140GNUVKY 冗余模块
.组合代换
组合代换就是把同一型号的多块IC内部未受损的电路部分,重新组合成一块完整的IC,用以代替功能不良的IC的方法。对买不到原配IC的情况下是十分适用的。但要求所利用IC内部完好的电路一定要有接口引出脚。
非直接代换关键是要查清楚互相代换的两种IC的基本电参数、内部等效电路、各引脚的功能、IC与外部元件之间连接关系的资料。实际操作时予以注意:
⑴集成电路引脚的编号顺序,切勿接错;
⑵为适应代换后的IC的特点,与其相连的外围电路的元件要作相应的改变;
⑶电源电压要与代换后的IC相符,如果原电路中电源电压高,应设法降压;电压低,要看代换IC能否工作。
⑷代换以后要测量IC的静态工作电流,如电流远大于正常值,则说明电路可能产生自激,这时须进行去耦、调整。若增益与原来有所差别,可调整反馈电阻阻值;
⑸代换后IC的输入、输出阻抗要与原电路相匹配;检查其驱动能力。
⑹在改动时要充分利用原电路板上的脚孔和引线,外接引线要求整齐,避免前后交叉,以便检查和防止电路自激,特别是防止高频自激;
[7]在通电前电源Vcc回路里再串接一直流电流表,降压电阻阻值由大到小观察集成电路总电流的变化是否正常。
140GNSINT |
140GNSNA |
140GNSNB |
140GNSND |
140GNSNJ |
140GNSNKY |
140GNTC3H |
140GNTC3L |
140GNTC4H |
140GNTC4L |
140GNTLA33 |
140GNTLA34 |
140GNTLA43 |
140GNTLA44 |
140GNTLC43 |
140GNTLC44 |
140GNTLH3 |
140GNTLH4 |
140GNTLV3 |
140GNTLV4 |
140GNUVA |
140GNUVB |
140GNUVC |
140GNUVD |
140GNUVJ |
140GNUVKY |
140GN0H3E12 |
140GN0H3E12AB |
140GN0H3E12SD |
140GN0H3E12Z1 |
140GN0H4E12 |
140GN0H4E12Z1 |
140GN0I3E12 |
140GN0I3E12Z1 |
140GN0I4E12 |
140GN0I4E12Z1 |
140GN0K3E12 |
140GN0K3E12Z1 |
140GN0K3E12Z1FB |
140GN0K4E12 |
140GN0K4E12Z1 |
140GN1 |
140GN2 |
140GN5H3E12 |
140GN5H3E12FB |
140GN5H3E12SBFB |
140GN5H3E12SD |
140GN5H3E12SJAJ |
140GN5H3E12UAAJ |
140GN5H3E12UDAJ |
140GN5H3E12Z1 |
140GN5H3E12Z1AJ |
140GN5H3E12Z1SJAJ |
140GN5H3E12Z1SJFB |
140GN5H4E12 |
140GN5H4E12Z1 |
140GN5I3E12 |
140GN5I3E12Z1 |
140GN5I4E12 |
140GN5I4E12Z1 |
140GN5K3E12 |
140GN5K3E12Z1 |
140GN5K4E12 |
140GN5K4E12Z1 |
140GN6H3E12 |
140GN6H3E12FB |
140GN6H3E12Z1 |
140GN6H4E12 |
140GN6H4E12Z1 |
140GN6I3E12 |
140GN6I3E12SAAJ |
140GN6I3E12Z1 |
140GN6I4E12 |
1X00474G02 |
1X00480G01 |
3A99132G01 |
3A99141G01 |
3A99158G02 |
3A99199G01 |
3A99200G02 |
3A99245G01 |
3A99266G01 |
3A99419G03 |
3A99419G06 |
3A99989G09 |
3A99989H06 |
3A99989H07 |
3A99989H13 |
4D33888G01 |
4D33900G19 |
4D33934G01 |
4D33935H01 |
4D33942G02 |
4D33945G01 |
5A22410H01 |
5A22410H02 |
5A22411H01 |
5A22412H01 |
5A22727G02 |
5A22727G03 |
5A22971G01 |
5A22982G01 |
5A22982G02 |
5A22982G03 |
140GNUVKY 冗余模块