Abstract:
A method of operating a system including a parameter monitoring circuit and a host, includes generating a first parameter applying a first code to a current parameter, wherein a first offset is applied to the first code; generating a first comparison result by comparing the first parameter with a reference parameter value; generating a second parameter applying a second code to the current parameter, wherein a second offset is applied to the second code; generating a second comparison result by comparing the second parameter with the reference parameter value; detecting an error in the current parameter, based on the first comparison result and the second comparison result; and providing a signal based on the error to the host.
Abstract:
A parameter monitoring circuit includes a code generation circuit configured to generate a first code, to which a first offset is applied, and a second code, to which a second offset is applied; a parameter adjustment circuit configured to generate a first parameter and a second parameter by respectively applying the first code and the second code to a current parameter; a comparator circuit configured to generate a first comparison result and a second comparison result, the first comparison result indicating a comparison result between the first parameter and a reference parameter value, and the second comparison result indicating a comparison result between the second parameter and the reference parameter value; and a parameter error detection circuit configured to detect an error in the current parameter, based on the first comparison result and the second comparison result.
Abstract:
An electronic device and method are disclosed. The electronic device includes a processor which implements the method, including displaying a virtual environment in which a first device is disposed on a display, the virtual environment simulating a real environment, detecting by at least one processor virtual environment information about the virtual environment, detecting virtual device information about the first device disposed in the virtual environment and at least one second device disposed in the virtual environment, determining a setting value for the first device based on at least one of the virtual environment information and the virtual device information, and storing the determined setting value in a memory.
Abstract:
An integrated circuit including first pads and second pads, a first receiver circuit and a first driver circuit respectively connected to the first pad, a second receiver circuit and a second driver circuit respectively connected to the second pad, and a first loopback circuit having a first input terminal electrically connected to the first receiver circuit, a first output terminal electrically connected to the first driver circuit, a second output terminal electrically connected to the second driver circuit, and a second input terminal electrically connected to the second receiver circuit may be provided. At a normal mode, the first loopback circuit electrically connects the first input terminal to the second output terminal and electrically connects the second input terminal to the first output terminal. At a test mode, the first loopback circuit electrically connects the first input terminal to the first output terminal.
Abstract:
A memory device includes a memory cell array configured to store data; and a data output circuit configured to transmit status data to an external device through at least one data line in a latency period in response to a read enable signal received from the external device and transmit the data read from the memory cell array to the external device through the at least one data line in a period subsequent to the latency period.
Abstract:
A semiconductor package includes a redistribution structure having a first surface, an opposite second surface, and a redistribution layer between the first surface and the second surface. A semiconductor chip is on the first surface of the redistribution structure and is electrically connected to the redistribution layer. An encapsulant is on at least a portion of the semiconductor chip. A passive element is on the second surface of the redistribution structure. The passive element includes a connection surface facing the second surface, a connection terminal on the connection surface, a non-connection surface opposite to the connection surface, and a side surface extending from the connection surface to the non-connection surface. A connection bump is adjacent the passive element on the second surface and is electrically connected to the redistribution layer. A sealing material is on at least a portion of the connection surface, the non-connection surface, and the side surface of the passive element.
Abstract:
A semiconductor package is disclosed. The disclosed semiconductor package includes a substrate having bonding pads at an upper surface thereof, a lower semiconductor chip, at least one upper semiconductor chip disposed on the lower semiconductor chip, and a dam structure having a closed loop shape surrounding the lower semiconductor chip. The dam structure includes narrow and wide dams disposed between the lower semiconductor chip and the bonding pads. The wide dam has a greater inner width than the narrow dam. The semiconductor packages further includes an underfill disposed inside the dam structure and being filled between the substrate and the lower semiconductor chip.
Abstract:
A memory system includes a memory device including a plurality of non-volatile memories and an interface circuit connected to each of the plurality of non-volatile memories, and a memory controller connected to the interface circuit and configured to transmit/receive data according to a first clock, wherein the interface circuit is configured to divide the first clock into a second clock, according to the number of the plurality of non-volatile memories, and transmit/receive data to/from each of the plurality of non-volatile memories, according to the second clock.
Abstract:
A search and display method of an electronic device using handwriting is provided. The search and display method includes recognizing the handwriting, determining whether the recognized handwriting is a gesture or text, recognizing the gesture if it is determined that the recognized handwriting is the gesture, and registering gesture information about the gesture and function information about a function corresponding to the gesture information based on the recognized gesture.
Abstract:
A refrigerator capable of automatically opening and closing a door is provided. In particular, there is provided a refrigerator that detects a gaze point of a user by using image data of the user obtained by an image obtaining sensor, determines a door corresponding to the gaze point of the user, and opens the determined door by controlling a door driving unit.