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Guaranteed Zero Reading for OV Input on All Scales The Intersil ICL7106 and ICL7107 are high performance, low True Polarity at Zero for Precise Null Detection power, 312 digit A/D converters. Included are seven seg- 1pA Typical Input Current ment decoders, display drivers, a reference, and a clock
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1、设计任务 设计一个测量系统(或者加入控制部分,构成测控系统)并实现它,最后要对系统进行校准。要求包括完整的设计,含传感器、信号调理电路、数字显示以及电源部分,如下图:
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• 第一节 扭转的概念和实例 • 第二节 扭矩和扭矩图 • 第三节 圆杆扭转时的应力和变形 • 第四节 圆杆扭转的强度和刚度计算
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生产过程的大型化和复杂化,操作条件要求更加严格,各变量之间的关系更加复杂,对生产、质量、安全、环保的更高要求。出现了许多简单调节系统不能胜任控制任务。复杂调节系统是以简单系统为基础的结构或算法上更为先进的控制方法
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§4.1 轴向拉压的应力和变形 §4.2 常温静载下材料的力学性能 §4.3 轴向拉压时的强度条件 §4.4 应力集中的概念及影响
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直流稳压电源的调试 1、数据处理(5分) (1)半波整流及其滤波(含空载与接入负载测量结果绘制于同一个坐标系中波形:整流后、空载、接入负载后的波形(3个;1.5分,每个波形0.5)注意:波形的相对关系;(相对关系不对扣0.5)
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一、了解典型机电一体化产品的设计思想。 二、认识用光电编码器测量平面位移的方法。 三、培养分析评价机电产品的初步能力
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System compensation is the process of designing a controller that will produce an acceptable transient response while maintaining a desired steady-state accuracy .These two design objectives are conflicting in most systems ,since small errors imply high gains reduce system stability and may even drive the system unstable .Compensation may be thought of as the process of increasing the stability of a system without reducing its accuracy below minimum acceptable standards
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3.1 Introduction 3.2 Typical test signals for time response of control systems 3.3 First –Order Systems 3.4 Performance of a Second-Order System 3.5 Concept of Stability 3.6 The Relative Stability of Feedback Control Systems
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1 Introduction 2 Deterministic Dynamic Programming and Viscosity Solutions 2.1 Introduction 2.2 Value Functions are Viscosity Solutions 2.3 Comparison and Uniqueness 3 Stochastic Control 3.1 Some Probability Theory 3.2 Controlled State Space Models 3.3 Filtering 3.4 Dynamic Programming - Case I : Complete State Information 3.5 Dynamic Programming - Case II : Partial State Information 3.6 Two Continuous Time Problems 4 Robust Control 4.1 Introduction and Background 4.2 The Standard Problem of H∞ Control 4.3 The Solution for Linear Systems 4.4 Risk-Sensitive Stochastic Control and Robustness 5 Optimal Feedback Control of Quantum Systems 5.1 Preliminaries 5.2 The Feedback Control Problem 5.3 Conditional Dynamics 5.4 Optimal Control 5.5 Appendix: Formulas for the Two-State System with Feedback Example 6 Optimal Risk-Sensitive Feedback Control of Quantum Systems 6.1 System Model
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