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    • 3. 发明公开
    • Thermal head, manufacturing method therefor, and printer
    • Thermokopf,Herstellungsverfahrendafürund Drucker
    • EP2327554A1
    • 2011-06-01
    • EP10189286.7
    • 2010-10-28
    • Seiko Instruments Inc.
    • Morooka, ToshimitsuKoroishi, KeitaroShoji, NoriyoshiSanbongi, Norimitsu
    • B41J2/335
    • B41J2/33535B41J2/33585B41J2/3359Y10T29/49083
    • Provided is a thermal head with enhanced strength and improved thermal efficiency including a cavity portion formed therein at a position corresponding to a heating resistor. Employed is a thermal head (1) including: a support substrate (3) including a concave portion (2) formed in its front surface; an upper substrate (5) bonded in a stacked state to the front surface of the support substrate (3); a heating resistor (7) provided on the front surface of the upper substrate (5) at a position corresponding to the concave portion (2); a pair of electrode portions (8) provided on both sides of the heating resistor (7); and a concave portion (20) formed in the front surface of the upper substrate (5) on a side of the pair of electrode portions (8), the concave portion being provided between the pair of electrode portions (8).
    • 提供了一种具有增强的强度和改善的热效率的热敏头,包括在对应于加热电阻器的位置处形成的空腔部分。 采用热敏头(1),包括:支撑基板(3),其包括形成在其前表面上的凹部(2); 将上层基板(5)以堆叠状态接合到所述支撑基板(3)的前表面; 在与所述凹部(2)对应的位置设置在所述上​​基板(5)的前表面上的发热电阻体(7) 设置在所述加热电阻器(7)两侧的一对电极部分(8); 以及在所述一对电极部(8)的一侧形成在所述上基板(5)的前表面的凹部(20),所述凹部设置在所述一对电极部(8)之间。
    • 4. 发明公开
    • Thermal head and printer
    • Thermokopf und Drucker
    • EP2172342A1
    • 2010-04-07
    • EP09171962.5
    • 2009-10-01
    • Seiko Instruments Inc.
    • Morooka, ToshimitsuKoroishi, KeitaroSato, YoshinoriShoji, NoriyoshiSanbongi, Norimitsu
    • B41J2/335
    • B41J2/33535B41J2/3355B41J2/33585B41J25/312
    • To achieve improvements in heat generation efficiency and strength against external load, provided is a thermal head (1), comprising: a supporting substrate (3); a heat accumulating (5) bonded onto a surface of the supporting substrate (3); and a heating resistor (7) provided on the heat storage layer (5), wherein: a concave portion (2) is provided in a region, which is opposed to the heating resistor (7), of at least one of the surface of the supporting substrate (3) and a surface on a side of the supporting substrate (3) of the heat accumulating portion (5); and a center line of a hollow heat insulating layer (4) formed, by the concave portion (2), between the supporting substrate (3) and the heat storage layer (5) is shifted with respect to a center line (X) of the heating resistor (7).
    • 为了实现发热效率和抵抗外部负载的强度的提高,提供了一种热敏头(1),包括:支撑衬底(3); 在所述支撑基板(3)的表面上结合的蓄热体(5); 以及设置在所述蓄热层(5)上的加热电阻体(7),其特征在于,在与所述加热电阻体(7)相对的区域内设置有凹部(2) 所述支撑基板(3)和所述蓄热部(5)的所述支撑基板(3)的一侧的表面。 并且由所述凹部(2)在所述支撑基板(3)和所述蓄热层(5)之间形成的中空绝热层(4)的中心线相对于所述支撑基板(3)和所述蓄热层(5)的中心线 加热电阻器(7)。
    • 6. 发明公开
    • Thermal head, printer, and manufacturing method for the thermal head
    • Thermokopf,Drucker und Verfahren zur Herstellung des Thermokopfs
    • EP2364855A1
    • 2011-09-14
    • EP11151764.5
    • 2011-01-21
    • Seiko Instruments Inc.
    • Morooka, ToshimitsuKoroishi, KeitaroShoji, NoriyoshiSanbongi, Norimitsu
    • B41J2/335
    • B41J2/33585Y10T156/10
    • Provided is a thermal head that is high in durability and reliability with increased printing efficiency as well as increased manufacturing yields. The thermal head (1) includes: a support substrate (12) including a concave portion (23) having an opening portion (23a) formed in a surface of the support substrate (12); an upper substrate (14) having an external dimension which is smaller than an external dimension of the support substrate (12) and is slightly larger than an external dimension of the opening portion (23a), for closing the opening portion (23a) when bonded to the surface of the support substrate (12) in a stacked state; and a heating resistor (15) formed on a surface of the upper substrate (14) in a position opposed to the concave portion (23) of the support substrate (12).
    • 提供了一种具有高耐久性和可靠性的热敏头,其具有提高的打印效率以及增加的制造成品率。 热敏头(1)包括:支撑基板(12),包括在支撑基板(12)的表面中形成有开口部分(23a)的凹部(23) 外部尺寸小于所述支撑基板(12)的外部尺寸的上部基板(14),并且稍微大于所述开口部(23a)的外部尺寸,用于在接合时封闭所述开口部(23a) 以堆叠状态到所述支撑基板(12)的表面; 以及在与所述支撑基板(12)的所述凹部(23)相对的位置形成在所述上基板(14)的表面上的发热电阻体(15)。
    • 7. 发明公开
    • Thermal head and printer
    • 热敏头和打印机
    • EP2335930A1
    • 2011-06-22
    • EP10191660.9
    • 2010-11-18
    • Seiko Instruments Inc.
    • Koroishi, KeitaroMorooka, ToshimitsuShoji, NoriyoshiSanbongi, Norimitsu
    • B41J2/335
    • B41J2/33545B41J2/33585
    • Provided is a thermal head capable of enhancing heat-insulating performance while maintaining mechanical strength of an upper substrate. A thermal head (1) includes: a substrate main body (13) including a flat plate-shaped support substrate and a flat plate-shaped upper substrate which are bonded to each other in a stacked state; and a rectangular heating resistor (15) formed on a surface of the flat plate-shaped upper substrate, in which: a bonding surface of the flat plate-shaped support substrate includes a concave portion (23) that forms a cavity portion (27) in a region opposed to the rectangular heating resistor (15); and the concave portion (23) includes a groove (25) formed in an inner wall thereof and recessed along a depth direction of the concave portion (23) within a range of a width of the rectangular heating resistor (15).
    • 本发明提供一种能够在维持上基板的机械强度的同时提高隔热性能的热敏头。 本发明提供一种热敏头(1),该热敏头(1)包括:基板主体(13),其包括以层叠状态接合的平板状的支撑基板和平板状的上基板; 以及形成在所述平板状上基板的表面上的矩形加热电阻器,其中:所述平板形支撑基板的接合表面包括形成空腔部分的凹入部分, 在与矩形加热电阻器(15)相对的区域中; 所述凹部在所述矩形状的发热电阻体的宽度范围内,在其内壁形成有沿着所述凹部的深度方向凹陷的槽部。
    • 9. 发明公开
    • Heating resistor element component
    • Hitzewiderstandselementkomponente
    • EP2179851A1
    • 2010-04-28
    • EP09173951.6
    • 2009-10-23
    • Seiko Instruments Inc.
    • Sanbongi, NorimitsuMorooka, ToshimitsuKoroishi, KeitaroShoji, NoriyoshiSato, Yoshinori
    • B41J2/335
    • B41J2/3359B41J2/33575Y10T29/49083
    • To improve heating efficiency and printing quality, a heating resistor element component (4) includes a plurality of heating resistors (14) arranged with intervals on a heat storage layer (13) laminated on a supporting substrate (11) through an intermediation of an adhesive layer (12), in which: the adhesive layer (12) includes an adhesive (12a) for bonding one surface of the supporting substrate (11) and another surface of the heat storage layer (13), and a plurality of gap members (12b) kneaded in the adhesive (12a), for keeping a distance between the one surface of the supporting substrate (11) and the another surface of the heat storage layer (13) constant; and a cavity portion (19) is formed in a region of the adhesive layer (12), the region being opposed to a heating portion of the heating resistor (14).
    • 为了提高加热效率和印刷质量,加热电阻元件部件(4)包括多个加热电阻器(14),其间隔层叠在支撑基板(11)上的热存储层(13)上,通过粘合剂 层(12),其中:粘合层(12)包括用于将支撑基板(11)的一个表面和储热层(13)的另一表面接合的粘合剂(12a)和多个间隙构件 12b),用于保持支撑基板(11)的一个表面和储热层(13)的另一个表面之间的距离恒定; 并且在所述粘合剂层(12)的区域中形成空腔部分(19),所述区域与所述加热电阻器(14)的加热部分相对。