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    • 1. 发明专利
    • Heating element
    • 加热元件
    • JP2008147113A
    • 2008-06-26
    • JP2006335397
    • 2006-12-13
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • TSURUTA KUNIHIROUNO KATSUHIKONAKAJIMA KEIZOFUKUDA YUHANADA MASAKIKARITA TOKUROTERAKADO MASAYUKI
    • H05B3/10H05B3/03
    • PROBLEM TO BE SOLVED: To provide a heating element with reliability and productivity improved, capable of manufacturing in a simple manufacturing method and a simple quality control. SOLUTION: The heating element has a structure with a pair or more of electrodes 13, 14 and a resistor 15 capable of heating, formed on an upper part of a base material 12, and an organic coating material 16 having an adhesive material 17 arranged to cover the above electrodes and the resistor 15 for excellently preventing intrusion of moisture or the like. Either a glass transition point tg or a brittle temperature tb of the adhesive material 17 is set on a lower temperature side than a crystallization temperature Tc of a polymer material used for the resistor 15, and also, a melting point tm of the adhesive material 17 has thermal behavior characteristics existing on higher temperature side than a melting point Tm of the polymer material used for the resistor 15, and thus, reliability excellent in low temperature or high temperature can be retained for a long period of time, and the heating element with productivity and reliability improved can be provided. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了提供可靠性和生产率提高的加热元件,能够以简单的制造方法和简单的质量控制制造。 解决方案:加热元件具有在基材12的上部形成有能够加热的一对或多个电极13,14和电阻15以及具有粘合材料的有机涂层材料16的结构 17布置成覆盖上述电极和电阻器15,以极好地防止湿气等侵入。 粘合剂材料17的玻璃化转变点tg或脆性温度tb设定在比用于电阻器15的聚合物材料的结晶温度Tc低的温度侧,粘合剂材料17的熔点tm 具有比用于电阻器15的聚合物材料的熔点Tm高的温度侧的热行为特性,因此可以长时间保持低温或高温优异的可靠性,并且具有 可以提高生产率和可靠性。 版权所有(C)2008,JPO&INPIT
    • 2. 发明专利
    • Heating element
    • 加热元件
    • JP2008147111A
    • 2008-06-26
    • JP2006335394
    • 2006-12-13
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • TSURUTA KUNIHIROHANADA MASAKIKARITA TOKUROISHII TAKAHITONAKAJIMA KEIZOUMEDA AKIHIROUNO KATSUHIKOOGINO HIROYUKI
    • H05B3/02C09D5/24C09D167/00C09J9/02C09J167/02C09K3/10H05B3/14
    • PROBLEM TO BE SOLVED: To provide a heating element with reliability and productivity improved, capable of manufacturing by a simple manufacturing method and a simple quality control.
      SOLUTION: The heating body has a structure with a pair or more of electrodes 13, 14 and a resistance 15 capable of heating formed on an upper part of a base material 12, and an organic coating material 16 which is a lamination with an adhesive material 17 and an organic coat material 18 arranged to cover the above electrodes and the resistance body 15. The adhesive material 17 is a curing-agent unused type of hardly dissolving solvent solubility with crystallization improved. The electrodes 13, 14 contains a polyester resin of curing agent unused type, a conductive terminal 20 for feeding power is laminated at its power feeding part through a conductive organic material 19, and a lead wire 22 for power feeding is jointed to the conductive terminal 20 by using a joining material 23 through an air gap 21 of a small dimension provided on the organic coating material 16. Since the electrodes 13, 14, the adhesive material 17 or the like are optimized with consideration of compatibility with each other, the heating element can be manufactured in a simple method and a simple quality control, and the one with productivity and reliability improved can be provided.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供可靠性和生产率提高的加热元件,能够通过简单的制造方法和简单的质量控制来制造。 解决方案:加热体具有一对或多个电极13,14和能够加热形成在基材12的上部上的电阻15的结构,以及有机涂层材料16,其是与 粘合材料17和布置成覆盖上述电极和电阻体15的有机涂层材料18.粘合剂材料17是不溶解溶剂溶解性的固化剂未溶解度,结晶度提高。 电极13,14包含不使用固化剂的聚酯树脂,通过导电性有机材料19在其供电部分层叠用于供电的导电端子20,并且将用于供电的引线22接合到导电端子 通过使用接合材料23通过设置在有机涂层材料16上的小尺寸的气隙21来使用。由于电极13,14,粘合剂材料17等被考虑到彼此的相容性而被优化,所以加热 元件可以以简单的方法和简单的质量控制制造,并且可以提供改善生产率和可靠性的元件。 版权所有(C)2008,JPO&INPIT
    • 3. 发明专利
    • Plane shaped heating element
    • 平面加热元件
    • JP2007280788A
    • 2007-10-25
    • JP2006105956
    • 2006-04-07
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • HANADA MASAKIKARITA TOKURO
    • H05B3/03H05B3/14H05B3/20H05B3/34
    • PROBLEM TO BE SOLVED: To solve a problem that an unevenness of a heated temperature occurs when a total length of a product is predetermined and the total length is not an integer multiple of a minimum distance between branch electrodes and the branch electrodes cannot be arranged in equidistance.
      SOLUTION: A pair of main electrodes 3, 4 facing with each other on a PET film 2, branch electrodes 5-9 arranged in a comb shape from the main electrodes 3, 4, a high polymer resistance 10, and an adhesive resin layer 11 having an adhesiveness are bonded with a pre-formed coating member 12 to make a plane shaped heating element 1. The branch electrode 9 is made thicker than the other branch electrodes 5-8 and a minimum distance X between a branch electrode 5 and a branch electrode 6 of different poles neighboring each other is arranged to be equal to a minimum distance between the other branch electrodes, and a minimum distance A between branch electrodes 5, 6 of a same pole is made longer than a minimum distance B between branch electrodes 6, 7 of the same pole.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了解决当产品的总长度是预定的并且总长度不是分支电极和分支电极之间的最小距离的整数倍时发生加热温度不均匀的问题不能 以等距排列。 解决方案:在PET膜2上彼此面对的一对主电极3,4,从主电极3,4形成梳状的分支电极5-9,高聚合物电阻10和粘合剂 具有粘合性的树脂层11与预成形涂层部件12接合,形成平面状的加热元件1.使分支电极9比其他分支电极5-8厚,并且分支电极5 并且彼此相邻的不同极的分支电极6被设置为等于其它分支电极之间的最小距离,并且使相同极的分支电极5,6之间的最小距离A比第二极之间的最小距离B长 同一极的分支电极6,7。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Plane heating element
    • 平面加热元件
    • JP2007179776A
    • 2007-07-12
    • JP2005374436
    • 2005-12-27
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • HANADA MASAKIARIMA SATOSHIUEDA SHIGEKI
    • H05B3/20A47C7/74H01C7/00H05B3/03H05B3/14H05B3/34
    • PROBLEM TO BE SOLVED: To facilitate ways of manufacturing with flexibility maintained by structuring functions of flexibility, printability, and intensity item by item with materials having such individual functions, and improve on a sense of use and reliability such as durability of a plane heating element at the time of its mounting on a fixture. SOLUTION: A flexible base material 2 and a flexible resin film 4 are made to retain flexibility by not having intensity needed for printing formation of electrodes 5 and polymer resistive elements 6 nor having intensity against stress such as growth at the use of the same, and at the same time, a regulating part 3 with intensity needed for printing formation of the electrodes 5 and the polymer resistive elements 6 or intensity against stress such as growth at use is provided on either or both of front and rear faces of the flexible base materials 2 to regulate the growth of the flexible base material 2 and the flexible resin film 4 while maintaining the flexibility of the former 2, so that the electrodes 5 and the polymer resistive elements 6 formed on the flexible base material 2 are prevented from growing with flexibility maintained. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:通过以具有这种单独功能的材料逐项构建灵活性,可印刷性和强度的功能来维持柔性制造的方式,并提高使用感和可靠性,例如耐久性 平面加热元件在其安装在固定装置上时。 解决方案:柔性基材2和柔性树脂膜4通过不具有印刷形成电极5和聚合物电阻元件6所需的强度而保持柔性,也不具有抗应力的强度,例如在使用 同时,同时,在电极5和聚合物电阻元件6的印刷形成所需的强度的调节部件3或者在使用时的增长等应力的强度被设置在 柔性基材2,以调节柔性基材2和柔性树脂膜4的生长,同时保持前者2的柔性,从而防止形成在柔性基材2上的电极5和聚合物电阻元件6 随着灵活性的增长而增长。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Heating element
    • 加热元件
    • JP2008147108A
    • 2008-06-26
    • JP2006335390
    • 2006-12-13
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • TSURUTA KUNIHIROISHII TAKAHITONAKAJIMA KEIZOUMEDA AKIHIROOGINO HIROYUKIUNO KATSUHIKOKARITA TOKUROHANADA MASAKI
    • H05B3/20H05B3/10
    • PROBLEM TO BE SOLVED: To provide a heating element with productivity improved capable of manufacturing by a simple manufacturing method and a simple quality control. SOLUTION: The heating element has a structure with a pair or more of electrodes 8, 9 and a resistor 10 made of an organic resin system and capable of generating heat, formed on an upper part of a base material 7, and a coating material 11 of the organic resin system laminated to further cover on above the electrodes 8, 9 and the resistor 10 of the organic resin system. The coating material 11 is provided with an adhesive resin material 12 mainly composed of polyester resin with an organic coat material 13 of a polyester resin system laminated, and formed on an opposite surface to the base material 7. The adhesive material 12 is a type of hardly dissolving solvent solubility comparing with the base material 7 and the organic coat material 13, with a lower concentration of an aromatic dicarboxylic acid and the same or higher concentration of alicyclic dicarboxylic acid and aliphatic dicarboxylic acid. Since the composition of the adhesive resin material 12 is optimized, the heating element can be manufactured in a simple method and a simple quality control, the one with productivity and reliability improved can be provided. COPYRIGHT: (C)2008,JPO&INPIT
    • 解决的问题:通过简单的制造方法和简单的质量控制来提供能够提高生产率的加热元件。 解决方案:加热元件具有一对或多个电极8,9和由有机树脂体系制成并能够产生热并形成在基材7的上部上的电阻器10的结构, 层压的有机树脂体系的涂料11进一步覆盖有机树脂体系的电极8,9和电阻体10的上方。 涂料11具有主要由聚酯树脂构成的粘合树脂材料12,其中层压有聚酯树脂体系的有机涂层材料13,并形成在与基材7相反的表面上。粘合剂材料12是一种 与基材7和有机涂层材料13相比,难溶溶性溶解度较低,芳族二羧酸浓度较低,脂环族二羧酸和脂肪族二羧酸含量相同或更高。 由于粘合树脂材料12的组成最优化,所以可以以简单的方法和简单的质量控制来制造加热元件,从而可以提高生产率和可靠性。 版权所有(C)2008,JPO&INPIT
    • 6. 发明专利
    • Method for manufacturing solid-state imaging device
    • 制造固态成像装置的方法
    • JP2007067325A
    • 2007-03-15
    • JP2005254695
    • 2005-09-02
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • HANADA MASAKI
    • H01L27/148H01L31/10
    • PROBLEM TO BE SOLVED: To provide a method for manufacturing a solid-state imaging device which has a gate oxide film of high film quality and also has small breakage of an impurity profile in a charge transfer area. SOLUTION: An insulating film formation step is performed for forming oxide films (insulating films) 103 and 101 comprising a thin film area 103a having a film thickness t1 and a thick film area 103b having a film thickness t2 thicker than the film thickness t1 on a main surface of a p-type semiconductor substrate 100. After the insulating film formation step, a transfer area formation step is performed for forming the charge transfer area 104 from the top surface of the p-type semiconductor substrate 100 along the thickness by injecting n-type impurity ions into the p-type semiconductor substrate 100, while using the thick film area 103b of the oxide films 101 and 103 as a buffer film. The thin film area 103a is made to correspond to an area where a photodiode PD is to be formed. COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:提供一种制造具有高质量的栅极氧化膜并且在电荷转移区域中具有小的杂质分布破坏的固体摄像器件的方法。

      解决方案:进行绝缘膜形成步骤,用于形成氧化膜(绝缘膜)103和101,该氧化物膜(绝缘膜)103和101包括具有膜厚度t1的薄膜区域103a和具有比膜厚度厚的层厚度t2的厚膜区域103b t1在p型半导体衬底100的主表面上。在绝缘膜形成步骤之后,执行转移区域形成步骤,以从p型半导体衬底100的顶表面沿厚度形成电荷转移区域104 通过在p型半导体衬底100中注入n型杂质离子,同时使用氧化膜101和103的厚膜区域103b作为缓冲膜。 使薄膜区域103a对应于要形成光电二极管PD的区域。 版权所有(C)2007,JPO&INPIT

    • 7. 发明专利
    • Heating element
    • 加热元件
    • JP2008147109A
    • 2008-06-26
    • JP2006335391
    • 2006-12-13
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • TSURUTA KUNIHIROISHII TAKAHITONAKAJIMA KEIZOUMEDA AKIHIROOGINO HIROYUKIUNO KATSUHIKOKARITA TOKUROHANADA MASAKI
    • H05B3/10H05B3/14H05B3/20
    • PROBLEM TO BE SOLVED: To provide a heating element with productivity improved capable of manufacturing in a simple manufacturing method and a simple quality control.
      SOLUTION: The heating element is structured in an arrangement with a pair or more of electrodes 8, 9 and a resistor 10 which is made of a thermoplastic material, a bridge material and a kneaded product mainly composed of carbon black and capable of generating heat, formed on an upper part of a base material 7, and a coating material 11 which is a lamination with an adhesive material 12 and an organic coat material 13 on above the electrodes and the resistor for covering that. The adhesive material 12 is a curing-agent unused type of hardly-dissolving-solvent solubility with crystallization improved, and has a lower melting point comparing with the base material 7 and the organic coat material 13; it is a different organic material from the resistor 10. Since the material composition is optimized, the heating element can be manufactured in a simple method and a simple quality control, the one with productivity and reliability improved can be provided.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供能够以简单的制造方法制造的生产率提高的加热元件和简单的质量控制。 解决方案:加热元件构造成具有一对或多个电极8,9和电阻器10的布置,电极8,9和电阻器10由热塑性材料制成,桥接材料和主要由炭黑组成的捏合产品, 形成在基材7的上部的热量,以及与电极上方的粘合剂材料12和有机涂层材料13层叠的涂层材料11和用于覆盖的电阻器。 粘合剂材料12是与基体材料7和有机涂层材料13相比,不溶解溶剂的固化剂不溶解性,结晶性提高,熔点低。 它是与电阻器10不同的有机材料。由于材料组成被优化,所以可以以简单的方法和简单的质量控制来制造加热元件,可以提供提高生产率和可靠性的加热元件。 版权所有(C)2008,JPO&INPIT
    • 8. 发明专利
    • Planar heating element
    • 平面加热元件
    • JP2008103234A
    • 2008-05-01
    • JP2006285937
    • 2006-10-20
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • HANADA MASAKI
    • H05B3/02H05B3/03
    • PROBLEM TO BE SOLVED: To provide a heating element having a terminal constitution superior in productivity, large in allowable current, and superior in reliability. SOLUTION: In a planar heating element in which a terminal member 5 capable of solder junction is adhered wherein a conductive resin material 5b is arranged and installed at an electrode 3 and which is composed of an electric insulating covering material 9 adhered to an electric insulating base material 2, the electric insulating covering material 9 has an opening part 7 at a site where a lead wire 8 is solder joined to a terminal member 5, and the opening part 7 has a size and a shape more inward than the end part of the terminal member 5 and is made eccentric from the center of the terminal member 5. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种具有生产率优异,容许电流大,可靠性优异的端子结构的加热元件。 解决方案:在其中粘附能够焊接接头的端子构件5的平面加热元件中,其中导电树脂材料5b布置并安装在电极3上,并且由电绝缘覆盖材料9组成, 电绝缘基材2,电绝缘性覆盖材料9在引线8与端子部件5焊接的位置具有开口部7,开口部7的尺寸和形状比端部更靠内侧 端子构件5的一部分,并且从端子构件5的中心偏心。C.版权所有(C)2008,JPO&INPIT
    • 9. 发明专利
    • Flat heating element
    • 平面加热元件
    • JP2008269914A
    • 2008-11-06
    • JP2007110238
    • 2007-04-19
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • OBARA KAZUYUKITERAKADO MASAYUKIHANADA MASAKI
    • H05B3/36H05B3/03H05B3/10H05B3/14H05B3/20
    • PROBLEM TO BE SOLVED: To provide a flat heating element in which neither an electrode portion made of an electrically conductive material nor a heating portion made of a resistor material peels from the base material and in which no abnormal heat generation occurs in the electrode portion and uniform heat generation in the heating portion can be assured, while maintaining flexibility and elasticity.
      SOLUTION: The flat heating element includes a base material 2 having flexibility and elasticity, a pair of electrode portions 3a and 3b provided on a surface of the base material 2 and made of an electrically conductive material 5, and a heating portion 4 connected to the pair of electrode portions 3a and 3b and made of a resistor material 6 having a self temperature control function. The electrode portions 3a and 3b, and the heating portion 4 are partially embedded in the base material 2 in their thickness directions.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供一种扁平加热元件,其中既不由导电材料制成的电极部分也不是由电阻材料制成的加热部分从基材剥离并且在其中不发生异常发热 在保持柔软性和弹性的同时,能够确保加热部中的电极部分和均匀的发热。 平面加热元件包括具有柔软性和弹性的基材2,设置在基材2的表面上并由导电材料5制成的一对电极部分3a和3b以及加热部分4 连接到一对电极部分3a和3b,并由具有自温度控制功能的电阻器材料6制成。 电极部分3a和3b以及加热部分4在其厚度方向上部分地嵌入基材2中。 版权所有(C)2009,JPO&INPIT
    • 10. 发明专利
    • Heating panel
    • 加热面板
    • JP2008267628A
    • 2008-11-06
    • JP2007107951
    • 2007-04-17
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • KARITA TOKUROHANADA MASAKIOBARA KAZUYUKITERAKADO MASAYUKI
    • F24D13/02H05B3/10H05B3/20
    • PROBLEM TO BE SOLVED: To provide a heating panel which is free of the probability of causing separation, cracks and the like of a resistor formation part of a sheet heating element, even if the difference in coefficients of thermal expansion between the sheet heating element and the panel is large.
      SOLUTION: When the sheet heating element on which a resistor is formed by printing, and the like, is mounted on the panel by using a mounting means so that the resistor is not formed on a part opposed to the mounting means, the stress applied to the resistor can be reduced as the resistor is not printed on a part of the mounting means on which expansion is controlled, even when the difference in the coefficients of thermal expansion between the sheet-heating element and the panel becomes large.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:即使在片材之间的热膨胀系数差异的情况下,也可以提供一种加热板,其不会发生片状加热元件的电阻体形成部分的分离,裂纹等 加热元件和面板很大。 解决方案:当通过印刷形成电阻器的片材加热元件等通过使用安装装置安装在面板上,使得电阻器不形成在与安装装置相对的部分上时, 即使当片状加热元件和面板之间的热膨胀系数的差异变大时,施加到电阻器的应力也可以减小,因为电阻器不被印刷在其上进行膨胀控制的安装装置的一部分上。 版权所有(C)2009,JPO&INPIT