AWR Design Environment 10
Microwave Office
入门指南
MWO 入门指南
AWRDE 10 版
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No part of this guide may be reproduced in any form or by any means, electronic, mechanical, photocopying, recording, or
otherwise, without the express written permission of AWR Corporation.
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• ACE , Analyst , AWR Connected , AWR Design Environment , AWR Signal Integrity , AWR.TV , AWR User Forum ,
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EMSight , EM Socket , iFilter , iMatch , iNet , MRHB , RFA , RFB , RFI , TDNN , TestWave , Unified Data Model ,
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and Visual System Simulator are trademarks of AWR Corporation.
• All other product and company names herein may be the trademarks or registered trademarks of their respective owners.
Patents
The AWR Design Environment
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is covered by one or more of the following Patents:
• U.S. Patent No(s).: 7,346,480; 7,577,192; 7,940,838; 8,086,991; 8,131,521
• Other U.S. and International Patents Pending.
The information in this guide is believed to be accurate. However, no responsibility or liability is assumed by AWR Corporation
for its use.
目½
1. AWR设计环境简介 ....................................................... 1–1
关于本书 ............................................................. 1–1
前提条件 ......................................................... 1–1
目½ ............................................................. 1–2
½用约定 ......................................................... 1–2
获取更多信息 ......................................................... 1–3
AWR知识库 ........................................................ 1–3
文档 ............................................................. 1–3
在线帮助 ......................................................... 1–4
½站支持 ......................................................... 1–5
技术支持 ......................................................... 1–5
2. AWR设计环境套装 ....................................................... 2–1
运行AWR程序 .......................................................... 2–2
AWR设计环境套件的组成部分 ............................................ 2–3
基本操½ ............................................................. 2–4
工程管理 ........................................................ 2–4
新建MWO/AO原理图和½表 ........................................... 2–6
新建VSS系统框图 .................................................. 2–7
½用元件管理器 ................................................... 2–8
应用MWO/AO创建版图 ............................................. 2–13
创建输出图表并添加测试量 ....................................... 2–16
设½仿真频率并运行仿真 .......................................... 2–18
½用脚本和向导 .................................................. 2–19
½用在线帮助 ........................................................ 2–19
3. MWO:导入数据文件 ..................................................... 3–1
导入S参数数据文件 .................................................... 3–1
创建新工程 ....................................................... 3–1
导入数据文件 .................................................... 3–1
绘制数据文件 ........................................................ 3–2
在原理图中添加数据文件 .............................................. 3–4
创建原理图 ....................................................... 3–4
在原理图中放½数据文件 ........................................... 3–4
设定仿真频率 ..................................................... 3–6
仿真带有数据文件的原理图 ......................................... 3–7
4. MWO:应用线性仿真器 ................................................... 4–1
Microwave Office中的线性仿真器 ....................................... 4–1
集总参数滤波器设计 ................................................... 4–1
新建工程 ......................................................... 4–1
设½工程默认单½ ................................................. 4–2
创建原理图 ....................................................... 4–2
AWR 所有权
Getting Started Guide
iii
内容
创建图表 ......................................................... 4–7
添加测试量 ....................................................... 4–8
电路仿真 ............................................................. 4–9
电路调谐 ........................................................ 4–10
创建变量 ............................................................ 4–12
添加优化目标 ........................................................ 4–13
优化电路 ............................................................ 4–14
5. MWO:创建原理图的版图 ................................................. 5–1
Microwave Office中的版图设计 ......................................... 5–1
版图的应用技巧 ................................................... 5–1
创建原理图的版图 ..................................................... 5–1
创建新的工程 ..................................................... 5–2
导入层处理文件 ................................................... 5–2
设½数据库单½和默认的½格大小 ................................... 5–3
导入GDSII单元库 .................................................. 5–4
导入数据文件 ..................................................... 5–5
在原理图中放½数据文件并添加接地 ................................. 5–5
改变元件符号 ..................................................... 5–6
在版图中放½微带线元件 ........................................... 5–7
为原理图元件配½封装单元 ........................................ 5–10
查看版图 ........................................................ 5–10
衔接版图 ........................................................ 5–11
连通性检查 ...................................................... 5–11
固定版图单元 .................................................... 5–13
创建封装单元 .................................................... 5–14
为封装单元添加端口 .............................................. 5–16
设½电容的封装 .................................................. 5–18
应用MTRACE2元件 ................................................. 5–20
版图单元的衔接功½ .............................................. 5–22
输出版图: ...................................................... 5–27
6. MWO:½用非线性仿真器 ................................................. 6–1
Microwave Office中的谐波平衡 ......................................... 6–1
单音分析 ......................................................... 6–1
多音分析 ......................................................... 6–1
非线性测试 ....................................................... 6–1
创建功率放大器电路 ................................................... 6–2
创建新工程 ....................................................... 6–2
创建原理图 ....................................................... 6–3
创建偏½电路 ..................................................... 6–7
导入输入匹配和输出匹配原理图 .................................... 6–17
在原理图中添加子电路 ............................................ 6–19
创建输出功率随频率变化的测试量 .................................. 6–23
创建动态负½½线测试量 ............................................ 6–24
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AWR Design Environment 10
AWR 所有权
内容
设½双音仿真 .................................................... 6–27
7. MWO:½用电磁仿真器 .................................................. 7–1
Microwave Office中的电磁仿真器 ....................................... 7–1
创建分布式叉指状滤波器 ............................................... 7–2
创建新工程 ....................................................... 7–2
导入层处理文件(LPF) .............................................. 7–3
创建电磁结构 ..................................................... 7–3
在版图中添加导½ ................................................ 7–10
添加过孔 ........................................................ 7–16
查看三维结构 .................................................... 7–18
添加端口和去嵌入线 .............................................. 7–19
设定仿真频率 .................................................... 7–22
查看½格剖分 .................................................... 7–23
运行电磁仿真 .................................................... 7–25
在图表中显示仿真结果 ............................................ 7–27
改变频率范围和步进值 ............................................ 7–29
动态显示电流 .................................................... 7–29
完成滤波器的版图 ................................................ 7–31
添加端口 ........................................................ 7–38
高级频率扫描 .................................................... 7–40
将电磁结构½为子电路添加到原理图中 .............................. 7–43
8. MWO:应用 Analyst 3维电磁仿真器 ...................................... 8–1
芯片到电路板间键合线的仿真 ........................................... 8–1
安装 Analyst 3维电磁仿真器 ....................................... 8–2
打开现有的工程 ................................................... 8–2
将AXIEM结构½换为Analyst ......................................... 8–2
运行仿真 ......................................................... 8–9
创建层次仿真 .................................................... 8–15
添加3维参数化单元(键合线) ....................................... 8–25
添加芯片和键合线的介质封装 ...................................... 8–28
仿真整个结构 .................................................... 8–29
仿真部分电路结构的配½方法 ...................................... 8–33
索引 .................................................................. 索引–1
AWR 所有权
Getting Started Guide
v
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