|本期目录/Table of Contents|

[1]郝宪锋a,成向阳b.基于CPLD的双通道高压脉冲信号源[J].工业仪表与自动化装置,2014,(05):37-39.
 HAO Xianfenga,CHEN Xiangyangb.Design of a dual channel high-voltage pulse generator based on CPLD[J].Industrial Instrumentation & Automation,2014,(05):37-39.
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基于CPLD的双通道高压脉冲信号源(PDF)

《工业仪表与自动化装置》[ISSN:1000-0682/CN:61-1121/TH]

卷:
期数:
2014年05期
页码:
37-39
栏目:
出版日期:
2014-10-15

文章信息/Info

Title:
Design of a dual channel high-voltage pulse generator based on CPLD
作者:
郝宪锋a成向阳b
(1.中国石油大学 a.信息与控制工程学院;b.石油工程学院,山东 东营 257061)
Author(s):
HAO Xianfenga CHEN Xiangyangb
(a. School of Information and Control Engineering;b. School of Petroleum Engineering, China University of Petroleum,Shandong Dongying 257061, China)
关键词:
压电陶瓷换能器反激式升压脉冲变压器MM3360ACPLD
Keywords:
piezoelectric ceramic transducer fly-back type step-up pulse transformer MM3360A CPLD
分类号:
TN782
DOI:
-
文献标志码:
A
摘要:
针对声波测井压电陶瓷换能器容性大的负载特性,采用单片机和CPLD相结合的方式设计了一种输出幅度高、驱动电流大、脉冲宽度可调的双通道高压脉冲信号源。系统利用C8051F350单片机及PWM控制芯片MM33060A,并结合自耦变压器反激式升压电路将12 V直流供电电压抬升至300 V。采用CPLD产生精确的频率可控的300 V脉冲电压,利用脉冲变压器进一步提升电压,得到了上千伏的高压激励脉冲。实验结果标明,设计的信号源在激励压电陶瓷换能器时,负载上得到了比较理想的波形,波形上升沿陡峭,无拖尾及振荡现象,满足实际应用需求。
Abstract:
A kind of dual channel high-voltage pulse generator based on CPLD was designed in order to solve the problem of large capacitive loads characteristic with transducer used in acoustic well-logging. MCU and CPLD were used in this design. This kind of generator can provide high amplitude, strong ability of current driving pulse. And the width can be adjusted. C8051F350 MCU, PWM control chip MM33060A and fly-back type circuit were used to get voltage uplift from 12 V to 300 V. Using CPLD to produce precise frequency and pulse width control signal, high-voltage pulse generating circuit outputted 300 V pulse voltage.1 kV pulse signals were achieved on the secondary side of the transformer. The experimental results indicated that we can get ideal wave form the piezoelectric ceramic transducer. It has a steep rising and no tailing or oscillation. Therefore, this kind of generator meets the needs of practical application.

参考文献/References:

[1] 王斌,芶志平,毛海燕.基于MCU控制的高压开关电源[J].压电与声光,2011,33(1):64-67.
[2] 陈影,付少波,何惠英,等.基于反激式开关电源升压电路的改进[J].电子科技,2010,23(2):61-64.
[3] 国海峰,肖站,李生.基于MC34063控制的压电陶瓷泵电源研制[J]. 压电与声光,2009,31(6):821-823.
[4] 欧文,师奕兵,王志刚.油套管管壁磁测厚仪激励模块设计 [J].测控技术,2012,31(4):24-27.
[5] 陈炜峰,胡绍朋,薛冬.一种基于双传输线的纳秒脉冲源的研制[J].科学技术与工程,2013,13(27)7993:-7996

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更新日期/Last Update: 1900-01-01