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    • 2. 发明授权
    • Driving method of heat generating resistor in heat recording device
    • 热记录装置中发热电阻器的驱动方法
    • US5359352A
    • 1994-10-25
    • US682917
    • 1991-04-09
    • Yoshiaki SaitaNorimitsu SanbongiYoshinori Sato
    • Yoshiaki SaitaNorimitsu SanbongiYoshinori Sato
    • B41J2/365B41J2/35
    • B41J2/3551B41J2/3555B41J2/365
    • A method of driving heating resistors in a thermal recording apparatus comprising dividing a plurality of heating resistors into a plurality of separate blocks. The heating resistors in the blocks are driven by sequentially applying a pulse to each block to generate heat sequentially, whereby a current which is generated in the heating resistors by means of application of a constant voltage pulse changes from a first state with a large current to a second state with a small current in a stepwise-like manner within a pulse application time, and the plurality of blocks are sequentially driven so that the first state with a large current within the pulse application time of one block does not coincide with the first state within the pulse application time of another block. Also, the plurality of blocks may be sequentially driven so that the second state with a small current within the pulse application time of one block coincides with the first state with a large current within the pulse application time of a block which is next applied with a pulse.
    • 一种在热敏记录设备中驱动加热电阻器的方法,包括将多个加热电阻器分成多个单独的块。 块中的加热电阻器通过对每个块顺序地施加脉冲来驱动,以依次产生热量,由此通过施加恒定电压脉冲在加热电阻器中产生的电流从具有大电流的第一状态变化到 在脉冲施加时间内以阶梯状的方式具有小电流的第二状态,并且顺序地驱动多个块,使得在一个块的脉冲施加时间内具有大电流的第一状态与第一个块的脉冲施加时间不一致 状态在另一个块的脉冲施加时间内。 此外,可以顺序地驱动多个块,使得在块的脉冲施加时间内的一个块的脉冲施加时间内的具有小电流的第二状态与块的脉冲施加时间内的大电流的第一状态一致,接下来应用 脉冲。
    • 3. 发明授权
    • Driving method of heat element array
    • 热元件阵列的驱动方法
    • US5343222A
    • 1994-08-30
    • US781745
    • 1991-10-23
    • Yoshiaki SaitaNorimitsu SanbongiYoshinori Sato
    • Yoshiaki SaitaNorimitsu SanbongiYoshinori Sato
    • B41J2/335B41J2/355B41J2/35
    • B41J2/355
    • An array of heat elements is driven by a driving circuit including a plurality of control units operative to sequentially carry out generation of heat efficiently even with using a relatively small capacity of a power supply and without relying on processing by CPU, thereby achieving fast heat generating operation while saving electric power. The thermal head is provided with a plurality of heat generating units each being comprised of a heat resistive element for generating heat by current flow and an electrode for supplying a current to the heat resistive element, and a plurality of switching elements for controlling supply of current to respective one of the heat generating units. The heat generating unit is constructed such that its resistance increases according to a temperature rising of the heat resistive element by the current supply so as to reduce an output of a driving current. The switching element is composed of, for example, a thyristor operative to turn off the current supply when the current flowing therethrough is reduced below a given level. A voltage between the switching element and the corresponding heat generating unit is monitored to detect the turning-off of the switching element so as to constitute a turning-off detector. The detection of the turning-off indicates the completion of the heat generation or the finish of current supply. Thus, after the detection of the turning-off, a next switching element is initiated to start generation of heat in an adjacent or subsequent heat generating unit.
    • 一组热元件由包括多个控制单元的驱动电路驱动,该控制单元可操作以有效地依次执行热量的产生,即使使用相对较小的电源容量并且不依赖于CPU的处理,从而实现快速的发热 节省电力的同时运行。 热敏头具有多个发热单元,每个发热单元由用于通过电流产生热量的耐热元件和用于向耐热元件供应电流的电极和用于控制电流供应的多个开关元件 到相应的一个发热单元。 发热单元被构造成使得其电阻根据电流源的耐热元件的温度升高而增加,从而减小驱动电流的输出。 开关元件例如由晶闸管组成,当流过其中的电流降低到给定电平以下时,晶闸管可操作以截止电流源。 监视开关元件和对应的发热单元之间的电压,以检测开关元件的关断,从而构成关断检测器。 关闭的检测表示发热完成或电流完成。 因此,在检测到关闭之后,启动下一个开关元件以在相邻或随后的发热单元中开始产生热量。
    • 4. 发明授权
    • Manufacturing method for a thermal head
    • 热头制造方法
    • US08621888B2
    • 2014-01-07
    • US12460780
    • 2009-07-24
    • Toshimitsu MorookaKeitaro KoroishiYoshinori SatoNoriyoshi ShojiNorimitsu Sanbongi
    • Toshimitsu MorookaKeitaro KoroishiYoshinori SatoNoriyoshi ShojiNorimitsu Sanbongi
    • C03B19/00H01C17/00B41J2/335
    • B41J2/33535B41J2/33585B41J2/3359
    • In manufacturing method for a thermal head, concave portions, including a reference concave portion, are formed on a surface of a substrate so that a length of each of the concave portions other than the reference concave portion increases as a distance from the reference concave portion in a length direction increases and so that a width of each of the concave portions other than the reference concave portion increases as a distance from the reference concave portion in a width direction increases. A mark identifying the reference concave portion is formed on the surface of the substrate. An insulating film is thermally fusion bonded to the surface of the substrate including the concave portions formed thereon. Heating resistors are formed on the insulating film using a photo mask by aligning the photo mask with the substrate in accordance with the reference concave portion to form the heating resistors so as to be opposed to the plurality of concave portions.
    • 在热敏头的制造方法中,在基板的表面上形成有包括基准凹部的凹部,使得除了基准凹部以外的各个凹部的长度与基准凹部的距离增加 在长度方向上的长度方向增加,使得除了基准凹部以外的各个凹部的宽度随着宽度方向的基准凹部的距离的增加而增加。 在基板的表面上形成标识基准凹部的标记。 将绝缘膜热熔接合到包括形成在其上的凹部的基板的表面。 使用光掩模在绝缘膜上形成加热电阻器,通过根据参考凹部将光掩模与衬底对准,以形成加热电阻器,以与多个凹部相对。
    • 5. 发明授权
    • Adhesive label issuing device and printer
    • 粘合标签发行装置和打印机
    • US08502847B2
    • 2013-08-06
    • US13404541
    • 2012-02-24
    • Yoshinori SatoKazuo TaniNorimitsu Sanbongi
    • Yoshinori SatoKazuo TaniNorimitsu Sanbongi
    • B41J2/32G09F3/10
    • B65C9/25B65C9/183B65C11/0289B65H20/02B65H35/06B65H2301/512125B65H2301/5151B65H2404/143B65H2511/11B65H2553/40B65H2801/75B65H2220/03
    • A printer includes: a cutter unit for cutting a label sheet to obtain an adhesive label with a desired length by allowing the label sheet to pass through the cutter unit; an adhesive strength exhibiting unit for allowing the adhesive label to exhibit adhesive strength by heating the adhesive label; a sheet loosening unit placed on a downstream side of the cutter unit and an upstream side of the adhesive strength exhibiting unit in a sheet transporting direction; and a sheet-passage direction changing unit for changing the sheet-passage direction in the upstream sheet-passage part by changing a direction of the upstream sheet-passage part from a reference position at which a sheet-passage direction in the upstream sheet-passage part is placed on the same line as a sheet-passage direction in the downstream sheet-passage part to an inclined position at which the direction is inclined from the reference position.
    • 打印机包括:切割单元,用于通过允许标签片通过切割器单元来切割标签片以获得具有期望长度的粘合剂标签; 粘合强度显示单元,用于通过加热粘合标签来使粘合剂标签显示出粘合强度; 放置在切割单元的下游侧的片材松动单元和片材输送方向上的粘合强度呈现单元的上游侧; 以及纸张通过方向改变单元,用于通过从上游纸张通道中的纸张通过方向改变上游纸张通道部分的方向来改变上游纸张通道部分中的纸张通过方向 部分被放置在与下游片通道部分中的片材通过方向相同的线上,该倾斜位置在方向与基准位置倾斜的倾斜位置处。
    • 10. 发明授权
    • Thermal head manufacturing method, thermal head, and printer
    • 热敏头制造方法,热敏打印头和打印机
    • US08189021B2
    • 2012-05-29
    • US12589593
    • 2009-10-26
    • Toshimitsu MorookaKeitaro KoroishiYoshinori SatoNoriyoshi ShojiNorimitsu Sanbongi
    • Toshimitsu MorookaKeitaro KoroishiYoshinori SatoNoriyoshi ShojiNorimitsu Sanbongi
    • B41J2/335
    • B41J2/33585B41J2/3359Y10T29/49401
    • A thermal head manufacturing method comprises a concave portion forming step of forming a concave portion on one surface of a supporting substrate, a bonding step of bonding a thin plate glass to the one surface of the supporting substrate where the concave portion has been formed in a manner that hermetically seals the concave portion and forms a hollow portion, a heating step of heating the supporting substrate and the thin plate glass which have been bonded together in the bonding step to thereby soften the thin plate glass and expand gas trapped inside the hollow portion, and a heating resistor forming step of forming a heating resistor on the thin plate glass so as to be opposed to the hollow portion. During the heating step, the thin glass plate undergoes plastic deformation, due to expansion of the gas inside the hollow portion, and rises toward an opposite side from the hollow portion, and a leveling step is carried out to level the outer surface of the plastically deformed thin glass plate.
    • 热敏打印头的制造方法包括在支撑基板的一个面上形成凹部的凹部形成工序,将薄板玻璃与形成有凹部的支撑基板的一个面接合的接合工序 密封凹部并形成中空部的方式,在接合工序中加热支撑基板和薄板玻璃的加热工序,从而使薄板玻璃软化,将中空部内的气体膨胀 以及在薄板玻璃上形成加热电阻器以与中空部分相对的加热电阻器形成步骤。 在加热步骤期间,由于中空部分内部的气体膨胀,薄玻璃板发生塑性变形,并且朝向与中空部分相反的一侧上升,并且进行调平步骤以使塑性的外表面平坦化 变形薄玻璃板。