385C5CAA100M000000 [ETC]

Crystal Oscillator ; 晶体振荡器\n
385C5CAA100M000000
型号: 385C5CAA100M000000
厂家: ETC    ETC
描述:

Crystal Oscillator
晶体振荡器\n

振荡器 晶体振荡器
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中文:  中文翻译
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Model 385L/386L  
Low Cost 3.3 SM VCXO  
CTS Reeves  
FREQUENCY PRODUCTS  
Features:  
• Frequency Range up to 100.0 MHz  
• 3.3V Operation  
• Surface Mount Package  
• Low Cost  
• ACMOS/TTL Compatible  
• Optional Disable Feature  
The CTS Reeves Model 385L/386L is a small size  
VCXO, which uses ASIC Technology to achieve  
superior cost performance in a true SMT Package. Used in Phase Lock Loop Applications, its  
small size means more application flexibility. The Model 385L/386L is useful in almost any  
VCXO application. The Model 386L disable feature is perfect for automated testing.  
Electrical Specifications: (Vcc = +3.3V ±10%, Load = 30 pF)  
Parameter  
Symbol  
Min  
Max  
Unit  
Operating Supply Current*  
Output Voltage Levels  
Logic '1' Level (IOH= 4 mA)  
Logic '0' Level (IOL= -4 mA)  
Output Transition Times  
Rise Time  
IDD  
50  
mA  
VOH  
VOL  
0.9*Vcc  
Volts  
Volts  
0.4  
Tr  
Tf  
5.0  
5.0  
nSeconds  
nSeconds  
%
Fall Time  
Output Duty Cycle  
Period Jitter (pk-pk)  
SYM  
45  
55  
200  
0.01  
10.0  
100  
pS  
Unit Interval  
mSeconds  
MHz  
Start Up Time  
Output Clock Frequency  
fo  
1.65  
* Supply Current varies with Frequency and Load. Consult Factory with specific requirements.  
Voltage Control Specifications (+25°C)  
Parameter  
Symbol  
Min  
0.5  
65  
Nominal  
1.75  
Max  
3.0  
95  
Unit  
Volts  
±ppm  
%
Control Voltage  
Deviation Range  
Linearity  
Vc  
80  
4
10  
Transfer Function  
Input Impedance  
Modulation Roll-off  
Positive  
50  
10  
KOhms  
kHz  
15  
71  
400 REIMANN AVE. SANDWICH, IL 60548  
Phone: 815-786-8411 Fax: 815-786-3600 E-Mail: www.ctsreeves.com  
Model 385L/386L  
Low Cost 3.3V SM VCXO  
CTS Reeves  
FREQUENCY PRODUCTS  
Equivalent Test Load:  
5 TTL LOADS  
5V  
Waveform Conditions:  
Period (100%)  
CR1  
500 OHM  
NOM.  
Vcc  
Ground  
Out  
% Uptime  
Vcc  
TTL  
CMOS  
(100%)  
(90%)  
(50%)  
(10%)  
CR2  
CR3  
CR4  
Test  
Point  
HI-Z  
+2.4V  
+1.5V  
+0.5V  
Voh  
Vol  
15 pf  
.01uF  
Probe  
tf  
tf  
CR1-CR4 are IN3064  
Note: Do Not Use TTL Load For CMOS Measurements  
COPLANARITY  
±.051  
±.002  
.889 ±.203  
.035 ±.008  
Pin Description  
Outline Drawing and  
Pin Connections:  
PIN  
FUNCTION  
V CONTROL  
OEH (OPTIONAL  
Model 386  
CASE/CKT GND  
OUTPUT  
.457 ±.051  
.017 ±.002  
Typ  
1
2
7.336  
9.246  
Typ  
±.508  
.364  
3
4
5
6
.290 ±.020  
2.540  
.100  
5.080  
.200  
N/C  
4.699  
14.249  
MAX  
KEY MM  
INCH  
Vcc  
.185  
.561  
REF  
MAX  
Environmental Specifications:  
Shock:  
2000 G’s 0.5 mS, 3 shocks per direction,  
Per MIL-STD-883, Method 2002  
Sinusoidal Vibration:  
0.06” DA, 10 to 55 Hz and 15 G’s, 55 to  
2000 Hz, Per MIL-STD-883, Method 2007  
Random Vibration:  
Seal:  
3 x 10-8 ATM-cc/sec, Per MIL-STD-883,  
Method 1014, Conditions B1 +B2  
Marking Permanency:  
Per MIL-STD-883, Method 2015  
Electro-Static Discharge:  
Per MIL-STD-883, Method 3016 2KV  
Class 1 (Sensitivity)  
Attachment Method:  
20 G’s rms. 20 to 2000 Hz, Per MIL-STD-883,  
Method 2026  
Moisture:  
Per MIL-STD-202, Method 210  
Condition K (250°C ±5°C maximum  
peak, 90 to 120 seconds over 183°C)  
10 cycles, per MIL-STD-883, Method 1004  
(Omit sub-cycle 7)  
Configuring The Part Number...  
M
A
A
Op. Temp. Range  
Frequency (M represents decimal)  
_M_ _ _ _ _ _ (8M192000 FOR 8.192000 MHz)  
_ _M_ _ _ _ _ (16M38400 FOR 16.38400 MHz)  
_ _ _M_ _ _ _ (155M5200 for 155.5200 MHz)  
Frequency Tolerance  
3 = ±0.005% (±50 ppm)  
5 = 0.0025% (±25 ppm)  
Factory Use  
Model/Lead Options  
C = 0°C to +70°C  
I = 40°C to +85°C  
AA = Standard  
85C Std Output  
85D Std Output  
J-Lead  
Loadless  
86C Tristate Output J-Lead  
86D Tristate Output Leadless  
* Inclusive of initial tolerance at time of shipment, changes in supply voltage, load, temperature,  
and first year aging.  
72  
400 REIMANN AVE. SANDWICH, IL 60548  
Phone: 815-786-8411 Fax: 815-786-3600 E-Mail: www.ctsreeves.com  

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