代码搜索结果

找到约 3,982 项符合 Sensor 的代码

train.hier_info

|train sensor1 => Selector1.IN6 sensor1 => Decoder2.IN0 sensor1 => Decoder0.IN0 sensor2 => Decoder0.IN1 sensor2 => Decoder1.IN0 sensor3 => Selector1.IN7 sensor3 => Selector0.IN6 sensor3 => Dec

verilog2.v

module tb_train(); reg sensor1; reg sensor2; reg sensor3; reg sensor4; reg sensor5; reg reset; reg clock; wire switch1; wire switch2; wire switch3; reg sensor13; reg sensor24; reg sensor12; wire CLOC

train.hier_info

|train sensor1 => Selector1.IN6 sensor1 => Decoder2.IN0 sensor1 => Decoder0.IN0 sensor2 => Decoder0.IN1 sensor2 => Decoder1.IN0 sensor3 => Selector1.IN7 sensor3 => Selector0.IN6 sensor3 => Dec

fet140_adc12_03.c

//****************************************************************************** // MSP-FET430P140 Demo - ADC12, Sample A10 Temp, Set P1.0 if Temp ++ ~2C // // Description: Use ADC12 and the inte

fig3_03.m

%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% % Figure 3.3 % Cosine^m weighting: m = 2,3,and 4 % Kristine Bell % Modified by Xin Zhang 3/17/99 % Lillian Xu 04/16/2001, K. Bell 7/20/01,

fig3_02.m

%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% % Figure 3.2 % Raised cosine weighting function % Kristine Bell % Modified by Xin Zhang 3/17/99 % Lillian Xu 04/16/2001, K. Bell 7/20/01,

test44x_ca04.c

#include "msp430x44x.h" //****************************************************************************** // MSP430-TEST44X Demo - Comp_A Slope ADC to Detect Temp Level Set P5.1 > 25c // // Desc

camera.c

/* * MX21 Camera Library API * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Softwa

music3.m

Sensor=8; Snap=100; Doa=[10 20 50 60]; S_number=length(Doa); Lambda=0.1; d=0.5*Lambda; S_x=[0:Sensor-1]*d; A=exp(-j*2*pi/Lambda*S_x'*sin(Doa*pi/180)); Snr=10; Snr=sqrt(10.^(Snr/10)); Sig=

music3.txt

Sensor=8; Snap=100; Doa=[10 20 50 60]; S_number=length(Doa); Lambda=0.1; > 波长 d=0.5*Lambda; > 阵元间距 S_x=[0:Sensor-1]*d; A=exp(-j*2*pi/Lambda*S_x'*sin(Doa*pi/180)); Snr=10; Snr=sqrt(10.^(S