Abstract:
A dynamic data distribution method in a private network and an associated electronic device are provided. The private network includes: a first pairing connection between a first electronic device, a second electronic device, and a second pairing connection between the first electronic device and a third electronic device. The method includes the steps of: receiving sensor data from the second electronic device by the first electronic device; notifying the second electronic device to build a third pairing connection with the third electronic device according to a determination result between the first electronic device and the third electronic device; and terminating the first pairing connection and retrieving the sensor data from the second electronic device through the third electronic device by the first electronic device when the third pairing connection has been built.
Abstract:
A method for accessing a network in an electronic system and associated portable device are provided. The portable device includes; a transceiver, supporting a plurality of predetermined communication protocols; and a processor, configured to connect the portable device to a connectivity service device in an electronic system via the transceiver when the portable device enters a coverage region of the connectivity service device. The connectivity service device retrieves service information from a plurality of electronic devices that are connected to the connectivity service device, to build a service list. The processor retrieves the service list from the connectivity service device, and determines a service from the service list to be used for communicating with the plurality of the electronic devices.
Abstract:
The present invention provides a microcontroller, wherein the microcontroller includes a processor, a first memory and a cache controller. The first memory includes at least a working space. The cache controller is coupled to the first memory, and is arranged for managing the working space of the first memory, and dynamically loading at least one object from a second memory to the working space of the first memory in an object-oriented manner.
Abstract:
A microcontroller includes a processor, a memory, a working space management unit and a memory monitor. The memory has at least a working space, wherein the working space includes a plurality of blocks. The working space management unit is implemented by software, and is arranged for managing the working space of the first memory. The memory monitor is implemented by hardware circuit, and is arranged for monitoring the blocks, and recording monitoring results corresponding to the blocks of the first memory, wherein the recorded monitoring results comprise information about whether data of the blocks is modified or not.
Abstract:
The present invention provides a microcontroller, wherein the microcontroller includes a processor, a first memory and a cache controller. The first memory includes at least a working space. The cache controller is coupled to the first memory, and is arranged for managing the working space of the first memory, and dynamically loading at least one object from a second memory to the working space of the first memory in an object-oriented manner.
Abstract:
The present invention provides a data aggregator serving between at least one data source and at least one electronic device, wherein the data aggregator is arranged to wirelessly communicate with the data source and the electronic device, and the data aggregator comprises a memory comprising a data cache, a backup memory and a FIFO buffer, and a controller for controlling a use of the memory. The controller selects at least one of the data cache, the backup memory and the FIFO buffer to store data received from the data source according to characteristics of the data provided by the data source, and forwards the data stored in the data cache, the backup memory or the FIFO buffer to the electronic device.
Abstract:
The present invention provides a microcontroller, wherein the microcontroller includes a processor, a first memory and a cache controller. The first memory includes at least a working space. The cache controller is coupled to the first memory, and is arranged for managing the working space of the first memory, and dynamically loading at least one object from a second memory to the working space of the first memory in an object-oriented manner.
Abstract:
A method for controlling a plurality of network interfaces of an electronic device includes: providing at least one table comprising information associated with a plurality of routing costs, wherein the routing costs correspond to at least paths between each of the network interfaces of the electronic device and the other electronic devices; and referring to the at least one table to select a specific network interface to transmit/receive data, and to disable at least one of the unused network interfaces.
Abstract:
A method for controlling data transmission between a client device and a server is provided. The method includes the following steps: generating control information according to a data access rate of the client device and a data report rate of the server; and referring to the control information to manage at least one of a data access operation of the client device and a data reporting operation of the server.
Abstract:
The present invention provides a microcontroller, wherein the microcontroller includes a processor, a first memory and a cache controller. The first memory includes at least a working space. The cache controller is coupled to the first memory, and is arranged for managing the working space of the first memory, and dynamically loading at least one object from a second memory to the working space of the first memory in an object-oriented manner.