Abstract:
A semiconductor device capable of suppressing void migration is provided. The semiconductor device includes a dummy region extending in a first direction substantially perpendicular to a second direction in which a word line extends. In addition, an isolation layer pattern may not cut the dummy region in the second direction. Consequently, leaning of the dummy region and void migration are prevented. A method of fabricating the semiconductor device is also provided.
Abstract:
Provided are a flash memory device and a method of fabricating the same. The method includes forming a first dielectric layer on an active region of a semiconductor substrate. A first conductive layer is formed on the semiconductor substrate having the first dielectric layer. A mask pattern is formed on the first conductive layer. Using the mask pattern as an etch mask, the first conductive layer is etched to form a first conductive pattern narrowing from its upper surface toward its middle portion. A second dielectric layer is formed on the semiconductor substrate having the first conductive pattern. A second conductive pattern crossing the active region adjacent to the first conductive pattern and partially covering the first conductive pattern is formed on the semiconductor substrate having the second dielectric layer.
Abstract:
The present invention discloses a data processing method for network layer in a home network system (1) based on a living network control protocol. The data processing method for network layer based on a protocol, that is composed of at least a physical layer, a data link layer, a network and an application layer, includes the steps of: receiving a message sending primitive (MsgSend) in application layer protocol data unit (APDU) frp, the application layer; according to the message sending primitive (MsgSend), generating a communication cycle description; according to the message sending primitive (MsgSend) and/or the communication cycle description, generating a packet sending primitive (PktSend) in network layer protocol data unit (NPDU); and transmitting the packet sending primitive (PktSend) to the data link layer.
Abstract:
The present invention discloses a home network system using a living network control protocol. The home network system includes: at least two electric devices (e.g., a first and a second electric device); and a network based on a predetermined network for networking the electric devices, wherein the first electric device sends a request message to the second electric device, and the second electric device sends a response message to the first electric device, wherein the response message transmitted from a lower layer to an upper layer of the second electric device is transmitted to a lower layer and then to an upper layer of the first electric device, and includes a command code included in the request message, for indicating an operation for the second electric device to execute, and a field related to an execution of the request.
Abstract:
A nonvolatile memory (NVM) device includes a floating gate on a semiconductor substrate and a gate insulating layer between the semiconductor substrate and the floating gate. A tunnel insulating layer is disposed between the semiconductor substrate and the floating gate. The tunnel insulating layer is thinner than the gate insulating layer. A first inter-gate insulating layer is disposed on the floating gate, and a sensing gate is disposed on the first inter-gate insulating layer. The sensing gate covers a first portion of the floating gate. A control gate is disposed to cover a top surface and a sidewall of a second portion of the floating gate. A second inter-gate insulating layer is disposed between the control gate and the sensing gate and between the control gate and the floating gate. Operation methods and fabrication methods of the NVM device are also provided.
Abstract:
An EEPROM device is provided with an active region including a first region, a second region having a lower top surface than a top surface of the first region, and a sidewall disposed at the boundary between the first and second regions. A tunneling region of charges for a program operation and/or an erase operation is defined within the sidewall.
Abstract:
The present invention relates to a yellow phosphor represented by a general formula of A(1-y)3D5-x Ex O12:Cey (wherein: A is at least one element selected from the group consisting of Y, Lu, Sc, La, Gd and Sm; D is at least one element selected from the group consisting of Al, Ga and In; E is at least one element selected from the group consisting of B and Fe; 0≦x
Abstract translation:本发明涉及一种由通式A(1-y-3)3-D-5-x-E-N代表的黄色荧光体, (其中:A为选自Y,Lu,Sc,La,Gd和Sm中的至少一种元素) ; D是选自Al,Ga和In中的至少一种元素; E是选自B和Fe中的至少一种元素; 0 <= x <0.5;并且0.0001 <= y <0.5) 和包含该半导体发光器件的白色半导体发光器件。 白色半导体发光器件包括半导体发光二极管和磷光体涂层。 荧光体涂层包括黄色荧光体和任选的基于硒的硒基红色荧光体,其吸收半导体发光二极管发射的光的一部分并发射与吸收光的波长不同的光和透明树脂。 白色半导体发光器件具有优异的显色性,并且在长时间的使用中仅具有非常低的发光效率劣化程度。
Abstract:
The present invention discloses a home network system (1) which can efficiently configure a new home appliance (50) in the existing home network system. The home network system (1) includes at least one new device (50) newly connected to a master device (30) through a network (20), for transmitting a plugged-in request message containing an initial address through the network (20), receiving an address change request message containing a logical address, and changing the initial address to the logical address, and at least one master device (30) connected to the new device (50) through the network (20), for receiving the plugged-in request message from the new device, setting the logical address for the new device, and transmitting the address change request message containing the logical address to the new device.
Abstract:
The present invention discloses a home network management system which can perform processing, conversion and transmission of data between a plurality of client devices and a plurality of home appliances. The home network management system resides in a home master device connected to at least one home appliance through a first network and connected to at least one client device through a second network separated from the first network, and is controlled by a central processing means of the home master device. The system includes a channel handling module for transmitting/receiving a first type of packet between the home master device and the home appliance, a transmission handling module for performing conversion between the first type of packet from the channel handling module and a first type of message from a service management module, and transmitting the converted packet and message, the service management module for performing conversion between the first type of message from the transmission handling module and a second type of message from a connection handling module, and transmitting the converted messages, and the connection handling module for performing conversion between a second type of extension message from the client device and the second type of message from the service management module.
Abstract:
A codeword retransmission/decoding method and transmission/receiving apparatus uses feedback information. When a failure to decode data received from a receiving node occurs, the feedback information including success/failure information of the decoding and retransmission information are transmitted to a transmission node. The retransmission success probability may be increased when the retransmission feedback information is configured by the receiving apparatus repeating code-bits of the codeword just previously transmitted so as to demodulate the retransmission part.