Abstract:
A method for contacting MOS devices. First openings in a photosensitive material are formed over a substrate having a top dielectric in a first die area and a second opening over a gate stack in a second die area having the top dielectric, a hard mask, and a gate electrode. The top dielectric layer is etched to form a semiconductor contact while etching at least a portion the hard mask layer thickness over a gate contact area exposed by the second opening. An inter-layer dielectric (ILD) is deposited. A photosensitive material is patterned to generate a third opening in the photosensitive material over the semiconductor contact and a fourth opening inside the gate contact area. The ILD is etched through to reopen the semiconductor contact while etching through the ILD and residual hard mask if present to provide a gate contact to the gate electrode.
Abstract:
Systems and methods described herein provide for communication between a base component and a tablet component of a hybrid computing system. The hybrid computing system is in a connected state when the base component and tablet component are connected. Systems and methods provide for a switch for determining control of the hybrid computing system when in a connected state. Embodiments provide that the base component may control the tablet component when the hybrid computing system is in a connected state and the switch is set to base control. According to embodiments, the display component may control the hybrid computing system when the hybrid computing system is in a connected state and the switch is set to tablet control. In addition, embodiments provide that a server module running on the display component and a client module running on the base component facilitate communication between the hybrid computing system components. Furthermore, systems and methods described herein provide that the base component may control hardware devices, peripheral devices, or software applications of the display component through communications between the server module and client module.
Abstract:
Systems and methods described herein provide for communication between a base component and a slate component of a hybrid computing system. The hybrid computing system is in a connected state when the base component and slate component are connected. Embodiments provide that the base component may control the slate component when the hybrid computing system is in a connected state. In addition, embodiments provide that a server module running on the display component and a client module running on the base component facilitate communication between the hybrid computing system components. Furthermore, systems and methods described herein provide that the base component may control hardware devices, peripheral devices, or software applications of the display component through communications between the server module and client module.
Abstract:
A cable assembly for mounting to a panel, comprises a housing comprising a mating portion and a retaining portion extending rearward and outward from a rear end of the mating portion, the retaining portion has a receiving hole therein and a cutout communicated with the receiving hole. At least one key is formed on each of an upper surface and a lower surface of the mating portion. A plurality of conductive contacts are disposed in the housing. A positioning member mounted to the retaining portion of the housing defines an inner arm, an outer arm and a connecting portion connecting with the inner arm and the outer arm. The inner arm is disposed in the receiving hole and having a front end extending out of the receiving hole. The outer arm is located on a lateral side of the retaining portion and has a front end extending into the receiving hole via the cutout and is capable of moving the inner arm rearward to make the front end of the inner arm retracted into the receiving hole.
Abstract:
A video apparatus has a digital encoder which receives a first analogue video signal with ancillary information in a given time window and generates on an output a digital stream based on the first analogue video signal. A digital decoder is connectable to this output to generate a second analogue video signal. A switch selects between the first analogue video signal and the second analogue video signal as an output depending on a control signal based on the occurrence of said time window.
Abstract:
Compounds with fungicidal and insecticidal properties having formula wherein X is N or CH; Y is O, S or NR6; A is independently hydrogen, halo, cyano, (C1-C12)alkyl, or (C1-C12)alkoxy; R1 and R6 is independently hydrogen or (C1-C4)alkyl; R2 is independently hydrogen, (C1-C12)alkyl, halo(C1-C12)alkyl, (C3-C7)cycloalkyl, (C2-C8)alkenyl, halo(C2-C8)alkenyl, (C2-C8)alkynyl, halo(C2-C8)alkynyl, aryl, aralkyl, heterocyclic, or heterocyclic(C1-C4)alkyl; R3 is independently hydrogen or (C1-C4)alkyl; R4 and R5 is independently hydrogen, (C1-C4)alkyl, aryl, aralkyl, aryl(C2-C8)alkenyl, aryl(C2-C8)alkynyl, heterocyclic, or heterocyclic(C1-C4)alkyl wherein if one of R4 and R5 is hydrogen or (C1-C4)alkyl than the other of R4 and R5 is other than hydrogen or (C1-C4)alkyl, and its enantiomers and stereoisomers and agronomically acceptable salts.
Abstract:
Systems and methods described herein provide for communication between a base component and a slate component of a hybrid computing system. The hybrid computing system is in a connected state when the base component and slate component are connected. Embodiments provide that the base component may control the slate component when the hybrid computing system is in a connected state. In addition, embodiments provide that a server module running on the display component and a client module running on the base component facilitate communication between the hybrid computing system components. Furthermore, systems and methods described herein provide that the base component may control hardware devices, peripheral devices, or software applications of the display component through communications between the server module and client module.
Abstract:
A network communication device includes a processor, an amplifier circuit, a matching circuit including a transmitting route and a coupling route, a storage module, and a detection and control module. The network communication device generate electronic signals, and outputs the electronic signals to a load via the transmitting route after the electronic signals being amplified and matched. Then the network communication device detects output signals and reflection signals of the coupling route to calculate a safety parameter accordingly, compares the calculated safety parameter with one or more safety parameter thresholds, and generates control signals to control the amplifier circuit. The network communication device determines if the load is abnormal according to the control signals and generates load abnormal signals if the load is abnormal.
Abstract:
A network communication device includes a processor, an amplifier circuit, a matching circuit including a transmitting route and a coupling route, a storage module, and a detection and control module. The network communication device generate electronic signals, and outputs the electronic signals to a load via the transmitting route after the electronic signals being amplified and matched. Then the network communication device detects output signals and reflection signals of the coupling route to calculate a safety parameter accordingly, compares the calculated safety parameter with one or more safety parameter thresholds, and generates control signals to control the amplifier circuit. The network communication device determines if the load is abnormal according to the control signals and generates load abnormal signals if the load is abnormal.
Abstract:
A cable assembly for mounting to a panel, comprises a housing comprising a mating portion and a retaining portion extending rearward and outward from a rear end of the mating portion, the retaining portion has a receiving hole therein and a cutout communicated with the receiving hole. At least one key is formed on each of an upper surface and a lower surface of the mating portion. A plurality of conductive contacts are disposed in the housing. A positioning member mounted to the retaining portion of the housing defines an inner arm, an outer arm and a connecting portion connecting with the inner arm and the outer arm. The inner arm is disposed in the receiving hole and having a front end extending out of the receiving hole. The outer arm is located on a lateral side of the retaining portion and has a front end extending into the receiving hole via the cutout and is capable of moving the inner arm rearward to make the front end of the inner arm retracted into the receiving hole.