Abstract:
An electronic device includes a housing, a support board rotatably retained in the housing to support the electronic device after the support board rotates relative to the housing, a rotation module. The support board includes a main body and a sleeve formed at an end of the main body, the sleeve includes a first end and a second end opposite to the first end. The rotation module includes a hinge and a shaft, the shaft rotatably retains the first end to the housing, the hinge rotatably hinges the second end to the housing.
Abstract:
A portable electronic device includes a body defining a receiving groove and an illuminating module. The illuminating module includes a light source mounted inside of the body, a control circuit connected to the light source and controlling the light source to irradiate light, and a light guiding strip received in the receiving groove and at least one end of the light guiding strip facing the light source. The light source irradiates light, and the light guiding strip receives and guides the irradiated light around the body.
Abstract:
A new architecture and method of a cellular phone embedded system consists of an application system interface sector and an execution system interface sector. The application system interface sector includes an application program executed on a cellular phone platform system, and a conversion to a PIFF format is performed by a program compiling software and an MVM application program code. The converted PIFF format is downloaded to the execution system interface sector, so as to enable an internal OS management system to be an open system program sector. The execution system interface sector contains an MVM subsystem, and the converted PIFF format is linked to an MVM system program code (ORGAN.lib) by an MVM internal system program operating platform and the application system interface sector. Moreover, an active fast dynamic address linking and static address linking is used to constitute a new architecture of system platform.
Abstract:
A new architecture and method of a cellular phone embedded system consists of an application system interface sector and an execution system interface sector. The application system interface sector includes an application program executed on a cellular phone platform system, and a conversion to a PIFF format is performed by a program compiling software and an MVM application program code. The converted PIFF format is downloaded to the execution system interface sector, so as to enable an internal OS management system to be an open system program sector. The execution system interface sector contains an MVM subsystem, and the converted PIFF format is linked to an MVM system program code (ORGAN.lib) by an MVM internal system program operating platform and the application system interface sector. Moreover, an active fast dynamic address linking and static address linking is used to constitute a new architecture of system platform.
Abstract:
A virtual memory device includes a bridge circuit wherein in an integrated SOC device, a bridge circuit with less than 10% die size and a non-volatile XIP random access memory is used to connect to a high efficiency memory bridge circuit, so as to facilitate an improvement of boot-up speed and MMI initialization of a portable mobile device, and performance of network searching and network protocol of a wireless station, as well as a reduction of cost of the entire memory, upon applying inside the portable wireless mobile device. The invention includes an integrated SOC application system interface, incorporating a NAND flash memory, an XIP non-volatile random access memory, a programmable MIF bridge, and a volatile XIP random access memory, is used to perform a virtual memory without an MCU system control interface being a new architecture of MCU system control interface, by means of software simulation.
Abstract:
An exemplary legend printing stencil for printing a circuit substrate for manufacturing a number of printed circuit board is provided. The stencil includes at least a first printing portion, at least a second printing portion and a junction portion between the first printing portion and the second printing portion. The first printing portion and the second printing portion each define a number of legend holes therein. The first printing portion and the second portion are configured for attaching on and covering the corresponding circuit board unit of the circuit substrate to print legends on the circuit board unit. The junction portion defines a slot therein and is configured for attaching on and covering the corresponding connection portion of the circuit substrate to print a legend ink layer on the connection portion. A method for manufacturing a number of printed circuit boards using the stencil is also provided.