Abstract:
The support member assembly (1) is formed by laminating a plurality of plastic layered assemblies (6) each incorporated with a reinforcing plate (3) and integrally joining them by heating. Holder holes (2) are formed in the parts of the assembly corresponding to the openings (3a) of the reinforcing plates (3). The reinforcing member increases the overall mechanical strength of the support member assembly. Furthermore, because a number of reinforcing plates can be layered and each reinforcing plate may be provided with a small thickness, the working of the strips of the reinforcing plates between adjacent openings can be achieved without any difficulty, and the manufacturing cost of such a support member assembly can be reduced. When each plastic layered assembly comprises plastic material formed by impregnating non-woven fabric with thermosetting resin, the drilling of holder holes for receiving electroconductive contact members can be more favorably and economically performed.
Abstract:
In an electroconductive contact probe unit, the electroconductive needle member is axially slidably received in a support hole formed in an insulating support plate, and is urged by the compression coil spring wound around a stem portion of the electroconductive needle member in a direction to project out of the support hole. The inner end of the compression coil spring is provided with a closely wound portion in which adjacent turns of the coil wire contact each other in the free state of the compression coil spring. As the support plate is lowered toward the object to be tested and the compression coil spring is compressed, the compression coils snakes or otherwise curves in the support hole, causing the inner surface of the closely wound portion to come into contact with the outer circumferential surface of the stem portion. Thus, the electric signal is conducted axially through the closely wound portion, instead of the spiral path along a coarsely wound portion of the compression coil spring so that the inductance and the electric resistance of the contact probe unit can be reduced. At the same time, the coarsely wound portion of the compression coil spring provides the necessary spring force for the needle member.
Abstract:
A liquid refrigerant discharge pipe extended from a lower portion of a liquid refrigerant storage container (420) communicates with the portion of a liquid refrigerant distributing pipe (421), which comprises both end-closed, substantially one-turn spirally wound pipe, which is in the vicinity of a lower end thereof, and a plurality of discharge holes (426) are provided in an upper wall portion of the liquid refrigerant distributing pipe (421). The diameter of each of the discharge holes (426) is set in accordance with a distance between each hole (426) and the portion of the liquid refrigerant distributing pipe (421) in which the liquid refrigerant discharge pipe communicates therewith, in such a manner that discharge rates of the liquid refrigerant from the discharge holes (426) become equal. When a liquid refrigerant is collected in the liquid refrigerant storage container (420), it flows in the liquid refrigerant distributing pipe (421) from a lower end thereof in the upward direction, and the liquid refrigerant is discharged at such a rate that corresponds to its liquid head pressure. The discharge rates of the liquid refrigerant from the discharge holes (426) become equal, and the liquid refrigerant flows down in a uniformly distributed manner throughout an evaporation coil (41). Since the flow of the liquid refrigerant is uniform, the performance of an evaporator becomes stable.
Abstract:
A mobile cold air supply unit in which an air compressing and expanding device comprising a unitary combination of a motor, an air compressor and an air expander; a water-air heat exchanger; and an air-air heat exchanger are housed in one casing, in which air pipes wherein an air pressure is not higher than 5 kg/cm are provided among these equipment, the cold air supply unit being also provided with a cold air recovering connecting port, a return air introducing connecting port, a cooling water recovering connecting port and a cooling water introducing connecting port.
Abstract translation:一种移动冷气供给装置,其中包括电动机,空气压缩机和空气膨胀机的整体组合的空气压缩和膨胀装置; 水空气换热器; 并且在这些设备中设置有一个空气热交换器,其中设置有空气压力不高于5kg / cm 2的空气管的一个壳体中,冷空气供应单元还设置有冷空气 回流连接口,回风导入连接口,冷却水回收连接口和冷却水引入连接口。
Abstract in simplified Chinese:载台具备第1支撑板、第1支撑板下的第2支撑板、位于第2支撑板之下且与第1支撑板及第2支撑板重叠的轴体,以及贯通第2支撑板的至少一个护套加热器。至少一个护套加热器系平行于第2支撑板的上侧面,且配置成延伸于离第1支撑板之距离相异的第1面上与第2面上。
Abstract in simplified Chinese:提供一种用以精密控制基板温度之工作台及其制作方法。或者提供一种具有此工作台之膜体形成设备或膜体加工设备。所提供之用以载置基板之工作台包含基材及基材上之加热层。加热层包含第一绝缘膜、第一绝缘膜上之加热线及加热在线第二绝缘膜。加热线之材质包含一种以上之金属,此一种以上之金属选自钨、镍、铬、钴及钼。