摘要:
An antenna core produced by shaping a soft magnetic metal powder with the use of a resin as a binder, wherein the soft magnetic metal powder is an amorphous soft magnetic metal powder or a nanocrystal-containing amorphous soft magnetic metal powder, of the general formula (1): (Fe1-x-yCoxNiy)100-a-b-cSiaBbMc (1), and wherein the resin as a binder is a thermosetting resin. In the formula, M is at least one element selected from the group consisting of Nb, Mo, Zr, W, Ta, Hf, Ti, V, Cr, Mn, Y, Pd, Ru, Ga, Ge, C, P, Al, Cu, Au, Ag, Sn and Sb. Each of x and y is an atomic ratio and each of a, b and c an atomic %, satisfying the relationships: 0≦x≦1.0, 0≦y≦0.5, 0≦x+y≦1.0, 0≦a≦24, 1≦b≦30, 0≦c≦30 and 2≦a+b≦30.
摘要翻译:一种天线芯,其通过使用树脂作为粘合剂使软磁性金属粉末成形而制成,其中所述软磁性金属粉末是非晶态软磁性金属粉末或含纳米晶体的非晶态软磁性金属粉末,其通式为( 1):(Fe1-x-yCoxNiy)100-ab-cSiaBbMc(1),其中作为粘合剂的树脂是热固性树脂。 在该式中,M是选自Nb,Mo,Zr,W,Ta,Hf,Ti,V,Cr,Mn,Y,Pd,Ru,Ga,Ge,C,P中的至少一种元素, Al,Cu,Au,Ag,Sn和Sb。 x和y中的每一个是原子比,a,b和c分别为原子%,满足以下关系:0 <= x <= 1.0,0 <= y <= 0.5,0 <= x + y <= 1.0 ,0 <= a <= 24,1 <= b <= 30,0 <= c <= 30和2 <= a + b <= 30。
摘要:
An antenna core produced by shaping a soft magnetic metal powder with the use of a resin as a binder, wherein the soft magnetic metal powder is an amorphous soft magnetic metal powder or a nanocrystal-containing amorphous soft magnetic metal powder, of the general formula (1): (Fe1-x-yCoxNiy)100-a-b-cSiaBbMc (1), and wherein the resin as a binder is a thermosetting resin. In the formula, M is at least one element selected from the group consisting of Nb, Mo, Zr, W, Ta, Hf, Ti, V, Cr, Mn, Y, Pd, Ru, Ga, Ge, C, P, Al, Cu, Au, Ag, Sn and Sb. Each of x and y is an atomic ratio and each of a, b and c an atomic %, satisfying the relationships: 0≦x≦1.0, 0≦y≦0.5, 0≦x+y≦1.0, 0≦a≦24, 1≦b≦30, 0≦c≦30 and 2≦a+b≦30.
摘要:
A heat treatment was carried out in a pressurized condition on an amorphous metal ribbon containing Fe and Co as main components and being represented by the general formula: (Co(1-c)Fec)100-a-bXaYb. (In the formula, X represents at least one species of element selected from Si, B, C and Ge, Y represents at least one species of element selected from Zr, Nb, Ti, Hf, Ta, W, Cr, Mo, V, Ni, P, Al, Pt, Rh, Ru, Sn, Sb, Cu, Mn and rare earth elements, c, a and b satisfy 0≦c≦1.0, 10
摘要:
The present invention provides a magnetic core whose outer surface has been coated without handling brittle ribbon to thereby impart insulating properties and shape retention properties to the magnetic core after annealing heat treatment, and further provides an adhesive resin composition for a magnetic core, which is useful for efficiently producing the above-mentioned magnetic core without using any organic solvent and which per se is stable to heat and elapse of time. By forming a coating film having a certain thickness or more on an outer surface using a composition containing a resin of specific properties, there can be obtained a magnetic core whose outer surface has been coated without handling brittle ribbon to thereby impart insulating properties and shape retention properties to the magnetic core after annealing heat treatment. The adhesive resin composition containing particles of a resin having specific properties is useful for efficiently producing the above-mentioned excellent magnetic core without using any organic solvent, and this composition is stable to heat and elapse of time.
摘要:
A heat treatment was carried out in a pressurized condition on an amorphous metal ribbon containing Fe and Co as main components and being represented by the general formula: (Co(1−c)Fec)100−a−bXaYb. (In the formula, X represents at least one species of element selected from Si, B, C and Ge, Y represents at least one species of element selected from Zr, Nb, Ti, Hf, Ta, W, Cr, Mo, V, Ni, P, Al, Pt, Rh, Ru, Sn, Sb, Cu, Mn and rare earth elements, c, a and b satisfy 0≦c≦1.0, 10
摘要:
The present invention is to provide a laminate of magnetic substrates having high thermal conductivity in order to prevent deterioration of heat releasing properties caused by low thermal conductivity when exothermic heat due to the core loss of the laminate of magnetic substrates comprising a magnetic metal thin plate and a high molecular compound is released to the outside. A laminate of magnetic substrates comprising a high molecular compound layer and a magnetic metal thin plate is used, wherein the volume resistivity defined in JIS H 0505 in a direction perpendicular to the high molecular compound layer surface of the laminate is less than 108 Ωcm. The laminate is provided with an electrical continuity point created among magnetic metal thin plates such that the high molecular compound inside the laminate is pushed out to the outside of the laminate by pressurizing the laminate.
摘要翻译:本发明提供一种具有高导热性的磁性基板的叠层体,以防止由于包含磁性金属薄板的磁性基板的层叠体的芯损耗而导致的放热时导热性低导致的散热特性的劣化, 高分子化合物被释放到外面。 使用包含高分子化合物层和磁性金属薄板的磁性基板的层压体,其中在垂直于层压体的高分子化合物层表面的方向上,JIS H 0505中规定的体积电阻率小于10 8欧米加。 层叠体具有在磁性金属薄板之间形成的导电性连接点,使层叠体内的高分子化合物通过加压层叠体被推出到层叠体的外部。
摘要:
A laminate of a magnetic substrate comprising a high molecular compound layer and a magnetic metal thin plate wherein the volume resistivity defined in JIS H 0505 in a direction perpendicular to the high molecular compound layer surface of the laminate is less than 108 Ωcm. The laminate is provided with an electrical continuity point created among magnetic metal thin plates such that the high molecular compound inside the laminate is pushed out to the outside of the laminate by pressurizing the laminate. The laminate can exhibit high thermal conductivity in order to prevent deterioration of heat releasing properties caused by low thermal conductivity when exothermic heat due to the core loss of the laminate of the magnetic substrate is released to the outside.
摘要翻译:包括高分子化合物层和磁性金属薄板的磁性基材的层压体,其中在垂直于层压体的高分子化合物层表面的方向上,JIS H 0505中定义的体积电阻率小于108μΩ·cm。 层叠体具有在磁性金属薄板之间形成的导电性连接点,使层叠体内的高分子化合物通过加压层叠体被推出到层叠体的外部。 为了防止由于磁性基板的层压体的芯损耗释放到外部而引起的放热时导热性低导致的热释放特性降低,层压体可以表现出高导热性。
摘要:
The apparatus of the present invention includes a block diagram dividing unit that divides a block diagram into a plurality of pieces at a branch point, connects a branch point block element to one end of a data line which has been connected to the branch point at each divided piece and thereby generates a plurality of block diagram pieces, a program instruction generator that generates program instructions for performing processing on each block diagram piece, an execution sequence determining unit that determines an execution sequence of generated program instructions, a structural information generator that generates structural information of each of the block diagram pieces and a program generator that arranges the program instructions according to the execution sequence, writes structural information of each block diagram piece into a comment line of each of the program instructions corresponding to each of the block diagram pieces and thereby generates a program.
摘要:
According to one embodiment, an air conditioning system includes a compressor, a condenser, an expansion valve, a switching valve, an evaporator, a pump, a radiator, and a heat storage unit. The switching valve performs switching so that a first heat medium flows through either a first flow path or a second flow path. The pump supplies a second heat medium to the heat source. The heat storage unit has a heat storage material. The heat storage unit has a first heat exchange region in which heat is exchanged between the first heat medium flowing through the first flow path and the heat storage material. The heat storage unit has a second heat exchange region which is provided upstream of the radiator and in which heat is exchanged between the second heat medium supplied to the heat source and the heat storage material.
摘要:
An electrostatic actuator includes a stator having an electrode substrate, a movable unit having a movable element and an electrode arranged opposite to the electrode substrate, a plurality of first operation modules each of which issues an operation command for realizing a first operation, a plurality of second operation modules each of which issues an operation command for realizing a second operation, a module selector which selectively enables one first operation module of the first operation modules and selectively enables one second operation module of the second operation modules, an actuator drive module which generates a waveform signal on the basis of the operation command from the enabled first operation module and the operation command from the enabled second operation module and a switching circuit which converts the waveform signal into a voltage to apply the voltage to the electrode substrate.