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Successive approximation type analog-to-digital converter based on segmented differential capacitor array

A technology of analog-to-digital converters and differential capacitors, which is applied in the field of successive approximation analog-to-digital converters, can solve the problems of affecting the quantization speed of analog-to-digital converters, the long establishment time of digital-to-analog converters, and the large area of ​​capacitor arrays, etc., to achieve saving Capacitor area, reduced settling time, and improved conversion speed

Pending Publication Date: 2021-11-05
XIDIAN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] However, due to the large capacitor array area of ​​the traditional successive approximation analog-to-digital converter, the digital-to-analog converter has a long settling time, which affects the quantization speed of the analog-to-digital converter and also increases the power consumption of the circuit.

Method used

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  • Successive approximation type analog-to-digital converter based on segmented differential capacitor array
  • Successive approximation type analog-to-digital converter based on segmented differential capacitor array
  • Successive approximation type analog-to-digital converter based on segmented differential capacitor array

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Embodiment 1

[0038] See figure 1 , figure 1 Is an embodiment of the present invention to provide a structural block diagram Successive Approximation ADC capacitor array segmented based on the difference, comprising:

[0039] Sampling switch 11;

[0040] The segmented differential capacitor array 12, sampling switch 11 is electrically connected;

[0041] Comparator 13 electrically connected segmented Difference capacitor array 12;

[0042] Successive approximation control logic 14, electrically connected segmented Difference capacitor array 12 and a comparator 13; wherein,

[0043] The segmented differential capacitor array 12 comprises a first capacitor array 121 and a second capacitor array 122 disposed symmetrically, a first capacitor array 121 is connected to the upper plate 13 of the comparator positive input terminal, a second electrode of the capacitor array 122 comparator inverting input terminal connected to the plate 13, the lower plate of the first capacitor array 121 and a second ca...

Embodiment 2

[0062] See image 3 , image 3 The invention is provided to implement a schematic structural diagram based on a successive approximation analog-segmented differential capacitor array; digital converter comprising: two sampling switches K1 and K2, based on the unit of the bridging capacitance segmented differential capacitor array, the segmented based on a differential comparator unit capacitor array is electrically connected to bridge capacitance successively electrically connected to the output of the comparator approximation control logic; wherein,

[0063] See Example segmented based on the particular structural unit array differential capacitance of a capacitance bridge, comparator logic and a conventional successive approximation control circuit configuration, which is not the specific requirements.

[0064] Specifically, the sampling switches K1 and K2 in the control capacitor array of segmented differential signals VP and VN is sampled, and the sampling and the result is inpu...

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PUM

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Abstract

The invention discloses a successive approximation type analog-to-digital converter based on a segmented differential capacitor array. The successive approximation type analog-to-digital converter comprises: a sampling switch; a sectional type differential capacitor array which is electrically connected with the sampling switch; a comparator which is electrically connected with the sectional type differential capacitor array; and a successive approximation control logic which is electrically connected with the sectional type differential capacitor array and the comparator. The sectional type differential capacitor array comprises a first capacitor array and a second capacitor array which are symmetrically arranged, an upper pole plate of the first capacitor array is connected with a positive input end of the comparator, and an upper pole plate of the second capacitor array is connected with a negative input end of the comparator; lower polar plates of the first capacitor array and the second capacitor array are selectively and electrically connected to a reference voltage end through a control switch; and each of the first capacitor array and the second capacitor array comprises two sub-capacitor arrays which are connected through a unit bridging capacitor. According to the successive approximation type analog-to-digital converter provided by the invention, the capacitance area is saved, the power consumption is reduced, and the quantization speed is improved.

Description

Technical field [0001] The present invention belongs to the field of integrated circuit technology, particularly relates to a successive approximation ADC based on differential capacitive segmented array. Background technique [0002] As human society continues to progress and development, a large number of portable products have become an everyday part of an integral, and analog to digital converter (ADC) is often constitutes an important module for portable devices. [0003] Since the ADC needs to be applied in radar, communications, medical, instrumentation and other electronic system in the field, so the performance indicators ADC also have different needs. Since SAR A / D converter is simple in structure, less simulation module, smaller area, lower power consumption, and is widely used in high-speed low-precision applications, and can enjoy the advantages of the rapid development of integrated circuit manufacturing technology brings. So / D converter is of great significance...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H03M1/38
CPCH03M1/38
Inventor 丁瑞雪李琳刘术彬党力梁鸿志朱樟明
Owner XIDIAN UNIV
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