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壓控溫補(bǔ)晶體振蕩器X1G004201002600適用于移動(dòng)通訊應(yīng)用
產(chǎn)品編碼 |
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TG-5006CE | 16.367667MHz | 3.20x2.50x0.90mm | Clipped sine wave | 1.700 to 1.900 V | +/-2.0 ppm | -30 to +85 °C |
X1G004201000800 | TG-5006CE | 16.369000MHz | 3.20x2.50x0.90mm | Clipped sine wave | 2.850 to 3.150 V | +/-2.0 ppm | -30 to +85 °C |
X1G004201000900 | TG-5006CE | 19.200000MHz | 3.20x2.50x0.90mm | Clipped sine wave | 2.850 to 3.150 V | +/-2.0 ppm | -30 to +85 °C |
X1G004201001000 | TG-5006CE | 26.000000MHz | 3.20x2.50x0.90mm | Clipped sine wave | 2.850 to 3.150 V | +/-2.0 ppm | -30 to +85 °C |
X1G004201001300 | TG-5006CE | 16.367667MHz | 3.20x2.50x0.90mm | Clipped sine wave | 2.850 to 3.150 V | +/-2.0 ppm | -30 to +85 °C |
X1G004201001700 | TG-5006CE | 26.000000MHz | 3.20x2.50x0.90mm | Clipped sine wave | 2.850 to 3.150 V | +/-2.0 ppm | -30 to +85 °C |
X1G004201002000 | TG-5006CE | 26.000000MHz | 3.20x2.50x0.90mm | Clipped sine wave | 2.660 to 2.940 V | +/-2.0 ppm | -30 to +85 °C |
X1G004201002300 | TG-5006CE | 26.000000MHz | 3.20x2.50x0.90mm | Clipped sine wave | 1.700 to 3.465 V | +/-2.0 ppm | -30 to +85 °C |
X1G004201002500 | TG-5006CE | 32.000000MHz | 3.20x2.50x0.90mm | Clipped sine wave | 2.850 to 3.150 V | +/-2.0 ppm | -30 to +85 °C |
X1G004201002600 | TG-5006CE | 26.000000MHz | 3.20x2.50x0.90mm | Clipped sine wave | 2.660 to 2.940 V | +/-2.0 ppm | -30 to +85 °C |
X1G004201003200 | TG-5006CE | 20.000000MHz | 3.20x2.50x0.90mm | Clipped sine wave | 3.135 to 3.465 V | +/-2.0 ppm | -30 to +85 °C |
X1G004201003300 | TG-5006CE | 25.000000MHz | 3.20x2.50x0.90mm | Clipped sine wave | 2.850 to 3.150 V | +/-2.0 ppm | -30 to +85 °C |
X1G004201006200 | TG-5006CE | 32.000000MHz | 3.20x2.50x0.90mm | Clipped sine wave | 2.850 to 3.150 V | +/-2.0 ppm | -30 to +85 °C |
壓控溫補(bǔ)晶體振蕩器X1G004201002600適用于移動(dòng)通訊應(yīng)用
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(dòng)能力較弱,在負(fù)載10K/10PF時(shí)Vp-p為0.8Vmin.通常為SMD7050,SMD5032,SMD3225等封裝的表貼溫補(bǔ)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(diǎn),至于如何利用它們我們卻是不得而知.所以日本愛(ài)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(jì)中應(yīng)用削頂正玄波.