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SG-310SDF 4.0960MB PDF预览

SG-310SDF 4.0960MB

更新时间: 2024-11-07 22:58:23
品牌 Logo 应用领域
爱普生 - EPSON 石英晶振
页数 文件大小 规格书
2页 860K
描述
OSC XO 4.096MHZ CMOS SMD

SG-310SDF 4.0960MB 数据手册

 浏览型号SG-310SDF 4.0960MB的Datasheet PDF文件第2页 
Crystal oscillator  
Product Number (please contact us)  
Q33310xx0xxxx00  
CRYSTAL OSCILLATOR (SPXO)  
OUTPUT : CMOS  
SG-310 series  
Frequency range  
Supply voltage  
:
:
2 MHz to 80 MHz  
1.8 V Typ. / 2.5 V Typ. / 3.3 V Typ.  
Current consumption : 1.5 mATyp.  
(SEF: 1.8 V No load condition 48 MHz)  
Standby(ST  
3.2 × 2.5 × 1.05 mm  
Function  
External dimensions  
:
:
)
Actual size  
Specifications (characteristics)  
Item  
Symbol  
SG-310 SEF  
SG-310 SDF  
SG-310 SCF SG-310 SDN SG-310 SCN  
Conditions / Remarks  
Output frequency range  
f
0
2.000 MHz to 48.000 MHz  
3.000 MHz to 80.000 MHz  
2.5 V Typ. 3.3 V Typ.  
2.2 V to 2.7 V 2.7 V to 3.6 V  
Please contact us about available frequencies.  
1.8 V Typ.  
2.5 V Typ.  
3.3 V Typ.  
Supply voltage  
VCC  
1.6 V to 2.2 V 2.2 V to 3.0 V 2.7 V to 3.6 V  
Storage temperature  
T_stg  
-40 °C to +125 °C  
Storage as single product.  
Operating temperature  
T_use  
-40 °C to +85 °C -40 °C to +85 °C (+105 °C) Please contact us about +85 °C < T_use  
B: ±50 × 10-6, C: ±100 × 10-6  
L: ±50 × 10-6, M: ±100 × 10-6  
-20 °C to +70 °C  
-40 °C to +85 °C  
-20 °C to +70 °C  
f_tol  
Frequency tolerance  
Current consumption  
D:±20 × 10-6 ,S:±25 × 10-6  
R:±25 × 10-6 ,P:±20 × 10-6 -30 °C to +85 °C  
J:±25 × 10-6  
-40 °C to +85 °C  
1.5 mA Max.  
1.5 mA Max.  
1.5 mA Max.  
2.0 mA Max.  
2.0 mA Max.  
3.0 mA Max.  
1.5 mA Max.  
1.5 mA Max.  
2.0 mA Max.  
2.0 mA Max.  
2.5 mA Max.  
3.5 mA Max.  
1.5 mA Max.  
2.0 mA Max.  
2.5 mA Max.  
2.5 mA Max.  
3.5 mA Max.  
4.5 mA Max.  
No load condition, 2 MHzf04 MHz  
No load condition, 4 MHz<f08 MHz  
No load condition, 8 MHz<f016 MHz  
4.0 mA Max.  
5.0 mA Max.  
No load condition, 16 MHz<f  
No load condition, 25 MHz<f  
No load condition, 33 MHz<f  
No load condition, 48 MHz<f  
0
25 MHz  
33 MHz  
48 MHz  
80 MHz  
ICC  
0
0
0
6.0 mA Max.  
7.0 mA Max.  
0.7 µA Max.  
(0.2 µA Typ.)  
45 % to 55 %  
1.5 µA Max.  
(0.5 µA Typ.)  
2.0 µA Max.  
(1.0 µA Typ.)  
Stand-by current  
Symmetry  
I_std  
SYM  
ST =GND  
10 µA Max.  
2 MHzf016 MHz  
45 % to 55 %  
40 % to 60 %  
50 % VCC level  
L_CMOS 15 pF  
45 % to 55 %  
45 % to 55 %  
16 MHz<f  
0
40 MHz  
80 MHz  
40 % to 60 %  
40 MHz<f  
0
V
V
OH  
OL  
90 % VCC Min.  
10 % VCC Max.  
15 pF Max.  
I
I
OH  
=
-3 mA  
3 mA  
Output voltage  
OL  
=
Output load condition (CMOS) L_CMOS  
V
IH  
80 % VCC Min.  
20 % VCC Max.  
70 % VCC Min.  
30 % VCC Max.  
Input voltage  
ST terminal  
V
IL  
Rise time / Fall time  
Start-up time  
t
r
/ t  
f
4 ns Max.  
20 % VCC to 80 % VCC level, L_CMOS=15 pF  
t=0 at 90 % VCC  
+25 °C, First year, V CC=1.8 V, 2.5 V, 3.3 V  
+25 °C, 10 years  
t_str  
10 ms Max.  
2 ms Max.  
±5 × 10-6 / year Max.  
±3 × 10-6 / year Max.  
±10 × 10-6 Max.  
Frequency aging  
f_aging  
Supply voltage  
Frequency tolerance  
*Only SDN, SCN are available  
Product Name  
(Standard form)  
SG-310 S E F 25.000000MHz L  
ꢁꢂ ꢄ  
Model Function (S:Standby)  
Supply voltage Frequency  
Frequency tolerance  
B
C
L
±50 × 10-6 / -20 to +70°C  
±100 × 10-6 / -20 to +70°C  
±50 × 10-6 / -40 to +85°C  
±100 × 10-6 / -40 to +85°C  
D*  
S*  
R*  
±20 × 10-6 / -20 to +70°C  
±25 × 10-6 / -20 to +70°C  
±25 × 10-6 / -30 to +85°C  
E
D
C
1.8 V Typ.  
2.5 V Typ.  
3.3 V Typ.  
M
P*  
J*  
±20 × 10-6 / -30 to +85°C  
±25 × 10-6 / -40 to +85°C  
External dimensions  
(Unit:mm)  
Footprint (Recommended)  
(Unit:mm)  
3.2 ±0.2  
C (ex.0.01 µF)  
2.2  
#4  
#3  
#4  
#3  
1.4  
E25.00B  
EF241A  
#3  
#4  
#2  
#1  
#1  
0.9  
#2  
Pin map  
Pin  
1
Connection  
ST  
2
GND  
#2  
#1  
3
OUT  
2.4  
Resist  
4
VCC  
To maintain stable operation, provide a 0.01uF to 0.1uF by-pass  
capacitor at a location as near as possible to the power source  
terminal of the crystal product (between Vcc - GND).  
Note.  
ST pin = HIGH or "open" : Specified frequency output.  
ST pin = LOW : Output is high impedance, oscillation stops.  

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