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High-speed level shifter circuit with adjustable duty ratio

A level shifter, duty cycle technology, applied in the direction of logic circuit, logic circuit coupling/interface using field effect transistor, logic circuit connection/interface layout, etc., can solve the problem of narrow voltage conversion range, narrow applicability, influence Signal transmission speed and other issues, to achieve the effect of broadening the voltage conversion range, accelerating the pull-up/pull-down speed, and improving the signal transmission rate

Active Publication Date: 2018-10-12
南京胜跃新材料科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The traditional level shifter performs conversion at a specific voltage, and the voltage conversion range is narrow
In addition, under different voltage domains, due to the fixed size of the MOS tube, the output duty cycle cannot be changed, which will affect the signal transmission speed. Turning off early to improve the output duty cycle will not only cause a larger short-circuit current between vdda and vss, but also narrow applicability

Method used

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  • High-speed level shifter circuit with adjustable duty ratio
  • High-speed level shifter circuit with adjustable duty ratio
  • High-speed level shifter circuit with adjustable duty ratio

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Embodiment Construction

[0010] The solutions of the present invention will be further described below in conjunction with the accompanying drawings and specific embodiments.

[0011] The present invention proposes a high-speed level shifter circuit with an adjustable duty ratio. By controlling the number of P tubes connected to the circuit, the duty ratio of the output waveform is adjusted to broaden the voltage conversion range, including:

[0012] ① Input the inverter to provide the opposite low-voltage signal for the circuit, the input terminal of the inverter is LI, and the output terminal is LB.

[0013] ② Two or more groups of N\P tubes MN\MP are respectively connected to the upper and lower positions of the circuit, which provide low potential and high potential for the circuit respectively, the source terminals of MN1 and MN2 are grounded, the drain terminals are connected to the source terminals of LN1\LN2, and the gates are respectively Connect input terminal LI and output terminal LB of th...

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Abstract

The invention discloses a high-speed level shifter circuit with an adjustable duty ratio. The circuit comprises a first transistor MN1, a second transistor MN2, a third transistor LN1, a fourth transistor LN2, a fifth transistor N0, a sixth transistor LP1, a seventh transistor LP2, an eighth transistor LP3, a ninth transistor LP4, a tenth transistor MP1, an eleventh transistor MP2, a first phase inverter, a second phase inverter, a third phase inverter, a fourth phase inverter, a fifth phase inverter, a sixth phase inverter, a seventh phase inverter, an eighth phase inverter and a NOR gate; the number accessing to the circuit P tube is controlled through NOR logic, thereby adjusting the output waveform duty ratio. The level shifter disclosed by the invention can convert an input signal ofthe low-voltage level into an output signal of the high-voltage level without using a high-voltage transistor, the voltage conversion range is broadened, and the signal transmission rate is improved.

Description

technical field [0001] The invention relates to the field of integrated circuit design, in particular to the field of integrated circuit I / O design, in particular to a high-speed level shifter circuit with adjustable duty cycle. Background technique [0002] VLSI technology enables complex system-on-chip (SoC) designs, integrating different parts such as analog and digital circuits, as well as passive components, in a single chip. In such SoCs, different parts of the chip need to run at different voltages to achieve the best speed / power ratio, so communication between different parts of the chip requires level shifters to convert logic signals from one voltage to the other. level shifting to another voltage level. As the scale and power consumption of integrated circuits continue to increase, achieving the optimal balance between performance and power consumption according to real-time loads has become an important factor to be considered in circuit design, which puts forwa...

Claims

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Application Information

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IPC IPC(8): H03K5/156H03K19/0185
CPCH03K5/156H03K19/018507
Inventor 孙嘉斌贾一平胡凯张超刘紫璇孙晓哲
Owner 南京胜跃新材料科技有限公司
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