摘要:
A semiconductor element which comprises a semiconductor layer and an insulating layer that is adjacent to the semiconductor layer, and wherein the insulating layer is formed of a crosslinked product of a polymer compound that has a repeating unit (IA) represented by general formula (IA) and a repeating unit (IB) represented by general formula (IB); and an insulating layer-forming composition for forming an insulating layer of a semiconductor element, which contains a polymer compound that has the repeating structures (IA) and (IB). (In general formulae, each of R1a and R1b independently represents a hydrogen atom, a halogen atom or an alkyl group; each of L1a, L2a and L1b independently represents a single bond or a linking group; X represents a crosslinkable group; Y B represents a decomposable group or a hydrogen atom; each of m1a and m2a independently represents an integer of 1-5; and each * represents a bonding position of the repeating units.)
摘要:
A curable resin composition for a cemented lens capable of manufacturing a cemented lens excellent in heat resistance in reflowing treatment at a temperature of 260°C or higher and adhesion between lenses, and capable of reducing manufacturing costs of lenses and capable of lightening lenses, is provided. The curable resin composition for a cemented lens includes: (a) a compound represented by the following formula (I); and (b) a radical polymerization initiator.
wherein R 1 represents a hydrogen atom or an alkyl group; and Z 1 represents a cyclic structure together with two carbon atoms and a sulfur atom.
摘要翻译:对于能够在260℃或更高的温度和透镜之间的粘合回流处理制造的耐热性的接合透镜优异的,并且能够减少透镜的制造成本,并且能够减轻透镜的胶合透镜的固化性树脂组合物,是 提供。 对于胶合透镜的固化性树脂组合物包括:(A)由下式(I)表示的化合物; 和(b)自由基聚合引发剂。 worin R 1表示氢原子或烷基基团; 和Z 1具有两个碳原子和一个硫原子一起darstellt环状结构。
摘要:
In order to record an interference fringe pattern in a recording layer of a medium, a plurality of laser beams are caused to interfere so as to form interference fringes in the recording layer; and during a time period over which the plurality of laser beams are caused to interfere, the following steps are continuously performed: (1) producing a signal varying according to a shift of a specific position in the recording layer; and (2) shifting a fringe-forming position in the recording layer by changing a phase of at least one of the laser beams or moving the recording layer based upon the signal produced in the step (1).