Abstract:
Provided is a display device including: a display; a content receiver configured to receive image data from a first external device and output the image data received from the first external device to a second external device; and a controller configured to control the display an image corresponding to the received image data to be displayed. The controller controls the content receiver to receive image data from the second external device and output the image data received from the second external device to the first external device.
Abstract:
A scrubber includes a plasma treatment system, a hydrogen supply system, and a wet treatment system. The plasma treatment system performs a plasma treatment in which a process gas and a hydrogen gas are reacted using plasma. The hydrogen supply system supplies the hydrogen gas to the plasma treatment system. The wet treatment system performs a wet treatment in which a by-product generated by the plasma treatment is wet-treated.
Abstract:
Disclosed are a composition for an electrode binder of a capacitive deionization apparatus including at least one a hydrophilic polymer and a bifunctional cross-linking agent having a hydroxy group or a carboxyl group at both terminal ends, and at least one anion exchange group therein, and the bifunctional cross-linking agent being cross-linkable with the at least one hydrophilic polymer, an electrode for a capacitive deionization apparatus including the composition, a capacitive deionization apparatus including the electrode, and a method of removing ions from a liquid by using the capacitive deionization apparatus.
Abstract:
An electronic device is provided. The electronic device includes a communication circuit that wirelessly transmits and receives power to and from an external electronic device, a sensor circuit that collects a sensor signal associated with a state of the electronic device, and a processor that determines an arrangement relationship with the external electronic device through the sensor circuit, and based on the determined arrangement relationship, receives a first notification signal, which provides notification that an event occurs in the external electronic device or transmits a second notification signal, which provides notification that an event occurs in the electronic device.
Abstract:
A capacitive deionization apparatus may include at least one pair of porous electrodes and a spacer structure disposed between the at least one pair of electrodes. The at least one pair of porous electrodes may include an electrode material having a surface area for the electrostatic adsorption of feed ions. The spacer structure may include an electrically-insulating material with an ion exchange group on the surface thereof. The spacer structure provides a path for flowing a fluid therethrough.
Abstract:
An electronic device is provided. The electronic device includes a communication circuit that wirelessly transmits and receives power to and from an external electronic device, a sensor circuit that collects a sensor signal associated with a state of the electronic device, and a processor that determines an arrangement relationship with the external electronic device through the sensor circuit, and based on the determined arrangement relationship, receives a first notification signal, which provides notification that an event occurs in the external electronic device or transmits a second notification signal, which provides notification that an event occurs in the electronic device.
Abstract:
The present disclosure relates to a spacer structure that is configured to be disposed between a pair of electrodes in a capacitive deionization apparatus so as to provide a space for flowing a fluid therethrough. The spacer structure includes a copolymer prepared by copolymerizing a mixture of a polyurethane backbone including a carboxyl group or a sulfonic acid group, an ion conductive monomer including a carboxyl group and a cation exchange group, and a second polymer including a functional group that reacts with the carboxyl group or sulfonic acid group and forms a cross-linking bond with the polyurethane backbone.
Abstract:
A nonvolatile memory device includes an array of nonvolatile memory cells and a plurality of page buffers configured to receive a plurality of pages of data read from the same page in the array using different read voltage conditions. A control circuit is provided, which is electrically coupled to the plurality of page buffers. The control circuit is configured to perform a test operation by driving the plurality of page buffers with control signals that cause generation within the nonvolatile memory device of a string of XOR data bits, which are derived from a comparison of at least two of the multiple pages of data read from the same page of nonvolatile memory cells using the different read voltage conditions. An input/output device is provided, which is configured to output test data derived from the string of XOR data bits to another device located external to the nonvolatile memory device.
Abstract:
An electronic device is provided. The electronic device includes a display, a communication circuit that wirelessly transmits and receives power to and from an external electronic device, a sensor circuit that collects a sensor signal associated with a state of the electronic device, and a processor that determines a direction of the display based on the sensor signal. Additionally, when the direction of the display is a first direction, the processor is further configured to receive, from the external electronic device, a first notification signal associated with an event which occurs in the external electronic device while wirelessly charging based on the external electronic device. In addition, the processor is further configured to display a first user interface (UI), through the display, including the first notification signal while wirelessly charging based on the external electronic device.
Abstract:
A capacitive deionization electrode may include a conductive material and a polymer on a surface of the conductive material. The polymer may have at least one functional group in a single polymer chain.