搜索资源列表
Untitled1
- 模拟信号发生器,模拟正弦,余弦,三角波,锯齿波,同时可实现幅度、频率调节-Analog signal generator, analog sine, cosine, triangle, sawtooth, while maintaining a range of frequency adjustment
SincInterplotation
- 正弦内插算法的实现,可以用于示波器,信号输出等场合-Sinc Interpolation for Sine Signals
VBapihuatu
- Vb 画函数图 正弦函数 余弦函数 等源码 网上收集-Vb painting function graph sine cosine function, such as source code online collection
sin_cos_lookup_generator
- Generator of sine and cosine lookup tables in Matlab.
GAOPIN)
- 高频正弦波发生器的课程设计,通信电子线路,ewb仿真-High-frequency sine wave generator of the course design, communication, electronic circuits, ewb Simulation
How_do_the215708792009
- How does cosine & sine work?
AD9954pdf
- AD9954是美国AD公司采用先进的DDS技术生产的高集成度频率合成器,它能产生200MHz的模拟正弦波。文章介绍了AD9954的基本特点和引脚功能,分析了其内部结构和工作原理,给出了AD9954在高速调制信号系统中的应用方案。-AD9954 is AD using advanced DDS technology to produce a high level of integration of the frequency synthesizer that can generate the an
cz
- 适用易做的正弦波,矩形波,三角波信号发生器,-Application easy to be a sine wave, rectangular wave, triangle wave signal generator,
UPS_with_PIC16F72
- Schematic For Ups Using Pic
main
- 使用DEV-cpp。 产生正弦波。 计算相位差。 计算复阻抗。-Use DEV-cpp. Generated sine wave. Calculation phase. Impedance calculation.
Sine
- GENERATION OF SINE WAVE USING TMS320LF2407
main
- dspic33F DAC程序 实现DAC输出正弦波型。 -dspic33F DAC DAC output sine wave type of program realization.
wavelet03
- 程序生成正弦信号和三角波信号,对叠加信号进行一维小波变换(6层),重构6层逼近系数,并显示。-Program generates sine wave and triangular wave signals, superposition of signals of one-dimensional wavelet transform (6 layer), reconstruct 6 layer approximation coefficient, and displayed.
sine-wave-in-UPS
- 正弦波UPS中的逆变电路 包括原理分析 框图 及原理图-Sine wave UPS inverter circuit the principle analysis block diagram and schematic
16f72-sine-bridge
- sine Bridge asm file
sine-16f72-bridge-1
- Sine Bridge asm file 1
bridge-16f72-sine
- Sine Bridge 16F72 Bridge Sine
sine
- MATLAB XILINX BASED SINE WAVE MODEL
SINE
- 同步电机三相正玄波驱动程序,希望有用得上的。-Three-phase sine wave synchronous motor driver, hope to have in handy.
swept-sine-vibration
- 基于ANSYS APDL二次开发的航电设备的动力学扫频分析,载荷输入条件为交越频率以下为恒定位移,交越频率以上为恒定加速度。我将加速度输入转换为位移输入,将位移和加速度两段输入载荷统一按照位移载荷输入,将位移存入表数组,利用ANSYS APDL自动将扫频范围内的位移载荷存入表数组,并循环加载计算,实现了该工程结构的正弦扫频振动分析。-Kinetic sweep analysis, load input conditions of secondary development based on AN