X1M000221001013 [SEIKO]

LVDS Output Clock Oscillator,;
X1M000221001013
型号: X1M000221001013
厂家: SEIKO EPSON CORPORATION    SEIKO EPSON CORPORATION
描述:

LVDS Output Clock Oscillator,

机械 输出元件 振荡器
文件: 总7页 (文件大小:456K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Clock OSC  
EG-2102CB  
EG-2102CB 200.000000MHz +/-50ppm LGSN  
Product name  
X1M0002210010xx  
Product Number / Ordering code  
Please refer to the 9.Packing information about xx (last 2 digits)  
Output waveform  
LVDS  
Pb free / Complies with EU RoHS directive  
Reference weight Typ. 71 mg  
1.Absolute maximum ratings  
Parameter  
Symbol  
Vcc-GND  
T_stg  
Min.  
-0.5  
-40  
Typ.  
Max.  
4
125  
Unit  
V
ºC  
V
Conditions / Remarks  
-
Storage as single product  
ST or OE Terminal  
Maximum supply voltage  
Storage temperature  
Input voltage  
-
-
-
Vin  
-0.5  
Vcc+0.5  
2.Specifications(characteristics)  
Parameter  
Output frequency  
Symbol  
Min.  
-
Typ.  
200.0000  
Max.  
-
Unit  
MHz  
V
Conditions / Remarks  
-
f0  
Vcc  
T_use  
f_tol  
Icc  
-
Supply voltage  
-0.5  
-
4
Storage as single product  
Operating temperature  
Frequency tolerance  
Current consumption  
Stand-by current  
Disable current  
-40  
-
125  
50  
30  
-
ºC  
x10-6  
mA  
mA  
mA  
%
-
-50  
-
-
-
-
-
I_std  
I_dis  
SYM  
VOD  
dVOD  
Vos  
dVos  
L_LVDS  
VIH  
-
-
-
-
-
15.0  
55  
454  
50  
1.375  
150  
-
-
Symmetry  
45  
-
-
Output voltage(LVDS)  
247  
-
mV  
mV  
V
-
-
-
-
1.125  
-
-
-
-
mV  
-
Output load condition(LVDS)  
Input voltage  
-
100  
-
0.7Vcc  
-
-
VIL  
-
-
-
-
0.3Vcc  
0.4  
0.4  
10  
N/A  
N/A  
N/A  
N/A  
N/A  
0.23  
-
-
Rise time  
Fall time  
Start-up time  
Jitter  
tr  
-
ps  
ps  
-
tf  
-
-
-
t_str  
tDJ  
-
-
ms  
Deterministic Jitter  
Random Jitter  
-
-
ps  
TRJ  
-
-
ps  
tRMS  
tp-p  
δ(RMS of total distribution)  
Peak to Peak  
-
-
ps  
-
-
ps  
Accumulated Jitter(δ) n=2 to 50000 cycles  
Off set Frequency: 12kHz to 20MHz  
Off set 1Hz  
tacc  
-
-
-
ps  
Phase jitter  
tPJ  
-
ps  
Phase noise  
L(f)  
-
-
dBc/Hz  
dBc/Hz  
dBc/Hz  
dBc/Hz  
dBc/Hz  
dBc/Hz  
dBc/Hz  
x10-6/Year  
Off set 10Hz  
-
-54.8  
-82.0  
-110.8  
-139.2  
-148.8  
-151.0  
-
-
Off set 100Hz  
-
-
Off set 1kHz  
-
-
Off set 10kHz  
-
-
Off set 100kHz  
Off set 1MHz  
-
-
-
-
@+25ºC first year  
Frequency aging  
f_age  
-10  
-
10  
-
-
-
1 Page  
3.Test circuit  
1) To observe waveform and current (case 1)  
A
+3.3 V  
Vcc  
OUT  
NC  
OUT  
GND  
By-pass  
capacitor 2  
Differentila probe  
Oscillo-  
scope  
100 Ω  
OE  
Power  
supply 1  
OE pin*  
By-pass  
capacitor 1  
* The lines from OUT and OUT pin are same length.  
* To measure the disable current, OE pin is connected to GND  
2) To observe waveform and current (case 2)  
VOD  
+3.3 V  
Vcc  
V
OUT  
NC  
OUT  
GND  
By-pass  
capacitor 2  
50 Ω  
50 Ω  
VOS  
V
OE  
OE pin  
Power  
supply 1  
By-pass  
capacitor 1  
* The lines from OUT and OUT pin are same length.  
3) Measurement condition  
A) Oscilloscope  
•Bandwidth should be 5 times higher than DUT’s output frequency (4 GHz).  
•Probe ground should be placed closely from test point and lead length should be as short as possible.  
B) By-pass capacitor 1 (approx. 0.01 μF to 0.1 μF) places closely between Vcc and GND.  
C) By-pass capacitor 2 (approx. 10 μF) places closely between power supply terminals on the board.  
D) Use the current meter whose internal impedance value is small.  
E) Power supply  
• Start up time (0 Vg90 %Vcc) of power source should be more than 150 μs and  
slew rate should be less than 19.8 mV/μs.  
• Impedance of power supply should be as low as possible.  
2 Page  
4.Timing chart  
Each output waveform (OUT, and OUT)  
Vcc  
OUT  
OUT  
50 % of OUT  
amplitude  
50 % of OUT  
amplitude  
VOS1  
VOS2  
GND  
tw  
SYM = tw / t  
t
dVOS =VOS1-VOS2  
Differential output waveform (OUT OUT)  
tr  
tf  
OUT  
80 % of amplitude  
VOD1  
Differential 0 V  
VOD2  
20 % of amplitude  
OUT  
dVOD =VOD1-VOD2  
5.External dimensions  
(Unit: mm)  
6.Footprint(Recommended)  
(Unit: mm)  
0.84  
0.64  
#6 #5 #4  
#4  
#5  
#6  
E 212.50P  
1P 1X1A  
Pin map  
Pin  
Connection  
#3  
#1  
#2  
1.27  
#1  
#2 #3  
1
OE  
2
5.0±0.2  
1.27  
2.54  
2.54  
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).  
3 Page  
7.Reflow profile  
Reflow condition (Follow of JEDEC STD-020D.01)  
Temperature[C]  
300  
TP ;+260C  
+255C  
tp;20sto40s  
250  
200  
150  
100  
50  
Avg. Ramp-up  
3 C/sMax.  
tL  
TL  
;+217C  
Ramp-down  
6C/sMax.  
60sto150s  
(+217Cover)  
Tsmax;+200C  
ts  
Tsmin;+150C  
60sto180s  
(+150Cto+200C)  
Time +25CtoPeak  
0
60 120 180 240 300 360 420 480 540 600 660 720 780  
Time[s]  
8.PCB layout (2 layers, 2nd layer is all GND pattern)  
4 Page  
* By-pass capacitor (approx. 0.01 μF to 0.1 μF) places closely between Vcc and GND.  
* By-pass capacitor (approx. 10 μF) places closely between power supply terminals on the board.  
* Please design the two output lines by characteristic impedance 100 Ω and same length,  
and try to make the output lines as short as possible.  
9.Packing information  
[ 1 ]Product number last 2 digits code(xx) description  
X1M0002210010xx  
The recommended code is "00"  
Condition  
Condition  
500pcs / Reel  
1000pcs / Reel  
Code  
Code  
13  
01  
Any Q'ty vinyl bag(Tape cut)  
Any Q'ty / Reel  
11  
00  
12  
250pcs / Reel  
5 Page  
[ 2 ] Taping specification  
Subject to EIA-481 & IEC-60286  
(1) Tape dimensions  
ꢀꢀꢀMaterial of the Carrier Tape : PS  
ꢀꢀꢀMaterial of the Top Tape : PET+PE  
Unit: mm  
Carrier tape  
Top tape  
Symbol  
Value  
A
φ1.5  
B
C
D
E
F
4.0±0.1 8.0±0.1 7.25±0.2 12.0±0.2 1.40±0.1 3.5±0.1 5.4±0.1  
+0.1/-0  
(2) Reel dimensions  
Center material  
: PS  
Material of the Reel : PS  
Unit: mm  
13.0±1.0  
6 Page  
10.Notice  
This material is subject to change without notice.  
Any part of this material may not be reproduced or duplicated in any form or any means without the written permission  
of Seiko Epson.  
The information about applied circuitry, software, usage, etc. written in this material is intended for reference only.  
Seiko Epson does not assume any liability for the occurrence of infringing on any patent or copyright of a third party.  
This material does not authorize the licensing for any patent or intellectual copyrights.  
When exporting the products or technology described in this material, you should comply with the applicable  
export control laws and regulations and follow the procedures required by such laws and regulations.  
You are requested not to use the products (and any technical information furnished, if any) for the development  
and/or manufacture of weapon of mass destruction or for other military purposes. You are also requested that you  
would not make the products available to any third party who may use the products for such prohibited purposes.  
These products are intended for general use in electronic equipment. When using them in specific applications that require  
extremely high reliability, such as the applications stated below, you must obtain permission from Seiko Epson in advance.  
/ Space equipment (artificial satellites, rockets, etc.)  
/ Transportation vehicles and related (automobiles, aircraft, trains, vessels, etc.)  
/ Medical instruments to sustain life  
/ Submarine transmitters  
/ Power stations and related  
/ Fire work equipment and security equipment  
/ Traffic control equipment  
/ And others requiring equivalent reliability.  
All brands or product names mentioned herein are trademarks and/or registered trademarks of their respective.  
11.Contact us  
http://www5.epsondevice.com/en/contact/  
7 Page  

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