Abstract: In an automatic test system, a test computer of a kind of test equipment communicates with a loading-and-unloading computer of a kind of loading-and-unloading equipment. The loading-and-unloading equipment automatically loads a plurality of target devices on a plurality of test carriers according to the state of the test equipment, and the test equipment automatically tests the target devices loaded on the test carriers according to the state of the loading-and-unloading equipment. In addition, after the test is completed, the loading-and-unloading equipment automatically unloads the tested target devices from the test carriers, and automatically sorts the tested target devices according to the test results generated by the test equipment.
Abstract: Security functions for a memory corresponding to a smart security storage may be facilitated or executed through operation of utility application corresponding to a smart device. For example, encryption/decryption of data stored on the memory may be facilitated or executed by a security module under control of an access application corresponding to the smart device. Data securely stored on the memory may be explored and accessed by the smart device or a host computing device under control of the access application.
Abstract: Security functions for a memory corresponding to a smart security storage may be facilitated or executed through operation of utility application corresponding to a smart device. For example, encryption/decryption of data stored on the memory may be facilitated or executed by a security module under control of an access application corresponding to the smart device. Data securely stored on the memory may be explored and accessed by the smart device or a host computing device under control of the access application.
Abstract: A method for use with a public cloud network is disclosed. The method includes setting up at least one virtual machine, at least one private cloud call-back server (PCCBS) and at least one smart device client on the side of the PCCBS to provide cloud based web services, and at least one private cloud routing server (PCRS) and at least one smart device client on the side of the PCRS in a client server relationship. The virtual machine and PCCBS usually reside in a hyperscale data center, while the PCRS resides in the client's remote premises. An internet platform owner that maintains the virtual machine, offers to a subscriber to host the PCCBS in the virtual machine, constructs and deploys a community pair of peer-to-peer communication relationship between at least one PCCBS Device Client and a PCRS Device Client.
Abstract: A method for use with a public cloud network is disclosed. The method includes setting up at least one private cloud routing server (PCRS) and at least one smart device client on the side of the PCRS in a client server relationship. It also includes setting up at least another smart device client on the side of the PCCBS in a client server relationship with the at least one private cloud call-back server (PCCBS). The private cloud call-back server acts as a middleman to relay communication between the smart device client on the side of the PCCBS and the private cloud routing server. The PCCBS will call back the private cloud routing server on demand based on the smart device client request. The at least one private cloud call-back server includes a first message box associated therewith.
Abstract: A private cloud routing server client device (PCRSCD) is disclosed which connects to a private cloud routing server (PCRS) by a connection based on whether the PCRS is in a same Local Area Network (LAN) as the PCRSCD and whether the PCRS is directly connected to the public cloud network.