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1.1 数制与代码 1.2 逻辑函数 1.3 逻辑代数的基本定律和运算规则 1.4 逻辑函数的代数化简法 1.5 逻辑函数的卡诺图化简 1.6 逻辑函数的常用表达形式
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学习要点: •基本触发器的结构及特点 •触发器的功能描述方法 •触发器的使用方法 5.1 基本触发器 5.1.1 基本RS触发器 5.1.2 钟控RS触发器 5.1.3 D触发器 5.1.4 JK触发器 5.1.5 T触发器和T'触发器 5.1.6 基本触发器的空翻和震荡现象 5.2 边沿触发器
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6.1时序逻辑电路概述 6.2同步时序电路的分析 6.3异步时序电路的分析 6.4同步时序电路的设计方法
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The Bipolar Junction Transistor The term Bipolar is because two type of charges (electrons and holes) are involved in the flow of electricity The term Junction is because there are two pn Junctions There are two configurations for this device n-type p-type n-type
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DoC. No. 5SYA1036-03 Sep Two thyristors integrated into one wafer Patented free-floating silicon technology Designed for traction, energy and industrial applications Optimum power handling capability Interdigitated amplifying gate The electrical and thermal data are valid for one thyristor half of the device
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he World's Largest-Capacity 8kV/3.6kA Light-Triggered Thyristor by Katsumi sato* Mitsubishi Electric has developed an 8kV/3.6kA light-triggered thyristor (LTT) based on a six inch wafer for power-converter applications in igh-voltage DC transmission and back-to-back systems. New design features give the device
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VDRMI VARM =10ms 1/2 sine. Vosu V asM =VDRM+ 100V respectively. Lower voltage grades available. ORDERING INFORMATION When ordering select the required part number shown in the Voltage Ratings selection table r ex For example:
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Schottky Power Rectifier employing the Schottky Barrier principle in a large area metal-to-silicon power diode. State-of-the-art geometry features oN Semiconductor epitaxial construction with oxide passivation and metal overlay contact. Ideally suited for low voltage, high frequency rectification, or http:/lonsemi.com
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The IPMTS.OAT1/T3 Series is designed to protect voltage sensitive components from high voltage, high energy transients http:/lonsemi.com Excellent clamping capability, high surge capability, low zener impedance and fast response time. The advanced packaging technique provides for a highly efficient micro miniature, space PLASTIC SURFACE MOUNT saving surface mount with its unique heat sink design. The
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学习要点: •计数器、寄存器的分类 •集成计数器芯片的功能分析及其应用 •集成寄存器芯片的功能分析及其应用 7.1 计数器 7.1.1 计数器的分类 7.1.2 集成同步计数器功能分析及应用 7.1.3 集成异步计数器功能分析及应用 7.2 寄存器 7.2.1 数据寄存器 7.2.2 移位寄存器 7.2.3 集成寄存器的功能分析及应用
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