Abstract:
A hybrid broadcast encryption method is provided. The hybrid broadcast encryption method includes setting initialization values, generating a node secret using the initialization values; generating a private secret using the node secret; sending the node secret and the private secret; generating a broadcast message based on a revoked group; encrypting a session key using a key encryption key (KEK) which is allocated to every user group and the broadcast message; and broadcasting to every user the encrypted session key and the broadcast message.
Abstract:
Inkjet printheads and methods of manufacturing the inkjet printhead are disclosed. The inkjet printhead may include a glue layer disposed between the substrate and a chamber layer. The glue layer may contain a crosslink inhibitor that inhibits cross linkage of a photosensitive resin during an exposing process.
Abstract:
A remote diagnostic system (RDS) data security device and method are provided, in which an interface unit receives an RDS command from a host, a storage unit stores a security setting for RDS data, and a control unit performs an operation for the RDS data according to the RDS command and the security setting, wherein the result obtained by the performance is selectively transmitted externally. Accordingly, since the reading and writing operations of RDS data are performed according to an RDS command received from the host and previously stored security setting, and the result obtained by the reading and writing operations is displayed, data collected in the RDS can be prevented from being transmitted to the server without permission, and data allowed to an authorized user can be transmitted to the server.
Abstract:
Provided is a thermal inkjet printhead that includes a substrate, which may comprise an ink feed hole for supplying ink, a chamber layer, which is stacked on the substrate, and which comprises an ink chamber that is filled with the ink supplied from the ink feed hole, a heater, which is prepared inside the ink chamber and heats the ink, an island, which is formed on the substrate, and which is prepared at an ink inlet port of the ink chamber, and a nozzle layer, which is stacked on the chamber layer, and which comprises a nozzle for ejecting the ink. The walls of the ink chamber and the island that face each other are symmetrical with respect to the center of the nozzle.
Abstract:
An inkjet printhead including a substrate through which an ink feed hole is formed to supply ink, a chamber layer formed on the substrate and including a plurality of ink chambers which are filled with ink supplied from the ink feed hole, a nozzle layer formed on the chamber layer and including a plurality of nozzles through which ink is ejected, a plurality of support walls formed between the substrate and the nozzle layer to support the substrate and the nozzle layer, and a method of fabricating the same.
Abstract:
An ink-jet printhead and a manufacturing method thereof include a substrate on which a space portion is formed, a passage plate installed on the substrate in which an ink chamber is formed to store ink, a nozzle plate installed at a top surface of the passage plate in which a nozzle is formed to eject the ink, and a vibration plate disposed between the substrate and the passage plate to generate a pressure for ejecting the ink by changing a volume of the ink chamber. The vibration plate includes a base layer formed at a top surface of the substrate so as to cover at least a part of the space portion, a thin film shape memory alloy layer which contacts the ink contained in the ink chamber and varies according to a temperature variation, a heating element disposed between the base layer and the thin film shape memory alloy to generate heat, and an insulating layer disposed between the heating element and the thin film shape memory alloy layer and transfers the heat generated by the heating element to the thin film shape memory alloy layer. Due to a stable temperature coefficient of resistance (TCR) of the heating element, a height and a width of a voltage supplied to the heat element can be easily controlled, and thus power of the vibration plate can be precisely controlled, thereby having a predetermined image quality, and the heating element does not contact directly the ink, thereby realizing stability of the ink-jet printhead.
Abstract:
A station and a method of collecting information corresponding to security. A wireless communicator transmits a request packet to search a wireless network to at least one external device and receives a response packet to the request packet. An authentication method determiner analyzes the response packet to search for at least one wireless network and determines an authentication method supported by each of the searched wireless networks. A storage unit stores the determined authentication method of each of the searched wireless networks. Thus, necessary information corresponding to security during a connection to a wireless network can be searched in advance and provided to a user.
Abstract:
A bubble-ink jet print head includes: a substrate having ink chambers to store ink and resistance heat emitting bodies to heat ink disposed thereover; and an ink supply passage which penetrates the substrate and which is connected with the ink chambers. The ink supply passage includes: a first trench formed at a first surface of the substrate in a first pattern having a separating distance from at least one of inlets of the ink chambers and connecting portions between the adjacent ink chambers, the first surface of the substrate having the ink chambers disposed thereover, and a second trench formed at a second surface of the substrate in a second pattern, having one of an area equal to and an area smaller than that of the first trench in the range of the first pattern of the first trench, and in communication with the first trench.
Abstract:
An inkjet printhead includes a substrate including a plurality of restrictors formed in an upper surface thereof and an ink feedhole formed in a lower surface thereof, a chamber layer stacked on the substrate and comprising a plurality of ink chambers corresponding to the plurality of restrictors including ink to be ejected, wherein each of the ink chambers is formed on an upper portion of a corresponding one of the restrictors and is connected to the corresponding one of the restrictors, a plurality of heaters formed on a bottom surface of corresponding ones of the plurality of ink chambers to heat the ink therein to generate bubbles, and a nozzle layer stacked on the chamber layer and comprising nozzles to eject the ink.