Abstract:
An electronic device includes a housing and an electronic module. The housing includes a transparent main body, a masking layer partially adhered to the transparent main body, and a cover. A bare area is exposed forming the masking layer to define a transparent window. The housing defines a receiving chamber and an open end communicating with the receiving chamber. The electronic module includes a touch display screen. The electronic module is received in the receiving chamber, the touch display screen aligns to the transparent window, and the cover seals the open end. The present disclosure further discloses a housing for the electronic device and a method for making the housing.
Abstract:
A housing includes housing and a cover. The housing defines a receiving chamber and an open end communicating with the receiving chamber. The housing includes an opaque plastic member and a transparent glass member adhered to the plastic member. The opaque plastic member defines a display window hole. The cover seals the open end. The present disclosure further discloses an electronic device using the housing.
Abstract:
An exemplary electrophoretic coating method and an electroplated shell (800) manufactured thereby is provided. The electrophoretic coating method includes the following steps. A first step (Step S1) is to mold a base shell (500). The base shell includes a base body (50), a shell body (60), and a connecting body (70). The shell body and the connecting body are molded with the base body. The connecting body connects with the shell body. A second step (Step S2) is to pretreat the shell body and the connecting body. Thus, conducting films are formed on the shell body and connecting body. A third step (Step S3) is to electrophoretically coat the preliminarily treated base shell, so as to form electroplated layers on the shell body. A fourth step (Step S4) is to remove the connecting body so as to form/yield the electroplated shell.
Abstract:
A housing includes housing and a cover. The housing defines a receiving chamber and an open end communicating with the receiving chamber. The housing includes an opaque plastic member and a transparent glass member adhered to the plastic member. The opaque plastic member defines a display window hole. The cover seals the open end. The present disclosure further discloses an electronic device using the housing.
Abstract:
An electronic device includes a housing and an electronic module. The housing includes a transparent main body, a masking layer partially adhered to the transparent main body, and a cover. A bare area is exposed forming the masking layer to define a transparent window. The housing defines a receiving chamber and an open end communicating with the receiving chamber. The electronic module includes a touch display screen. The electronic module is received in the receiving chamber, the touch display screen aligns to the transparent window, and the cover seals the open end. The present disclosure further discloses a housing for the electronic device and a method for making the housing.
Abstract:
A housing includes a hollow sleeve, a top wall, and a cover. The top wall is integrally formed with the hollow sleeve and seals an open end of the hollow sleeve. The hollow sleeve and the top wall include an opaque first molded article and a transparent molded article. The first molded article defines a display window hole. The second molded article is formed on the first molded article and filled in the display window hole. The cover seals the other open end facing the open end which is sealed by the top wall. The present disclosure further discloses a method for making the housing.
Abstract:
An exemplary electrophoretic coating method and an electroplated shell (800) manufactured thereby is provided. The electrophoretic coating method includes the following steps. A first step (Step S1) is to mold a base shell (500). The base shell includes a base body (50), a shell body (60), and a connecting body (70). The shell body and the connecting body are molded with the base body. The connecting body connects with the shell body. A second step (Step S2) is to pretreat the shell body and the connecting body. Thus, conducting films are formed on the shell body and connecting body. A third step (Step S3) is to electrophoretically coat the preliminarily treated base shell, so as to form electroplated layers on the shell body. A fourth step (Step S4) is to remove the connecting body so as to form/yield the electroplated shell.
Abstract:
A housing includes a hollow sleeve, a top wall, and a cover. The top wall is integrally formed with the hollow sleeve. The top wall seals an end of the hollow sleeve to define a receiving chamber. An open end is formed at an opposite end of the top wall. The open end communicates with the receiving chamber. The hollow sleeve and the top wall include a transparent first molded article, a decorative layer, and a transparent second molded article. The decorative layer partially is formed on the transparent first molded article, and a transparent display window of the transparent first molded article is exposed from the decorative layer. The transparent second molded article is formed on the decorative layer and the transparent display window. The cover seals the open end. The present disclosure further discloses a method for making the housing.