Flex wrap circuit assembly techniques
Methods, systems, and devices for manufacturing a wearable ring device are described. The manufacturing assembly may rotate, by a rotational component, an inner housing member of the wearable ring device to a radial orientation based on an optical alignment process. A positioning component of the manufacturing assembly may insert and align an optical component of a flexible circuit assembly into at least one aperture of the inner housing member by moving the flexible circuit assembly from a first position adjacent to the inner housing member to a second position on the inner housing member. The manufacturing assembly may secure one or more edges of the flexible circuit assembly onto the inner housing member using a plurality of arms of the positioning component and apply, by an automatic adhesive dispensing device of the manufacturing assembly, a polymeric material to adhere the flexible circuit assembly to the inner housing member.
1 . A method of manufacturing a wearable ring device comprising a plurality of optical components, comprising:
rotating, by a rotational component of a manufacturing assembly, an inner housing member of the wearable ring device to a radial orientation based at least in part on an optical alignment process by an alignment component of the manufacturing assembly, wherein the inner housing member of the wearable ring device comprises a plurality of apertures;
inserting an optical component of the plurality of optical components of a flexible circuit assembly into at least one aperture of the plurality of apertures of the inner housing member by moving the flexible circuit assembly, via a positioning component of the manufacturing assembly, from a first position adjacent to the inner housing member to a second position on the inner housing member, wherein the optical component is aligned within the at least one aperture of the plurality of apertures based at least in part on inserting the optical component into the at least one aperture;
securing one or more edges of the flexible circuit assembly onto the inner housing member using a plurality of arms of the positioning component after inserting the optical component into the at least one aperture; and
applying, by an automatic adhesive dispensing device of the manufacturing assembly, a polymeric material to adhere the flexible circuit assembly to the inner housing member.
2 . The method of claim 1 , further comprising:
positioning a first edge of the one or more edges of the flexible circuit assembly onto the inner housing member using a first arm of the plurality of arms of the positioning component; and
adhering the first edge of the one or more edges of the flexible circuit assembly onto the inner housing member based at least in part on applying the polymeric material.
3 . The method of claim 1 , further comprising:
positioning a second edge of the one or more edges of the flexible circuit assembly onto the inner housing member using a third arm of the plurality of arms of the positioning component; and
adhering the second edge of the one or more edges of the flexible circuit assembly onto the inner housing member based at least in part on applying the polymeric material.
4 . The method of claim 1 , further comprising:
aligning the at least one aperture of the plurality of apertures of the inner housing member to the optical component of the plurality of optical components of the flexible circuit assembly based at least in part on a locking mechanism to lock the inner housing member in the radial orientation after rotating the inner housing member to the radial orientation.
5 . The method of claim 1 , wherein the optical alignment process by the alignment component further comprises:
determining, by a video component of the manufacturing assembly, an initial radial orientation of the inner housing member relative to the optical component of the plurality of optical components of the flexible circuit assembly, wherein rotating the inner housing member to the radial orientation is based at least in part on determining the initial radial orientation of the inner housing member.
6 . The method of claim 1 , further comprising:
advancing the positioning component from the first position adjacent to the inner housing member to the second position, wherein inserting the optical component of the plurality of optical components of the flexible circuit assembly into the at least one aperture of the plurality of apertures of the inner housing member is based at least in part on advancing the positioning component of the manufacturing assembly.
7 . The method of claim 1 , further comprising:
applying a light source to the flexible circuit assembly to create a seal between the flexible circuit assembly and the inner housing member, wherein the light source is applied after applying the polymeric material.
8 . The method of claim 7 , further comprising:
rotating, by the rotational component, the inner housing member while applying the light source to the flexible circuit assembly.
9 . The method of claim 1 further comprising:
positioning a middle portion of the flexible circuit assembly onto the inner housing member using a second arm of the plurality of arms of the positioning component.
10 . The method of claim 1 , further comprising:
rotating, by the rotational component, the inner housing member while applying the polymeric material to adhere the flexible circuit assembly to the inner housing member.