Avery Dennison 10056-0

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Technical Document


DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

Clock OSC SG7050CAN
Product name
SG7050CAN 29.491200 MHz TJGA
Product Number / Ordering code X1G0044810056xx
Please refer to the 8.Packing information about xx (last 2 digits)
Output waveform CMOS
Pb free / Complies with EU RoHS directive
Reference weight Typ. 147 mg
1.Absolute maximum ratings
Parameter Symbol Min. Typ. Max. Unit Conditions / Remarks
Maximum supply voltage
Vcc-GND
-0.3 - 4 V -
Storage temperature
T_stg -40 - +125 ºC Storage as single product
Input voltage
Vin -0.3 - Vcc+0.3 V ST terminal
2.Specifications(characteristics)
Parameter Symbol Min. Typ. Max. Unit Conditions / Remarks
Output frequency
f0 29.4912 MHz
Supply voltage
Vcc 1.6 - 3.63 V
-
Operating temperature
T_use -40 - +85 ºC
-
Frequency tolerance
f_tol -50 - 50
x10
-6
T_use
Current consumption
Icc - - 3 mA
No load condition
Stand-by current
I_std - - 2.7 µA
ST = GND
Disable current
I_dis - - - mA
-
Symmetry
SYM 45 - 55 %
50% Vcc Level L_CMOS=<15pF
Output voltage
V
OH
Vcc-0.4 - -
-
V
OL
- - 0.4
-
Output load condition
L_CMOS - - 15 pF
CMOS Load
Input voltage
V
IH
0.8Vcc - -
ST terminal
V
IL
- - 0.2Vcc
ST terminal
Rise time
t
r
- - 4 ns
Fall time
tf - - 4 ns
Start-up time
t_str - - 3 ms
t = 0 at 0.9Vcc
Jitter
t
DJ
- 0 - ps
Deterministic Jitter Vcc=3.3V
t
RJ
- 2.4 - ps
Random Jitter Vcc=3.3V
t
RMS
- 2.3 - ps
δ(RMS of total distribution) Vcc=3.3V
t
p-p
- 20 - ps
Peak to Peak Vcc=3.3V
t
acc
- 2.5 - ps
Phase jitter
t
PJ
- 0.34 - ps
Off set Frequency: 12kHz to 20MHz, Vcc=3.3V
Phase noise
L(f) - - -
dBc/Hz
-
- -94 -
dBc/Hz
Off set 10Hz Vcc=3.3V
- -123 -
dBc/Hz
Off set 100Hz Vcc=3.3V
- -145 -
dBc/Hz
Off set 1kHz Vcc=3.3V
- -155 -
dBc/Hz
Off set 10kHz Vcc=3.3V
- -158 -
dBc/Hz
Off set 100kHz Vcc=3.3V
- -159 -
dBc/Hz
Off set 1MHz Vcc=3.3V
Frequency aging
f_age -3 - 3
x10
-6
@+25ºC first year
- - -
-
Vcc1.6V : 0.2Vcc to 0.8Vcc Level,
L_CMOS=15pF
Vcc1.6V : 0.2Vcc to 0.8Vcc Level,
L_CMOS=15pF
Accumulated Jitter(δ) n=2 to 50000
cycles, Vcc=3.3V
1 Page
3.Timing chart
4.Test circuit
1) Waveform observation
2) Current consumption
*Current consumption under the
disable function should be
= GND.
3) Condition
(1) Oscilloscope
· Band width should be minimum 5 times higher (wider) than measurement frequency.
· Probe earth should be placed closely from test point and lead length should be as short as possible
* Recommendable to use miniature socket. (Don’t use earth lead.)
(2) L_CMOS also includes probe capacitance.
(3) By-pass capacitor (0.01 µF to 0.1 µF) is placed closely between VCC and GND.
(4) Use the current meter whose internal impedance value is small.
(5) Power supply
· Start up time (0 %VCC to 90 %VCC) of power source should be more than 150 µs.
· Impedance of power supply should be as lowest as possible.
GND
tr
50 %VCC
t
tw
80 %VCC
20 %VCC
tf
VCC
ST
OUT
GND
swich
supply
by-pass
capacitor
Test
Point
A
or
OE
or
OE
VCC
ST
OUT
GND
swich
supply
by-pass
capacitor
L_CMOS
Test Point
2 Page
5.External dimensions (Unit: mm) 6.Footprint(Recommended) (Unit: mm)
7.Reflow profile
Reflow condition (Follow of JEDEC STD-020D.01)
8.Packing information
[ 1 ]Product number last 2 digits code(xx) description The recommended code is "00"
X1G0044810056xx
Code Code
01 Any Q'ty vinyl bag(Tape cut) 13 500pcs / Reel
11 Any Q'ty / Reel 00 1000pcs / Reel
12 250pcs / Reel
Condition
Condition
Temperature[C]
60
300
250
200
150
100
50
0
ts
60sto180s
(+150Cto+200C)
Avg. Ramp-up
3
C/sMax.
Ramp-down
6C/sMax.
Time[s]
120
180
240
300
360
420
480
540
600
660
720
780
Tsmin;+150C
Tsmax;+200C
TL ;+217C
+255C
tL
60sto150s
(+217Cover)
tp;20sto40s
TP ;+260C
Time +25CtoPeak
Note.
OE pin = "H" or "open" : Specified frequency output.
OE pin = "L" : Output is high impedance.
ST pin = "H" or "open" : Specified frequency output.
ST pin = "L" : Output is high impedanceoscillation stops.
1.3±0.2
5.0±0.2
7.0±0.2
#4
#1
#3
#2
E 25.000
CAN395K
1.4
1.1
C0.5
5.08
#2
C
C (ex. 0.01 µF)
1.8
5.08
4.2
2.0
#1
#3
#4
Resist
3 Page
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