CMOS輸出貼片振蕩器X1G004501001700用于醫療設備應用
愛普生晶振發展成立至今成為國際赫赫有名的電子元件制造商,不僅為用戶提供優異的石英晶振,貼片晶振,TCXO晶振,時鐘晶體振蕩器等產品,能夠為客戶提供全國產化晶振解決方案.
日本愛普生晶振SG7050CCN,是一款CMOS輸出石英晶體振蕩器,小體積尺寸7.0x5.0mm四腳貼片晶振,5.0V電源電壓,頻率范圍2.5MHz至50MHz,工作溫度范圍B:-20℃至+70℃/G:-40℃至+85℃,具有小體積輕薄型,低功耗,低電壓,低抖動,高精度,高性能,高品質等特點,SG7050CCN有源晶振該產品已成為通信機、醫療設備,移動電話、尋呼機、全球定位系統(GPS)等許多電子應用系統必不可少的關鍵部件。
CMOS輸出貼片振蕩器X1G004501001700用于醫療設備應用
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X1G004501000100 | SG7050CCN | 4.000000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501000300 | SG7050CCN | 16.000000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501000400 | SG7050CCN | 48.000000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501000500 | SG7050CCN | 11.059200MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501000600 | SG7050CCN | 20.000000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501000800 | SG7050CCN | 25.000000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501000900 | SG7050CCN | 33.000000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501001000 | SG7050CCN | 40.000000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501001100 | SG7050CCN | 44.000000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501001200 | SG7050CCN | 49.152000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501001400 | SG7050CCN | 4.915200MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501001500 | SG7050CCN | 8.000000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501001600 | SG7050CCN | 5.000000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501001700 | SG7050CCN | 24.000000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501001800 | SG7050CCN | 3.579545MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501002800 | SG7050CCN | 27.095000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501002900 | SG7050CCN | 29.500000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501003000 | SG7050CCN | 3.072000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501003100 | SG7050CCN | 10.000000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501003200 | SG7050CCN | 12.288000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501003300 | SG7050CCN | 18.432000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501003400 | SG7050CCN | 19.660800MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501004000 | SG7050CCN | 7.372800MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501004800 | SG7050CCN | 15.000000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501005000 | SG7050CCN | 6.600000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501005700 | SG7050CCN | 20.000000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -20 to 70°C |
X1G004501006000 | SG7050CCN | 8.192000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501006100 | SG7050CCN | 9.830400MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501007900 | SG7050CCN | 7.000000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501008300 | SG7050CCN | 6.144000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501008400 | SG7050CCN | 14.318180MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501008600 | SG7050CCN | 32.768000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -20 to 70°C |
X1G004501008900 | SG7050CCN | 33.330000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501009000 | SG7050CCN | 40.960000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -40 to 85°C |
X1G004501009100 | SG7050CCN | 13.560000MHz | 7.00x5.00x1.50mm | CMOS | 4.500 to 5.500V | -20 to 70°C |
CMOS(Complementary Metal-Oxide-Semiconductor),中文學名為互補金屬氧化物半導體,制造技術和一般計算機芯片沒什么差別,電壓控制的一種放大器件,主要是利用硅和鍺這兩種元素所做成的半導體,使其在CMOS上共存著帶N(帶-電) 和 P(帶+電)級的半導體,這兩個互補效應所產生的電流即可被處理芯片紀錄和解讀成影像。
有源晶振需要電源,但不需要附加的電容。它內部含有起振器。通常接到CPU的一根引腳即可,有源晶振不需要DSP的內部振蕩器,信號質量好,比較穩定,而且連接方式相對簡單(主要是做好電源濾波,通常使用一個電容和電感構成的PI型濾波網絡,輸出端用一個小阻值的電阻過濾信號即可),不需要復雜的配置電路.有源晶振通常的用法:一腳懸空,二腳接地,三腳接輸出,四腳接電壓。
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