如何設(shè)計高可靠6G晶振振蕩電路X1G0044010011
為了獲得穩(wěn)定的振蕩,通常情況下石英晶體單元與振蕩電路的匹配十分重要。若電路結(jié)構(gòu)與晶體單元的匹配 中存在問題,就會產(chǎn)生頻率不夠穩(wěn)定、停止起振或振蕩不穩(wěn)定等問題。石英晶體單元與微機(jī)一起使用時需要評 估振蕩電路。確認(rèn)該石英晶體單元與振蕩電路的匹配之際,至少要對振蕩頻率(頻率匹配)、振蕩裕度(負(fù)阻抗) 和激勵功率的三項進(jìn)行評估。我們在上篇中已經(jīng)說明了有關(guān)頻率匹配的內(nèi)容,這次將解說振蕩裕度(負(fù)阻抗) 和激勵功率的評估方法。
【1】 振蕩裕度(負(fù)阻抗)的評估
在石英晶體單元的 HOT 端子插入阻抗后檢測是否起振(測試負(fù)阻抗 RN),是評估振蕩電路的負(fù)阻抗特性與振 蕩裕度的簡單方法。振蕩電路的能力可以通過改變插入的阻抗值(損失的大?。┻M(jìn)行測試。 圖 1 是測試負(fù)阻抗的電路圖。負(fù)阻抗的絕對值等于所插入的阻抗值 r 和石英晶體單元連接負(fù)載時的等效阻抗(Re) 之和。算式(1)
石英晶體單元連接負(fù)載時的等效阻抗(Re)用以下算式(2)求出。
R1是石英晶體單元無負(fù)載電容時的等效串聯(lián)阻抗。
使用在上次《振蕩電路評估方法(1)》中所介紹的石英晶體單元常數(shù)(R1=33.7Ω、C0=1.11pF、CL=7.8pF), 代入上述算式(2)后可算出等效阻抗(Re)為 44Ω。
這時的 R1是石英晶體單元的實測值,而不是參數(shù)值。假設(shè) R1的最大值是 57Ω,Re 受負(fù)載電容的影響而 增加到 74?,請注意。
圖 2 表示插入阻抗以測試負(fù)阻抗之例。
表 1:基于負(fù)阻抗計算振蕩裕度(RN/Re)之例
| 插入阻抗(Ω) | 負(fù)阻抗(計算值、Ω) | 振蕩裕度 | 用示波器進(jìn)行的起振確認(rèn) |
| 500 | 545 | 7 | OK |
| 1000 | 1045 | 14 | OK |
| 1600 | 1645 | 22 | OK |
| 2000 | 2045 | - | 不起振 |
圖 2:插入阻抗測試負(fù)阻抗的情景
在圖 2 的狀態(tài)下用示波器確認(rèn)波形。逐漸增大插入的阻抗值 r,尋找不起振的阻抗點。這時忽略因插入阻抗而引 起的振蕩輸出下降和振蕩頻率的變化,只單純判定是否起振。
決定負(fù)阻抗 RN之后,計算振蕩裕度 RN/Re(上述表 1)。
需要注意的是振蕩裕度低將引發(fā)各種不良現(xiàn)象,例如因電路特性不均而造成的振蕩不穩(wěn)定、不起振或起振時間變長等。
振蕩裕度為 5 倍以上時,意味著振蕩電路具備激勵石英晶體單元的足夠能力(增幅度),通常不會發(fā)生問題。 如果振蕩裕度在 5 倍以下,則建議變更振蕩電路的電路常數(shù),或者增大負(fù)阻抗 RN,或者減小石英晶體單元的等 效串聯(lián)阻抗 Re,使振蕩裕度保持在 5 倍以上。
雖然降低微調(diào)電容器(Cg、Cd)或限流電阻(Rd)等振蕩電路的電路常數(shù)可使負(fù)阻抗變大,振蕩裕度也將隨 之變大,但需要提醒的是,振蕩電路的負(fù)載電容隨著電路常數(shù)的變化而變,這將促使振蕩頻率也出現(xiàn)變化。欲 降低石英晶體單元的等效串聯(lián)電阻 R1時,需要向石英晶體生產(chǎn)商提出要求。
【2】 激勵功率的評估
激勵功率指石英晶體單元振蕩時所消耗的電力。通常,激勵功率最好控制在石英晶體單元的規(guī)格參數(shù)內(nèi),一 般在約 100μW 以下,但需注意的是各石英晶體生產(chǎn)商之間略有不同。
激勵功率過大時將引起振蕩頻率的變動、穩(wěn)定度下降、等效電路參數(shù)變化或頻率失真等現(xiàn)象。激勵功率偏高還 可能導(dǎo)致反復(fù)出現(xiàn)異常振蕩、引發(fā)故障的惡果。激勵功率(P)用下列算式(3)求出。
這里的 I 是流過石英晶體單元的電流,Re是石英晶體單元帶負(fù)載時的等效電阻。如果激勵功率超過了規(guī)格參數(shù), 就需要調(diào)整振蕩電路的常數(shù),使流過石英晶體單元的電流變小。降低 Cg 或 Cd 可使激勵功率變小,但振蕩電路 的負(fù)載電容也將隨之而變。最簡單的方法是增大 Rd,但損失將隨之增大、負(fù)阻抗將變小。
激勵功率不能直接測定。
把測試針放在與振蕩電路相組合的石英晶體單元 HOT 端子,用示波器測試施加電壓 Vpp,基于實測值計算流過 石英晶體單元的電流。
圖 3 表示測試激勵功率時的情景。
把電流探針插在評估用石英晶體單元的端子上后,裝到印制板的石英晶體單元部。通過示波器確認(rèn)振蕩后, 根據(jù)波形測出 Vpp。
例如,假設(shè)從示波器的波形得出 Vpp=0.205V、測試探針的設(shè)定為 1mA/div、探針阻抗為 50Ω、示波器的測試量程為 50mV/div 以及石 英晶體單元帶負(fù)載時等效電阻 Re為 45Ω,那么 Vpp/50[mV/div]=205/50=4.1div
4.1/(2√2)=1.45div
50[mV/div]/50Ω=1mA/div,
由此得出流過石英晶體單元的電流 I 為 1.45div×1mA/div=1.45mA。
根據(jù)前頁算式(3)計算得出激勵功率 P 為 1.45×1.45×45=95μW。
圖 3:測試激勵功率的情景
【3】結(jié)尾
我們分兩次解說了振蕩電路的評估方法,制作最佳振蕩電路需要對(1)頻率匹配、(2)振蕩裕度(負(fù)阻抗)和 (3)激勵功率分別進(jìn)行最佳化。
雖然對上述任意一項均設(shè)定最佳電路常數(shù)的做法最為理想,但實際工作中也會出現(xiàn)不適合的情況。我們在最后 匯總了這時的應(yīng)對方法。
表 2:頻率匹配、負(fù)阻抗及激勵功率的評估結(jié)果與應(yīng)對方法
| 頻率匹配 | 負(fù)阻抗 | 激勵功率 | 應(yīng)對方法 |
| OK | OK | OK | A |
| OK | OK | NG | B |
| OK | NG | OK | C |
| NG | OK | OK | D |
| NG | NG | NG | E |
| OK | NG | NG | F |
| NG | OK | NG | G |
| NG | NG | OK | H |
A.使用評估時的電路常數(shù)即可。
B.需要重審有關(guān)激勵功率的石英晶體單元規(guī)格參數(shù)。請確認(rèn)本次評估結(jié)果的激勵功率是否影響石英晶 體單元。
C.需要重審有關(guān)負(fù)阻抗的石英晶體單元規(guī)格參數(shù)。請考慮能否變更石英晶體單元等效串聯(lián)阻抗的規(guī)格 參數(shù) R1,使振蕩裕度達(dá)到 5 倍以上。
D.關(guān)于頻率匹配,需要考慮把事先規(guī)定的標(biāo)準(zhǔn)負(fù)載電容調(diào)整到裝配石英晶體單元的實際基板的負(fù)載電 容。
E.需要采取組合“B+C+D”的應(yīng)對方法。
F.需要采取組合“B+C”的應(yīng)對方法。
G.需要采取組合“B+D”的應(yīng)對方法。
H.需要采取組合“C+D”的應(yīng)對方法。
謹(jǐn)望上次及本次的信息能成為設(shè)計高可靠振蕩電路之際的參考
編碼
型號
頻率
尺寸
輸出方式
電源電壓
工作溫度
頻率偏差
X1G0023510013
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187.500000 MHz
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125.000000 MHz
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62.500000 MHz
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106.250000 MHz
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50.000000 MHz
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80.000000 MHz
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LV-PECL
3.135 to 3.465 V
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X1G0023510129
SG-770SCD
53.125000 MHz
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3.135 to 3.465 V
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X1G0023510130
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133.333300 MHz
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3.135 to 3.465 V
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75.000000 MHz
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3.135 to 3.465 V
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X1G0023510132
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98.304000 MHz
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LV-PECL
3.135 to 3.465 V
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X1G0023510808
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200.000000 MHz
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LV-PECL
3.135 to 3.465 V
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X1G0023610004
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155.520000 MHz
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LV-PECL
2.375 to 2.625 V
-40 to 85 °C
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X1G0023610007
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125.000000 MHz
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LV-PECL
2.375 to 2.625 V
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X1G0023610008
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156.250000 MHz
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2.375 to 2.625 V
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X1G0028210010
SG-771PCD
156.258600 MHz
7.00 x 5.00 x 1.80 mm
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2.250 to 3.630 V
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2.250 to 3.630 V
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2.250 to 3.630 V
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2.250 to 3.630 V
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2.250 to 3.630 V
-40 to 85 °C
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2.250 to 3.630 V
-40 to 85 °C
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156.250000 MHz
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2.250 to 3.630 V
-40 to 85 °C
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312.500000 MHz
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2.250 to 3.630 V
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2.250 to 3.630 V
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2.250 to 3.630 V
-40 to 85 °C
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2.250 to 3.630 V
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SG3225VAN
148.500000 MHz
3.20 x 2.50 x 1.20 mm
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2.250 to 3.630 V
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75.000000 MHz
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2.250 to 3.630 V
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150.000000 MHz
3.20 x 2.50 x 1.20 mm
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2.250 to 3.630 V
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X1G0042410033
SG3225VAN
156.250000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042410034
SG3225VAN
312.500000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042410035
SG3225VAN
312.515625 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042410036
SG3225VAN
161.132800 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042410039
SG3225VAN
125.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410040
SG3225VAN
125.006250 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410042
SG3225VAN
100.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410043
SG3225VAN
200.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410044
SG3225VAN
400.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410045
SG3225VAN
106.250000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410046
SG3225VAN
212.500000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410047
SG3225VAN
74.250000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410048
SG3225VAN
148.500000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410049
SG3225VAN
75.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410050
SG3225VAN
150.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410052
SG3225VAN
156.250000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410053
SG3225VAN
312.500000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410054
SG3225VAN
312.515625 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410055
SG3225VAN
161.132800 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410058
SG3225VAN
125.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042410059
SG3225VAN
125.006250 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042410061
SG3225VAN
100.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042410062
SG3225VAN
200.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042410063
SG3225VAN
400.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042410064
SG3225VAN
106.250000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042410065
SG3225VAN
212.500000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042410066
SG3225VAN
74.250000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042410067
SG3225VAN
148.500000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042410068
SG3225VAN
75.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042410069
SG3225VAN
150.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042410071
SG3225VAN
156.250000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042410072
SG3225VAN
312.500000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042410073
SG3225VAN
312.515625 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042410074
SG3225VAN
161.132800 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042410079
SG3225VAN
50.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042410080
SG3225VAN
68.750000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042410083
SG3225VAN
50.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042410084
SG3225VAN
68.750000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042410087
SG3225VAN
50.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410088
SG3225VAN
68.750000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410092
SG3225VAN
68.750000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042410100
SG3225VAN
133.333333 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-20 to 70 °C
+/-50 ppm
X1G0042410101
SG3225VAN
148.350000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042410102
SG3225VAN
114.285000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042410103
SG3225VAN
250.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042410104
SG3225VAN
350.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042410105
SG3225VAN
80.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042410106
SG3225VAN
98.304000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042410108
SG3225VAN
297.000000 MHz
3.20 x 2.50 x 1.20 mm
LVDS
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510001
SG3225EAN
100.000000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510002
SG3225EAN
156.250000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-20 to 70 °C
+/-20 ppm
X1G0042510003
SG3225EAN
125.000000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510004
SG3225EAN
125.006250 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510006
SG3225EAN
200.000000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510007
SG3225EAN
400.000000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510008
SG3225EAN
106.250000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510009
SG3225EAN
212.500000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510010
SG3225EAN
74.250000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510011
SG3225EAN
148.500000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510012
SG3225EAN
75.000000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510013
SG3225EAN
150.000000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510014
SG3225EAN
155.520000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510015
SG3225EAN
156.250000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510016
SG3225EAN
312.500000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510017
SG3225EAN
312.515625 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510018
SG3225EAN
161.132800 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-50 ppm
X1G0042510021
SG3225EAN
125.000000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042510022
SG3225EAN
125.006250 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042510024
SG3225EAN
100.000000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042510025
SG3225EAN
200.000000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042510026
SG3225EAN
400.000000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042510027
SG3225EAN
106.250000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042510028
SG3225EAN
212.500000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
X1G0042510029
SG3225EAN
74.250000 MHz
3.20 x 2.50 x 1.20 mm
LV-PECL
2.250 to 3.630 V
-40 to 85 °C
+/-30 ppm
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