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SG-310SDNFREQ3M3

Description
CRYSTAL OSCILLATOR, CLOCK, 16MHz - 62.5MHz, LVCMOS OUTPUT, ROHS COMPLIANT, SMD, 4 PIN
CategoryPassive components    oscillator   
File Size371KB,2 Pages
ManufacturerSeiko Epson Corporation
Environmental Compliance  
Download Datasheet Parametric View All

SG-310SDNFREQ3M3 Overview

CRYSTAL OSCILLATOR, CLOCK, 16MHz - 62.5MHz, LVCMOS OUTPUT, ROHS COMPLIANT, SMD, 4 PIN

SG-310SDNFREQ3M3 Parametric

Parameter NameAttribute value
Is it lead-free?Lead free
Is it Rohs certified?conform to
MakerSeiko Epson Corporation
Reach Compliance Codeunknown
Other featuresTAPE AND REEL
maximum descent time4 ns
Frequency Adjustment - MechanicalNO
frequency stability100%
JESD-609 codee4
Manufacturer's serial numberSG-310
Installation featuresSURFACE MOUNT
Maximum operating frequency62.5 MHz
Minimum operating frequency16 MHz
Maximum operating temperature85 °C
Minimum operating temperature-40 °C
Oscillator typeLVCMOS
Output load15 pF
physical size3.2mm x 2.5mm x 1.05mm
longest rise time4 ns
Maximum supply voltage2.7 V
Minimum supply voltage2.2 V
Nominal supply voltage2.5 V
surface mountYES
maximum symmetry55/45 %
Terminal surfaceGold (Au)
Crystal oscillator
Epson Toyocom
Product Number (please contact us)
CRYSTAL OSCILLATOR
SPXO
Q33310xx0xxxx00
SG - 310
series
•Frequency
range
:
•Supply
voltage
:
•Current
consumption
:
•Function
•Thickness
:
:
2 MHz to 80 MHz
1.8 V Typ. / 2.5 V Typ. / 3.3 V Typ.
1.5 mA Typ.
(SEF1.8 V No load condition 48 MHz)
Standby(
ST
)
1.05 mm Typ.
Actual size
Specifications (characteristics)
Item
Output frequency range
Supply voltage
Temperature
range
Storage
temperature
Operating
temperature
Symbol
Specifications
SG-310 SEF
SG-310 SDF
SG-310 SCF
SG-310 SDN
SG-310 SCN
Remarks
f
0
V
CC
T_stg
T_use
2.000 MHz to 48.000 MHz
1.8 V Typ.
2.5 V Typ.
3.3 V Typ.
1.6 V to 2.2 V
2.2 V to 3.0 V
3.000 MHz to 80.000 MHz
2.5 V Typ.
3.3 V Typ.
Store as bare product after unpacking
2.7 V to 3.6 V 2.2 V to 2.7 V 2.7 V to 3.6 V
-40
°C
to +125 °C
-40
°C
to +85 °C
B:
±50 ×
10 , C:
±100 ×
10
-6
M:
±100 ×
10
-6
-6
Frequency tolerance
f_tol
Current consumption
I
CC
1.5 mA Max.
1.5 mA Max.
1.5 mA Max.
2.0 mA Max.
2.0 mA Max.
3.0 mA Max.
0.7
µA
Max.
45 % to 55 %
(0.2
µA
Typ.)
Stand-by current
Symmetry
High output voltage
Low output voltage
Output load condition (CMOS)
Output enable /
disable input voltage
Rise time / Fall time
Start-up time
Frequency aging
I_std
SYM
V
OH
V
OL
L_CMOS
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
µA
Max.
(0.5
µA
Typ.)
1.5 mA Max.
2.0 mA Max.
2.5 mA Max.
2.5 mA Max.
3.5 mA Max.
4.5 mA Max.
2.0
µA
Max.
(1.0
µA
Typ.)
-20
°C
to +70
°C
-40
°C
to +85
°C
-20
°C
to +70
°C
V
CC
±10
%
-30
°C
to +85
°C
(3 MHz<f0≤62.5 MHz)
-30
°C
to +85
°C
V
CC
±5
%
-40
°C
to +85
°C
(3 MHz<f
0
≤62.5
MHz)
No load condition, 2 MHz≤f
0
4 MHz
No load condition, 4 MHz<f
0
8 MHz
No load condition, 8 MHz<f
0
≤16
MHz
4.0 mA Max. 5.0 mA Max.
No load condition, 16 MHz<f
0
≤25
MHz
No load condition, 25 MHz<f
0
≤33
MHz
No load condition, 33 MHz<f
0
≤48
MHz
6.0 mA Max. 7.0 mA Max.
No load condition, 48 MHz<f
0
≤80
MHz
B:
±50 ×
10
-6
, C:
±100 ×
10
-6
M:
±100 ×
10
-6
D:±20 × 10
-6
,S:±25 × 10
-6
R:±25 × 10
-6
P:±20 × 10
-6
J:±25 × 10
-6
10 µA Max.
45 % to 55 %
ST =GND
2 MHz≤f
0
≤16
MHz
16 MHz<f
0
≤40
MHz
40 MHz<f
0
≤80
MHz
50 % V
CC
level
L_CMOS
15 pF
45 % to 55 %
40 % to 60 %
40 % to 60 %
45 % to 55 %
t
_
str
f_aging
V
IH
V
IL
t
r
/
t
f
90 % V
CC
Min.
10 % V
CC
Max.
15 pF Max.
80 % V
CC
Min.
20 % V
CC
Max.
4 ns Max.
10 ms Max.
±5 ×
10
-6
/ year Max.
(Unit:mm)
I
OH
=-3 mA
I
OL
= 3 mA
70 % V
CC
Min.
30 % V
CC
Max.
2 ms Max.
±3 ×
10
-6
/ year Max.
±10 ×
10
-6
Max.
ST
terminal
20 % V
CC
to 80 % V
CC
level, L_CMOS=15 pF
t=0 at 90 % V
CC
+25 °C, First year,V
CC
=1.8 V, 2.5 V, 3.3 V
+25 °C, 10 years
External dimensions
3.2
±
0.2
#4
#3
#3
Footprint (Recommended)
C (ex.0.01 µF)
1.4
(Unit:mm)
2.2
2.5
±
0.2
#4
0.7 0.9
E25.00B
EF241A
#1
#2
#4
#3
1.2
#2
0.9
Connection
ST
#1
1.05
±0.15
Pin map
Pin
1
2
3
4
GND
OUT
V
CC
1.9
#1
2.4
#2
Resist
Note.
ST
pin = HIGH or "open" : Specified frequency output.
ST
pin = LOW : Output is high impedance, oscillation stops.
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