Abstract:
The present disclosure provides a memory cell. The memory cell includes a first electrode, a variable resistive material layer coupled to the first electrode, a metal oxide layer coupled the variable resistive material layer; and a second electrode coupled to the metal oxide layer. In an embodiment, the metal oxide layer provides a constant resistance.
Abstract:
A method uses a time domain reflectometer (TDR) to determine unqualified clasps of a peripheral component interconnect (PCI) socket. A scanning electron microscope (SEM) captures an image of an unqualified clasp and magnifies the image from a nanometer scale to view the unqualified clasp. An electron spectroscopy for chemical analysis (ESCA) obtains a degree of oxidation at each position of the unqualified clasp in response to a determination that the unqualified clasp is oxidated. A Fourier transform infrared spectroscopy (FTIR) displays a position of the soldering flux using in response to the determination that the unqualified clasp comprises the soldering flux.
Abstract:
An electrosurgical pencil with synchronous evacuation function includes a pencil body defined with a first containing space and a second containing space therethrough. The first containing space is adapted to contain an electropencil. The second containing space is adapted to be an evacuation passage. A first front end of the electropencil is mounted with a replaceable electrode. A first rear of the electropencil is adapted to connect to an electric wire connected to a current generator. A second front end of the second containing space is integrally formed a tubular body having an opening. A second rear end of the second containing space is mounted with a connector. The connector is connected to a suction instrument with a negative pressure via a soft tube. When the end portion of the electrode operates, the opening of the evacuating passage draws smoke and blood at the same time.
Abstract:
A method of fabricating a memory cell includes forming a bottom electrode on a substrate, a variable resistive material layer on the bottom electrode, and a top electrode on the variable resistive material layer. A first metal oxide layer interposes the top electrode and the variable resistive material layer. In an embodiment, the first metal oxide layer is a self-formed layer provided by the oxidation of a portion of the top electrode. In an embodiment, a second metal oxide layer is provided interposing the first metal oxide layer and the variable resistive material layer. The second metal oxide may be a self-formed layer formed by the reduction of the variable resistive material layer.
Abstract:
A method for creating an appearance model of an object includes receiving an image of the object and creating a hierarchical appearance model of the object from the image of the object. The hierarchical appearance model has a plurality of layers, each layer including one or more nodes. Nodes in each layer contain information of the object with a corresponding level of detail. Nodes in different layers of the hierarchical appearance model correspond to different levels of detail.
Abstract:
An apparatus for simulating a battery is provided. The apparatus includes a power supplying unit, a state regulating unit and an impedance unit. The power supplying unit is coupled to a power terminal of a battery interface and determines whether to provide an operation voltage to the power terminal according to a device voltage provided by the power terminal. The state regulating unit is coupled to the power terminal to provide a impedance regulating signal. The impedance unit is coupled between the power terminal and a ground voltage and is coupled to the state regulating unit to receive the impedance regulating signal. The impedance unit regulates an impedance thereof according to the impedance regulating signal.
Abstract:
An apparatus for simulating a battery is provided. The apparatus includes a power supplying unit, a state regulating unit and an impedance unit. The power supplying unit is coupled to a power terminal of a battery interface and determines whether to provide an operation voltage to the power terminal according to a device voltage provided by the power terminal. The state regulating unit is coupled to the power terminal to provide a impedance regulating signal. The impedance unit is coupled between the power terminal and a ground voltage and is coupled to the state regulating unit to receive the impedance regulating signal. The impedance unit regulates an impedance thereof according to the impedance regulating signal.
Abstract:
A method of fabricating a memory cell includes forming a bottom electrode on a substrate, a variable resistive material layer on the bottom electrode, and a top electrode on the variable resistive material layer. A first metal oxide layer interposes the top electrode and the variable resistive material layer. In an embodiment, the first metal oxide layer is a self-formed layer provided by the oxidation of a portion of the top electrode. In an embodiment, a second metal oxide layer is provided interposing the first metal oxide layer and the variable resistive material layer. The second metal oxide may be a self-formed layer formed by the reduction of the variable resistive material layer.
Abstract:
A method for creating an appearance model of an object includes receiving an image of the object and creating a hierarchical appearance model of the object from the image of the object. The hierarchical appearance model has a plurality of layers, each layer including one or more nodes. Nodes in each layer contain information of the object with a corresponding level of detail. Nodes in different layers of the hierarchical appearance model correspond to different levels of detail.
Abstract:
The present disclosure provides a memory cell. The memory cell includes a first electrode, a variable resistive material layer coupled to the first electrode, a metal oxide layer coupled the variable resistive material layer; and a second electrode coupled to the metal oxide layer. In an embodiment, the metal oxide layer provides a constant resistance.