首頁晶振行業(yè)動態(tài) TG2520SMN專用于5G通訊設(shè)備X1G005421003027
TG2520SMN專用于5G通訊設(shè)備X1G005421003027
來源:http://eitherspanlaw.com 作者:億金電子 2022年09月15
溫補晶振即溫度補償晶體振蕩器(TCXO),是通過附加的溫度補償電路使由周圍溫度變化產(chǎn)生的振蕩頻率變化量削減的一種石英晶體振蕩器。
日本進(jìn)口愛普生晶振TG2520SMN是一款TCXO溫補晶體振蕩器,小體積晶振尺寸2.5x2.0mm有源晶振,四腳貼片晶振,電源電壓1.8V,2.8V,3.0V,3.3V,頻率范圍10MHz至55MHz,具有超小型,輕薄型,低電源電壓,低抖動,低功耗,低損耗,低耗能,低電平,低相位噪聲等特點,被廣泛應(yīng)用于5G通訊設(shè)備、工業(yè)控制、車載、消費電子、光電技術(shù)及各種變頻調(diào)速設(shè)備等通訊設(shè)備。
TG2520SMN專用于5G通訊設(shè)備,X1G005421021227,溫補晶體振蕩器
TG2520SMN專用于5G通訊設(shè)備,X1G005421021227,溫補晶體振蕩器
削波正玄波(Clipped Sine Wave)是有源晶振輸出方式的一種,相比方波的諧波分量少很多,但驅(qū)動能力較弱,在負(fù)載10K/10PF時Vp-p為0.8Vmin.通常為SMD7050,SMD5032,SMD3225等封裝的表貼溫補晶振使用的輸出波形.當(dāng)然,有源晶振還有CMOS,TTL,ECL,LVDS,正玄波等輸出方式,這些輸出邏輯方式也各有優(yōu)缺點,至于如何利用它們我們卻是不得而知.所以日本愛普生晶振就推出了相關(guān)的技術(shù)支持文檔,明確指出應(yīng)當(dāng)如何在電路設(shè)計中應(yīng)用削頂正玄波.
日本進(jìn)口愛普生晶振TG2520SMN是一款TCXO溫補晶體振蕩器,小體積晶振尺寸2.5x2.0mm有源晶振,四腳貼片晶振,電源電壓1.8V,2.8V,3.0V,3.3V,頻率范圍10MHz至55MHz,具有超小型,輕薄型,低電源電壓,低抖動,低功耗,低損耗,低耗能,低電平,低相位噪聲等特點,被廣泛應(yīng)用于5G通訊設(shè)備、工業(yè)控制、車載、消費電子、光電技術(shù)及各種變頻調(diào)速設(shè)備等通訊設(shè)備。
TG2520SMN專用于5G通訊設(shè)備,X1G005421021227,溫補晶體振蕩器
產(chǎn)品編碼 | 石英晶振 | 頻率 | 尺寸 | 輸出波 |
X1G005421002927 | TG2520SMN | 19.200000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421003027 | TG2520SMN | 12.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421003727 | TG2520SMN | 16.384000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421003827 | TG2520SMN | 16.384000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421020127 | TG2520SMN | 16.368000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421020227 | TG2520SMN | 16.369000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421020327 | TG2520SMN | 19.200000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421020427 | TG2520SMN | 26.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421020527 | TG2520SMN | 32.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421020627 | TG2520SMN | 38.400000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421020727 | TG2520SMN | 40.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421020827 | TG2520SMN | 16.000000MHz | 2.50x2.00x0.80mm | TCXO晶振 |
X1G005421021127 | TG2520SMN | 20.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421021227 | TG2520SMN | 24.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421021327 | TG2520SMN | 25.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421021427 | TG2520SMN | 27.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421021527 | TG2520SMN | 30.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421021627 | TG2520SMN | 48.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421022027 | TG2520SMN | 52.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421022127 | TG2520SMN | 27.600000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421022227 | TG2520SMN | 50.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421030127 | TG2520SMN | 16.368000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421030227 | TG2520SMN | 16.369000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421030327 | TG2520SMN | 19.200000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421030427 | TG2520SMN | 26.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421030527 | TG2520SMN | 32.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421030627 | TG2520SMN | 38.400000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421030727 | TG2520SMN | 40.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421030827 | TG2520SMN | 16.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421031127 | TG2520SMN | 20.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421031227 | TG2520SMN | 24.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421031327 | TG2520SMN | 25.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421031427 | TG2520SMN | 27.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
X1G005421031527 | TG2520SMN | 30.000000MHz | 2.50x2.00x0.80mm | Clippedsinewave |
削波正玄波(Clipped Sine Wave)是有源晶振輸出方式的一種,相比方波的諧波分量少很多,但驅(qū)動能力較弱,在負(fù)載10K/10PF時Vp-p為0.8Vmin.通常為SMD7050,SMD5032,SMD3225等封裝的表貼溫補晶振使用的輸出波形.當(dāng)然,有源晶振還有CMOS,TTL,ECL,LVDS,正玄波等輸出方式,這些輸出邏輯方式也各有優(yōu)缺點,至于如何利用它們我們卻是不得而知.所以日本愛普生晶振就推出了相關(guān)的技術(shù)支持文檔,明確指出應(yīng)當(dāng)如何在電路設(shè)計中應(yīng)用削頂正玄波.
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此文關(guān)鍵字: 溫補晶振
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