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公开(公告)号:US6130598A
公开(公告)日:2000-10-10
申请号:US780374
申请日:1997-01-08
CPC分类号: G01K1/16
摘要: The invention relates to a temperature detecting apparatus and an automobile using the same, and is intended to improve the heat response characteristic.The apparatus comprises a first metal pipe, first and second metal wires accommodated in the first metal pipe, at least one end of each wire being projected from one end of the first metal pipe, an insulator for keeping an electric insulation of the first metal pipe and the first and second metal wires in the first metal pipe, a temperature detecting element projecting out of one end of the first metal pipe and disposed between ends of the first and second metal wires, and a metal cap fitted to one end of the first metal pipe for covering the temperature detecting element, wherein the temperature detecting element is in a substantially flat shape or in a flat shape longer in the length in the direction between the first and second metal wires than the length in the direction at right angle thereto, and a portion of the metal cap opposite to the temperature detecting element is in a flat shape in the same direction in a shape similar to the temperature detecting element.
摘要翻译: 本发明涉及一种温度检测装置和使用其的汽车,旨在提高热响应特性。 该装置包括:第一金属管,容纳在第一金属管中的第一和第二金属线,每条线的至少一端从第一金属管的一端突出,用于保持第一金属管的电绝缘的绝缘体 以及第一金属管中的第一和第二金属线,从第一金属管的一端突出设置在第一和第二金属线的端部之间的温度检测元件,以及安装在第一金属管的第一金属管的一端的金属帽 用于覆盖温度检测元件的金属管,其中所述温度检测元件处于与所述第一和第二金属线之间的方向上的长度方向上的直角方向上的长度大致平坦的形状或扁平形状, 并且与温度检测元件相对的金属帽的一部分在与温度检测元件类似的形状中处于相同方向上的平坦形状。
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公开(公告)号:US06272735B1
公开(公告)日:2001-08-14
申请号:US09324807
申请日:1999-06-03
IPC分类号: H01C702
CPC分类号: G01K7/22 , G01K1/12 , H01C1/026 , Y10T29/49085 , Y10T29/49087 , Y10T29/49098
摘要: In order to present a temperature sensor which works stable also in a high temperature condition showing only a small deviation in the resistance value of thermistor, the invented temperature sensor comprises a heat resisting cap (5) made of a metal, a thermistor (1) housed inside the heat resisting cap (5) and at least more than one lead wire (4) which is electrically connected with the thermistor (1) and is pulled out of said heat resisting cap (5), said heat resisting cap (5) being formed with an alloy containing Ni—Cr as the main ingredient.
摘要翻译: 为了呈现温度传感器,其在仅显示热敏电阻的电阻值的小偏差的高温条件下也稳定,本发明的温度传感器包括由金属制成的耐热盖(5),热敏电阻(1) 容纳在所述耐热帽(5)内的至少一个引线(4),所述引线与所述热敏电阻(1)电连接并被拉出所述耐热帽(5),所述耐热帽(5) 以含有Ni-Cr为主要成分的合金形成。
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公开(公告)号:US6164819A
公开(公告)日:2000-12-26
申请号:US836274
申请日:1997-07-28
CPC分类号: G01K7/22 , G01K1/12 , H01C1/026 , Y10T29/49085 , Y10T29/49087 , Y10T29/49098
摘要: In order to present a temperature sensor which works stable also in a high temperature condition showing only a small deviation in the resistance value of thermistor, the invented temperature sensor comprises a heat resisting cap (5) made of a metal, a thermistor (1) housed inside the heat resisting cap (5) and at least more than one lead wire (4) which is electrically connected with the thermistor (1) and is pulled out of said heat resisting cap (5), said heat resisting cap (5) being formed with an alloy containing Ni--Cr as the main ingredient.
摘要翻译: PCT No.PCT / JP96 / 02384 Sec。 371日期1997年7月28日第 102(e)日期1997年7月28日PCT 1996年8月27日提交PCT为了呈现温度传感器,其在仅显示热敏电阻的电阻值的小偏差的高温条件下也稳定,本发明的温度传感器包括 由金属制成的耐热帽(5),容纳在耐热帽(5)内的热敏电阻(1)和与热敏电阻(1)电连接的至少一根以上的引线(4),并被拉出 的所述耐热帽(5),所述耐热帽(5)由含有Ni-Cr作为主要成分的合金形成。
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公开(公告)号:US06297723B1
公开(公告)日:2001-10-02
申请号:US09380952
申请日:1999-12-27
IPC分类号: H01C702
CPC分类号: G01K7/22
摘要: A low cost high-performance temperature sensor that can be manufactured of a thin-film temperature detecting element with high yield. The temperature sensor has a metal cylinder (10); a ceramic substrate (2) placed in the metal cylinder and a temperature detecting element (3) and film electrodes (94) connected with the output of the temperature detecting element (3); an inorganic filer (95) for absorbing stress to hold the ceramic substrate (2) inside the metal cylinder (1); and a cap (6), provided on one end of the metal cylinder (1), for protecting the temperature detecting element (30) on the ceramic substrate (2). One end of the ceramic substrate is fixed to a first end of a terminal (27) which is U-shaped, and the terminal includes an expansion and contraction absorbing portion (20) between a first and second end.
摘要翻译: 一种低成本的高性能温度传感器,可以以高产率制造薄膜温度检测元件。 温度传感器具有金属圆筒(10); 放置在金属圆筒中的陶瓷基板(2)和与温度检测元件(3)的输出端连接的温度检测元件(3)和薄膜电极(94)。 用于吸收将陶瓷基板(2)保持在金属圆筒(1)内部的应力的无机滤片(95); 以及设置在所述金属圆筒(1)的一端上用于保护所述陶瓷基板(2)上的所述温度检测元件(30)的盖(6)。 陶瓷基板的一端固定在U字形的端子(27)的第一端,端子在第一和第二端之间包括膨胀和收缩吸收部分(20)。
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公开(公告)号:US20240117206A1
公开(公告)日:2024-04-11
申请号:US18472679
申请日:2023-09-22
申请人: Mayumi YOSHIHARA , Michihiko Namba , Takashi Tamai , Shin Hasegawa , Yuta Nakamura , Daiki Hasebe
发明人: Mayumi YOSHIHARA , Michihiko Namba , Takashi Tamai , Shin Hasegawa , Yuta Nakamura , Daiki Hasebe
IPC分类号: C09D11/322
CPC分类号: C09D11/322
摘要: An ink contains water, a coloring material, a resin, and an organic solvent, wherein the dried layer of the ink has a surface free energy γS having a polar component γSp of from 3.5 to 20 J/m2 at 25 degrees C.
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公开(公告)号:US10851253B2
公开(公告)日:2020-12-01
申请号:US16354834
申请日:2019-03-15
IPC分类号: C09D11/322 , B41J2/01 , C09D11/40 , B41J11/00 , B41M5/00
摘要: An image forming method includes applying white ink containing hollow resin particulate to a recording medium and contacting a heating roller having a diameter of 200 mm or less with a first surface of the recording medium.
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7.
公开(公告)号:US20200238731A1
公开(公告)日:2020-07-30
申请号:US16851208
申请日:2020-04-17
申请人: Shun SAITO , Hiromi Sakaguchi , Takashi Tamai , Sayuri Kojima , Yuya Hirokawa
发明人: Shun SAITO , Hiromi Sakaguchi , Takashi Tamai , Sayuri Kojima , Yuya Hirokawa
摘要: An image forming method is provided. The method includes the steps of (a) applying an ink to a recording medium to form an image and (b) applying a pressure to the recording medium to which the ink has been applied. The ink comprises water, an organic solvent, and a colorant. When the ink is formed into an ink film, a maximum value of logarithmic damping ratio of the ink film is 1.50 or less and a time elapsed until the logarithmic damping ratio reaches the maximum value is 3,800 seconds or less, when measured by a rigid-body pendulum test at 60° C.
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公开(公告)号:US08550587B2
公开(公告)日:2013-10-08
申请号:US13048293
申请日:2011-03-15
申请人: Takashi Tamai , Takeshi Tanoue
发明人: Takashi Tamai , Takeshi Tanoue
CPC分类号: B41J19/142 , B41J2/2054 , G06K15/107 , G06K15/1868
摘要: Two types of decimating mask patterns having different ink gradation ratio distributions are prepared, and in the outbound and inbound passes of a head unit during bidirectional printing, the numbers of times ink is ejected from nozzle rows in recording heads provided for each ink are controlled using mask patterns that differ in accordance with the darkness of the ink.
摘要翻译: 准备具有不同墨水浓度比例分布的两种抽取式掩模图案,并且在双向打印期间的头单元的出站和进入通行中,使用为每种墨提供的记录头中的喷嘴列喷出的墨次数由 根据墨水的黑暗而不同的掩模图案。
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9.
公开(公告)号:US10723142B2
公开(公告)日:2020-07-28
申请号:US15792833
申请日:2017-10-25
申请人: Shun Saito , Hiromi Sakaguchi , Takashi Tamai , Sayuri Kojima , Yuya Hirokawa
发明人: Shun Saito , Hiromi Sakaguchi , Takashi Tamai , Sayuri Kojima , Yuya Hirokawa
摘要: An image forming method is provided. The method includes the steps of (a) applying an ink to a recording medium to form an image and (b) applying a pressure to the recording medium to which the ink has been applied. The ink comprises water, an organic solvent, and a colorant. When the ink is formed into an ink film, a maximum value of logarithmic damping ratio of the ink film is 1.50 or less and a time elapsed until the logarithmic damping ratio reaches the maximum value is 3,800 seconds or less, when measured by a rigid-body pendulum test at 60° C.
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公开(公告)号:US20200156389A1
公开(公告)日:2020-05-21
申请号:US16687866
申请日:2019-11-19
申请人: Sayuri KOJIMA , Takashi Tamai , Atsufumi Hanazawa
发明人: Sayuri KOJIMA , Takashi Tamai , Atsufumi Hanazawa
摘要: An image forming method includes applying a processing fluid to a recording medium, applying an ink to the recording medium onto which the processing fluid has been applied, and heating the recording medium onto which the ink has been applied, wherein the ink comprises a black ink and at least one color ink other than the black ink, wherein the following relationship is satisfied: |γ(k)-γ(c)|≤5 mN/m, where γ(k) represents a dynamic surface tension of the black ink at a surface lifetime of 15 ms and γ(c) represents a dynamic surface tension of the at least one color ink at a surface lifetime of 15 ms, wherein the ink discharged from an extreme downstream nozzle in a direction of recording medium conveyance is heated at 1.5 seconds or less after the ink is attached to the recording medium.
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