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A novel approach to improving the stability of TCVCXO temperature performance

机译:一种提高TCVCXO温度性能稳定性的新颖方法

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The output frequency of a temperature compensated voltage controlled oscillator is determined by the sum of an internally generated compensation voltage and an externally applied adjustment voltage. Without correction, non-linearities in the frequency vs voltage characteristic of the VCXO result in the frequency vs temperature characteristic of the device being dependent on the adjustment voltage. This is known as 'trim skew'. Additionally, the slope of the frequency vs voltage curve will be a function of temperature due to the temperature dependence of the crystal C/sub 1/ and of the varactor diode, limiting the temperature stability achievable. Both these effects are minimised in C-MAC's latest high performance TCXO ASIC, code named 'Pluto'. Pluto has an additional circuit block inserted before the VCXO. The weighted sum of the compensation and adjustment voltages form the input to this novel circuit block, while the output is the voltage applied to the varactor, adjusting the frequency of the VCXO. As described in patent application EP1209812/US2002060597, the non-linear transfer function of the block can be digitally programmed to accurately compensate for the non-linearity of the VCXO's frequency adjustment. A temperature sensor provides an additional input to the block. This is used to control the overall gain of the circuit in such a way as to correct for the temperature dependence of the crystal C1 and the varactor. The result is that a highly linear VCXO is achieved with constant voltage sensitivity over the temperature range. This in turn allows exceptional frequency vs temperature stability to be achieved over the whole adjustment voltage range. The digital control of the multiplying DACs used in the linearisation allows individual settings to be made, giving optimum results for each oscillator.
机译:温度补偿压控振荡器的输出频率由内部产生的补偿电压和外部施加的调节电压之和确定。如果不进行校正,VCXO的频率与电压特性之间的非线性会导致设备的频率与温度特性取决于调节电压。这被称为“修剪偏斜”。此外,由于晶体C / sub 1 /和变容二极管的温度依赖性,频率与电压的关系曲线的斜率将是温度的函数,从而限制了可获得的温度稳定性。 C-MAC最新的高性能TCXO ASIC(代号为“ Pluto”)将这两种影响减至最小。冥王星在VCXO之前插入了一个附加电路块。补偿电压和调整电压的加权总和构成了该新型电路模块的输入,而输出是施加至变容二极管的电压,从而调整了VCXO的频率。如专利申请EP1209812 / US2002060597中所述,可以对模块的非线性传递函数进行数字编程,以准确补偿VCXO频率调整的非线性。温度传感器为模块提供了额外的输入。这用于控制电路的总增益,以校正晶体C1和变容二极管的温度依赖性。结果是在整个温度范围内以恒定的电压灵敏度实现了高度线性的VCXO。这进而允许在整个调节电压范围内实现出色的频率与温度稳定性。线性化中使用的乘法DAC的数字控制允许进行单独的设置,从而为每个振荡器提供最佳结果。

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