首頁晶振行業(yè)動態(tài) SG2016CAN有源晶振X1G004801005800非常適合5G前傳光模塊應(yīng)用
SG2016CAN有源晶振X1G004801005800非常適合5G前傳光模塊應(yīng)用
來源:http://eitherspanlaw.com 作者:億金電子 2022年09月29
日本愛普生晶振SG2016CAN,是一款小體積晶振尺寸2.0x1.6mm石英晶體振蕩器(SPXO),支持CMOS輸出電平,四腳貼片晶振,有源晶振,1.8V至3.3V的寬工作電壓和寬工作溫度范圍從-40℃到+85℃(+105℃)。 SG2016CAN有源晶振還具有超低功耗的優(yōu)點(diǎn)。響應(yīng)時間僅為3ms,上升/下降延遲時間為4ns。在工作頻率為20MHz,無負(fù)載情況時,工作電流可達(dá)1.8mA,待機(jī)狀態(tài)下的電流可達(dá)2.7μA。所以,在5G前傳光模塊方案中,如果需要MCU主頻更穩(wěn)定,外置高溫、穩(wěn)定性好的5G晶振時,EPSON公司推出的SG2016CAN晶振是較理想的選擇。常用有源晶振型號SG2016CAN編碼X1G004801005800,頻率20.000MHz,工作溫度-40℃至85℃.具有超小型,輕薄型,低抖動,低功耗,低損耗,低耗能,低電流消耗等特點(diǎn),非常適合5G模塊,物聯(lián)網(wǎng)、可穿戴設(shè)備、醫(yī)療設(shè)備、工業(yè)自動化等各種應(yīng)用。
SG2016CAN有源晶振X1G004801005800非常適合5G前傳光模塊應(yīng)用,X1G004801006800,低功耗晶振
SG2016CAN有源晶振X1G004801005800非常適合5G前傳光模塊應(yīng)用,X1G004801006800,低功耗晶振
SG2016CAN有源晶振X1G004801005800非常適合5G前傳光模塊應(yīng)用,X1G004801006800,低功耗晶振
產(chǎn)品編碼 | 型號 | 頻率 | 愛普生晶振 | 輸出波 | 電源電壓 | 工作溫度 |
X1G004801000200 | SG2016CAN | 24.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801000300 | SG2016CAN | 26.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801000700 | SG2016CAN | 12.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801001200 | SG2016CAN | 25.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801001300 | SG2016CAN | 50.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801001400 | SG2016CAN | 16.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801001800 | SG2016CAN | 20.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801002000 | SG2016CAN | 48.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801002100 | SG2016CAN | 27.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801002400 | SG2016CAN | 25.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -20 to 70°C |
X1G004801002600 | SG2016CAN | 33.333300MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801002700 | SG2016CAN | 10.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801002800 | SG2016CAN | 50.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801002900 | SG2016CAN | 10.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801003000 | SG2016CAN | 4.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801003100 | SG2016CAN | 24.576000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801003500 | SG2016CAN | 25.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801003600 | SG2016CAN | 40.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801003900 | SG2016CAN | 26.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801004000 | SG2016CAN | 24.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801004400 | SG2016CAN | 12.288000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801004500 | SG2016CAN | 8.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801004600 | SG2016CAN | 8.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801004900 | SG2016CAN | 4.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801005000 | SG2016CAN | 12.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -20 to 70°C |
X1G004801005100 | SG2016CAN | 12.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801005200 | SG2016CAN | 12.288000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -20 to 70°C |
X1G004801005300 | SG2016CAN | 12.288000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801005400 | SG2016CAN | 14.745600MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801005500 | SG2016CAN | 14.745600MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801005600 | SG2016CAN | 16.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801005700 | SG2016CAN | 20.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -20 to 70°C |
X1G004801005800 | SG2016CAN | 20.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801005900 | SG2016CAN | 24.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -20 to 70°C |
X1G004801006000 | SG2016CAN | 24.576000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801006100 | SG2016CAN | 27.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801006200 | SG2016CAN | 32.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801006300 | SG2016CAN | 32.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801006400 | SG2016CAN | 33.330000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801006500 | SG2016CAN | 33.330000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801006600 | SG2016CAN | 33.333300MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801006700 | SG2016CAN | 40.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 85°C |
X1G004801006800 | SG2016CAN | 48.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -20 to 70°C |
X1G004801006900 | SG2016CAN | 48.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -40 to 105°C |
X1G004801007000 | SG2016CAN | 50.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -20 to 70°C |
X1G004801007100 | SG2016CAN | 72.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.710 to 3.630V | -20 to 70°C |
X1G004801007200 | SG2016CAN | 72.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.710 to 3.630V | -40 to 85°C |
X1G004801007300 | SG2016CAN | 72.000000MHz | 2.00x1.60x0.70mm | CMOS | 2.250 to 3.630V | -40 to 105°C |
X1G004801007600 | SG2016CAN | 32.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -20 to 70°C |
X1G004801007700 | SG2016CAN | 26.000000MHz | 2.00x1.60x0.70mm | CMOS | 1.600 to 3.630V | -20 to 70°C |
晶振的功能是為系統(tǒng)提供基本的時鐘信號,通常一個系統(tǒng)共用一個晶振,便于各部分保持同步。有些通訊系統(tǒng)的基頻和射頻使用不同的晶振,不同的規(guī)格封裝延伸很多的頻點(diǎn)等不同的參數(shù),而通過電子調(diào)整頻率的方法保持同步,在我們?nèi)粘I钪幸搽x不開晶振。
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