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    • 41. 发明授权
    • Light emitting device
    • 发光装置
    • US07249869B2
    • 2007-07-31
    • US11191997
    • 2005-07-29
    • Toshinori TakahashiAkihiro MisawaYoshiharu Tanaka
    • Toshinori TakahashiAkihiro MisawaYoshiharu Tanaka
    • F21V7/00
    • G09F23/00B60R13/005G02B6/0001G02B6/0021G02B6/0073G02B6/0091G09F13/22G09F21/04
    • A light emitting device includes a mark body, a substrate arranged in back of the mark body, an LED mounted on an opposite surface of the substrate to the mark body, and a light guide arranged on a closer side of the substrate to the LED and having an upper surface serving as a light introducing surface for introducing LED-based light, a side surface serving as a light emitting surface and a backside subjected to a light diffuse reflection process to cause diffuse reflection by the backside. Incidentally, there can be provided a light emitting device that includes a light guide arranged on a closer side of the substrate to the LED and having an upper surface serving as a light introducing surface for introducing LED-based light, a side surface serving as a light emitting surface and a backside having a plurality of protrusions in a rib form.
    • 发光装置包括标记体,布置在标记体背面的基板,安装在基板的与标记体相反的表面上的LED以及布置在基板与LED的更靠近侧的导光体,以及 具有用作引入LED基光的光引入表面的上表面,用作发光表面的侧表面和经受光漫反射处理的背面,以引起背面的漫反射。 顺便提及,可以提供一种发光装置,其包括布置在基板的更靠近LED的光导体上,并且具有用作引入LED的光的上表面,用于引入LED的光,作为 发光表面和具有多个突起形状的背面。
    • 43. 发明授权
    • Retransfer printing method and printing apparatus thereof
    • 转印打印方法及其打印装置
    • US07119823B2
    • 2006-10-10
    • US10823641
    • 2004-04-14
    • Toshinori TakahashiKeiji Ihara
    • Toshinori TakahashiKeiji Ihara
    • B41J2/325
    • B41M5/38257B41J2/0057B41J2/325B41J2/375
    • In a process of peeling off a transfer layer of an intermediate transfer film, an amount of energy, which is supplied to a thermal head 3 so as to heat the thermal head 3, is changed in accordance with a location of the thermal head 3 in a peeling area 71P and its neighboring area. The amount of energy is designated to be maximum energy E1 when the thermal head 3 is positioned in the neighborhood of a boundary area of the peeling area 71P while the thermal head 3 relatively moves from outside the peeling area 71P, that is, a non-peeling area 71NP to inside the peeling area 71P. In a case that the thermal head 3 is positioned in the non-peeling area 71NP or outside the peeling area 71P, a certain amount of energy is supplied to the thermal head 3 so as to maintain a temperature T of the thermal head 3 at a temperature of less than a predetermined temperature PA while heating the thermal head 3.
    • 在剥离中间转印膜的转印层的过程中,供应到热敏头3以加热热敏头3的能量量根据热敏头3的位置而变化 剥离区域71P及其相邻区域。 当热敏头3从剥离区域71P的外部相对移动时,当热敏头3位于剥离区域71P的边界区域附近时,能量的量被指定为最大能量E 1, 在剥离区域71P内部的非剥离区域71NP。在热敏头3位于非剥离区域71N1或剥离区域71P的外侧的情况下,一定量的能量被供给到 热头3,以便在加热热敏头3的同时将热敏头3的温度T保持在小于预定温度PA的温度。
    • 44. 发明申请
    • Light emitting device
    • 发光装置
    • US20060023468A1
    • 2006-02-02
    • US11191997
    • 2005-07-29
    • Toshinori TakahashiAkihiro MisawaYoshiharu Tanaka
    • Toshinori TakahashiAkihiro MisawaYoshiharu Tanaka
    • F21V7/04
    • G09F23/00B60R13/005G02B6/0001G02B6/0021G02B6/0073G02B6/0091G09F13/22G09F21/04
    • The invention provides a light emitting device comprising a mark body, a substrate arranged in back of the mark body, an LED mounted on an opposite surface of the substrate to the mark body, and a light guide arranged on a closer side of the substrate to the LED and having an upper surface serving as a light introducing surface for introducing LED-based light, a side surface serving as a light emitting surface and a backside subjected to a light diffuse reflection process to cause diffuse reflection by the backside. Incidentally, there can be provided a light emitting device comprising a light guide arranged on a closer side of the substrate to the LED and having an upper surface serving as a light introducing surface for introducing LED-based light, a side surface serving as a light emitting surface and a backside having a plurality of protrusions in a rib form.
    • 本发明提供了一种发光装置,其包括标记体,布置在标记体背面的基板,安装在基板的相对表面上的标记体的LED以及布置在基板的更靠近侧的光导 所述LED具有用作引入LED的光的上表面,用作发光面的侧面和经受光漫反射处理的背面,以引起背面的漫反射。 顺便提及,可以提供一种发光装置,其包括布置在基板的更靠近LED上的光导,并具有用作引入LED的光的上表面,用于引入LED的光,作为光的侧面 发射表面和具有多个突起形状的背面。
    • 48. 发明授权
    • Air bag controlling apparatus
    • 气囊控制装置
    • US5668720A
    • 1997-09-16
    • US428326
    • 1995-04-25
    • Toshinori TakahashiJun Ito
    • Toshinori TakahashiJun Ito
    • B60R21/01B60R21/015B60R21/32
    • B60R21/0133B60R21/0132B60R21/01332B60R21/01562
    • A first velocity change value V1 is derived by integrating the deviation of a detected vehicle deceleration from a first deceleration reference value, e.g., 1 g, and a second velocity change value V2 is derived by integrating the deviation of the detected vehicle deceleration from a second deceleration reference value, e.g., 6 g. When the velocity change values V1 and V2 have reached a first velocity threshold value TH1 and a second velocity threshold value TH2, respectively, an inflator is ignited to make it discharge compressed gas into an air bag. When the time t elapsed since the first velocity change value V1 has become positive is within a first time reference value t1 and the first velocity change value V1 does not reach the first velocity threshold value TH1, a second velocity threshold value TH2 is Updated to become TH3. The second velocity threshold value TH3 thus updated is greater than the preceding threshold value TH2. In updating the second velocity threshold value TH2, the ratio of the first velocity change value V1 to the second velocity change value V2 is calculated. When this ratio has satisfied a predetermined condition K, the second velocity threshold value TH2 is updated.
    • 通过将检测到的车辆减速度的偏差与第一减速基准值(例如1g)进行积分而导出第一速度变化值V1,并且通过将检测到的车辆减速度的偏差与第二速度变化值 减速基准值,例如6 g。 当速度变化值V1和V2分别达到第一速度阈值TH1和第二速度阈值TH2时,充气机被点燃以将压缩气体排放到气囊中。 当从第一速度变化值V1变为正值起经过的时间t在第一时间基准值t1内且第一速度变化值V1未达到第一速度阈值TH1时,第二速度阈值TH2被更新成为 TH3。 这样更新的第二速度阈值TH3大于先前阈值TH2。 在更新第二速度阈值TH2时,计算第一速度变化值V1与第二速度变化值V2的比。 当该比率满足预定条件K时,更新第二速度阈值TH2。
    • 49. 发明授权
    • Thermal printing apparatus
    • 热敏打印设备
    • US5319391A
    • 1994-06-07
    • US552271
    • 1990-07-13
    • Toshinori TakahashiItsuo TakanashiHideshi TanakaTerumi OharaKenichi MiyazakiHiroki KitamuraToru NibeTadao ShinyaYutaka MizoguchiKatsuhiko Terada
    • Toshinori TakahashiItsuo TakanashiHideshi TanakaTerumi OharaKenichi MiyazakiHiroki KitamuraToru NibeTadao ShinyaYutaka MizoguchiKatsuhiko Terada
    • B41J2/36H04N1/40H04N1/405B41J2/32B41J2/355
    • H04N1/40031B41J2/36H04N1/4055
    • A thermal printing apparatus for printing input gradational images, characters and figures by using multilevel density which can appropriately regulate the levels of the densities representing the gradational images etc. to be printed by a linear thermal head having n heating resistors arranged in a line, the printing apparatus is provided with a density control unit for regulating, for example, the multilevel durations for energizing the heating resistors in accordance with n gradational printing data each corresponding to respective one of said resistors, and a data conversion unit, receiving a set of n original data for each line as the printing data, for producing p sets of n data for p split lines on the basis of the n original data, where p is an integer being equal to or greater than two, the p sets of n data being sequentially supplied to the density control unit set by set to print each line corresponding to the input gradational image, character and figure printing data as a plurality of split lines corresponding thereto, thereby increasing uniformity of density of print lines of pixels of the input gradational images, characters and figures by overlapping low density portions of dotes of adjacent split lines.
    • 一种热敏打印装置,用于通过使用多级密度来打印输入的渐变图像,字符和图形,其可以适当地调节表示等级图像的浓度的等级,以由具有排列成一行的n个加热电阻器的线性热敏头打印, 打印装置设置有密度控制单元,用于调节例如根据与各个所述电阻器相对应的n个等级打印数据激励加热电阻器的多级持续时间,以及数据转换单元,接收一组n 原始数据作为打印数据,用于基于n个原始数据产生p个分割行的p个数据集,其中p是等于或大于2的整数,n个数据的p个集合是 依次提供给通过设置设置的浓度控制单元将与输入的渐变图像相对应的每一行打印为字符和图形打印数据 多个对应的分割线,从而通过重叠相邻分割线的点的低密度部分来增加输入渐变图像,字符和图形的像素的打印线的浓度的均匀性。