SEMICONDUCTOR INTEGRATED CIRCUITS

A reference voltage in capacitor-resister hybrid SAR ADC for front-end readout system of CZT detector

Wei Liu1, , Tingcun Wei1, Bo Li1, Lifeng Yang1 and Yongcai Hu1, 2

+ Author Affiliations

 Corresponding author: Liu Wei,Email:liouwei930@sina.com

PDF

Abstract: An on-chip reference voltage has been designed in capacitor-resister hybrid SAR ADC for CZT detector with the TSMC 0.35 μ m 2P4M CMOS process. The voltage reference has a dynamic load since using variable capacitors and resistances, which need a large driving ability to deal with the current related to the time and sampling rate. Most of the previous articles about the reference for ADC present only the bandgap part for a low temperature coefficient and high PSRR. However, it is not enough and overall, it needs to consider the output driving ability. The proposed voltage reference is realized by the band-gap reference, voltage generator and output buffer. Apart from a low temperature coefficient and high PSRR, it has the features of a large driving ability and low power consumption. What is more, for CZT detectors application in space, a radiation-hardened design has been considered. The measurement results show that the output reference voltage of the buffer is 4.096 V. When the temperature varied from 0 to 80℃, the temperature coefficient is 12.2 ppm/℃. The PSRR was-70 dB@100 kHz. The drive current of the reference can reach up to 10 mA. The area of the voltage reference in the SAR ADC chip is only 449×614 μm2. The total power consumption is only 1.092 mW.

Key words: reference voltageSAR ADCCZT detector



[1]
[2]
[3]
[4]
[5]
[6]
[7]
[8]
[9]
[10]
[11]
[12]
[13]
[14]
Fig. 1.  The architecture diagram of the overall circuit.

Fig. 2.  Band-gap reference circuit.

Fig. 3.  Output amplifier circuit structure.

Fig. 4.  Color online) SAR-ADC chip micrograph and the layout of the voltage reference.

Fig. 5.  Measured band-gap voltage versus temperature.

Fig. 6.  Measured PSRR of the reference voltage.

Fig. 7.  Measured driving ability of the reference voltage.

Fig. 8.  Measured power consumption results.

Table 1.   Measured performance summary of the proposed voltage reference.

DownLoad: CSV

Table 2.   Comparison of voltage references in ADCs.

DownLoad: CSV
[1]
[2]
[3]
[4]
[5]
[6]
[7]
[8]
[9]
[10]
[11]
[12]
[13]
[14]
  • Search

    Advanced Search >>

    GET CITATION

    shu

    Export: BibTex EndNote

    Article Metrics

    Article views: 3357 Times PDF downloads: 38 Times Cited by: 0 Times

    History

    Received: 24 July 2015 Revised: Online: Published: 01 January 2016

    Catalog

      Email This Article

      User name:
      Email:*请输入正确邮箱
      Code:*验证码错误
      Wei Liu, Tingcun Wei, Bo Li, Lifeng Yang, Yongcai Hu. A reference voltage in capacitor-resister hybrid SAR ADC for front-end readout system of CZT detector[J]. Journal of Semiconductors, 2016, 37(1): 015005. doi: 10.1088/1674-4926/37/1/015005 W Liu, T C Wei, B Li, L F Yang, Y C Hu. A reference voltage in capacitor-resister hybrid SAR ADC for front-end readout system of CZT detector[J]. J. Semicond., 2016, 37(1): 015005. doi: 10.1088/1674-4926/37/1/015005.Export: BibTex EndNote
      Citation:
      Wei Liu, Tingcun Wei, Bo Li, Lifeng Yang, Yongcai Hu. A reference voltage in capacitor-resister hybrid SAR ADC for front-end readout system of CZT detector[J]. Journal of Semiconductors, 2016, 37(1): 015005. doi: 10.1088/1674-4926/37/1/015005

      W Liu, T C Wei, B Li, L F Yang, Y C Hu. A reference voltage in capacitor-resister hybrid SAR ADC for front-end readout system of CZT detector[J]. J. Semicond., 2016, 37(1): 015005. doi: 10.1088/1674-4926/37/1/015005.
      Export: BibTex EndNote

      A reference voltage in capacitor-resister hybrid SAR ADC for front-end readout system of CZT detector

      doi: 10.1088/1674-4926/37/1/015005
      Funds:

      Project supported by the National Key Scientific Instrument and Equipment Development Project (No. 2011YQ040082), the National Natural Science Foundation of China (No. 61376034), and the Shaanxi Province Science and Technology Innovation Project (No. 2015KTZDGY03-03).

      More Information
      • Corresponding author: Liu Wei,Email:liouwei930@sina.com
      • Received Date: 2015-07-24
      • Accepted Date: 2015-09-11
      • Published Date: 2016-01-25

      Catalog

        /

        DownLoad:  Full-Size Img  PowerPoint
        Return
        Return