Abstract:
A word line driver including a control switch configured to receive a control signal, where the control switch is between a first node configured to receive an operating voltage signal and a second node configured to determine an output of the word line driver. The word line driver further includes a cross-coupled amplifier electrically connected to the second node. The word line driver further includes at least one inverter electrically connected to the cross-coupled amplifier. A semiconductor device including the word line driver and a memory array including at least one electronic fuse.
Abstract:
A method for monitoring and controlling a household appliance is provided. The method has the steps of: monitoring and sampling the power of the household appliance to obtain a first standby power range; monitoring and sampling the power of the household appliance to obtain a set of first real-time power data; calculating a first standby confidence level based on the number of times that the first real-time power data fall within the first standby power range; and determining that the household appliance is in a standby state if the first standby confidence level is greater than or equal to a standby confidence level threshold.
Abstract:
In a method, by a first circuit, a plurality of bits is converted in a first format to a second format. By a second circuit, the plurality of bits in the second format is used to program a plurality of memory cells corresponding to the plurality of bits. The first circuit and the second circuit are electrically coupled together in a first chip. The plurality of bits is selected from the group consisting of 1) address information, cell data information, and program information of a memory cell that has an error; and 2) word data information of a first word and error code and correction information corresponding to the word data information of the first word.
Abstract:
A liquid crystal display having a back light module and a control unit is provided. The control unit controls the back light module to adjust turn-on time and light luminous intensity of a back light source according to the brightness difference of a left eye image and a right eye image, so as to balance the brightness of the left eye image and the right eye image and improve cross talk problem.
Abstract:
An electrical fuse (eFuse) bit cell includes a program transistor, a read transistor, and an eFuse. The program transistor has a first program terminal, a second program terminal, and a third program terminal. The read transistor has a first read terminal, a second read terminal, and a third read terminal. The eFuse has a first end and a second end. The first end, the first program terminal, and the second read terminal are coupled together. The read transistor is configured to be off and the program transistor is configured to be on when the eFuse bit cell is in a program mode. The program transistor is configured to be off and the read transistor is configured to be on when the eFuse bit cell is in a read mode.
Abstract:
A memory device of the non-volatile type including a memory array having a plurality of memory cells organized as sectors, each sector having a main word line associated with a plurality of local word lines, each local word line coupled to the main word line by a respective local word line driver circuit, each of the local word line driver circuits consisting of a first MOS transistor coupled between the respective main word line and a respective local word line and a second MOS transistor coupled between the respective local word line and a first biasing terminal.
Abstract:
A lamp device includes: a battery housing receiving a battery set and a circuit board; a lamp casing enclosing and connected movably to the battery housing such that the lamp casing is movable relative to the battery housing in an axial direction; an LED lighting unit mounted in and connected fixedly to the lamp casing, and disposed spacedly above the circuit board; and a power switch mounted on the circuit board and connected electrically between the LED lighting unit and the battery set. The power switch is actuated in response to movement of the LED lighting unit toward the circuit board by press of the lamp casing to switch from a current one of power-on and power-off states to the other one of the power-on and power-off states.
Abstract:
The power device with low parasitic transistor comprises a recessed transistor and a heavily doped region at a side of a source region of the recessed transistor. The conductive type of the heavily doped region is different from that of the source region. In addition, a contact plug contacts the heavily doped region and connects the heavily doped region electrically. A source wire covers and contacts the source region and the contact plug to make the source region and the heavily doped region have the same electrical potential.
Abstract:
A structure and a process for a microelectromechanical system (MEMS)-based sensor are provided. The structure for a MEMS-based sensor includes a substrate chip. A first insulating layer covers a top surface of the substrate chip. A device layer is disposed on a top surface of the first insulating layer. The device layer includes a periphery region and a sensor component region. The periphery region and a sensor component region have an air trench therebetween. The component region includes an anchor component and a moveable component. A second insulating layer is disposed on a top surface of the device layer, bridging the periphery region and a portion of the anchor component. A conductive pattern is disposed on the second insulating layer, electrically connecting to the anchor component.
Abstract:
A user token management system in a client device on a network comprises an obtaining module, a web controller and a processing module. The obtaining module obtains a user token from a database in response to a retrieving request for retrieving authorization of a web service provider on the network. The web controller transmits an authenticating request for authenticating the user token to the web service provider and receives an authentication result authenticating the user token. The processing module deletes the user token from the database when that user token is not authenticated by the web service provider.