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    • 1. 发明授权
    • Fixing heater and method of manufacturing fixing heater
    • 定影加热器和定影加热器的制造方法
    • US5587097A
    • 1996-12-24
    • US274367
    • 1994-07-13
    • Shigehiro SatoYoshiyuki MatsunagaTsuyoshi OnoTakaaki Karube
    • Shigehiro SatoYoshiyuki MatsunagaTsuyoshi OnoTakaaki Karube
    • G03G15/20H05B3/16
    • H05B3/16G03G15/2003
    • A fixing heater comprises a substrate having an insulative property and a heat generating member with electrical resistance printed on a surface of the substrate. The heat generating member is a film-like shape having a direction and a pair of edge portions opposing one another, wherein one of the edge portions is trimmed in the direction. The heat generating member has a heat generating portion having opposing one and another edge portions, wherein one of the edge portions is trimmed in the direction throughout the heat generating portion. The heat generating portion is trimmed so as to provide the trimmed edge having partially different width along the direction. The fixing heater is manufactured by trimming one edges of the heat generating member in the direction throughout the heat generating portion and further trimming the trimmed edge on the basis of an amount of a resistance value change of the heat generating member before and after or during the former trimming step to obtain a predetermined resistance value or resistance value distribution. The triming steps are performed by means of laser beam. A generating temperature controlling portion may be formed to the heat generating member.
    • 定影加热器包括具有绝缘性质的基板和具有印刷在基板表面上的电阻的发热元件。 发热元件是具有彼此相对的方向和一对边缘部分的膜状形状,其中一个边缘部分在该方向上被修整。 发热部件具有相对的一个和另一个边缘部分的发热部分,其中一个边缘部分沿整个发热部分的方向修整。 修整发热部分,以便沿着该方向提供具有部分不同宽度的修剪边缘。 定影加热器是通过在整个发热部分的整个方向上修整发热件的一个边缘,并根据发热件前后的电阻值变化的量进一步修整修边边缘, 前修剪步骤以获得预定的电阻值或电阻值分布。 修整步骤通过激光束进行。 发电温度控制部可以形成在发热体上。
    • 2. 发明授权
    • Heater mounted on a substrate having a hole penetrating through the
substrate
    • 安装在具有贯穿基板的孔的基板上的加热器
    • US5343021A
    • 1994-08-30
    • US053319
    • 1993-04-27
    • Shigehiro SatoYoshiyuki MatsunagaTsuyoshi Ono
    • Shigehiro SatoYoshiyuki MatsunagaTsuyoshi Ono
    • B41J2/345G03G15/20H05B3/02H05B3/06H05B3/26H05B3/08
    • H05B3/265G03G15/2064H05B3/06H05B2203/016
    • A heater that has a plate shaped substrate with two holes penetrating through the substrate. Both holes are at one end of the substrate. The heater has a heating film mounted on the surface of the substrate for generating heat. The film is made of electrically conductive material and formed into a stripe shape having a first end and a second end. The first end is located near the hole. The heater also has an end film coated on the surface of the heating film around the hole and electrically connected with the heating film for supplying electric power to the heating film. The end film has higher electrical conductivity than the heating film. The substrate has means provided at the hole for supplying the electric power to the end film. The hole enables high reliability in electrical connection between the outer terminal and the heater because of the hole and the electric power supply means at the hole.
    • 一种加热器,其具有带有穿透基板的两个孔的板状基板。 两个孔都在基底的一端。 加热器具有安装在基板的表面上用于产生热量的加热膜。 该膜由导电材料制成,并形成具有第一端和第二端的条形。 第一端位于洞附近。 加热器还具有涂覆在加热膜表面周围的端部的膜,并且与加热膜电连接以向加热膜供电。 末端膜具有比加热膜更高的导电性。 基板具有设置在孔处的用于向端膜供电的装置。 由于孔和电源装置在孔处,该孔能够实现外部端子和加热器之间的电连接的高可靠性。
    • 5. 发明授权
    • Imaging device that prevents loss of shadow detail
    • 防止阴影细节损失的成像设备
    • US08319875B2
    • 2012-11-27
    • US13007033
    • 2011-01-14
    • Masayuki MasuyamaMasashi MurakamiYoshiyuki Matsunaga
    • Masayuki MasuyamaMasashi MurakamiYoshiyuki Matsunaga
    • H04N5/335
    • H04N5/3598H04N5/2351
    • An imaging device outputs brightness information according to an amount of incident light and includes: an imaging unit that includes a plurality of unit cells arranged one dimensionally or two-dimensionally, each unit cell including a photoelectric conversion part that generates a first output voltage in a reset state and a second output voltage according to an amount of incident light, and each unit cell generating a reset voltage that corresponds to the first output voltage and a read voltage that corresponds to the second output voltage; and an output unit operable to output, in relation to each unit cell, brightness information indicating a difference between the reset voltage and the read voltage when normal light is incident to the imaging device and the read voltage is in a predetermined range, and brightness information indicating high brightness when strong light is incident to the imaging device and the read voltage is not in the predetermined range.
    • 一种成像装置根据入射光的量输出亮度信息,并且包括:成像单元,其包括一维或二维布置的多个单位单元,每个单元包括光电转换部分,该光电转换部分生成第一输出电压 复位状态和第二输出电压,并且每个单元电池产生对应于第一输出电压的复位电压和对应于第二输出电压的读取电压; 以及输出单元,其可操作以相对于每个单位单元输出指示当正常光入射到所述成像装置并且所述读取电压处于预定范围时所述复位电压和所述读取电压之间的差的亮度信息,以及亮度信息 当强光入射到成像装置并且读取电压不在预定范围内时指示高亮度。
    • 6. 发明授权
    • Electrolytic capacitor and electric equipment provided therewith
    • 提供电解电容器和电气设备
    • US08218289B2
    • 2012-07-10
    • US12694477
    • 2010-01-27
    • Isao AbeKenichi AsamiHajime OsakiYoshiyuki MatsunagaHideo Kozuka
    • Isao AbeKenichi AsamiHajime OsakiYoshiyuki MatsunagaHideo Kozuka
    • H01G9/08
    • H01G9/12H01G9/08
    • An electrolytic capacitor includes: a case including a case body, in which an electrolytic capacitor element is disposed in a sealed manner and filled up with an electrolytic solution, and a safety valve is mounted to the case body for jetting an evaporated gas of the electrolytic solution filling the electrolytic capacitor element; a cover member mounted to the case so as to cover the safety valve provided for the case; a first fixing unit mounted to the cover member so as to prevent the cover member from dismounting when the evaporated gas of the electrolytic solution is jetted outward; and a second fixing unit disposed in association with the first fixing unit and adopted to reinforce and assist a function of the first fixing unit to thereby prevent the cover member from being dismounted. An electric equipment includes a lighting circuit including circuit components, and an electrolytic capacitor of the structure mentioned above.
    • 一种电解电容器包括:壳体,其具有电解电容器元件,其密封地设置有电解液,并且安装在壳体上,用于喷射电解液的蒸发气体 溶液填充电解电容元件; 安装到所述壳体以覆盖为所述壳体提供的安全阀的盖构件; 第一固定单元,安装到所述盖构件,以便当所述电解液的蒸发气体向外喷射时防止所述盖构件的拆卸; 以及与第一固定单元相关联地设置的第二固定单元,并且用于加强和辅助第一固定单元的功能,从而防止盖构件的拆卸。 电气设备包括具有电路部件的点灯电路和上述结构的电解电容器。
    • 7. 发明授权
    • Solid-state image pickup device
    • 固态图像拾取装置
    • US08149308B2
    • 2012-04-03
    • US11721241
    • 2005-12-21
    • Masayuki MasuyamaYoshiyuki Matsunaga
    • Masayuki MasuyamaYoshiyuki Matsunaga
    • H04N5/335
    • H01L27/14609H01L27/14601H01L27/14806H04N5/35581H04N5/374
    • A high dynamic range solid-state image pickup device is provided with a plurality of unit cells, which convert light into signal charges and accumulate the signal charges. The unit cells are arranged by rows and columns for outputting a signal voltage corresponding to the signal charges. A selector and a read transistor set an accumulation time period for accumulating the signal charges in the unit cells to a first period and a second period different from each other. The row selector and a vertical selection transistor select a row. Sampling capacitors (210a, 210b) are connected to the unit cell of each column. A pulse generator and sampling transistors select an arbitrary sampling capacitor from the sampling capacitors. The pulse generator and the sampling transistors perform selection so as to accumulate the signal voltage corresponding to the signal charges accumulated during the first period and the second period in the sampling capacitors, respectively.
    • 高动态范围固态图像拾取装置具有多个单元,其将光转换为信号电荷并累积信号电荷。 单位单元由行和列排列,用于输出对应于信号电荷的信号电压。 选择器和读取晶体管设置用于将单位单元中的信号电荷累加到彼此不同的第一周期和第二周期的累积时间周期。 行选择器和垂直选择晶体管选择一行。 采样电容器(210a,210b)连接到每列的单元电池。 脉冲发生器和采样晶体管从采样电容器中选择任意采样电容。 脉冲发生器和采样晶体管分别进行选择,以分别累积与在采样电容器中的第一周期和第二周期期间累积的信号电荷相对应的信号电压。
    • 8. 发明申请
    • SOLID-STATE IMAGING DEVICE
    • 固态成像装置
    • US20110272751A1
    • 2011-11-10
    • US13185199
    • 2011-07-18
    • Makoto INAGAKIYoshiyuki Matsunaga
    • Makoto INAGAKIYoshiyuki Matsunaga
    • H01L27/146
    • H01L27/14609H01L27/14603H01L27/14636H04N5/341H04N5/3575H04N5/3741
    • In each photosensitive cell, a photodiode 101, a transfer gate 102, a floating diffusion layer section 103, an amplifier transistor 104, and a reset transistor 105 are formed in one active region surrounded by a device isolation region. The floating diffusion layer section 103 included in one photosensitive cell is connected not to the amplifier transistor 104 included in that cell but to the gate of the amplifier transistor 104 included in another photosensitive cell adjacent to the one photosensitive cell in the column direction. A polysilicon wire 111 connects the transfer gates 102 arranged in the same row, and a polysilicon wire 112 connects the reset transistors 105 arranged in the same row. For connection in the row direction, only polysilicon wires are used.
    • 在每个感光单元中,在由器件隔离区包围的一个有源区域中形成光电二极管101,传输门102,浮动扩散层部分103,放大器晶体管104和复位晶体管105。 包含在一个感光单元中的浮动扩散层部分103不是连接到包括在该单元中的放大器晶体管104,而是连接到在列方向上与一个感光单元相邻的另一个感光单元中的放大器晶体管104的栅极。 多晶硅导线111连接排列在同一行的传输门102,并且多晶硅布线112连接布置在同一行中的复位晶体管105。 为了在行方向上连接,仅使用多晶硅线。
    • 9. 发明授权
    • Solid-state imaging device with specific contact arrangement
    • 具有特定接触排列的固态成像装置
    • US07688373B2
    • 2010-03-30
    • US11529256
    • 2006-09-29
    • Makoto InagakiYoshiyuki Matsunaga
    • Makoto InagakiYoshiyuki Matsunaga
    • H04N5/335H04N3/14H01L31/112
    • H01L27/14609H01L27/14603H01L27/14636H04N5/341H04N5/3575H04N5/3741
    • In each photosensitive cell, a photodiode 101, a transfer gate 102, a floating diffusion layer section 103, an amplifier transistor 104, and a reset transistor 105 are formed in one active region surrounded by a device isolation region. The floating diffusion layer section 103 included in one photosensitive cell is connected not to the amplifier transistor 104 included in that cell but to the gate of the amplifier transistor 104 included in another photosensitive cell adjacent to the one photosensitive cell in the column direction. A polysilicon wire 111 connects the transfer gates 102 arranged in the same row, and a polysilicon wire 112 connects the reset transistors 105 arranged in the same row. For connection in the row direction, only polysilicon wires are used.
    • 在每个感光单元中,在由器件隔离区包围的一个有源区域中形成光电二极管101,传输门102,浮动扩散层部分103,放大器晶体管104和复位晶体管105。 包含在一个感光单元中的浮动扩散层部分103不是连接到包括在该单元中的放大器晶体管104,而是连接到在列方向上与一个感光单元相邻的另一个感光单元中的放大器晶体管104的栅极。 多晶硅导线111连接排列在同一行的传输门102,并且多晶硅布线112连接布置在同一行中的复位晶体管105。 为了在行方向上连接,仅使用多晶硅线。