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    • 42. 发明授权
    • Balanced high-frequency device and balanced high-frequency circuit using the same
    • 平衡高频设备和平衡高频电路使用相同
    • US07176768B2
    • 2007-02-13
    • US11059918
    • 2005-02-17
    • Hiroyuki NakamuraToshifumi NakataniToshio Ishizaki
    • Hiroyuki NakamuraToshifumi NakataniToshio Ishizaki
    • H03H7/42H03H9/00
    • H03H9/0038H03H7/42H03H7/425H03H9/0028H03H9/0042H03H9/14588H03H11/32
    • A balanced high-frequency device includes a balanced element; at least one balanced terminal connected to the balanced element; a phase circuit having at least first, second, and third impedance elements, and electrically connected between the balanced element and the balanced terminal. The first impedance element and the second impedance element are connected between the balanced terminals in series, the connection point between the first impedance element and the second impedance element is grounded through the third impedance element, a series resonant circuit is formed by the first impedance element and the third impedance element. A series resonant circuit is formed by the second impedance element and the third impedance element, and an impedance to a differential signal component in the passing band of the balanced elements of the first and second impedance elements is set so as to increase to the ground plane.
    • 平衡式高频装置包括平衡元件; 连接到所述平衡元件的至少一个平衡端子; 具有至少第一,第二和第三阻抗元件的相电路,并且电连接在所述平衡元件和所述平衡端子之间。 第一阻抗元件和第二阻抗元件串联在平衡端子之间,第一阻抗元件和第二阻抗元件之间的连接点通过第三阻抗元件接地,串联谐振电路由第一阻抗元件 和第三阻抗元件。 串联谐振电路由第二阻抗元件和第三阻抗元件形成,并且对第一和第二阻抗元件的平衡元件的通带中的差分信号分量的阻抗设定为增加到接地面 。
    • 44. 发明申请
    • Thermal head, method for manufacturing the same, and method for adjusting dot aspect ratio of thermal head
    • 热敏头,其制造方法以及用于调节热头的点宽比的方法
    • US20050146594A1
    • 2005-07-07
    • US11031299
    • 2005-01-06
    • Toshifumi NakataniShuuichi UsamiHirotoshi Terao
    • Toshifumi NakataniShuuichi UsamiHirotoshi Terao
    • B41J2/345B41J2/335B41J2/36B41J2/365B41J2/37
    • B41J2/33515B41J2/3353
    • In a thermal head provided with a resistance layer having a plurality of heating element portions which generate heat by energization, an insulating barrier layer which determines the two-dimensional size of each heating element portion by covering each heating element portion, and electrode layers electrically connected to two end portions of each of the plural heating element portions, in the length direction of the resistance, a heat transfer layer is disposed on at least the insulating barrier layer to determine the two-dimensional surface exposure area of the insulating barrier layer by covering part of the insulating barrier layer and to dissipate the heat generated from the plural heating element portions, and surface exposure regions of the insulating barrier layer are specified as effective heating regions of the plural heating element portions by adjusting the two-dimensional size of the heat transfer layer.
    • 在设置有具有通过通电而产生热的多个加热元件部分的电阻层的热敏头中,通过覆盖每个加热元件部分确定每个加热元件部分的二维尺寸的绝缘阻挡层,以及电连接的电极层 在多个加热元件部分中的每一个的两个端部,在电阻的长度方向上,至少在绝缘阻挡层上设置传热层,以通过覆盖来确定绝缘阻挡层的二维表面暴露面积 绝缘阻挡层的一部分并且散发从多个加热元件部分产生的热量,并且绝缘阻挡层的表面暴露区域被指定为多个加热元件部分的有效加热区域,通过调节热量的二维尺寸 转移层。
    • 47. 发明授权
    • Image display apparatus having electrodes comprised of a frame and wires
    • 具有由框架和电线构成的电极的图像显示装置
    • US06630782B1
    • 2003-10-07
    • US09198162
    • 1998-11-23
    • Toshifumi NakataniTakatsugu KurataKanji Imai
    • Toshifumi NakataniTakatsugu KurataKanji Imai
    • H01J162
    • H01J29/467H01J31/126
    • An image display apparatus comprises, in a vacuum container formed by a rear container and a front glass container, a fluorescent layer, an electron emission source, electrodes to control electron beams emitted from the electron emission source. The electrodes are formed by stringing wires on frames made of a resilient material, and the frames on which the wires are strung have respectively pairs of opposing sides that are flat plates formed on the same surface. The electrodes that are free from waviness or warping have high flatness, control the focusing and deflection of the electron beams appropriately, and prevent deviation of the landing positions of the electron beams and errors including error irradiation. Such an image display apparatus can provide excellent images and high resolution.
    • 图像显示装置包括在由后容器和前玻璃容器形成的真空容器中,荧光层,电子发射源,用于控制从电子发射源发射的电子束的电极。 电极通过在由弹性材料制成的框架上进行电线形成,并且电线串在其上的框架分别成对地形成在相同表面上的平板对。 没有波纹或翘曲的电极具有高的平坦度,适当地控制电子束的聚焦和偏转,并且防止电子束的着陆位置的偏离和包括误差照射的误差。 这样的图像显示装置可以提供优异的图像和高分辨率。
    • 48. 发明授权
    • Thermal head enabling continuous printing without print quality deterioration
    • 热敏头可连续打印,无打印质量恶化
    • US06529224B2
    • 2003-03-04
    • US10115471
    • 2002-04-03
    • Takashi ShirakawaToshifumi Nakatani
    • Takashi ShirakawaToshifumi Nakatani
    • B41J2335
    • B41J2/3351B41J2/33515B41J2/33525B41J2/3353B41J2/3355B41J2/3357B41J2/3359
    • In a thermal head according to the present invention, a sacrificial layer of transition metal is formed on a top surface of a heat radiation substrate; a bridge layer of cermet or ceramic material is formed on a top surface of a heat insulation layer including the sacrificial layer; a cavity is made between the bridge layer and the heat insulation layer; a plurality of slits are made in the bridge layer overlying the cavity to expose the cavity; a highly adiabatic inorganic heat insulation layer is formed on a top surface of the bridge layer including the slits; and an inorganic protective layer of a material selected from among silicon or aluminum oxide, nitride and carbide is formed on a top surface of the inorganic heat insulation layer, where heating elements are formed between the slits over the inorganic heat insulation layer and the inorganic protective layer
    • 在根据本发明的热敏头中,过渡金属的牺牲层形成在散热基板的顶表面上; 在包括牺牲层的绝热层的顶表面上形成金属陶瓷或陶瓷材料的桥接层; 在桥接层和绝热层之间形成空腔; 在覆盖空腔的桥接层中形成多个狭缝以暴露空腔; 在包括狭缝的桥接层的顶表面上形成绝热的绝热层; 并且在无机隔热层的上表面上形成选自硅或氧化铝,氮化物和碳化物的材料的无机保护层,其中在无机隔热层上的狭缝和无机保护层之间形成加热元件 层
    • 50. 发明授权
    • Flat type image display apparatus and fabrication method therefor
    • 平面型图像显示装置及其制造方法
    • US5581148A
    • 1996-12-03
    • US278659
    • 1994-07-21
    • Toshifumi NakataniKanji ImaiTomohiro SekiguchiMakoto Inada
    • Toshifumi NakataniKanji ImaiTomohiro SekiguchiMakoto Inada
    • H01J9/02H01J9/18H01J9/24H01J29/02H01J29/46H01J31/12H01J63/04
    • H01J9/185H01J29/028H01J29/467H01J31/126H01J9/241H01J9/242H01J2329/8625H01J2329/863Y10T156/1052Y10T29/49117
    • A novel electrode unit includes a plurality of linear cathodes and a plurality of flat-shaped electrodes. Each of the electrodes has a plurality of identification holes. The relative positional relationship of the identification holes is uniform with regard to each of the electrodes. However, the positions of the identification holes are shifted from those of adjacent electrodes by a predetermined interval so that a line connecting centers of the ID holes is parallel or perpendicular to a longitudinal direction of the linear cathodes when the electrodes are piled up and evenly aligned. The identification holes allow the electrodes to be accurately positioned with respect to each other when assembling the electrodes into the electrode unit. Each of the electrodes also includes a temporary fixing part at an area indented from an outer circumference of the electrode. During assembly of an electrode unit, the temporary fixing part is fixed to a temporary fixing part of an adjacent electrode via a spacer. Upon completion of a permanent fixing procedure between the two electrodes, the temporary fixing part is removed.
    • 一种新颖的电极单元包括多个线性阴极和多个扁平形状的电极。 每个电极具有多个识别孔。 识别孔的相对位置关系对于每个电极是均匀的。 然而,识别孔的位置从相邻电极的位置偏移预定间隔,使得当电极堆积并均匀排列时,连接ID孔的中心的线平行或垂直于线性阴极的纵向方向 。 当将电极组装到电极单元中时,识别孔允许电极相对于彼此精确地定位。 每个电极还包括在从电极的外周凹陷的区域处的临时固定部分。 在组装电极单元期间,临时固定部分通过间隔件固定到相邻电极的临时固定部分。 在完成两个电极之间的永久固定过程时,临时固定部分被去除。