High-precision analog-to-digital converter fuse automatic burning system and method

An analog-to-digital converter, programming system technology, applied in simulators, general control systems, control/regulation systems, etc., can solve the problems of long time, inability to adjust capacitance, low programming success rate, etc., to reduce the amount of The effect of reducing the difficulty of production, improving the success rate of programming and improving production efficiency

Active Publication Date: 2020-05-15
BEIJING MXTRONICS CORP +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, in the production process of the SAR structure analog-to-digital converter, it is impossible to directly measure the internal capacitance to realize the trimming of its capacitance. It can only be measured after the parameter performance, and the capacitance value of the mismatched capacitance is obtain

Method used

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  • High-precision analog-to-digital converter fuse automatic burning system and method
  • High-precision analog-to-digital converter fuse automatic burning system and method
  • High-precision analog-to-digital converter fuse automatic burning system and method

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Embodiment Construction

[0031] The present invention will be further explained and illustrated below in conjunction with the drawings and specific implementations of the specification.

[0032] Such as figure 1 , 2 , 3. A high-precision analog-to-digital converter fuse automatic burning system, including power supply, audio signal source, FPGA module, burning module, upper computer, USB to SPI controller, and logic analyzer;

[0033] The power supply is used to provide working voltage for the programming module;

[0034] The audio signal source is used to provide analog input signals for the burning module;

[0035] The logic analyzer is used to collect the output data of the programming module, and determine whether the programming is successful according to the observed data;

[0036] FPGA module, used to receive the programming control signal sent by the host computer through the USB to SPI controller and the programming code stream data of each fuse in the fuse array arranged in a preset order, generate co...

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PUM

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Abstract

The invention discloses a high-precision analog-to-digital converter fuse automatic burning system and method, and belongs to the technical field of digital-to-analog converters. An FPGA module receives a burning control signal sent by an upper computer through a USB-to-SPI controller and burning code stream data of each fuse in a fuse array arranged according to a preset sequence, generates a control instruction and sends the control instruction to a burning module, wherein the control instruction comprises a burning control signal, burning code stream data of a fuse array and a work controlsignal; the burning module comprises a trimming code burning circuit and an ADC chip to be burnt; the trimming code burning circuit receives the control instruction and forwards the control instruction to the ADC chip to be burnt; and the ADC chip to be burnt performs burning according to a burning control signal in the control instruction, enters a burning state, sends burning code stream data ofthe fuse array in the control instruction to a receiving pin of the ADC chip to be burnt according to bits, and each fuse is burned according to bits by the ADC chip to be burnt, so as to realize burning of the whole ADC chip fuse array to be burnt.

Description

Technical field [0001] The invention relates to a high-precision analog-to-digital converter fuse automatic burning system and method, and belongs to the technical field of digital-to-analog converters. Background technique [0002] With the continuous development of electronic technology, analog-to-digital converters have become more and more important as an interface between the analog and digital world. High-precision converters have the characteristics of low power consumption, low noise, and wide input range, and are widely used in many fields such as environmental monitoring, digital acquisition systems, and instrumentation. [0003] The successive approximation register (Successive Approximation Register, SAR) structure has the advantages of wide input range, low power consumption, reusability, etc. Most high-precision analog-to-digital converters are designed based on this structure. However, in the converter production process, due to the limitations and instability of th...

Claims

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Application Information

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IPC IPC(8): G05B19/042
CPCG05B19/0423G05B2219/24215
Inventor 李宁张铁良谭博张鑫星赵进才王星树秦坤
Owner BEIJING MXTRONICS CORP
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