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    • 2. 发明申请
    • Operational Amplifier
    • 运算放大器
    • US20080012641A1
    • 2008-01-17
    • US11665212
    • 2005-09-29
    • Kouichi HanadaMasanori KayamaNaohiro NomuraAkira Noguchi
    • Kouichi HanadaMasanori KayamaNaohiro NomuraAkira Noguchi
    • H02H3/22H03F3/45
    • H03F3/45085H03F1/52H03F2203/45324H03F2203/45352H03F2203/45568
    • An operational amplifier includes a differential amplifier circuit provided at an input stage and an amplifier circuit at a post stage. In the differential amplifier circuit, first and third bipolar transistors are PNP-type bipolar transistors and Darlington-connected. An inverting input terminal is connected to the base terminal of the first bipolar transistor. The first and third bipolar transistors and second and fourth bipolar transistors construct an input differential pair. First and second protection diodes are connected between the base terminals of the first and second bipolar transistors constructing the input differential pair and the ground potential, respectively. Each of the protection diodes is connected so that the cathode terminal is positioned on the base terminal side of the bipolar transistor, and the cathode terminal is positioned on the ground potential side.
    • 运算放大器包括设置在输入级的差分放大器电路和后级放大器电路。 在差分放大器电路中,第一和第三双极晶体管是PNP型双极晶体管和达林顿连接。 反相输入端子连接到第一双极晶体管的基极端子。 第一和第三双极晶体管和第二和第四双极晶体管构成输入差分对。 第一和第二保护二极管分别连接在构成输入差分对和地电位的第一和第二双极晶体管的基极端子之间。 每个保护二极管被连接,使得阴极端子位于双极晶体管的基极端子侧,阴极端子位于地电位侧。
    • 4. 发明授权
    • Image processing apparatus
    • 图像处理装置
    • US08045209B2
    • 2011-10-25
    • US11489127
    • 2006-07-19
    • Kiyohari NakagamaKouichi HanadaToyotsugu SawakiHiroji Ito
    • Kiyohari NakagamaKouichi HanadaToyotsugu SawakiHiroji Ito
    • G06K15/00G06K15/02
    • H04N1/3871G03G15/36
    • Detection section 22 detects the blank space area in each page for all pages of the document, determining section 23 determines image size for combining a designated stamp image in uniform size in all the pages of that document based on a detection result by detection section 22. Combining section 24 combines the stamp image determined by determining section 23 in each page of the document. For example, size of the maximum blank space area which can fit within blank space areas of all pages of the document in uniform size, is sought, image combining is carried out with an original size if the original size of the stamp image is not larger than the maximum blank space area size, and the stamp image is combined to be in a reduced size so that it fits within the maximum blank space area size if the original size of the stamp image exceeds the maximum blank space area size.
    • 检测部分22检测文档的所有页面的每页中的空白区域,确定部分23基于检测部分22的检测结果,确定用于组合该文档的所有页面中均匀大小的指定标记图像的图像尺寸。 组合部分24组合由文档的每一页中的确定部分23确定的印记图像。 例如,寻找能够以均匀尺寸适合于文档的所有页面的空白区域内的最大空白区域的尺寸,如果印模图像的原始尺寸不大,则以原始尺寸执行图像组合 比最大空白区域大小,并且邮票图像被合并为减小的尺寸,使得如果印模图像的原始尺寸超过最大空白区域尺寸,则其适合最大空白区域尺寸。
    • 7. 发明申请
    • OPERATIONAL AMPLIFIER
    • 操作放大器
    • US20090189693A1
    • 2009-07-30
    • US12416806
    • 2009-04-01
    • Kouichi HanadaMasanori KayamaNaohiro NomuraAkira Noguchi
    • Kouichi HanadaMasanori KayamaNaohiro NomuraAkira Noguchi
    • H03F3/45
    • H03F3/45085H03F1/52H03F2203/45324H03F2203/45352H03F2203/45568
    • An operational amplifier includes a differential amplifier circuit provided at an input stage and an amplifier circuit at a post stage. In the differential amplifier circuit, first and third bipolar transistors are PNP-type bipolar transistors and Darlington-connected. An inverting input terminal is connected to the base terminal of the first bipolar transistor. The first and third bipolar transistors and second and fourth bipolar transistors construct an input differential pair. First and second protection diodes are connected between the base terminals of the first and second bipolar transistors constructing the input differential pair and the ground potential, respectively. Each of the protection diodes is connected so that the cathode terminal is positioned on the base terminal side of the bipolar transistor, and the cathode terminal is positioned on the ground potential side.
    • 运算放大器包括设置在输入级的差分放大器电路和后级放大器电路。 在差分放大器电路中,第一和第三双极晶体管是PNP型双极晶体管和达林顿连接。 反相输入端子连接到第一双极晶体管的基极端子。 第一和第三双极晶体管和第二和第四双极晶体管构成输入差分对。 第一和第二保护二极管分别连接在构成输入差分对和地电位的第一和第二双极晶体管的基极端子之间。 每个保护二极管被连接,使得阴极端子位于双极晶体管的基极端子侧,阴极端子位于地电势侧。
    • 8. 发明授权
    • Operational amplifier
    • 运算放大器
    • US07532076B2
    • 2009-05-12
    • US11665212
    • 2005-09-29
    • Kouichi HanadaMasanori KayamaNaohiro NomuraAkira Noguchi
    • Kouichi HanadaMasanori KayamaNaohiro NomuraAkira Noguchi
    • H03F1/52H03F3/45
    • H03F3/45085H03F1/52H03F2203/45324H03F2203/45352H03F2203/45568
    • An operational amplifier includes a differential amplifier circuit provided at an input stage and an amplifier circuit at a post stage. In the differential amplifier circuit, first and third bipolar transistors are PNP-type bipolar transistors and Darlington-connected. An inverting input terminal is connected to the base terminal of the first bipolar transistor. The first and third bipolar transistors and second and fourth bipolar transistors construct an input differential pair. First and second protection diodes are connected between the base terminals of the first and second bipolar transistors constructing the input differential pair and the ground potential, respectively. Each of the protection diodes is connected so that the cathode terminal is positioned on the base terminal side of the bipolar transistor, and the cathode terminal is positioned on the ground potential side.
    • 运算放大器包括设置在输入级的差分放大器电路和后级放大器电路。 在差分放大器电路中,第一和第三双极晶体管是PNP型双极晶体管和达林顿连接。 反相输入端子连接到第一双极晶体管的基极端子。 第一和第三双极晶体管和第二和第四双极晶体管构成输入差分对。 第一和第二保护二极管分别连接在构成输入差分对和地电位的第一和第二双极晶体管的基极端子之间。 每个保护二极管被连接,使得阴极端子位于双极晶体管的基极端子侧,阴极端子位于地电势侧。
    • 9. 发明申请
    • Image processing apparatus
    • 图像处理装置
    • US20070188805A1
    • 2007-08-16
    • US11489127
    • 2006-07-19
    • Kiyohari NakagamaKouichi HanadaToyotsugu SawakiHiroji Ito
    • Kiyohari NakagamaKouichi HanadaToyotsugu SawakiHiroji Ito
    • G06K15/00
    • H04N1/3871G03G15/36
    • Detection section 22 detects the blank space area in each page for all pages of the document, determining section 23 determines image size for combining a designated stamp image in uniform size in all the pages of that document based on a detection result by detection section 22. Combining section 24 combines the stamp image determined by determining section 23 in each page of the document. For example, size of the maximum blank space area which can fit within blank space areas of all pages of the document in uniform size, is sought, image combining is carried out with an original size if the original size of the stamp image is not larger than the maximum blank space area size, and the stamp image is combined to be in a reduced size so that it fits within the maximum blank space area size if the original size of the stamp image exceeds the maximum blank space area size.
    • 检测部分22检测文档的所有页面的每页中的空白区域,确定部分23基于检测部分22的检测结果,确定用于组合该文档的所有页面中均匀大小的指定标记图像的图像尺寸。 组合部分24组合由文档的每一页中的确定部分23确定的印记图像。 例如,寻找能够以均匀尺寸适合于文档的所有页面的空白区域内的最大空白区域的尺寸,如果印模图像的原始尺寸不大,则以原始尺寸执行图像组合 比最大空白区域大小,并且邮票图像被合并为减小的尺寸,使得如果印模图像的原始尺寸超过最大空白区域尺寸,则其适合最大空白区域尺寸。