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    • 2. 发明申请
    • Analog-to-digital converter with automatic range and sensitivity adjustment
    • 具有自动量程和灵敏度调节的模数转换器
    • US20070228170A1
    • 2007-10-04
    • US11705545
    • 2007-02-12
    • John PettinelliMatthew PankowJoseph LivingstonEdward BremerTimothy Meier
    • John PettinelliMatthew PankowJoseph LivingstonEdward BremerTimothy Meier
    • G06K7/10
    • H03M1/182G06K7/10851
    • The invention is a system and method for providing optimized accuracy and precision in analog-to-digital conversions of data. In an embodiment of the invention, an AID converter is configured by setting two separately definable reference voltages that are controlled by a microprocessor. The A/D converter range is as wide as, or slightly greater than, a dynamic range of the analog signal to be converted. The microprocessor adjusts at least one reference voltage. The A/D converter receives analog signals from a sensor. The dynamic range of the signal from the sensor, or the sensor operating conditions, are used to define the reference voltages. The converted data is provided to a data processor at a rate controlled by a clocking signal. In a method according to the invention, the A/D converter is operated using the features described above. The accuracy and the precision of the converted data are thereby optimized.
    • 本发明是一种用于在数字模数转换中提供优化的精度和精度的系统和方法。 在本发明的一个实施例中,通过设置由微处理器控制的两个可分别定义的参考电压来配置AID转换器。 A / D转换器的范围与要转换的模拟信号的动态范围一样宽或稍大。 微处理器调整至少一个参考电压。 A / D转换器从传感器接收模拟信号。 来自传感器的信号或传感器工作条件的动态范围用于定义参考电压。 转换的数据以时钟信号控制的速率提供给数据处理器。 在根据本发明的方法中,使用上述特征来操作A / D转换器。 由此优化转换数据的精度和精度。
    • 3. 发明申请
    • Analog-to-digital converter with automatic range and sensitivity adjustment
    • 具有自动量程和灵敏度调节的模数转换器
    • US20050006475A1
    • 2005-01-13
    • US10842717
    • 2004-05-10
    • John PettinelliMatthew PankowJoseph LivingstonEdward BremerTimothy Meier
    • John PettinelliMatthew PankowJoseph LivingstonEdward BremerTimothy Meier
    • G06K7/10H03M1/18G06K7/14
    • H03M1/182G06K7/10851
    • The invention is a system and method for providing optimized accuracy and precision in analog-to-digital conversions of data. In an embodiment of the invention, an A/D converter is configured by setting two separately definable reference voltages that are controlled by a microprocessor. The A/D converter range is as wide as, or slightly greater than, a dynamic range of the analog signal to be converted. The microprocessor adjusts at least one reference voltage. The A/D converter receives analog signals from a sensor. The dynamic range of the signal from the sensor, or the sensor operating conditions, are used to define the reference voltages. The converted data is provided to a data processor at a rate controlled by a clocking signal. In a method according to the invention, the A/D converter is operated using the features described above. The accuracy and the precision of the converted data are thereby optimized.
    • 本发明是一种用于在数字模数转换中提供优化的精度和精度的系统和方法。 在本发明的一个实施例中,通过设置由微处理器控制的两个可分离定义的参考电压来配置A / D转换器。 A / D转换器的范围与要转换的模拟信号的动态范围一样宽或稍大。 微处理器调整至少一个参考电压。 A / D转换器从传感器接收模拟信号。 来自传感器的信号或传感器工作条件的动态范围用于定义参考电压。 转换的数据以时钟信号控制的速率提供给数据处理器。 在根据本发明的方法中,使用上述特征来操作A / D转换器。 由此优化转换数据的精度和精度。