Abstract: When spatial multiplexing is performed to any of a plurality of receiving antennas included in each terminal, it becomes possible to obtain excellent receiving characteristics by combining signals received by all antennas appropriately. A receiving antenna unit 28 receives channel state information from each terminal, a channel matrix H is obtained. A transmit weight/interference coefficient calculation unit 24 calculates a transmit weight and an interference coefficient based on channel matrix. The transmit weight is input to transmit weight multiplication units 17 and 23. The interference generation unit 15 generates an interference signal based on the interference coefficient. An interference subtraction unit 13 subtracts the interference signal from a desired signal. A modulo unit 14 adds a signal so that amplitude of an information signal output from the interference subtraction unit 13 falls within a constant range.
Abstract: Concave marks indicative of an orientation of a circuit board are formed on the circuit board, convex indices to be engaged with the marks are formed in a position in which the circuit is to be attached. An operator confirms the orientation of the circuit board easily and accurately by visually recognizing the marks and touching the marks with a finger. Moreover, the operator positions the circuit board by engaging the marks with the indices.
Abstract: The present invention relates to compounds of general Formula (I) or a pharmaceutically acceptable salt thereof. The compounds can be used in the treatment of immune, autoimmune, inflammatory diseases, cardiovascular diseases, infectious diseases, bone resorption disorders, neurodegenerative diseases or proliferative diseases.
Type:
Grant
Filed:
June 5, 2014
Date of Patent:
August 11, 2015
Assignee:
Merck Sharp & Dohme B.V.
Inventors:
Tjeerd Andries Barf, Arthur Oubrie, Carsten Schultz-Fadermrecht, Eduard Willem Zwart, Niels Hoogenboom, Sander Martijn De Wilde, Allard Kaptein
Abstract: A liquid crystal driving circuit controls operations of display areas in a liquid crystal display panel based on a plural pieces of divided image data which are prepared by dividing image data for a single screen in accordance with the display areas in the liquid crystal display panel. In response to an luminance signal corresponding to an LED resolution generated by an LED resolution signal generating circuit based on image data for a single screen which is not divided, the LED driving circuit controls operations of LEDs provided in a backlight unit. With the configuration of at least one embodiment, according to a liquid crystal display device including a backlight, in a case where display image data for a single screen is divided into a plural pieces of divided image data for a plurality of areas of a display screen and images to be displayed in the plurality of areas are controlled based on the plural pieces of divided image data, display quality in a border area of the plurality of areas can be improved.
Abstract: An optical information recording medium has a first information recording layer (20) and a second information recording layer (40) each of which includes (i) a group of pre-pits (31, 51) constituting marks (32, 52) and spaces (33, 53) and (ii) a super-resolution film (23, 43), the marks (32, 52) and the spaces (33, 53) having different lengths, an average length of a smallest mark that is smallest in length and a smallest space that is smallest in length being less than or equal to a resolution limit of a reproduction optical system for reproducing information recorded on the first information recording layer (20) and the second information recording layer (40), the group of pre-pits (31, 51) being formed so that a push-pull signal for the reproduction optical system to reproduce the information recorded by the group of pre-pits is negative in polarity. This provides an inexpensive and high-capacity multilayer optical information recording medium based on a super-resolution technology.
Abstract: A television (1) of the present invention includes a CPU (118) which stores broadcast medium information and recording mode information in such a manner that the broadcast medium information and the recording mode information are related to a broadcast content and when the broadcast content is reproduced, automatically sets a degree of an image process carried out on the broadcast content by an image processing circuit (107) in accordance with the broadcast medium information and the recording mode information which are stored in such a manner as to be related to the broadcast content.
Abstract: The present invention provides a circularly polarizing VA mode liquid crystal display device having an excellent gray scale viewing angle from an intermediate gray scale to a high gray scale at an azimuth angle of 45°.
Abstract: Provided is a display device and a display method for the display device with which a three-dimensional stereoscopic image with reduced crosstalk and a two-dimensional planar image with high brightness can be displayed. In a display device that is capable of displaying an stereoscopic image by displaying an image for the right eye and an image for the left eye, pixel lines for the right eye for displaying the image for the right eye and pixel lines for the right eye for displaying the image for the left eye are alternately arranged in the vertical direction with black pixel lines for displaying a black image therebetween.
Abstract: A stereoscopic display device includes: a parallax barrier in which light transmission parts that transmit light and light shielding parts that block light are formed alternately, and a display panel that displays a stereoscopic image. A plurality of pixels for displaying the stereoscopic image are formed on the display panel. Each pixel includes a plurality of color forming subpixels that contribute to the color formation of the stereoscopic image, and a contrasting subpixel that contributes to the contrast of the stereoscopic image. In each pixel, the contrasting subpixel is positioned at both ends of the pixel in a direction in which the light transmission parts and the light shielding parts are arranged alternately. In each pixel that overlaps the light shielding part when the display panel is viewed from front, the contrasting subpixel is positioned at both ends of the light shielding part.
Abstract: A mobile station apparatus 2 is assigned multiple component carriers in an uplink and a downlink by a base station apparatus and communicates with the base station apparatus by using the component carriers. The mobile station apparatus 2 includes a downlink control channel detector 67 and a carrier component identifying unit 53a. The downlink control channel detector 67 detects a downlink control channel from multiple search spaces where to detect the downlink control channel. From the search space where the downlink control channel detected by the downlink control channel detector 67 is arranged, the carrier component identifying unit 53a identifies the component carriers controlled with downlink control information transmitted in the downlink control channel and addressed to the mobile station apparatus.
Abstract: A circuit-on-wire (CoW) is provided that is made from a flexible metal wire with an outer surface, and a plurality of discrete electrical control devices formed in series along the metal wire outer surface. Each control device may have an electrical contact accessible through the metal wire. In one aspect, the control device may have a via through the metal wire from the top surface to the bottom surface with a second electrical contact accessible through the via. In addition, the control devices may have a top surface with an accessible third electrical contact. For example, the control device may be a first thin-film transistor (TFT), with a gate electrode accessible through the metal wire, wherein the second electrical contact is a first source/drain (S/D) electrode, and wherein the third electrical contact is a second S/D electrode. Using the above-described CoW, a woven active matrix array can be fabricated.
Abstract: A photoelectric conversion element including an i-type non-single-crystal film provided on the entire one surface of a semiconductor substrate, in which an interface between the semiconductor substrate and the i-type non-single-crystal film is flat, and a method of manufacturing the photoelectric conversion element are provided.
Abstract: In order to provide a touch panel substrate in which deterioration in display quality is prevented, a plurality of first grid electrodes (113) each include a first conductor line (117) having a grid shape, one of diagonal lines of a single grid being inclined by ? degrees with respect to a first direction, the other of the diagonal lines being inclined by ? degrees with respect to a direction vertical to the first direction, the plurality of first grid electrodes (113) being arranged along a sensor axis (120), the sensor axis (120) being an axis of symmetry for vertices of a pair of opposite angles of an outer shape of each of the plurality of first grid electrodes (113).
Abstract: A detection threshold changing unit changes a detection threshold used for detecting a reception wave from a base station apparatus, on the basis of use environment information that represents a use environment of a mobile station apparatus. A channel selecting unit selects a channel having a reception level higher than the detection threshold from among channels that constitute the reception wave. A synchronization processing unit performs a synchronization process on a reception wave of the channel selected by the channel selecting unit. In this way, the processing time and power consumption related to a cell search is reduced.
Abstract: A terminal includes a determination unit that determines a PUCCH resource based on at least a first value in a case where downlink control information is detected with a PDCCH and a second value is not set, determines a PUCCH resource based on at least the second value in a case where the downlink control information is detected with the PDCCH and the second value is set, and determines the PUCCH resource based on at least the third value for the ePDCCH set with which the downlink control information is detected regardless of whether or not the second value is set in a case where the downlink control information is detected with the ePDCCH in the ePDCCH set. With this feature, a HARQ-ACK to a transport block transmitted on the PDSCH can be efficiently transmitted and received using a PUCCH.
Abstract: The invention provides compounds of Formula (I) for inhibiting gh cosidases, prodrugs of the compounds, and pharmaceutical compositions comprising the compounds or prodrugs of the compounds. The invention also provides method of treating diseases and disorders related to deficiency or over-expression of O-gh coprotein 2-acetamido-2-deoxy-?-D-glucopyranosidase (O-GlcNAcase), accumulation or deficiency of 2-acetamido-2-deoxy-?-D-glucopyranoside (O-GlcNAc).
Type:
Application
Filed:
August 29, 2013
Publication date:
August 6, 2015
Applicant:
Merck Sharp & Dohme Corp.
Inventors:
Ernest J. McEachern, David J. Vocadlo, Yuanxi Zhou, Harold G. Selnick
Abstract: The present invention includes a write-in start position control section (36) that performs a process of shifting, by a given shifting amount, a start position of a write-in operation to the frame memory (31), when the write-in operation is started, the given shifting amount being predetermined so as not to exceed a capacity reserved in advance in the frame memory.
Abstract: The interface circuit is provided with: a differential output circuit in which the output of a potential level of a differential signal stabilizes after a prescribed period from a start signal; and a counter circuit that performs control in such a manner that a data processing operation of a data processing unit is not performed on a signal based on the differential signal during the prescribed period. Thus, a liquid crystal display device that is capable of preventing a distorted video from being displayed in an initial drive period can be achieved.
Abstract: An array board 11b includes a first diode 29, a contact portion 32, and a static protection portion 51. The first diode 29 includes first electrodes 29a, 29b and a first semiconductor portion 29d. The first electrodes 29a, 29b are formed from a second metal film 38. The first semiconductor portion 29d is connected to the first electrodes 29a, 29b via first diode-side holes 29c1, 29c2. The contact portion 32 includes agate line-side connecting portion 48 and a diode-side connecting portion 50. The gate line-side connecting portion 48 is formed from a first metal film at an end of a gate line 19. The diode-side connecting portion 50 is connected to the gate line-side connecting portion 48 via a contact portion-side hole 49a. The static protection portion includes a static dissipating portion 52 and a static dissipation portion protection portion 53.
Abstract: The present invention provides an electrophoretic display device provided with a first electrode, a second electrode, and a third electrode disposed oppositely to the first electrode as electrodes for controlling the migration of white charged particles and black charged particles. The present display device can achieve satisfactory color display with high color purity and brightness without reduced reflectance when displaying white.