摘要:
A processor having a data providing unit comprises a first table for holding the address of a store instruction indexed by a data address at which data value is stored by the store instruction, a second table for holding the address of the store instruction indexed by a subsequent load instruction, a data storing unit for holding data indexed by the address of the store instruction, and a data providing controller. The data providing controller retrieves the load instruction and the store instruction, both instructions looking up a same data address from the first and second tables, and retrieves data which are employed by the store instruction corresponding to the load instruction from the data storing unit, based on the address of the load instruction, and provides the data for the processor as predictive data to which access by the load instruction is predicted.
摘要:
A method of calculating power consumption of an integrated circuit having a plurality of function blocks, comprises the steps of: detecting the function blocks required for a predetermined operation, in sequence; obtaining each power consumption in operation of each of the detected function blocks; and summing up each power consumption obtained for each function block, to output the summed-up power consumption as a power consumption of the whole integrated circuit. Here, the power consumption is obtained by deferring to a table in which power consumption is previously registered for each function block. Further, the power consumption can be calculated by use of an approximate expression represented by a predetermined function f and a predetermined constant power consumption as follows: P=f (PA, HA, WA, PC, HC, WC)+constant, where A denotes a vector of all signals inputted to each of the detected function blocks; C denotes a vector of all signals outputted from each of the detected function blocks; PA denotes a maximum power consumption caused by the vector A; HA denotes a number of bits each of whose logical values changes in time transition from a preceding time to a current time in the vector A; WA denotes a bit width of the vector A; PC denotes a maximum power consumption caused by the vector C; HC denotes a number of bits each of whose logical values changes in time transition from a preceding time to a current time in the vector C; and WC denotes a bit width of the vector C.
摘要:
The present invention can provide a novel saccharide primer, which makes it possible to efficiently synthesize a sugar chain, and a method for using the primer. According to the present invention, the saccharide primer of the present invention is a saccharide primer having an alkenyl chain that has one or more double bonds in a position other than the alkyl chain terminal, and represented by the following general formula (I): Lac-O-Ck:m(n) General formula (I) In the general formula (I), Ck represents an alkenyl chain, m represents a total number of double bonds, and n represents a position of the double bond in the alkenyl chain. Here, k is preferably an integer in the range of 8 to 14, and particularly 12 or 13. In addition, when m is 1, n is an integer satisfying 1≦n≦k−2; and when m satisfies 2≦m≦k−1, n is a plurality of integers satisfying 1≦n≦k−1.An example of the primer is the following general formula (II): A sugar chain synthesized by using the saccharide primer of the present invention can be used for producing a sugar chain array, for synthesizing a glycopeptide, and the like.
摘要:
To ensure satisfactory visibility even when the light emitting area of the light emitting element for displaying the operation state is small. At least one of a light projector or a light receiver is provided with a display portion for displaying an operation state of the multi-optical axis photoelectric sensor at a side position in the vicinity of the light projecting portion or the light receiving portion of the front surface of the housing. The display portion includes a plurality of light emitting elements arranged in a line in the longitudinal direction while facing the front surface of the housing in the housing, and a plurality of light guiding bodies for guiding the light emitted by each of light emitting elements to the front surface of the housing. Each of light guiding bodies is arranged with the incident end face facing the light emitting element and the exit end face facing the front surface of the housing. Each of light guiding bodies includes, in a light guiding path for guiding the light flux entered from the incident end face to the exit end face, at least two reflection surfaces for diffusing some or all of the light flux in a width direction of the housing by sequentially changing an advancing path of the light.
摘要:
This invention relates to an SRSV detection kit comprising all antibodies against SRSV-related virus constituting peptides selected from the following peptide groups (a) to (k), respectively: (a) a peptide having an amino acid sequence represented by SEQ ID NO: 1, and the like, (b) a peptide having an amino acid sequence represented by SEQ ID NO: 2, and the like, (c) a peptide having an amino acid sequence represented by SEQ ID NO: 3, and the like, (d) a peptide having an amino acid sequence represented by SEQ ID NO: 4, and the like, (e) a peptide having an amino acid sequence represented by SEQ ID NO: 5, and the like, (f) a peptide having an amino acid sequence represented by SEQ ID NO: 6, and the like, (g) a peptide having an amino acid sequence represented by SEQ ID NO: 7, and the like, (h) a peptide having an amino acid sequence represented by SEQ ID NO: 8, and the like, (i) a peptide having an amino acid sequence represented by SEQ ID NO: 9, and the like, (j) a peptide having an amino acid sequence represented by SEQ ID NO: 10, and the like, and (k) a peptide having an amino acid sequence represented by SEQ ID NO: 11, and the like.Use of the kit makes it possible to detect most SRSV-related viruses and further to distinguish their serotypes and genogroups, easily and surely.
摘要翻译:本发明涉及SRSV检测试剂盒,其包含构成分别选自以下肽组(a)至(k)的肽的SRSV相关病毒的所有抗体:(a)具有SEQ ID NO: 1等,(b)具有SEQ ID NO:2所示的氨基酸序列的肽等,(c)具有SEQ ID NO:3所示的氨基酸序列的肽等, (d)具有SEQ ID NO:4所示的氨基酸序列的肽等,(e)具有SEQ ID NO:5所示的氨基酸序列的肽等,(f)具有 由SEQ ID NO:6表示的氨基酸序列等,(g)具有SEQ ID NO:7所示的氨基酸序列的肽等,(h)具有由 SEQ ID NO:8等,(i)具有由SEQ ID NO:9表示的氨基酸序列的肽等,(j)具有 由SEQ ID NO:10表示的次酸酸序列等,和(k)具有SEQ ID NO:11表示的氨基酸序列的肽等。 使用该试剂盒可以检测大多数与SRSV相关的病毒,并进一步区分其血清型和基因组,轻松而可靠。
摘要:
A simple membrane assay method for detecting or quantitating an analyte in a specimen sample using an assay device equipped with a membrane bound with a capture-substance to capture the analyte, including the steps of filtering a specimen sample using a filter, dropping the filtrate onto said membrane and detecting the presence of the analyte in said specimen sample, as well as a simple membrane assay kit for detecting the presence of an analyte in a specimen sample, including (1) a filter tube, and (2) an assay device equipped with a membrane bound with a capture-substance to capture the analyte. The method or the kit can decrease the occurrence of false positivity and can provide a highly accurate detection of the analyte such as pathogen and antibody in a specimen collected in a medical scene or by an individual.
摘要:
The present invention is to provide a simple membrane assay method for detecting or quantitating an analyte in a specimen sample using an assay device equipped with a membrane bound with a capture-substance to capture the analyte, comprising the steps of filtering a specimen sample using a filter, dropping the filtrate onto said membrane and detecting the presence of the analyte in said specimen sample, as well as a simple membrane assay kit for detecting the presence of an analyte in a specimen sample, comprising (1) a filter tube, and (2) an assay device equipped with a membrane bound with a capture-substance to capture the analyte. The method or the kit can decrease the occurrence of false positivity and can provide a highly accurate detection of the analyte such as pathogen and antibody in a specimen collected in a medical scene or by an individual.
摘要:
This invention relates to an SRSV detection kit comprising all antibodies against SRSV-related virus constituting peptides selected from the following peptide groups (a) to (k), respectively: (a) a peptide having an amino acid sequence represented by SEQ ID NO: 1, and the like, (b) a peptide having an amino acid sequence represented by SEQ ID NO: 2, and the like, (c) a peptide having an amino acid sequence represented by SEQ ID NO: 3, and the like, (d) a peptide having an amino acid sequence represented by SEQ ID NO: 4, and the like, (e) a peptide having an amino acid sequence represented by SEQ ID NO: 5, and the like, (f) a peptide having an amino acid sequence represented by SEQ ID NO: 6, and the like, (g) a peptide having an amino acid sequence represented by SEQ ID NO: 7, and the like, (h) a peptide having an amino acid sequence represented by SEQ ID NO: 8, and the like, (i) a peptide having an amino acid sequence represented by SEQ ID NO: 9, and the like, (j) a peptide having an amino acid sequence represented by SEQ ID NO: 10, and the like, and (k) a peptide having an amino acid sequence represented by SEQ ID NO: 11, and the like. Use of the kit makes it possible to detect most SRSV-related viruses and further to distinguish their serotypes and genogroups, easily and surely.
摘要:
The present invention provides a method of sludge recycling by utilizing an existing facility as it is, degrading sludge efficiently and simply, and producing useful recycled water from treated water separated from the sludge, and an apparatus for sludge recycling. The present invention provides a method of sludge recycling including the steps of: bringing sludge into contact with a sludge degrading agent containing, as an active ingredient, microorganisms containing an actinomyces belonging to Streptomyces; degrading the sludge; separating the degraded sludge into a solid content and a liquid content; and producing recycled water from the liquid content.