Abstract:
Proposed is a blender which detects whether a container lid is closed by transmitting an electrical signal through a transparent film. The blender according to the present disclosure comprises a container body in which food is accommodated; a main body provided under the container body so as to support the container body; the container lid detachably mounted on the upper surface of the container body so as to open and close the upper side of the container body; and a detection system which detects whether the container lid is mounted on the container body, wherein the detection system includes a transparent electrode film configured to have multiple layers so as to guide the flow of electricity. Therefore, the blender has the advantage of preventing an assembly defect without damaging the appearance of the container body formed of a transparent material.
Abstract:
A blender includes a lid configured to shield the opened upper surface of a container, in which the lid includes a main lid seated on the container and having a through-hole opened to communicate with an inside of the container, a gasket provided around the main lid and being in contact with the inner surface of the container, and an auxiliary lid inserted into the through-hole and exposed from the upper surface of the main lid, the auxiliary lid is coupled to the main lid and rotated together with the main lid in a state of being inserted into the through-hole, and the gasket protrudes to be in close contact with the inner surface of the container according to the rotational manipulation of the auxiliary lid.
Abstract:
A method for transmitting uplink control information by a communication apparatus configured with a plurality of cells including a primary cell and a secondary cell in a wireless communication system is discussed. The method includes identifying Hybrid Automatic Repeat reQuest—Acknowledgement (HARQ-ACK) information indicating Acknowledgement/Negative Acknowledgement/Discontinuous Transmission (ACK/NACK/DTX) responses to data blocks related to the primary cell and to the secondary cell; selecting a Physical Uplink Control Channel (PUCCH) resource depending on the HARQ-ACK information; and transmitting the HARQ-ACK information through a constellation point on the selected PUCCH resource, wherein when the HARQ-ACK information indicates a NACK/DTX response to each data block related to the secondary cell, the selected PUCCH resource is a PUCCH resource linked to a Physical Downlink Control Channel (PDCCH) on the primary cell.
Abstract:
A method is provided for reporting Channel State Information (CSI) in a wireless access system which supports carrier aggregation. A user equipment (UE) measures a first type CSI for a first component carrier (CC) of two or more downlink (DL) CCs, and measures a second type CSI for a second CC of the two or more DL CCs. The UE reports the first type CSI only, when a collision of a report of the first type CSI with a report of the second CSI type occurs in a same subframe. The first type CSI includes (1) only a Wideband Channel Quality Indicator (WB-CQI), (2) the WB-CQI and a first Precoding Matrix Indicator (PMI) or (3) the WB-CQI and a second PMI. The second type CSI includes (1) only a SubBand (SB) CQI or (2) the SB-CQI and a SB second PMI.
Abstract:
The present invention relates to a wireless communication system. In more detail, the present invention relates to a method for transmitting uplink control information in a wireless communication system operating as TDD, and a device for same. The method includes transmitting Hybrid Automatic Repeat request-Acknowledgement (HARQ) in a subframe n through Physical Uplink Control Channel (PUCCH), and a transmission power of the PUCCH relates to a method determined using Equation 4 or 5, and a device for same.
Abstract:
A method for receiving an uplink signal in a wireless communication system, and a device therefore. The method according to one embodiment includes transmitting a control channel signal including a resource allocation (RA) field; and receiving an uplink signal. A size of the RA field is represented by an expression including RASizeA and RASizeB. RASizeA is a first number of bits required for representing a resource indication value (RIV) corresponding to a starting resource block (RB) and a length of contiguously allocated RBs within a given uplink bandwidth. RASizeB is a second number of bits required for representing a combinatorial index r corresponding to 4 indexes used to indicate a start resource block group (RBG) index and an end RBG index of a first RB set and a start RBG index and an end RBG index of a second RB set within the given uplink bandwidth.
Abstract:
A method of receiving uplink control information at a communication apparatus in a wireless communication system configured for Time Division Duplex (TDD) operations and having a plurality of cells is described. A first set of at least one of one or more Physical Downlink Control Channel (PDCCH) signals and one or more Physical Downlink Shared Channel (PDSCH) signals are transmitted within M downlink subframes, where M≧1. A second set of at least one of one or more PDCCH signals and one or more PDSCH signals are transmitted within N downlink subframes, where N≧1. Acknowledgment information is received on an uplink subframe, the acknowledgment information including first acknowledgment information corresponding to the first set and second acknowledgment information corresponding to the second set.
Abstract:
A method for transmitting uplink control information at a communication apparatus in a time division duplex (TDD) wireless communication system. The method according to one embodiment includes receiving at least one physical downlink control channel (PDCCH) or at least one physical downlink shared channel (PDSCH); and generating reception response information for the at least one PDCCH or the at least one PDSCH. When the reception response information and channel status information are configured to be transmitted in a same subframe, if a certain condition is satisfied, the reception response information and the channel status information are transmitted together using a first physical uplink control channel (PUCCH) format. The certain condition includes a first condition of a single PDCCH transmission only on a primary cell (PCell) that has a downlink assignment index (DAI) initial value and indicates a semi-persistent scheduling (SPS) release being present.
Abstract:
The present invention relates to a wireless communication system. More particularly, the present invention relates to a method and a device therefor, the method comprising: setting a first cell having a first TDD UL-DL configuration and a second cell having a second TDD UL-DL configuration; receiving data through a DL subframe of the first cell; and transmitting reception response information on the data through a UL subframe of the second cell, wherein the relationship between the DL subframe and the UL subframe is determined by a parameter value set in a specific TDD UL-DL configuration, which is the TDD UL-DL configuration having the least number of DL subframes from TDD UL-DL configuration(s), in which subframes set as a DL in the first or second cell are all set as DLs.
Abstract:
The present invention relates to a wireless communication system. More particularly, the present invention relates to a method and apparatus for transmitting an uplink signal in a wireless communication system, wherein the method for transmitting an uplink signal in a wireless communication system comprises: a step of receiving a control channel signal containing resource allocation information; and a step of transmitting an uplink signal in accordance with the control channel signal, wherein the resource allocation information has a combination index r to be used for indicating two sets of resource blocks, and each set of resource blocks includes one or more continuous resource blocks.