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    • 11. 发明申请
    • FIXING DEVICE AND IMAGE FORMING APPARATUS HAVING THE SAME
    • 固定装置和具有该装置的图像形成装置
    • US20100196038A1
    • 2010-08-05
    • US12698383
    • 2010-02-02
    • Atsushi YAMAGUCHISeiichi KirikuboAkihiro HayashiYutaka YamamotoNaoto Sugaya
    • Atsushi YAMAGUCHISeiichi KirikuboAkihiro HayashiYutaka YamamotoNaoto Sugaya
    • G03G15/20
    • G03G15/2039
    • While a recording sheet is passing through a fixing nip formed between a heating roller 41 having a heating layer and a pressing roller 42 pressed against the roller 41, a coil 43 is exited by high-frequency power from a power source and causes the layer to generate heat. An unfixed image on the recording sheet is fixed by the heat. The power source detects a zero cross timing of a rectified alternating current, detects an instantaneous value at a point a predetermined period after the zero cross timing, calculates an effective power of the alternating current based on the instantaneous value, and controls the output power to be a desired value determined based on the effective power and the surface temperature of the roller 41. Thus power input to the power source can be quickly detected and power output to the coil can be quickly and stably controlled.
    • 当记录片材通过形成在具有加热层的加热辊41和压靠在辊41上的加压辊42之间的定影辊隙时,线圈43通过来自电源的高频电力而退出, 发热。 记录纸上的未固定图像由热量固定。 电源检测整流交流电的零交叉定时,在零交叉定时之后的预定时间段检测瞬时值,基于瞬时值计算交流电的有效功率,并将输出功率控制为 是基于辊41的有效功率和表面温度确定的期望值。因此,可以快速检测到电源的输入功率,并且能够快速且稳定地控制对线圈的功率输出。
    • 19. 发明申请
    • INFORMATION ACQUIRING DEVICE AND OBJECT DETECTING DEVICE
    • 信息获取设备和对象检测设备
    • US20130002859A1
    • 2013-01-03
    • US13614825
    • 2012-09-13
    • Atsushi YAMAGUCHINobuo IwatsukiKatsumi Umeda
    • Atsushi YAMAGUCHINobuo IwatsukiKatsumi Umeda
    • H04N7/18
    • G01S17/48G01B11/25G01B11/2513G01C3/08
    • Laser light emitted from a laser light source is converted into light having a dot pattern by a projection optical system for projection onto a target area. The projection optical system is configured such that the density of dots in a peripheral portion of the dot pattern is smaller than that in a center portion of the dot pattern in the target area. A dot pattern captured by irradiating a dot pattern onto a reference plane is divided into segment areas. A distance to each segment area is acquired by matching between dots in each segment area, and a dot pattern acquired by capturing an image of the target area at the time of distance measurement. The segment areas are set such that a segment area in the peripheral portion of the dot pattern is larger than a segment area in the center portion of the dot pattern.
    • 从激光光源发射的激光由投射光学系统转换成具有点图案的光,用于投影到目标区域上。 投影光学系统被配置为使得点图案的周边部分中的点的密度小于目标区域中的点图案的中心部分中的点的密度。 通过将点图案照射到参考平面上捕获的点图案被划分成段区域。 通过在每个区段区域中的点之间的匹配以及通过在距离测量时捕获目标区域的图像而获得的点图案来获取与每个区段区域的距离。 片段区域被设置为使得点图案的周边部分中的片段区域大于点图案的中心部分中的片段区域。