High-performance DSP-TCXO using twin-crystal oscillator
Kaoru Kobayashi, Yoshiaki Mori, Tsukasa Kobata, Manabu Ito, Shigenori Watanabe, Shin'ichi Sato, Kazuo Akaike
Abstract
Kaoru Kobayashi, Yoshiaki Mori, Tsukasa Kobata, Manabu Ito, Shigenori Watanabe, Shin'ichi Sato, Kazuo Akaike
Abstract
This paper describes a summary of the high stability DSP-TCXO (Digital Signal Processing-Temperature Compensated Crystal Oscillator) based on a high-accuracy temperature detection technology using two AT-cut crystal oscillators and a high-precision frequency compensation circuit.
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This paper describes a summary of the high stability DSP-TCXO (Digital Signal Processing-Temperature Compensated Crystal Oscillator) based on a high-accuracy temperature detection technology using two AT-cut crystal oscillators and a high-precision frequency compensation circuit.
Key concepts: Crystal oscillator, Compensation (psychology), Digital signal processing, Crystal oven, Crystal (programming language), SIGNAL (programming language), Electronic engineering, Pierce oscillator