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Data converter and its control method for impedance matching

A technology of data converters and impedance matching circuits, which is applied in the field of impedance matching of data converters, can solve problems such as wrong comparison results and comparator effects, and achieve the effect of reducing kickback noise and improving performance

Active Publication Date: 2022-06-21
REALTEK SEMICON CORP
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

When the comparator 100 switches from the reset state (the switch 110 is on) to the comparison state (the switch 110 is off), the signals on the output terminal Vo- and the output terminal Vo+ will pass through the parasitic capacitance 125 of the transistor 120 and the transistor 130 respectively. The parasitic capacitance 135 kicks back (kickback) to the negative pole (inverting input terminal) Vi- and the positive pole (non-inverting input terminal) Vi+ of the comparator 100, thereby causing wrong comparison results
[0003] Although the above-mentioned kickback noise (kickback noise) will theoretically become a common-mode component of the input signal to the two-stage comparator, when the equivalent impedance coupled to the negative and positive terminals of the comparator does not match, the comparator will still Can be affected by kickback noise

Method used

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  • Data converter and its control method for impedance matching
  • Data converter and its control method for impedance matching
  • Data converter and its control method for impedance matching

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Embodiment Construction

[0033] The technical terms used in the following description refer to the common terms in the technical field. If some terms are described or defined in this specification, the interpretation of this part of terms shall be subject to the descriptions or definitions in this specification.

[0034] The disclosure of the present disclosure includes a data converter and a control method for impedance matching thereof. Since some of the elements included in the data converter of the present disclosure may be known elements individually, the details of the known elements will be described below without affecting the full disclosure and practicability of the device embodiment. Omit. In addition, part or all of the process of the impedance matching control method of the data converter of the present disclosure may be in the form of software and / or firmware. On the premise of not affecting the sufficient disclosure and practicability of the method embodiment, the following method is im...

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Abstract

The disclosure discloses a data converter and a control method for impedance matching thereof. The data converter includes a comparator, a capacitor array, a switch and an impedance matching circuit. The comparator has a first input terminal and a second input terminal. The capacitor array includes a plurality of capacitors, and a first end of each capacitor is coupled to the first input end or the second input end. The switch and the impedance matching circuit are coupled to a second terminal of a target capacitor among the plurality of capacitors, the second terminal is coupled to a first reference voltage or a second reference voltage according to a control signal, and according to An impedance adjustment signal adjusts the impedance, wherein the impedance is the impedance of the switch and the impedance matching circuit. The first reference voltage is not equal to the second reference voltage.

Description

technical field [0001] The present disclosure relates to data converters, and more particularly, to impedance matching of data converters. Background technique [0002] figure 1 It is the circuit diagram of the existing single-stage comparator. The comparator 100 is mainly composed of a transistor 120 and a transistor 130 . When the comparator 100 switches from the reset state (switch 110 is turned on) to the comparison state (switch 110 is not turned on), the signals on the output terminal Vo- and the output terminal Vo+ will pass through the parasitic capacitance 125 of the transistor 120 and the transistor 130, respectively. The parasitic capacitance 135 of 100 kicks back to the negative (inverting input) Vi- and positive (non-inverting input) Vi+ of the comparator 100 , resulting in erroneous comparison results. [0003] Although the above-mentioned kickback noise will theoretically become a common mode component of the input signal for the two-stage comparator, when ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H03K5/24
CPCH03K5/2481
Inventor 陈志龙林圣雄赖杰帆黄诗雄
Owner REALTEK SEMICON CORP
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