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    • 41. 发明申请
    • Polyarylene sulfide and process for producing the same
    • 聚芳硫醚及其制备方法
    • US20060084785A1
    • 2006-04-20
    • US10540833
    • 2003-12-19
    • Hiroyuki SatoTatsuya KawasakiYasushi Nakazawa
    • Hiroyuki SatoTatsuya KawasakiYasushi Nakazawa
    • C08G75/04
    • C08G75/0259
    • In a production process of a poly(arylene sulfide), a mixture containing an organic amide solvent, an alkali metal hydrosulfide and an alkali metal hydroxide in a proportion of 0.95 to 1.05 mol per mol of the alkali metal hydrosulfide is heated and dehydrated in a dehydration step. After the dehydration step, as needed, an alkali metal hydroxide and water are added to control the total number of moles of the alkali metal hydroxide, and the number of moles of water so as to amount to 1.00 to 1.09 per mol of a sulfur source including the alkali metal hydrosulfide existing in the system and to 0.5 to 2.0 per mol of the charged sulfur source, respectively. A polymerization step is conducted by a two-stage process.
    • 在聚(亚芳基硫醚)的生产方法中,每摩尔碱金属氢硫化物含有0.95至1.05摩尔的有机酰胺溶剂,碱金属氢硫化物和碱金属氢氧化物的混合物加热并脱水 脱水步骤 在脱水步骤之后,根据需要,加入碱金属氢氧化物和水,以控制碱金属氢氧化物的总摩尔数,水的摩尔数为每摩尔硫源为1.00〜1.09 包括系统中存在的碱金属氢硫化物,分别为每摩尔含电硫源0.5至2.0。 聚合步骤通过两步法进行。
    • 43. 发明申请
    • Self light emitting type display module, electronic appliance loaded with the same module and verification method of faults in the same module
    • 自发光显示模块,电子装置装载相同的模块和相同模块的故障验证方法
    • US20050237211A1
    • 2005-10-27
    • US11109779
    • 2005-04-20
    • Hiroyuki SatoKazuhiro SatohTakashi Goto
    • Hiroyuki SatoKazuhiro SatohTakashi Goto
    • H05B33/12G08B21/00G09F9/00G09G3/00G09G3/20G09G3/30G09G3/32H01L51/50H05B33/14
    • G09G3/2011G09G3/006G09G3/3216G09G3/3233G09G3/3266G09G3/3283G09G2300/0842G09G2310/0256G09G2330/10G09G2330/12
    • Reverse bias voltage VM is applied to any one of self light emitting elements arranged on a light emitting panel 1 under detection mode. Current corresponding to weak current flowing to the element is supplied to a transistor Q3 by the operation of a current mirror circuit comprised of transistors Q1, Q2. The current mirror circuit is formed with the transistor Q3 as a control side current source transistor and transistors Q4 to Q7 as a controlled side current source transistor. The sizes of the controlled side current source transistors Q4 to Q7 are set to, for example, 1:2:4:8 with respect to the control side current source transistor Q3 so as to construct current amplifying means. Current value amplified by a current comparison type comparator 7 is compared with current value from a reference current source 8 and its output is latched by a latch circuit 9 and stored in a data register 10. If a weak current over a predetermined value flows when reverse bias voltage is applied to the self light emitting element, it is determined that a possibility that the self light emitting element turns into a light emission fault is high and notifying means is driven appropriately using data stored in the data register 10.
    • 在检测模式下,反向偏置电压VM被施加到布置在发光面板1上的任何一个自发光元件。 通过由晶体管Q 1,Q 2组成的电流镜电路的工作,将流向元件的弱电流对应的电流供给晶体管Q 3。 电流镜电路由作为控制侧电流源晶体管的晶体管Q 3和作为受控侧电流源晶体管的晶体管Q 4〜Q 7形成。 控制侧电流源晶体管Q 4〜Q 7的尺寸相对于控制侧电流源晶体管Q 3设定为例如1:2:4:8,构成电流放大单元。 由电流比较型比较器7放大的电流值与来自参考电流源8的电流值进行比较,其输出由锁存电路9锁存并存储在数据寄存器10中。 如果当对自发光元件施加反向偏置电压时超过预定值的弱电流流动,则确定自发光元件变为发光故障的可能性高,并且使用数据适当地驱动通知装置 存储在数据寄存器10中。
    • 47. 发明申请
    • Portable terminal
    • 便携式终端
    • US20050143148A1
    • 2005-06-30
    • US10504350
    • 2003-02-26
    • Hiroyuki SatoAkihiro Miyashita
    • Hiroyuki SatoAkihiro Miyashita
    • G01C17/04G01C17/30G01C17/32G01S19/35H04M1/02H04M1/03H04M1/21H04M1/725H04W4/02H04M1/00
    • G01C17/30H04M1/0214H04M1/03H04M1/72522H04M2250/10H04M2250/12
    • the present invention aims to achieve that geomagnetism can be sensed in high precision while eliminating an adverse influence by magnetic noise with respect to a geomagnetic sensor provided in a housing, and correct azimuth information can be acquired. A portable terminal apparatus according to the present invention is arranged by that both a first housing (11) and a second housing (12) are coupled to each other by way of a hinge portion (13) under pivotable condition, a geomagnetic sensor (33) is provided on a circuit board (32) in the second housing (12), and also, a speaker (19) is provided on the side of a rear surface thereof. Both this geomagnetic sensor (33) and a speaker (19) corresponding to a component for generating magnetic noise which gives an adverse influence with respect to the geomagnetic sensor (33) are provided in the vicinity of each other within the same second housing (12), and both the members are arranged on the same plane. In this structure, since a magnetic force line (35) which is caused by magnetic noise generated from a magnet (19a) of the speaker (19) is intersected with respect to the geomagnetic sensor (33) at a right angle, and thus, a horizontal direction component thereof is not produced, the geomagnetic sensor (33) can correctly sense the geomagnetism without being adversely influenced by the magnetic noise.
    • 本发明旨在实现能够高精度地感测地磁,同时消除相对于设置在壳体中的地磁传感器的磁噪声的不利影响,并且可以获取正确的方位信息。 根据本发明的便携式终端设备被布置为:第一壳体(11)和第二壳体(12)在枢转状态下通过铰链部分(13)彼此联接,地磁传感器(33) )设置在第二壳体(12)中的电路板(32)上,并且在其后表面侧设置有扬声器(19)。 在相同的第二壳体(12)内彼此附近地设置对应于用于产生对地磁传感器(33)产生不利影响的磁噪声的部件的这个地磁传感器(33)和扬声器(19) ),并且两个构件被布置在同一平面上。 在这种结构中,由于由扬声器(19)的磁体(19a)产生的磁噪声引起的磁力线(35)相对于地磁传感器(33)以直角相交,因此 ,则不产生水平方向分量,所以地磁传感器(33)可以正确地感测地磁而不受磁噪声的不利影响。