摘要:采用表面组装技术(surface mountt echnology,SMT)进行印制板级电子电路组装是当代组装技术发展的主流。典型的SMT生产线是由高速机和多功能机串联而成,印制电路板(printed circuit board,PCB)上的元器件在贴片机之间的负荷均衡优化问题是SMT生产调度的关键问题。以使贴片时间与更换吸嘴时间之和最大的工作台生产时间最小化为目标构建了负荷均衡模型,开发了相应的遗传算法,并进行了数值实验与算法评价。与生产时间理论下界和现场机器自带软件调度方案的对比表明了模型及其算法的有效性。关键词:印制电路板;表面组装生产线;负荷分配;生产线优化
上传时间: 2013-10-09
上传用户:亚亚娟娟123
ExpressPCB 是一款免费的PCB设计软件,简单实使。可以画双层板。 Our Free PCB software is a snap to learn and use. For the first time, designing circuit boards is simple for the beginner and efficient for the professional. Our board manufacturing service makes top quality two and four layer PCBs. Use our MiniBoard service and pay only $51 for three boards (plus $8 shipping).
标签: ExpressPCB PCB 设计软件
上传时间: 2013-11-15
上传用户:lchjng
Multisim11.0
标签: Multisim Circuit Design Suite
上传时间: 2013-11-18
上传用户:彭玖华
ExpressPCB 是一款免费的PCB设计软件,简单实使。可以画双层板。 Our Free PCB software is a snap to learn and use. For the first time, designing circuit boards is simple for the beginner and efficient for the professional. Our board manufacturing service makes top quality two and four layer PCBs. Use our MiniBoard service and pay only $51 for three boards (plus $8 shipping).
标签: ExpressPCB PCB 设计软件
上传时间: 2013-10-09
上传用户:1047385479
Multisim11.0
标签: Multisim Circuit Design Suite
上传时间: 2013-10-28
上传用户:不懂夜的黑
Abstract: Using a wafer-level package (WLP) can reduce the overall size and cost of your solution.However when using a WLP IC, the printed circuit board (PCB) layout can become more complex and, ifnot carefully planned, result in an unreliable design. This article presents some PCB designconsiderations and general recommendations for choosing a 0.4mm- or 0.5mm-pitch WLP for yourapplication.
标签: Considerations Guidelines and Design
上传时间: 2013-11-09
上传用户:ls530720646
This Application Note covers the basics of how to use Verilog as applied to ComplexProgrammable Logic Devices. Various combinational logic circuit examples, such asmultiplexers, decoders, encoders, comparators and adders are provided. Synchronous logiccircuit examples, such as counters and state machines are also provided.
上传时间: 2013-11-11
上传用户:y13567890
Finite state machines are widely used in digital circuit designs. Generally, when designing a state machine using an HDL, the synthesis tools will optimize away all states that cannot be reached and generate a highly optimized circuit. Sometimes, however, the optimization is not acceptable. For example, if the circuit powers up in an invalid state, or the circuit is in an extreme working environment and a glitch sends it into an undesired state, the circuit may never get back to its normal operating condition.
标签: Creating Machines Mentor State
上传时间: 2013-11-02
上传用户:xauthu
为了在CDMA系统中更好地应用QDPSK数字调制方式,在分析四相相对移相(QDPSK)信号调制解调原理的基础上,设计了一种QDPSK调制解调电路,它包括串并转换、差分编码、四相载波产生和选相、相干解调、差分译码和并串转换电路。在MAX+PLUSⅡ软件平台上,进行了编译和波形仿真。综合后下载到复杂可编程逻辑器件EPM7128SLC84-15中,测试结果表明,调制电路能正确选相,解调电路输出数据与QDPSK调制输入数据完全一致,达到了预期的设计要求。 Abstract: In order to realize the better application of digital modulation mode QDPSK in the CDMA system, a sort of QDPSK modulation-demodulation circuit was designed based on the analysis of QDPSK signal modulation-demodulation principles. It included serial/parallel conversion circuit, differential encoding circuit, four-phase carrier wave produced and phase chosen circuit, coherent demodulation circuit, difference decoding circuit and parallel/serial conversion circuit. And it was compiled and simulated on the MAX+PLUSⅡ software platform,and downloaded into the CPLD of EPM7128SLC84-15.The test result shows that the modulation circuit can exactly choose the phase,and the output data of the demodulator circuit is the same as the input data of the QDPSK modulate. The circuit achieves the prospective requirement of the design.
上传时间: 2013-10-28
上传用户:jyycc
【摘要】本文结合作者多年的印制板设计经验,着重印制板的电气性能,从印制板稳定性、可靠性方面,来讨论多层印制板设计的基本要求。【关键词】印制电路板;表面贴装器件;高密度互连;通孔【Key words】Printed Circuit Board;Surface Mounting Device;High Density Interface;Via一.概述印制板(PCB-Printed Circuit Board)也叫印制电路板、印刷电路板。多层印制板,就是指两层以上的印制板,它是由几层绝缘基板上的连接导线和装配焊接电子元件用的焊盘组成,既具有导通各层线路,又具有相互间绝缘的作用。随着SMT(表面安装技术)的不断发展,以及新一代SMD(表面安装器件)的不断推出,如QFP、QFN、CSP、BGA(特别是MBGA),使电子产品更加智能化、小型化,因而推动了PCB工业技术的重大改革和进步。自1991年IBM公司首先成功开发出高密度多层板(SLC)以来,各国各大集团也相继开发出各种各样的高密度互连(HDI)微孔板。这些加工技术的迅猛发展,促使了PCB的设计已逐渐向多层、高密度布线的方向发展。多层印制板以其设计灵活、稳定可靠的电气性能和优越的经济性能,现已广泛应用于电子产品的生产制造中。下面,作者以多年设计印制板的经验,着重印制板的电气性能,结合工艺要求,从印制板稳定性、可靠性方面,来谈谈多层制板设计的基本要领。
上传时间: 2013-10-08
上传用户:zhishenglu