1.
Theoretical and Experimental Study of Blanking Process Noise Emission and Its Control;
冲裁工艺噪声发射及其控制的理论与实验研究
2.
Heat Treatment Technics Experiment for Punching & Stamping Die of 65Nb Plate
65Nb钢链板冲裁模具热加工工艺试验
3.
The Automatic Realization in Process Analysis of Assembling Die Blanking
组合模具冲裁件工艺分析的自动实现
4.
Theory and Technology of Electrochemical Noise of the Marine Electrode
海洋电极电化学噪声原理及工艺探讨
5.
A 3.1~5.2 GHz Low Noise Amplifier in 0.18 μm CMOS Process
0.18m CMOS工艺3.1~5.2GHz低噪声放大器
6.
A clinical investigation and the effects of the pulsive noise on the hearing of the involved workers;
脉冲噪声对工人听力的影响及临床转归
7.
Structure and Construction Technology of Low-noise Anti-skid Cement Concrete Pavement
低噪声抗滑水泥混凝土路面结构及施工工艺
8.
The impact noise excitation is discussed, and the time-history inputting models for impact noise excitations are founded.
讨论轮轨噪声激扰之一:冲击噪声激扰。
9.
Research on Silent Blanking Based on Mechanical Press of Servo Drive;
基于伺服驱动机械压力机的静音冲裁工艺研究
10.
Man-Machine Interactive Blanking Technology Caculation Based on AutoCAD software;
基于AutoCAD软件的人机交互式冲裁工艺计算
11.
Design of Low Noise Amplifier and Down-Convert Mixer Based on 0.18μm CMOS Technologe Used in 5GHz WLAN;
0.18μm CMOS工艺5GHz WLAN低噪声放大器和下变频器的设计
12.
The Design of 1.6 GHz Low Phase Noise LC Voltage Controlled Oscillator with 0.18μm CMOS Technology;
0.18μm CMOS工艺1.6 GHz低相噪声LC压控振荡器的设计
13.
The Design of 0.6 μm CMOS Technology 900MHz GSM Low Noise Amplifier and Mixer;
0.6μm CMOS工艺900MHz GSM低噪声放大器和混频器的设计
14.
Design and Implementation of a 2.4GHz Low Noise Amplifier in 0.18μm CMOS
基于0.18μmCMOS工艺的2.4GHz低噪声放大器的设计与实现
15.
Design of an Ultra-Wideband Low Noise Amplifier in a 0.18μm CMOS
采用0.18 μmCMOS工艺超宽带低噪声放大器的设计(英文)
16.
Two-stage impulse noise filtering algorithm based on PCNN noise detection
基于PCNN噪声检测的两级脉冲噪声滤波算法
17.
Assembles Craft of Car Rear Bridge and Noise Detection and Fault Diagnoses;
汽车后桥装配工艺及噪声检测与故障诊断的研究
18.
All of the punching border-linking process of thin wall small part shaping process of negative angle crimping and inserted structure of shaping and cutting ingot-stripped for designed parts are analyzed.
分析了薄壁小零件的冲裁接边工艺,负角度弯边的成形工艺,设计零件成形切断脱模的镶块结构。