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Octane v1.01.20
The Open Compression Toolkit for C++ .
The Open Compression Toolkit is a set of modular C++ classes and utilities for implementing and testing compression algorithms.
Simple interface and skeleton code for creating new compre
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用AT89S51单片机的T0、T1的定时计数器功能,来完成对输入的信号进行频率计数,计数的频率结果通过8位动态数码管显示出来。要求能够对0-250KHZ的信号频率进行准确计数,计数误差不超过±1HZ。-A single chip with AT89S51 T0, T1 timing counter function, to complete the input signal frequency counting, counting the frequency of 8 resulted in t
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Quartus II工程压缩文件,是一个典型的基于FPGA的数字钟工程项目,有50MHz分频、计数、译码等模块。采用VHDL语言编写。-Quartus II project files, is a typical FPGA-based digital clock project, there are sub-50MHz frequency, counting, decoding modules. Using VHDL language.
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用51单片机做的数字频率计,精度非常高,计数误差不超过1Hz。量程0--65535.-Singlechip do with 51 digital frequency meter, the accuracy is very high, counting error of less than 1Hz. Range 0- 65535.
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利用AT89S51单片机的T0、T1的定时计数器功能,来完成对输入的信号进行
频率计数,计数的频率结果通过8位动态数码管显示出来。要求能够对0-250KHZ
的信号频率进行准确计数,计数误差不超过±hz -AT89S51 MCU using T0, T1 Counter timing to achieve the input signal frequency counting, counting the frequency of 8 resulted in the adoptio
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Quartus II工程压缩文件,是一个典型的基于FPGA的数字钟工程项目,有50MHz分频、计数、译码等模块。-Quartus II project files, is a typical FPGA-based digital clock project, there are sub-50MHz frequency, counting, decoding modules.
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Quartus II工程压缩文件,是一个典型的基于FPGA的数字钟工程项目,有50MHz分频、计数、译码等模块。采用Verilog语言编写。-Quartus II project files, is a typical FPGA-based digital clock project, there are sub-50MHz frequency, counting, decoding modules. The use of Verilog language.
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Quartus II工程压缩文件,是一个典型的基于FPGA的秒表工程项目,有50MHz分频、计数、译码等模块。采用VHDL语言编写。-Quartus II project files, is a typical FPGA-based project of the stopwatch, a 50MHz frequency, counting, decoding modules. Using VHDL language.
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Quartus II工程压缩文件,是一个典型的基于FPGA的计价器工程项目,有有限状态机、50MHz分频、计数、译码、动态扫描等模块。-Quartus II project files, is a typical FPGA-based project of the meter, there are finite state machine, 50MHz frequency, counting, decoding, dynamic scanning module.
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本数字频率计将采用定时、计数的方法测量频率,采用一个1602A LCD显示器动态显示6位数。测量范围从1Hz—10kHz的正弦波、方波、三角波,时基宽度为1us,10us,100us,1ms。用单片机实现自动测量功能。-This digital frequency meter will use fixed time, the counting method survey frequency, uses 1602The LCD monitor dynamic to demonstrate 6 fi
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6位数显频率计数器,利用AT89S51单片机的T0、T1的定时计数器功能,来完成对输入的信号进行频率计数,计数的频率结果通过8位动态数码管显示出来。要求能够对0-250KHZ的信号频率进行准确计数,计数误差不超过±1HZ。-Significant 6-digit frequency counter, using AT89S51 MCU T0, T1 timing counter functions to complete the input signal frequency counting,
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利用AT89S51单片机的T0、T1的定时计数器功能,来完成对输入的信号进行频率计数,计数的频率结果通过8位动态数码管显示出来。要求能够对0-250KHZ的信号频率进行准确计数,计数误差不超过±1HZ。-AT89S51 MCU using T0, T1 timing counter functions to complete the input signal frequency counting, counting the frequency of 8 resulted in the adopt
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基于89C51单片机控制的频率计数器原代码显示记数程序-Based on 89C51 microcontroller-controlled frequency counter counting procedures for the original code shows
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利用AT89S51单片机的T0、T1的定时计数器功能,来完成对输入的信号进行频率计数,计数的频率结果通过8位动态数码管显示出来。要求能够对0-250KHZ的信号频率进行准确计数,计数误差不超过±1HZ。-AT89S51 microcontroller using T0, T1 timing counter functionality to complete the input signal frequency count, counting the frequency of the result
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利用AT89S51单片机的T0、T1的定时计数器功能,来完成对输入的信号进行频率计数,计数的频率结果通过8位动态数码管显示出来。要求能够对0-250KHZ的信号频率进行准确计数,计数误差不超过±1HZ。 -AT89S51 microcontroller using T0, T1 timing counters function to complete the input signal frequency count, counting the frequency of the result by
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利用AT89S51单片机的T0、T1的定时计数器功能,来完成对输入的信号进行频率计数,计数的频率结果通过8位动态数码管显示出来。要求能够对0-250KHZ的信号频率进行准确计数,计数误差不超过±1HZ。-AT89S51 MCU using T0, T1 of the timer counter functions, to complete the input signal frequency count, counting the frequency of results by 8-bit dy
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notes for frequency counter system designers
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is the Java implementation of the Lossy Counting Algorithm that you can find at:
http://www-db.stanford.edu/~manku/papers/02vldb-freq.pdf
The LossyCountingAnalyzer program takes an input stream made of text and compute the words with the highest
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实现MSP430单片机测频,单片机需超频至12M主频,采用最常用的低频测周,高频计数方法,频率测量范围达到0.1Hz-20MHz,理论上还可以测更高频率,但是手头只有20M的信号发生器-To achieve the MSP430 MCU frequency measurement the microcontroller be overclocked to 12M clocked, the most commonly used low-frequency measurements weeks, h
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FreQuency Counting using c51.
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