《Protel DXP 2004 SP2原理图与PCB设计(第2版)》范例源文件

源代码在线查看: push-pull amplifier.swd

软件大小: 4698 K
上传用户: fayixueyuan
关键词: Protel 2004 DXP PCB
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相关代码

				Push-Pull Amplifier
				Date: 星期三 十二月 6 14:21:57 2006
				
				
				*AC Monte Carlo run 1 of 5 (m1)
				vss dev=10% uniform    : - 12        -> - 11
				vcc dev=10% uniform    :  12         ->  12.6
				v1 dev=10% uniform     :  0          ->  0
				rl dev=15% uniform     :  50         ->  56.4
				r4 dev=15% uniform     :  16k        ->  15.4k
				r3 dev=15% uniform     :  1k         ->  1.04k
				r2 dev=15% uniform     :  1k         ->  870
				r1 dev=15% uniform     :  16k        ->  17k
				q2[bf] dev=10% uniform :  130        ->  134
				q1[bf] dev=10% uniform :  100        ->  97.6
				c1 dev=15% uniform     :  1.26u      ->  1.31u
				
				*AC Monte Carlo run 2 of 5 (m2)
				vss dev=10% uniform    : - 12        -> - 12.9
				vcc dev=10% uniform    :  12         ->  12
				v1 dev=10% uniform     :  0          ->  0
				rl dev=15% uniform     :  50         ->  46
				r4 dev=15% uniform     :  16k        ->  14.8k
				r3 dev=15% uniform     :  1k         ->  1.07k
				r2 dev=15% uniform     :  1k         ->  1.07k
				r1 dev=15% uniform     :  16k        ->  17.9k
				q2[bf] dev=10% uniform :  130        ->  118
				q1[bf] dev=10% uniform :  100        ->  95.4
				c1 dev=15% uniform     :  1.26u      ->  1.41u
				
				*AC Monte Carlo run 3 of 5 (m3)
				vss dev=10% uniform    : - 12        -> - 11.4
				vcc dev=10% uniform    :  12         ->  12
				v1 dev=10% uniform     :  0          ->  0
				rl dev=15% uniform     :  50         ->  46.2
				r4 dev=15% uniform     :  16k        ->  15.9k
				r3 dev=15% uniform     :  1k         ->  1.1k
				r2 dev=15% uniform     :  1k         ->  1.09k
				r1 dev=15% uniform     :  16k        ->  13.7k
				q2[bf] dev=10% uniform :  130        ->  142
				q1[bf] dev=10% uniform :  100        ->  103
				c1 dev=15% uniform     :  1.26u      ->  1.36u
				
				*AC Monte Carlo run 4 of 5 (m4)
				vss dev=10% uniform    : - 12        -> - 10.9
				vcc dev=10% uniform    :  12         ->  11.7
				v1 dev=10% uniform     :  0          ->  0
				rl dev=15% uniform     :  50         ->  56.7
				r4 dev=15% uniform     :  16k        ->  18k
				r3 dev=15% uniform     :  1k         ->  1.12k
				r2 dev=15% uniform     :  1k         ->  945
				r1 dev=15% uniform     :  16k        ->  16.9k
				q2[bf] dev=10% uniform :  130        ->  117
				q1[bf] dev=10% uniform :  100        ->  97.3
				c1 dev=15% uniform     :  1.26u      ->  1.17u
				
				*AC Monte Carlo run 5 of 5 (m5)
				vss dev=10% uniform    : - 12        -> - 13.1
				vcc dev=10% uniform    :  12         ->  11.4
				v1 dev=10% uniform     :  0          ->  0
				rl dev=15% uniform     :  50         ->  45
				r4 dev=15% uniform     :  16k        ->  17.1k
				r3 dev=15% uniform     :  1k         ->  980
				r2 dev=15% uniform     :  1k         ->  1.14k
				r1 dev=15% uniform     :  16k        ->  17.1k
				q2[bf] dev=10% uniform :  130        ->  123
				q1[bf] dev=10% uniform :  100        ->  91.8
				c1 dev=15% uniform     :  1.26u      ->  1.26u
				
				*TRAN Monte Carlo run 1 of 5 (m1)
				vss dev=10% uniform    : - 12        -> - 11.9
				vcc dev=10% uniform    :  12         ->  10.9
				v1 dev=10% uniform     :  0          ->  0
				rl dev=15% uniform     :  50         ->  50.4
				r4 dev=15% uniform     :  16k        ->  18.3k
				r3 dev=15% uniform     :  1k         ->  955
				r2 dev=15% uniform     :  1k         ->  1.11k
				r1 dev=15% uniform     :  16k        ->  13.9k
				q2[bf] dev=10% uniform :  130        ->  139
				q1[bf] dev=10% uniform :  100        ->  95.4
				c1 dev=15% uniform     :  1.26u      ->  1.34u
				
				*TRAN Monte Carlo run 2 of 5 (m2)
				vss dev=10% uniform    : - 12        -> - 12
				vcc dev=10% uniform    :  12         ->  10.9
				v1 dev=10% uniform     :  0          ->  0
				rl dev=15% uniform     :  50         ->  47
				r4 dev=15% uniform     :  16k        ->  17.9k
				r3 dev=15% uniform     :  1k         ->  1.08k
				r2 dev=15% uniform     :  1k         ->  1k
				r1 dev=15% uniform     :  16k        ->  14.9k
				q2[bf] dev=10% uniform :  130        ->  129
				q1[bf] dev=10% uniform :  100        ->  104
				c1 dev=15% uniform     :  1.26u      ->  1.16u
				
				*TRAN Monte Carlo run 3 of 5 (m3)
				vss dev=10% uniform    : - 12        -> - 12.2
				vcc dev=10% uniform    :  12         ->  12.4
				v1 dev=10% uniform     :  0          ->  0
				rl dev=15% uniform     :  50         ->  55.9
				r4 dev=15% uniform     :  16k        ->  17.5k
				r3 dev=15% uniform     :  1k         ->  1k
				r2 dev=15% uniform     :  1k         ->  868
				r1 dev=15% uniform     :  16k        ->  17.2k
				q2[bf] dev=10% uniform :  130        ->  140
				q1[bf] dev=10% uniform :  100        ->  95.3
				c1 dev=15% uniform     :  1.26u      ->  1.41u
				
				*TRAN Monte Carlo run 4 of 5 (m4)
				vss dev=10% uniform    : - 12        -> - 11
				vcc dev=10% uniform    :  12         ->  11.6
				v1 dev=10% uniform     :  0          ->  0
				rl dev=15% uniform     :  50         ->  50.4
				r4 dev=15% uniform     :  16k        ->  13.9k
				r3 dev=15% uniform     :  1k         ->  989
				r2 dev=15% uniform     :  1k         ->  1.04k
				r1 dev=15% uniform     :  16k        ->  18.4k
				q2[bf] dev=10% uniform :  130        ->  133
				q1[bf] dev=10% uniform :  100        ->  92.5
				c1 dev=15% uniform     :  1.26u      ->  1.19u
				
				*TRAN Monte Carlo run 5 of 5 (m5)
				vss dev=10% uniform    : - 12        -> - 11.1
				vcc dev=10% uniform    :  12         ->  12.8
				v1 dev=10% uniform     :  0          ->  0
				rl dev=15% uniform     :  50         ->  48.2
				r4 dev=15% uniform     :  16k        ->  18.1k
				r3 dev=15% uniform     :  1k         ->  1.07k
				r2 dev=15% uniform     :  1k         ->  1.15k
				r1 dev=15% uniform     :  16k        ->  13.6k
				q2[bf] dev=10% uniform :  130        ->  134
				q1[bf] dev=10% uniform :  100        ->  90.3
				c1 dev=15% uniform     :  1.26u      ->  1.26u
				
				
							

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