Abstract:
An electric fireplace includes a shell, where a heating component including a wind turbine and a heating element is disposed in the shell, and further includes a translucent imaging screen, where the imaging screen is vertically disposed at an upper end of the shell, a flame plate that can cast a flame shape is disposed on an upper end surface of the shell, and a light source and a light interference combination that includes a light interference barrel and a motor are disposed below the flame plate. Disposing the imaging screen externally greatly reduces the size of the shell. The present utility model is small in size, convenient in transportation, and unique in model, and can be adapted to a modern decoration style.
Abstract:
The present invention provides new compounds of formula I(a)-I(d) and II, The compounds can inhibit cancerous inhibitor of protein phosphate 2A (CIP2A), can be used as protein phosphate 2A (PP2A) accelerator and oncoprotein SET antagonist, and can treat cancers effectively.
Abstract:
Some embodiments are associated with an X-ray source configured to generate X-rays directed toward an object, wherein the X-ray source is to: (i) generate a first energy X-ray pulse, (ii) switch to generate a second energy X-ray pulse, and (iii) switch back to generate another first energy X-ray pulse. A detector may be associated with multiple image pixels, and the detector includes, for each pixel: an X-ray sensitive element to receive X-rays; a first storage element and associated switch to capture information associated with the first energy X-ray pulses; and a second storage element and associated switch to capture information associated with the second energy X-ray pulse. A controller may synchronize the X-ray source and detector.
Abstract:
A semiconductor device includes a semiconductor die having first and second conductive pads, and a substrate having third and fourth bonding pads. A width ratio of the first conductive pad over the third bonding pad at an inner region is different from a width ratio of the second conductive pad over the fourth bonding pad at an outer region.
Abstract:
An optical imaging lens includes: a first, second, third and fourth lens element, the first lens element has negative refractive power, the second lens element has an image-side surface with a concave part in a vicinity of the optical axis, the third lens element has positive refractive power, and has an object-side surface with a convex part in a vicinity of the optical axis, the fourth lens element has an image-side surface with a concave part in a vicinity of the optical axis, where the optical imaging lens set does not include any lens element with refractive power other than said first, second, third and fourth lens elements.
Abstract:
An optical adhesive composition is provided. The optical adhesive composition includes an acrylic-based polymer having at least one group selected from hydroxyl, amino and carboxylic acid group, a crosslinking agent having isocyanate groups, a acrylic-based oligomer having at least one unsaturated group and a photo initiator, wherein based on 100 parts by weight of the acrylic-based polymer, the content of the acrylic-based oligomer is 1 part by weight to 7 parts by weight.
Abstract:
A timing method and communication apparatus therefor. The timing method, performed by a mobile communication device, includes: activating a first communication module; receiving updated information when the first communication module is active; determining and setting an expiry time for an adaptive timer based on the updated information; activating the adaptive timer to count to the determined expiry time; and activating a second communication module when the adaptive timer expires.
Abstract:
An optical imaging lens includes: a first, second, third, fourth and fifth lens element, the first lens element has an object-side surface with a convex part in a vicinity of the optical axis and a convex part in a vicinity of its periphery; the second lens element has an object-side surface with a convex part in a vicinity of its periphery; the third lens element has positive refractive power, having an object-side surface with a concave part in a vicinity of its periphery; the fourth lens element has positive refractive power, having an object-side surface with a concave part in a vicinity of its periphery and an image-side surface with a convex part in a vicinity of the optical axis; the fifth lens element has an image-side surface with a concave part in a vicinity of the optical axis and a convex part in a vicinity of its periphery.
Abstract:
Technology for device discovery using a device-to-device (D2D) sounding reference signal (SRS) and device discovery using D2D SRS in a channel measurement group (CMG) is disclosed. In an example, a user equipment (UE) configured for device discovery via a node using the D2D SRS can include a transceiver module. The transceiver module can send a radio resource control (RRC) device discovery request to a node, scan D2D SRS subframes of proximity UEs using D2D SRS triggering, and send feedback to the node of detected D2D SRS information of the proximity UEs. The proximity UE can be located within a same cell as the UE.
Abstract:
A method of a mobile station receiving data packets from a serving base station via a multicast or broadcast connection in a wireless network is provided for performing a handover from the serving base station to a target base station. The method comprises, at the level of the mobile station, the steps of: upon the detection of the quantity of buffered data packets in the mobile station being lower than a first threshold value, establishing a unicast connection with the serving base station to receive data packets from the serving base station; and upon detection of the level of buffered data packets reaching the predetermined threshold level, performing a handover from the serving base station to the target base station. According to the invention, a seamless handover of a mobile station in a wireless network providing Multicast and Broadcast Service (MBS service) can be achieved to prevent the MBS service interruption during the handover.