiving a module, and a base assembly for supporting the receiving element. The receiving element further includes a module holding structure, an extended portion, and a first fastener structure coupled to an end of the extended portion. The base assembly includes a base, and a second fastener structure coupled to the base at a joint and configured to mate with the first fastener structure. The first fastener structure and the joint are configured to respectively provide a first degree of freedom of motion and a second degree of freedom of motion of the receiving element with respect to the base. The movement of the receiving element at the first degree of freedom has substantially consistent resistance through first part of a first full range of motion associated with the first degree of freedom of motion.
Abstract:
This application discloses a method of preparing an assembly. A base assembly is provided and includes a base, and a second fastener structure coupled to the base at a joint. The base assembly is then attached to a receiving element that is configured to physically receive a module and includes a first fastener structure, when the first fastener structure is fastened onto the second fastener structure until the first fastener structure reaches a tightened position. After the first fastener structure reaches the tightened position, the receiving element is rotated reversely at the first degree of freedom of motion by a first angle to orient the receiving element to a nominal position. At the nominal position, the receiving element and the module received thereby are configured to face substantially up when they are flipped down via the joint at the second degree of freedom of motion.
Abstract:
The various implementations described herein include a video camera assembly that includes: (1) a housing; (2) an image sensor positioned within the housing and having a field of view corresponding to a scene in the smart home environment; and (3) a concave-shaped front face positioned in front of the image sensor such that light from the scene passes through the front face prior to entering the image sensor; where the front face includes: (a) an inner section corresponding to the image sensor; and (b) an outer section between the housing and the inner section, the outer section having a concave shape that extends from an outer periphery of the outer section to an inner periphery of the outer section; and where the concave shape extends around an entirety of the outer periphery.
Abstract:
This application discloses a stand assembly that includes a receiving element for physically receiving a module, and a base assembly for supporting the receiving element. The receiving element further includes a module holding structure, an extended portion, and a first fastener structure coupled to an end of the extended portion. The base assembly includes a base, and a second fastener structure coupled to the base at a joint and configured to mate with the first fastener structure. The first fastener structure and the joint are configured to respectively provide a first degree of freedom of motion and a second degree of freedom of motion of the receiving element with respect to the base. The movement of the receiving element at the first degree of freedom is unlimited in a first direction of travel associated with the first degree of freedom.