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转贴jackinnj(关于F5) 在diyaudio.com #1351的发言
Audiorob -- your distortion numbers are high compared to those I experience. If you can, short the inputs and let us know how much noise you see on the output. It should be some tens of microvolts. (NP said 30uV in the article). If you are using a bench supply you might be picking up noise from your power supply leads. If your distortion analyzer has the functionality, switch in the 400Hz high pass filter and see how much garbage you're picking up from the power supply.
Udailey -- I am using the Cantherm thermistors -- they work fine. A little heat shrink tubing on the leads will allay your fears that their leads will come into contact with the power supply or heat sink. You can use a little GE RTV#162 (non-corrosive silicone sealant) or JB Weld 8265 to attach the thermistor to the device or to the heatsink.
To tweak I use the setup in the attachment -- it gives me a range of about 5.5 to 12R -- I start out with 68R//12R = 10.2R, then adjust the pot for 10.2R and lift the ground leg of the 68R. Twiddle the pot until the best THD% is achieved. It's easiest if you can look at the distortion residuals on a spectrum analyzer -- as you twiddle the pot the 2nd and 3rd harmonic relationships change.
I got in a batch of low ohm resistors to see if I could tweak the output resistors -- that's next on the agenda.
jackinnj has attached this image:
Click the thumbnail to see the original image.
中译文:
Audiorob--你的失真数据比我检测的高。如你将输入短路看输出噪声多少,
这将是几拾uV(Nelson Pass说是30uV)。如你使用试验电源你可以从你的电源供电电源线捡拾噪声,若你的失真分析仪有这项功能,转至400Hz高通滤波看你从电源供应捡拾了多少垃圾。
Udailey--我是使用Cantherm热敏电阻————它们工作优良。一个小热缩管将它的脚套起来将减少你对它们触到电源线和散热板的担心,你可以用少量GE RTV#162(无腐蚀硅脂)
或JB Weld 8265将热敏电阻和晶体管或散热器黏在一起。
我使用的调节装置如附图————它给于我一个大约的范围————我开始用68R//12R=10.2R,然后调节电位器到10.2R并将68R的脚悬空,转动电位器直到获得最好的THD%,如果你使用频谱分析仪这是很容易的——————当你调节电位器时偶次谐波和奇次谐波的关系也在改变。
我进了一批低阻值的电阻看能否调节输出电阻————那是下一个议事日程。 |
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