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    • 1. 发明授权
    • Method for quality improvement of printing with a thermotransfer print head and arrangement for implementation of the method
    • 使用热转印打印头进行打印质量改进的方法和用于实施该方法的布置
    • US07609284B2
    • 2009-10-27
    • US11677164
    • 2007-02-21
    • Olaf TurnerRatmund NisiusFrank ReisingerSabine Roth
    • Olaf TurnerRatmund NisiusFrank ReisingerSabine Roth
    • B41J2/35B41J2/38
    • B41J2/35B41J2/325B41J2/3555B41J2/3556B41J2202/34G07B17/00508G07B2017/00556
    • In a method and apparatus for improving the printing with a thermotransfer print head, an energy value is calculated before the printing process according to different types to be implemented when a dot is to be printed. Energy values also are calculated for the heating elements at the ends of the row of heating elements of the high-resolution thermotransfer print head, so as to activate these heating elements even though in heating phases no dot to be printed at the border external to the barcode image. Additionally, those heating elements that do not lie in the two border regions of the heating element row are also activated for a limited time duration, the aforementioned time duration directly preceding the printing of a barcode image. A microprocessor calculates the energy values and is connected with a pixel energy memory for non-volatile buffering of the data that are transferred into a print data controller and are converted into a print pulse duration.
    • 在利用热转印打印头改善打印的方法和装置中,在打印点之前根据要实现的不同类型在打印处理之前计算能量值。 对于高分辨率热转印打印头的加热元件行的端部处的加热元件也计算能量值,以便激活这些加热元件,即使在加热阶段中,在加热阶段没有点印刷在外部的边界 条形码图像。 此外,不在加热元件列的两个边界区域中的那些加热元件也在有限的持续时间内被激活,上述持续时间直接在条形码图像的打印之前。 微处理器计算能量值,并与像素能量存储器连接,用于数据的非易失性缓冲,该数据被传送到打印数据控制器并转换成打印脉冲持续时间。
    • 9. 发明授权
    • Method and circuit for an automatic, high precision frequency fine tuning
    • 自动,高精度频率微调的方法和电路
    • US5524289A
    • 1996-06-04
    • US90184
    • 1994-03-14
    • Rudolf KoblitzMartin RiegerSabine Roth
    • Rudolf KoblitzMartin RiegerSabine Roth
    • H03J7/02H03J3/10H03J7/04H04B1/16
    • H03J7/04
    • For the purpose of a high precision frequency fine tuning, for example, to a certain television channel, an analog circuit, the frequency of which can be balanced, for example, an demodulator, is balanced in an integrated circuit with the help of a control current. The control current generated in a regulating loop is dependent on a reference frequency with the appropriate accuracy and on a reference frequency with the appropriate accuracy and on a reference capacitancy integrated on the chip. After selecting a frequency, the analog circuit is calibrated and the frequency is subsequently fine-tuned in a measuring mode. Following that, the analog circuit operates in the normal mode.
    • PCT No.PCT / EP92 / 00091 Sec。 371日期:1994年3月14日 102(e)1994年3月14日PCT PCT 1992年1月18日PCT公布。 出版物WO92 / 13389 日期为1992年8月6日。为了高精度微调,例如,对于某个电视频道,可以平衡其频率(例如解调器)的模拟电路在集成 电路借助控制电流。 在调节回路中产生的控制电流取决于具有适当精度的参考频率和具有适当精度的参考频率以及集成在芯片上的参考电容。 在选择频率后,模拟电路被校准,随后在测量模式下微调频率。 之后,模拟电路工作在正常模式。
    • 10. 发明授权
    • Integrated FM detector including an oscillator having a capacitor and
Schmitt trigger
    • 集成FM检测器,包括具有电容器和施密特触发器的振荡器
    • US5274338A
    • 1993-12-28
    • US33073
    • 1993-03-10
    • Martin RiegerSabine Roth
    • Martin RiegerSabine Roth
    • H03D3/24H03D3/00
    • H03D3/24
    • An FM detector for demodulating frequency modulated signals includes an FM detector having an oscillator composed of a capacitor and a Schmitt Trigger. The oscillator is controlled by the input signal to the FM detector. The FM detector also includes a phase detector for mixing the input signal with an oscillator signal from the oscillator to provide an output signal. The frequency of the oscillator is set to the frequency of the input signal using components internal to the FM detector. A first switch is used to charge and discharge the capacitor in accordance with the state of the Schmitt Trigger. A second switch is used to set the frequency of the oscillator to the frequency of the input signal.
    • 用于解调频率调制信号的FM检测器包括具有由电容器和施密特触发器组成的振荡器的FM检测器。 振荡器由FM检测器的输入信号控制。 FM检测器还包括相位检测器,用于将输入信号与来自振荡器的振荡器信号进行混合以提供输出信号。 使用FM检测器内部的组件将振荡器的频率设置为输入信号的频率。 根据施密特触发器的状态,第一开关用于对电容器充电和放电。 第二个开关用于将振荡器的频率设置为输入信号的频率。