A Design of Fast-Settling, Low-Power 4.19-MHz Real-Time Clock Generator With Temperature Compensation and 15-dB Noise Reduction
- Abstract
- This paper presents a fast-settling, low-power, low-noise real-time clock (RTC) generator for a 4.194304-MHz crystal oscillator. The fast settling reduces the startup time of the proposed RTC generator using a negative transcondutance booster and a crystal energy booster. The low power is only operated to reduce the total power consumption in the standby mode with the use of a peak-and-low detector. To achieve the electromagnetic interference (EMI) reduction, a pseudorandom number generator is used. The temperature compensation reduces the frequency offset from 16 to 1 ppm depending on the temperature variation. The proposed RTC generator is fabricated using a 0.18-mu m CMOS and the core area is 0.4 mmx 0.7 mm. The power consumption is 54 mu Wfrom a 1.8-V supply voltage. The measured startup time can be reduced by 90% from 4 ms to 400 mu s with the proposed 4.194304-MHz XTAL driver. The current consumption in the standbymode is reduced by up to 700 nA. The measured frequency variation is up to a 1-ppm operation under a temperature change from -40 degrees C to 60 degrees C. The measured output peak power is reduced by up to 15 dB in the EMI reduction mode.
- Author(s)
- Lee, Dong-Soo; Kim, Sung-Jin; Kim, Donggyu; Pu, Younggun; Yoo, Sang-Sun; Lee, Minjae; Hwang, Keum Cheol; Yang, Youngoo; Lee, Kang-Yoon
- Issued Date
- 2018-06
- Type
- Article
- DOI
- 10.1109/TVLSI.2018.2806935
- URI
- https://scholar.gist.ac.kr/handle/local/13220
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