Low-temperature coefficient boosting circuit with adjustable amplitude

A low temperature coefficient, boost circuit technology, applied in the direction of adjusting electrical variables, control/regulating systems, instruments, etc., can solve the problems of difficulty in turning off the boost function, consuming large power consumption, and difficult to change the boost amplitude, and achieving output High voltage accuracy, satisfying the effect of current accuracy and high accuracy

Active Publication Date: 2019-04-16
SOUTH CHINA UNIV OF TECH
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  • Description
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Problems solved by technology

[0004] The commonly used equal-amplitude boost method is diode boost. The boost is achieved by connecting diodes in series with the input signal. The boost range of this boost method is controlled by the number of diodes. It is difficult to change the boost range after confirmation, and it is difficult to turn off the boost function. ; Directly adopting the method of resistive voltage division will consume a lot of power consumption, especially when dealing with negative voltage; using

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  • Low-temperature coefficient boosting circuit with adjustable amplitude
  • Low-temperature coefficient boosting circuit with adjustable amplitude
  • Low-temperature coefficient boosting circuit with adjustable amplitude

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[0021] Such as figure 1 , figure 2 As shown, the low temperature coefficient boost circuit with adjustable amplitude according to the present invention includes an operational amplifier 1, a mirror circuit containing an op amp negative feedback loop 2, a sampling resistor R3, a boost resistor R4 and an enable switch 3. The inverting input terminal of the operational amplifier 1 is used to input a reference voltage, the non-inverting input terminal of the operational amplifier 1 is connected to the sampling resistor R3 and then grounded; the input terminal of the mirror circuit 2 is connected to the output of the operational amplifier 1 The first output terminal of the mirror circuit 2 is connected to the sampling resistor R3 and then grounded, and the second output terminal of the mirror circuit 2 is connected to the boost resistor R4 after the enable switch 3; the negative feedback of the op amp The loop is used to make the voltage between the mirror circuit 2 and the sampling...

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Abstract

The invention discloses a low-temperature coefficient boosting circuit with adjustable amplitude. The low-temperature coefficient boosting circuit comprises an operational amplifier, a mirror image circuit containing an operational amplifier negative feedback loop, a sampling resistor, a boosting resistor and an enabling switch; the inverting input end of the operational amplifier is used for inputting reference voltage, and the same-phase input end of the operational amplifier is connected with the sampling resistor and then is grounded; the input end of the mirror image circuit is connectedwith the output end of the operational amplifier, the first output end of the mirror image circuit is connected with the sampling resistor and then is grounded, and the second output end of the mirrorimage circuit is connected with the boosting resistor after passing through the enabling switch; the negative feedback loop of the operational amplifier is used for enabling the voltage between the mirror image circuit and the sampling resistor to be equal to the reference voltage; and a voltage output end is arranged between the enabling switch and the boosting resistor, and the sampling resistor and the boosting resistor are the same in type. The low-temperature coefficient boosting circuit has the characteristics of being adjustable in amplitude, low in temperature coefficient and precision and the like.

Description

technical field [0001] The invention relates to the field of semiconductor integrated circuits, in particular to a voltage boosting circuit with adjustable amplitude and low temperature coefficient. Background technique [0002] In the processing of voltage signals, weak low-voltage signals or negative voltage signals are often encountered, especially for negative voltage signals, which cannot be directly applied to subsequent positive power supply voltage processing circuits such as comparators; therefore, low-voltage signals or negative voltage signals need to be processed The negative voltage signal is boosted to facilitate subsequent signal processing. [0003] For signals that are particularly important for such amplitude characteristics, the amplitude characteristics of the signal should be preserved while boosting. Therefore, it is not possible to do a fixed output boost for this type of signal, but to use an equal-amplitude boost method to retain the amplitude chara...

Claims

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Application Information

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IPC IPC(8): G05F1/56
Inventor 李斌陈鸿陈志坚郑彦祺黄沫周绍林
Owner SOUTH CHINA UNIV OF TECH
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