Voltage output fine tuning circuit

A technology of fine-tuning circuit and voltage output, which is applied in the direction of conversion equipment without intermediate conversion to AC, can solve the problems of low precision, adjustable resistance heating, increase the workload of engineers, etc., to achieve simple circuit structure, high fine-tuning precision, and implementation low cost effect

Active Publication Date: 2016-06-22
中山芯达电子科技有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The application of voltage trimming is often involved in chip circuits. The traditional solution is realized through adjustable resistors. Obviously, the accuracy of fine-tuning in traditional solutions is low, which cannot meet the fine voltage adjustment requirements of integrated chip circuits, and the adjustable resistors directly affect chip circuits. The overall impedance of the circuit cannot be used directly in any occasion. It is necessary to recalculate the overall impedance of the circuit, which will undoubtedly increase the workload of engineers.
In addition, adjustable resistors have heating problems, and the heat generation and energy consumption of chips need to be considered when setting a large number of resistors.

Method used

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  • Voltage output fine tuning circuit

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Embodiment Construction

[0009] Attached as follows figure 1 , to further describe the application scheme:

[0010] A voltage output fine-tuning circuit, including MOS transistors Q1, Q2, capacitor C, and inverter T1, the MOS transistor Q1, capacitor C are connected in series between the power supply VCC terminal and the ground terminal, and its gate is passed through the inverter The phase device T1 is connected to the input terminal Vin of the circuit, and the MOS transistor Q1 is used to realize on-off according to the inverting signal of the input terminal Vin, and to charge the capacitor C; the MOS transistor Q2 is connected to the capacitor C and the output terminal Vout of the circuit, Its gate is connected to the input terminal Vin of the circuit, and is used for switching on and off according to the signal of the input terminal Vin, and outputting the electric quantity in the capacitor C.

[0011] The MOS transistors Q1 and Q2 are both PMOS transistors or NMOS transistors.

[0012] The inpu...

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Abstract

The invention provides a voltage output fine tuning circuit. The circuit is characterized in that the circuit includes a MOS pipe Q1, a MOS pipe Q2, a capacitor C and an inverter T1; the MOS pipe Q1 and the capacitor C are connected in series between a power supply VCC terminal and a ground terminal, a grid is connected to an input terminal Vin of the circuit through the inverter T1, and the MOS pipe Q1 is used for realizing on and off according to an inversion signal of the input terminal Vin so as to charge the capacitor C; the MOS pipe Q2 is connected to the capacitor C and an output terminal Vout of the circuit, a grid is connected to the input terminal Vin of the circuit and is used for realizing on and off according to a signal of the input terminal Vin so as to output an electric quantity of the capacitor C. The circuit has advantages that the circuit structure is simple and enforcement cost is low; through different duty ratios of a periodic square wave, a charging amount of the capacitor C is adjusted and fine tuning precision is high; the integral circuit has no resistive component, a resistance of the integral circuit is not influenced; and an engineer does not need to consider a circuit calorific value and energy consumption.

Description

technical field [0001] The invention relates to a voltage output trimming circuit. Background technique [0002] The application of voltage trimming is often involved in chip circuits. The traditional solution is realized through adjustable resistors. Obviously, the accuracy of fine-tuning in traditional solutions is low, which cannot meet the fine voltage adjustment requirements of integrated chip circuits, and the adjustable resistors directly affect chip circuits. The overall impedance of the circuit cannot be used directly in any occasion, and the overall impedance of the circuit needs to be recalculated, which will undoubtedly increase the workload of the engineer. In addition, adjustable resistors have heating problems, and the heat generation and energy consumption of chips need to be considered when setting a large number of resistors. Contents of the invention [0003] In order to overcome the problems mentioned in the background technology, the present invention...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02M3/07
CPCH02M3/07
Inventor 方镜清
Owner 中山芯达电子科技有限公司
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