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Description: 用于实现sin,cos三角函数计数的VHDL程序代码-towards sin, cos trigonometry count VHDL code
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Size: 2541 |
Author: 王森 |
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Description: 用于实现sin,cos三角函数计数的VHDL程序代码-towards sin, cos trigonometry count VHDL code
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Size: 2048 |
Author: 王森 |
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Description: 用cordic算法实现超越函数,sin,cos用此方法也可以实现其他的sinhx,coshx,ex.代码用verilog编写-CORDIC algorithm with transcendental function, sin, cos by this method can also realize other sinhx, coshx, ex. Verilog code used to prepare
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Size: 236544 |
Author: yu_leo |
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Description: 实现SIN、COS的语言,基于CORDIC的应用-The realization of SIN, COS language, based on the application of CORDIC
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Size: 2278400 |
Author: 陈静波 |
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Description: verilog编程开发的cordic例程,计算SIN,COS功能与计算幅值角度功能可设定,运算宽度可设定,并有完善的TESTBENCH。-Verilog programming developed CORDIC routines to calculate SIN, COS function and calculating the amplitude of the perspective of function can be set, computing the width can be set, and perfect TESTBENCH.
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Size: 119808 |
Author: yangyu |
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Description: cordic methods describe essentially the same algorithm that with suitably chosen inputs can be used to calculate a whole range of scientific functions including sin, cos, tan, arctan, arcsin, arccos, sinh, cosh, tanh, arctanh, log, exp, square root and even multiply and divide.
the method dates back to volder [1959], and due to its versatility and compactness, it made possible the microcoding of the hp35 pocket scientific calculator in 1972.
here is some code to illustrate the techniques. ive split the methods into three parts linear, circular and hyperbolic. in the hp35 microcode these would be unified into one function (for space reasons). because the linear mode can perform multiply and divide, you only need add/subtract and shift to complete the implementation.
you can select in the code whether to do the multiples and divides also by cordic means. other multiplies and divides are all powers of 2 (these dont count). to eliminate these too, would involve ieee hackery.-cordic methods describe essentially the same algorithm that with suitably chosen inputs can be used to calculate a whole range of scientific functions including sin, cos, tan, arctan, arcsin, arccos, sinh, cosh, tanh, arctanh, log, exp, square root and even multiply and divide.
the method dates back to volder [1959], and due to its versatility and compactness, it made possible the microcoding of the hp35 pocket scientific calculator in 1972.
here is some code to illustrate the techniques. ive split the methods into three parts linear, circular and hyperbolic. in the hp35 microcode these would be unified into one function (for space reasons). because the linear mode can perform multiply and divide, you only need add/subtract and shift to complete the implementation.
you can select in the code whether to do the multiples and divides also by cordic means. other multiplies and divides are all powers of 2 (these dont count). to eliminate these too, would involve ieee hackery.
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Size: 2048 |
Author: waqas |
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Description: 基于CORDIC算法的,数字控制振荡器的设计。带测试程序,输入一个振荡频率,输出SIN和COS的波形!-Based on the CORDIC algorithm, the digital controlled oscillator design. With test procedures, enter a oscillation frequency, the output waveform SIN and COS!
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Size: 4096 |
Author: 咚咚 |
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Description: 该程序使用VHDL编程语言,利用cordic算法来计算cos,sin函数值-The program uses the VHDL programming language, use cordic algorithm to calculate cos, sin function value
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Size: 4096 |
Author: 王丽 |
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Description: we propose a low-cost sequential and high performance architecture for the implementation of CORDIC algorithm in two computation modes. It suited for serial operation that performs conversion between polar and rectangular coordinate systems, essentially sin/cos, sinh/cosh and arctan computation.
In our proposed architecture, radix-2 arithmetic is employed. The design targets real time application of fingerprint recognition. We present our VHDL description of CORDIC algorithm. To reduce iteration delay, we used some combinatory blocks. Fixed point arithmetic was considered.
To valid our conception and its CORDIC accuracy, we present relative error calculated in convergence range for some trigonometric and hyperbolic functions. Our architecture was implemented and tested. The contribution of the paper includes the CORDIC design flow.
-we propose a low-cost sequential and high performance architecture for the implementation of CORDIC algorithm in two computation modes. It suited for serial operation that performs conversion between polar and rectangular coordinate systems, essentially sin/cos, sinh/cosh and arctan computation.
In our proposed architecture, radix-2 arithmetic is employed. The design targets real time application of fingerprint recognition. We present our VHDL description of CORDIC algorithm. To reduce iteration delay, we used some combinatory blocks. Fixed point arithmetic was considered.
To valid our conception and its CORDIC accuracy, we present relative error calculated in convergence range for some trigonometric and hyperbolic functions. Our architecture was implemented and tested. The contribution of the paper includes the CORDIC design flow.
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Size: 2048 |
Author: Nihel Neji |
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Description: 基于VHDL语言编写,可下载到FPGA板子上实现的cordic算法实现的设计,并用该算法实现sin和cos的计算,计算结果显示在数码显示管上,已包含按键防抖动功能的实现。-Based on VHDL language, can be downloaded to the the cordic algorithm implemented in the FPGA board to achieve the design and calculation of sin and cos using this algorithm, the results displayed on the digital display tube is included on the function of the realization of the button shake.
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Size: 5120 |
Author: momo |
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Description: 基于VHDL语言的CORDIC算法实现,用于计算sin(x),cos(x)等,实测可用-Based on VHDL CORDIC algorithm, used to calculate sin (x), cos (x), etc., the measured available
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Size: 3751936 |
Author: 刘淇 |
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Description: 基于VHDL语言的CORDIC算法实现,用于计算sin(x),cos(x)等,实测可用-Based on VHDL CORDIC algorithm, used to calculate sin (x), cos (x), etc., the measured available
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Size: 3752960 |
Author: 刘淇 |
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Description: CORDIC vhdl design, include sin, cos calculation.
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Size: 234496 |
Author: eric |
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Description: VHDL Cordic Top (SIN/COS)
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Size: 1024 |
Author: sunonsea |
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