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?? waveform4.vwf

?? 現(xiàn)代雷達普遍采用相參信號處理,而如何獲得高精度基帶數(shù)字正交( I , Q) 信號是整個系統(tǒng)信號處理成敗的關鍵,以前通常的做法是采用模擬相位檢波器得到I、Q信號,其正交性能一般為:幅度平衡在2 % 左右
?? VWF
字號:
/*
WARNING: Do NOT edit the input and output ports in this file in a text
editor if you plan to continue editing the block that represents it in
the Block Editor! File corruption is VERY likely to occur.
*/

/*
Copyright (C) 1991-2006 Altera Corporation
Your use of Altera Corporation's design tools, logic functions 
and other software and tools, and its AMPP partner logic 
functions, and any output files any of the foregoing 
(including device programming or simulation files), and any 
associated documentation or information are expressly subject 
to the terms and conditions of the Altera Program License 
Subscription Agreement, Altera MegaCore Function License 
Agreement, or other applicable license agreement, including, 
without limitation, that your use is for the sole purpose of 
programming logic devices manufactured by Altera and sold by 
Altera or its authorized distributors.  Please refer to the 
applicable agreement for further details.
*/

HEADER
{
	VERSION = 1;
	TIME_UNIT = ns;
	SIMULATION_TIME = 0.0;
	GRID_PHASE = 0.0;
	GRID_PERIOD = 10.0;
	GRID_DUTY_CYCLE = 50;
}

SIGNAL("clk")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = INPUT;
	PARENT = "";
}

SIGNAL("clr")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = INPUT;
	PARENT = "";
}

SIGNAL("clk2M")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("clk4M")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("clk8M")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("Q")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = BUS;
	WIDTH = 12;
	LSB_INDEX = 0;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("Q[11]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "Q";
}

SIGNAL("Q[10]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "Q";
}

SIGNAL("Q[9]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "Q";
}

SIGNAL("Q[8]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "Q";
}

SIGNAL("Q[7]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "Q";
}

SIGNAL("Q[6]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "Q";
}

SIGNAL("Q[5]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "Q";
}

SIGNAL("Q[4]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "Q";
}

SIGNAL("Q[3]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "Q";
}

SIGNAL("Q[2]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "Q";
}

SIGNAL("Q[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "Q";
}

SIGNAL("Q[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "Q";
}

SIGNAL("I")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = BUS;
	WIDTH = 12;
	LSB_INDEX = 0;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("I[11]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "I";
}

SIGNAL("I[10]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "I";
}

SIGNAL("I[9]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "I";
}

SIGNAL("I[8]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "I";
}

SIGNAL("I[7]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "I";
}

SIGNAL("I[6]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "I";
}

SIGNAL("I[5]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "I";
}

SIGNAL("I[4]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "I";
}

SIGNAL("I[3]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "I";
}

SIGNAL("I[2]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "I";
}

SIGNAL("I[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "I";
}

SIGNAL("I[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "I";
}

TRANSITION_LIST("clk")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 40000;
			LEVEL 0 FOR 12.5;
			LEVEL 1 FOR 12.5;
		}
	}
}

TRANSITION_LIST("clr")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 1 FOR 1000000.0;
	}
}

TRANSITION_LIST("clk2M")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("clk4M")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("clk8M")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("Q[11]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("Q[10]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("Q[9]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("Q[8]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("Q[7]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("Q[6]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("Q[5]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("Q[4]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("Q[3]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("Q[2]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("Q[1]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("Q[0]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("I[11]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("I[10]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("I[9]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("I[8]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("I[7]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("I[6]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("I[5]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("I[4]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("I[3]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("I[2]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("I[1]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

TRANSITION_LIST("I[0]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 1000000.0;
	}
}

DISPLAY_LINE
{
	CHANNEL = "clk";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 0;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "clr";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 1;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "clk2M";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 2;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "clk4M";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 3;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "clk8M";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 4;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "Q";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 5;
	TREE_LEVEL = 0;
	CHILDREN = 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17;
}

DISPLAY_LINE
{
	CHANNEL = "Q[11]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 6;
	TREE_LEVEL = 1;
	PARENT = 5;
}

DISPLAY_LINE
{
	CHANNEL = "Q[10]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 7;
	TREE_LEVEL = 1;
	PARENT = 5;
}

DISPLAY_LINE
{
	CHANNEL = "Q[9]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 8;
	TREE_LEVEL = 1;
	PARENT = 5;
}

DISPLAY_LINE
{
	CHANNEL = "Q[8]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 9;
	TREE_LEVEL = 1;
	PARENT = 5;
}

DISPLAY_LINE
{
	CHANNEL = "Q[7]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 10;
	TREE_LEVEL = 1;
	PARENT = 5;
}

DISPLAY_LINE
{
	CHANNEL = "Q[6]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 11;
	TREE_LEVEL = 1;
	PARENT = 5;
}

DISPLAY_LINE
{
	CHANNEL = "Q[5]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 12;
	TREE_LEVEL = 1;
	PARENT = 5;
}

DISPLAY_LINE
{
	CHANNEL = "Q[4]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 13;
	TREE_LEVEL = 1;
	PARENT = 5;
}

DISPLAY_LINE
{
	CHANNEL = "Q[3]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 14;
	TREE_LEVEL = 1;
	PARENT = 5;
}

DISPLAY_LINE
{
	CHANNEL = "Q[2]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 15;
	TREE_LEVEL = 1;
	PARENT = 5;
}

DISPLAY_LINE
{
	CHANNEL = "Q[1]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 16;
	TREE_LEVEL = 1;
	PARENT = 5;
}

DISPLAY_LINE
{
	CHANNEL = "Q[0]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 17;
	TREE_LEVEL = 1;
	PARENT = 5;
}

DISPLAY_LINE
{
	CHANNEL = "I";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 18;
	TREE_LEVEL = 0;
	CHILDREN = 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30;
}

DISPLAY_LINE
{
	CHANNEL = "I[11]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 19;
	TREE_LEVEL = 1;
	PARENT = 18;
}

DISPLAY_LINE
{
	CHANNEL = "I[10]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 20;
	TREE_LEVEL = 1;
	PARENT = 18;
}

DISPLAY_LINE
{
	CHANNEL = "I[9]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 21;
	TREE_LEVEL = 1;
	PARENT = 18;
}

DISPLAY_LINE
{
	CHANNEL = "I[8]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 22;
	TREE_LEVEL = 1;
	PARENT = 18;
}

DISPLAY_LINE
{
	CHANNEL = "I[7]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 23;
	TREE_LEVEL = 1;
	PARENT = 18;
}

DISPLAY_LINE
{
	CHANNEL = "I[6]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 24;
	TREE_LEVEL = 1;
	PARENT = 18;
}

DISPLAY_LINE
{
	CHANNEL = "I[5]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 25;
	TREE_LEVEL = 1;
	PARENT = 18;
}

DISPLAY_LINE
{
	CHANNEL = "I[4]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 26;
	TREE_LEVEL = 1;
	PARENT = 18;
}

DISPLAY_LINE
{
	CHANNEL = "I[3]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 27;
	TREE_LEVEL = 1;
	PARENT = 18;
}

DISPLAY_LINE
{
	CHANNEL = "I[2]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 28;
	TREE_LEVEL = 1;
	PARENT = 18;
}

DISPLAY_LINE
{
	CHANNEL = "I[1]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 29;
	TREE_LEVEL = 1;
	PARENT = 18;
}

DISPLAY_LINE
{
	CHANNEL = "I[0]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 30;
	TREE_LEVEL = 1;
	PARENT = 18;
}

TIME_BAR
{
	TIME = 11475;
	MASTER = TRUE;
}
;

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亚洲欧美第一页_禁久久精品乱码_粉嫩av一区二区三区免费野_久草精品视频
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