摘要:
A projecting direction control system for a vehicle lighting device is provided with height detecting means for detecting variation in the height of a front-wheel or a rear-wheel axle portion, auxiliary detection means for accurately controlling the direction of an optical axis of projection light for a vehicle headlamp in response to vehicle load variation, and light projection control means for controlling the optical axis of light in response to variation in the vehicle posture according to the information obtained by the height detecting means and the auxiliary detection means. When the auxiliary detection means such as a seat sensor becomes in abnormal condition, the direction of the optical axis of light is controlled so as to be tilted downward from the direction of the optical axis of projection light with the auxiliary detection means remaining in a normal condition.
摘要:
A solid-state imaging device is provided with a pixel region in which a plurality of pixels including photoelectric conversion films are arrayed and pixel isolation portions are interposed between the plurality of pixels, wherein the photoelectric conversion film is a chalcopyrite-structure compound semiconductor composed of a copper-aluminum-gallium-indium-sulfur-selenium based mixed crystal or a copper-aluminum-gallium-indium-zinc-sulfur-selenium based mixed crystal and is disposed on a silicon substrate in such a way as to lattice-match the silicon substrate concerned, and the pixel isolation portion is formed from a compound semiconductor subjected to doping concentration control or composition control in such a way as to become a potential barrier between the photoelectric conversion films disposed in accordance with the plurality of pixels.
摘要:
The present invention provides an L-aminoacylase which is able to produce L-tert-leucine being useful as an intermediate for pharmaceuticals.A protein which is characterized in being represented by any of the following (a) to (d): (a) a protein coded by a gene consisting of a nucleic acid sequence shown in SEQ ID No: 1; (b) a protein consisting of an amino acid sequence shown in SEQ ID No: 2; (c) a protein coded by a polynucleotide which hybridizes under a stringent condition with a nucleic acid sequence which is complementary to the nucleic acid sequence shown in SEQ ID No: 1 and having an L-succinylaminoacylase activity; and (d) a protein which consists of an amino acid sequence where one or several amino acid (s) is/are substituted, deleted, inserted and/or added in the protein consisting of the amino acid sequence shown in SEQ ID No: 2 and has an L-succinylaminoacylase activity.
摘要翻译:本发明提供能够产生L-叔亮氨酸的L-氨基酸酰基酶,其可用作药物的中间体。 特征在于以下(a)〜(d)中任一项所示的蛋白质:(a)由由SEQ ID No:1所示的核酸序列组成的基因编码的蛋白质; (b)由SEQ ID No:2所示的氨基酸序列组成的蛋白质; (c)由严格条件下与SEQ ID No:1所示核酸序列互补且具有L-琥珀酰氨基酰化酶活性的核酸序列杂交的多核苷酸编码的蛋白质; 和(d)由氨基酸序列组成的蛋白质,其中一个或几个氨基酸被取代,缺失,插入和/或添加在由SEQ ID No:2所示的氨基酸序列组成的蛋白质中 并具有L-琥珀酰氨基酰化酶活性。
摘要:
A solid-state imaging device is provided. The solid-state imaging device includes a plurality of arrayed pixels, an optical inner filter layer, and an inner-layer lens. Each of the plurality of arrayed pixels includes a photoelectric conversion portion and a pixel transistor. The optical inner filter layer is configured to block infrared light and faces a light-receiving surface of the photoelectric conversion portion of a desired pixel among the arrayed pixels. The inner-layer lens is formed below the optical inner filter layer.
摘要:
A solid-state imaging device includes a plurality of photoelectric conversion regions stacked at different depths within a semiconductor substrate of each pixel to photoelectrically convert light of different wavelength bands, and a discharge region formed between the photoelectric conversion regions adjacent to each other in a depth direction of the semiconductor substrate to discharge charges generated by photoelectric conversion in regions between the photoelectric conversion regions.
摘要:
A method of making an optical member including high refractive index layers and low refractive index layers, which are each relatively thin as compared with an optical length, and disposed alternately in the lateral direction with respect to an optical axis. Each width of the high refractive index layers and the low refractive index layers is equal to or smaller than the wavelength order of incident light.
摘要:
A physical information acquisition method in which a corresponding wavelength region of visible light with at least one visible light detection unit coupled to an image signal processing unit is detected, each said visible light detection unit comprising a color filter adapted to transmit the corresponding wavelength region of visible light; a wavelength region of infrared light with at least one infrared light detection unit coupled to the image signal processing unit is detected; and, with the signal processing unit, a first signal received from the at least one visible light detection unit by subtracting a product from said first signal is corrected, said product resulting from multiplication of a second signal received from the at least one infrared light detection unit and a predetermined coefficient factor.
摘要:
The present invention provides a L-succinylacylase consisting of: (a) a protein coded by a gene consisting of a nucleic acid sequence shown in SEQ ID No: 1; (b) a protein consisting of an amino acid sequence shown in SEQ ID No: 2; (c) a protein coded by a polynucleotide which hybridizes under a stringent condition with a nucleic acid sequence which is complementary to the nucleic acid sequence shown in SEQ ID No: 1 and having an L-succinylaminoacylase activity; or (d) a protein which consists of an amino acid sequence where one or several amino acid(s) is/are substituted, deleted, inserted and/or added in the protein consisting of the amino acid sequence shown in SEQ ID No: 2 and has an L-succinylaminoacylase activity. This enzyme is able to produce a sterically bulky unnatural amino acid such as L-tert-leucine etc. which is useful as an intermediate for pharmaceuticals.
摘要翻译:本发明提供了一种L-琥珀酰基酰化酶,其由以下组成:(a)由由SEQ ID No:1所示的核酸序列组成的基因编码的蛋白质; (b)由SEQ ID No:2所示的氨基酸序列组成的蛋白质; (c)由严格条件下与SEQ ID No:1所示核酸序列互补且具有L-琥珀酰氨基酰化酶活性的核酸序列杂交的多核苷酸编码的蛋白质; 或(d)由氨基酸序列组成的蛋白质,其中一个或多个氨基酸被取代,缺失,插入和/或添加在由SEQ ID No:2所示的氨基酸序列组成的蛋白质中 并具有L-琥珀酰氨基酰化酶活性。 该酶能够产生空间庞大的非天然氨基酸如L-叔亮氨酸等,其可用作药物的中间体。
摘要:
Provided is a solid-state imaging device including a first photoelectric-conversion-portion selectively receiving a first wavelength light in incident light and performing photoelectric conversion; and a second photoelectric-conversion-portion selectively receiving a second wavelength light which is shorter than the first wavelength, wherein the first photoelectric-conversion-portion is laminated above the second photoelectric-conversion-portion in an imaging area of a substrate so that the second photoelectric-conversion-portion receives the light transmitting the first photoelectric-conversion-portion, wherein a transmitting portion is formed in the first photoelectric-conversion-portion so that the second wavelength light transmits the second photoelectric-conversion-portion more than other portions, and wherein the transmitting portion is formed to include a portion satisfying the following Equation within a width D defined in the direction of the imaging area, a refraction index n of a peripheral portion of the transmitting portion, and the longest wavelength λc of the second wavelength range selectively photoelectrically-converted in the second photoelectric-conversion-portion: λc/n≦2D
摘要:
A solid-state imaging device, includes: a pixel array area including an unit pixel having a photoelectric conversion element and a transfer gate; a first supply voltage control means for supplying a first control voltage to a control electrode of the transfer gate; a second supply voltage control means for sequentially supplying one or plural second control voltages having a voltage value different from the first control voltage to the control electrode; a third supply voltage control means for supplying a third control voltage having the same voltage value as the second control voltages once or plural times prior to one or plural supplies of the second control voltages; a first driving means for reading signal charges from the transfer gate when the first control voltage is supplied; and a second driving means for reading signal charges from the transfer gate once and more when the second control voltage is sequentially applied.