- 陶瓷霧化片 Atomization Piece
- 陶瓷晶振 Ceramic SMD crystal
- 陶瓷濾波器 CeramicFilter
- 聲表面濾波器|諧振器 SAW filter
- 千赫晶體KHZ KHz Crystal
- 石英晶振 Quartz Crystal
- 貼片晶振 SMD crystal
- NJR晶振
- 應(yīng)達(dá)利晶振
- 日本大真空晶體 KDS晶振
- 精工晶振 SEIKO晶體
- 日本村田陶瓷晶振
- 西鐵城晶振 CITIZEN晶振
- 愛普生晶振 EPSON晶振
- NSK晶振 NSK晶振
- 大河晶振 大河晶振
- CTS晶振 美國(guó)CTS晶振
- TXC晶振 TXC晶振
- 鴻星晶振 鴻星晶振
- 加高晶振 加高晶振
- 百利通亞陶晶振 百利通亞陶晶振
- 泰藝晶振 泰藝晶振
- 京瓷晶振 京瓷晶振
- NDK晶振 NDK晶振
- 希華晶振 希華晶振
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- 德國(guó)PETERMANN晶振
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- HEC晶振
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- 德國(guó)AXTAL晶振
- Silicon晶振
- SKYWORKS晶振
- 石英晶體振蕩器 石英晶體振蕩器
- 壓控晶振 壓控晶振
- 溫補(bǔ)晶振 溫補(bǔ)晶振
- 壓控溫補(bǔ)晶振 壓控溫補(bǔ)晶振
- 恒溫晶振 恒溫晶振
- 差分晶振 差分晶振
- 32.768K有源晶振 32.768K有源晶振
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更多>>Connor-Winfield晶振,TX214系列晶振,5032有源晶振
在板子上看上去一個(gè)不起眼的小器件,但是在數(shù)字電路里,就像是整個(gè)電路的心臟。數(shù)字電路的所有工作都離不開時(shí)鐘,晶振的好壞,以及晶振電路設(shè)計(jì)的好壞,會(huì)影響到整個(gè)系統(tǒng)的穩(wěn)定性。Connor-Winfield晶振,TX214系列晶振,5032有源晶振是采用表面貼裝技術(shù)制造封裝的微小型化無插腳晶體振蕩器,,具有體積小,焊接方便,效率高等特點(diǎn),在電子消費(fèi)產(chǎn)品中十分常見。貼片晶振的體積與型號(hào)主要有SMD5070,SMD6035,SMD5032,SMD3225,2520,1510這七種。其中SMD3225和SMD5032晶振市面上比較常見.相對(duì)于石英插件晶振,貼片晶振的頻率穩(wěn)定性要更高.
康納溫菲爾德晶振公司全球計(jì)時(shí)解決方案包括兩個(gè)石英晶體操作;一個(gè)晶體振蕩器設(shè)計(jì)制造集團(tuán),以及一個(gè)專門設(shè)計(jì)同步時(shí)鐘、PLL模塊的定時(shí)產(chǎn)品組,以及用于電信和數(shù)據(jù)通信應(yīng)用的特殊函數(shù)ASICs,以及全球定位系統(tǒng)(GPS)基于同步以太網(wǎng)應(yīng)用的定時(shí)解決方案.康納溫菲爾德晶振公司擁有廣泛的系列產(chǎn)品,比如:晶振,石英晶振, 溫補(bǔ)晶振,石英晶體振蕩器, (PXO)普通晶體振蕩器,(TCXO)溫補(bǔ)晶體振蕩器,(OCXO)恒溫晶體振蕩器等.還包括標(biāo)準(zhǔn)頻率控制裝置,以定制定時(shí)、蜂窩和全球定位系統(tǒng)解決方案.
康納溫菲爾德晶振公司繼續(xù)在頻率控制產(chǎn)品設(shè)計(jì)上進(jìn)行創(chuàng)新,利用其豐富的50年的歷史和豐富的經(jīng)驗(yàn),提供高精度、高頻率和高性能石英振蕩器, (PXO)普通晶體振蕩器,(TCXO)溫補(bǔ)晶體振蕩器,(OCXO)恒溫晶體振蕩器等陣列.盡管引入了競(jìng)爭(zhēng)共振技術(shù),但基于石英的振蕩器仍然提供了長(zhǎng)期和短期穩(wěn)定精度的最高水平,以及與目前可用的其他頻率控制技術(shù)相比,低抖動(dòng)和低相位噪音信號(hào)產(chǎn)生.
康納溫菲爾德晶振公司為廣泛的應(yīng)用程序提供各種晶振,石英晶振,貼片晶振,晶體振蕩器等水晶產(chǎn)品.標(biāo)準(zhǔn)晶體具有低老化、低串聯(lián)電阻、基本或三次超調(diào)模式,且符合RoHS的要求.精密水晶提供非常低的老化,高Q /低相位噪音,倒置的臺(tái)面設(shè)計(jì),也符合RoHS的標(biāo)準(zhǔn).我們還專門研究石英晶體微平衡技術(shù),為生物醫(yī)學(xué)傳感器、金屬沉積監(jiān)測(cè)器、環(huán)境監(jiān)測(cè)、化學(xué)反應(yīng)監(jiān)測(cè)器以及大量其他應(yīng)用提供無限的設(shè)計(jì)可能性.
Model Number | M502 | M503 | M504 | M505 | Model Number | M702 | M703 | M704 | M705 |
Output Type | LVCMOS | Clipped Sinewave | LVCMOS | Clipped Sinewave | Output Type | LVCMOS | Clipped Sinewave | LVCMOS | Clipped Sinewave |
TCXO/VCTCXO | TCXO | TCXO | VCTCXO | VCTCXO | TCXO/VCTCXO | TCXO | TCXO | VCTCXO | VCTCXO |
Frequency Range | 6.4 to 49.152 MHz | Frequency Range | 6.4 to 49.152 MHz | ||||||
Frequency Stability | ±0.28ppm | Frequency Stability | ±0.28ppm | ||||||
Supply Voltage | 3.3Vdc | Supply Voltage | 3.3Vdc | ||||||
Temperature Range | 0 to 70°C | Temperature Range | -20 to 70°C | ||||||
Holdover Stability | ±0.32ppm | Holdover Stability | ±0.32ppm | ||||||
Model Number | M302 | M303 | M304 | M305 | Model Number | M602 | M603 | M604 | M605 |
Output Type | LVCMOS | Clipped Sinewave | LVCMOS | Clipped Sinewave | Output Type | LVCMOS | Clipped Sinewave | LVCMOS | Clipped Sinewave |
TCXO/VCTCXO | TCXO | TCXO | VCTCXO | VCTCXO | TCXO/VCTCXO | TCXO | TCXO | VCTCXO | VCTCXO |
Frequency Range | 6.4 to 49.152 MHz | Frequency Range | 6.4 to 49.152 6.4 to 49.152 6.4 to 49.152 6.4 to 49.152 M | ||||||
Frequency Stability | ±0.28ppm | Frequency Stability | ±0.28ppm | ||||||
Supply Voltage | 3.3Vdc | Supply Voltage | 3.3Vdc | ||||||
Temperature Range | 0 to 85°C | Temperature Range | -40 to 85°C | ||||||
Holdover Stability | ±0.32ppm | Holdover Stability | ±0.32ppm | ||||||
Model Number | M512 | M513 | M514 | M515 | Model Number | M702 | M703 | M704 | M705 |
Output Type | LVCMOS | Clipped Sinewave | LVCMOS | Clipped Sinewave | Output Type | LVCMOS | Clipped Sinewave | LVCMOS | Clipped Sinewave |
TCXO/VCTCXO | TCXO | TCXO | VCTCXO | VCTCXO | TCXO/VCTCXO | TCXO | TCXO | VCTCXO | VCTCXO |
Frequency Range | 6.4 to 49.152 MHz | Frequency Range |
6.4 to 49.152 MHz
|
||||||
Frequency Stability | ±0.50ppm | Frequency Stability | ±0.28ppm | ||||||
Supply Voltage | 3.3Vdc | Supply Voltage | 3.3Vdc | ||||||
Temperature Range | 0 to 70°C | Temperature Range | -20 to 70°C | ||||||
Holdover Stability | ±0.32ppm | Holdover Stability | ±0.32ppm | ||||||
Model Number | M312 | M313 | M314 | M315 | Model Number | M712 | M713 | M714 | M715 |
Output Type | LVCMOS | Clipped Sinewave | LVCMOS | Clipped Sinewave | Output Type | LVCMOS | Clipped Sinewave | LVCMOS | Clipped Sinewave |
TCXO/VCTCXO | TCXO | TCXO | VCTCXO | VCTCXO | TCXO/VCTCXO | TCXO | TCXO | VCTCXO | VCTCXO |
Frequency Range | 6.4 to 49.152 MHz | Frequency Range | 6.4 to 49.152 MHz | ||||||
Frequency Stability | ±0.50ppm | Frequency Stability | ±0.50ppm | ||||||
Supply Voltage | 3.3Vdc | Supply Voltage | 3.3Vdc | ||||||
Temperature Range | 0 to 85°C | Temperature Range | -20 to 70°C | ||||||
Holdover Stability | ±0.32ppm | Holdover Stability | ±0.32ppm |
Model Number | M522 | M523 | M524 | M525 | Model Number | M722 | M723 | M724 | M725 |
Output Type | LVCMOS | Clipped Sinewave | LVCMOS | Clipped Sinewave | Output Type | LVCMOS | Clipped Sinewave | LVCMOS | Clipped Sinewave |
TCXO/VCTCXO | TCXO | TCXO | VCTCXO | VCTCXO | TCXO/VCTCXO | TCXO | TCXO | VCTCXO | VCTCXO |
Frequency Range | 6.4 to 52 MHz | Frequency Range | 6.4 to 49.152 MHz | ||||||
Frequency Stability | ±1.00ppm | Frequency Stability | 1.00ppm | ||||||
Supply Voltage | 3.3Vdc | Supply Voltage | 3.3Vdc | ||||||
Temperature Range | 0 to 70°C | Temperature Range | -20 to 70°C | ||||||
Holdover Stability | ±0.32ppm | Holdover Stability | ±0.32ppm |
Model Number | M322 | M323 | M324 | M325 | Model Number | M622 | M623 | M624 | M625 |
Output Type | LVCMOS | Clipped Sinewave | LVCMOS | Clipped Sinewave | Output Type | LVCMOS | Clipped Sinewave | LVCMOS | Clipped Sinewave |
TCXO/VCTCXO | TCXO | TCXO | VCTCXO | VCTCXO | TCXO/VCTCXO | TCXO | TCXO | VCTCXO | VCTCXO |
Frequency Range | 6.4 to 52 MHz | Frequency Range | 6.4 to 52 MHz | ||||||
Frequency Stability | ±1.00ppm | Frequency Stability | ±1.00ppm | ||||||
Supply Voltage | 3.3Vdc | Supply Voltage | 3.3Vdc | ||||||
Temperature Range | 0 to 85°C | Temperature Range | -40 to 85°C | ||||||
Holdover Stability | ±0.32ppm | Holdover Stability | ±0.32ppm |
Connor-Winfield晶振,TX214系列晶振,5032有源晶振由于石英貼片晶振在數(shù)字電路中的重要性,在使用和設(shè)計(jì)的時(shí)候我們需要小心處理,尤其要注意以下5點(diǎn)細(xì)節(jié)。
1. 貼片晶振內(nèi)部存在石英晶體,所以在受到外部撞擊或者跌落的時(shí)候容易造成石英晶體斷裂破損造成晶振失效。在設(shè)計(jì)的時(shí)候就要考慮晶振的可靠安裝以及位置盡量不要靠近板邊,設(shè)備外殼等等。
2.在手工焊接或者機(jī)器焊接的時(shí)候要注意焊接溫度,貼片晶振對(duì)溫度比較敏感,焊接時(shí)溫度不能過高,并且加熱時(shí)間盡量短。
3. 設(shè)計(jì)的時(shí)候盡量縮短貼片晶振部分的走線,石英貼片晶振走線和其他信號(hào)線之間保留盡量遠(yuǎn)的距離,并且推薦將晶振的外殼接地,這些措施都能更好的避免干擾。
4. 謹(jǐn)慎選擇C1、C2的容值。盡量按照廠家提供的推薦值設(shè)計(jì)。在滿足起振要求的前提下,C1、C2的取值可以盡量小,能縮短貼片晶振起振時(shí)間。
5.注意貼片晶振是否被過驅(qū)動(dòng),過驅(qū)動(dòng)會(huì)影響晶振使用壽命。如果用示波器測(cè)試發(fā)現(xiàn)晶振的輸出被削波,波峰波谷被削平,那么就要考慮貼片晶振是否被過驅(qū)動(dòng)??梢赃m當(dāng)調(diào)整R1限流電阻的阻值。直到輸出完整的正弦波。
公司:深圳市億金電子有限公司
SHENZHEN YIJIN ELECTRONICS CO;LTD
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