Title :
A 0.1 ppm Successive Approximation Frequency-Temperature Compensation Method for Temperature Compensated Crystal Oscillators (TCXO)
Author :
Zhang, Mi ; Cao, Wei-xun
Author_Institution :
Galawave Technol. Inc., Shanghai, China
fDate :
March 31 2009-April 2 2009
Abstract :
In this paper, we present a high accurate frequency-temperature compensation method for temperature compensated crystal oscillators (TCXO) which can achieve 0.1 ppm frequency stability over a wide temperature range from -25degC to 85degC by using 1-bit successive approximation differentiated interpolation. By applying a frequency-temperature compensated digital binary word to a digital frequency synthesizer, the generated frequency signal is controlled so as to be temperature compensated. The presented method can be also used for the crystals with abnormal frequency-temperature curve such as with abrupt frequency jump points. Compared to the traditional look-up table method, the presented method can dramatically reduce the storage cost to about 5%. The presented method has been implemented into the Xilinx FPGA and CMOS standard cell ASIC. The test result shows that 0.1 ppm frequency-temperature stability can be achieved with a temperature sensitivity of 0.5degC.
Keywords :
CMOS integrated circuits; application specific integrated circuits; compensation; crystal oscillators; field programmable gate arrays; frequency synthesizers; interpolation; CMOS standard cell ASIC; Xilinx FPGA; differentiated interpolation; digital binary word; digital frequency synthesizer; frequency stability; frequency temperature compensation; frequency-temperature stability; successive approximation; temperature -25 degC to 85 degC; temperature compensated crystal oscillators; Costs; Crystals; Frequency synthesizers; Interpolation; Oscillators; Signal generators; Stability; Table lookup; Temperature control; Temperature distribution; Successive Approximation; TCXO;
Conference_Titel :
Computer Science and Information Engineering, 2009 WRI World Congress on
Conference_Location :
Los Angeles, CA
Print_ISBN :
978-0-7695-3507-4
DOI :
10.1109/CSIE.2009.1005