Crystal oscillator
CRYSTAL OSCILLATOR (SPXO)
Product Number
SG2016CAN:
SG-210STF:
SG3225CAN:
SG5032CAN:
SG7050CAN:
OUTPUT : CMOS
SG2016 / 3225 / 5032 / 7050CAN
SG-210STF
• Frequency range
• Supply voltage
• Function
• Operating temperature
1.2 MHz to 75 MHz (SG2016CAN)
1 MHz to 75 MHz (other than the above)
: 1.8 V to 3.3 V Typ.
: Standby( ST )
: -40 °C to +105 °C
X1G004801xxxx00
X1G004171xxxx00
X1G005961xxxx15
X1G004451xxxx00
X1G004481xxxx00
:
SG-210STF
(2.5 x 2.0 mm)
SG3225CAN
(3.2 x 2.5 mm)
SG5032CAN
(5.0 x 3.2 mm)
SG7050CAN
(7.0 x 5.0 mm)
Specifications (characteristics)
Item
Output frequency range
Supply voltage
Symbol
fo
T_stg
Operating temperature
T_use
Conditions / Remarks
SG2016CAN
1 MHz to 75 MHz
VCC
Storage temperature
Frequency tolerance
Specifications
1.2 MHz to 75 MHz
1.60 V to 3.63 V
1 MHz ≤ fo ≤ 60 MHz, T_use = +105 °C Max.
1.71 V to 3.63 V
60 MHz < fo ≤ 75 MHz, T_use = +85 °C Max.
2.25 V to 3.63 V
60 MHz < fo ≤ 75 MHz, T_use = +105 °C Max.
-55 °C to +125 °C
All others
-20 °C to +70 °C, -40 °C to +85 °C, -40 °C to +105 °C
See of figure *1
±25 × 10-6, ±50 × 10-6
-20 °C to +70 °C
±50 × 10-6
-40 °C to +85 °C
f_tol
ICC
Stand-by current
I_std
Symmetry
SYM
Output voltage
Output load condition
(CMOS)
Input voltage
-40 °C to +105 °C
VCC = 1.8 V ± 10 %
VCC = 2.5 V ± 10 %
1.5 mA Max.
1.6 mA Max.
1.8 mA Max.
No load condition, 1 MHz ≤ fo ≤ 20 MHz
1.8 mA Max.
2.0 mA Max.
2.2 mA Max.
No load condition, 20 MHz < fo ≤ 40 MHz
2.1 mA Max.
2.4 mA Max.
2.6 mA Max.
No load condition, 40 MHz < fo ≤ 60 MHz
2.4 mA Max.
2.8 mA Max.
3.0 mA Max.
No load condition, 60 MHz < fo ≤ 75 MHz
2.1 µA Max.
2.5 µA Max.
2.7 µA Max.
VCC = 3.3 V ± 10 %
45 % to 55 %
VOH
90 % VCC Min.
VOL
10 % VCC Max.
VOH-2
VCC - 0.4 V Min.
VOL-2
0.4 V Max.
L_CMOS
15 pF Max.
VIH
80 % VCC Min.
VIL
Start-up time
t_str
20 % VCC Max.
3 ns Max.
3.5 ns Max. (@1.8 V±10 %)
3 ms Max.
Frequency aging
f_age
±3 × 10-6 / year Max.
Rise time and Fall time
tr / tf
ST =GND
50 % VCC level, L_CMOS ≤ 15 pF
IOH
IOL
IOH
IOL
1.8 V ± 10 %
-1.5 mA
1.5 mA
1.8 V±10 %
-3 mA
3 mA
2.5 V ± 10 %
-3 mA
3 mA
2.5 V±10 %
-4 mA
4 mA
3.3 V ± 10 %
-4 mA
4 mA
3.3 V±10 %
-6 mA
6 mA
ST terminal
20 % VCC to 80 % VCC level, L_CMOS = 15 pF
T = 0 at 90 % VCC
+25 °C, First year
[Model : SG2016 / 3225 / 5032 / 7050CAN]
Product name
SG2016 C AN 25.000000MHz T J G A (⑤⑥:Available code DB, JB, JG, JH, LG, LH)
(Standard form)
①
②
③
④⑤⑥⑦
①Model ②Output(C:CMOS) ③Frequency ④Supply voltage
⑤Frequency tolerance ⑥Operating temperature range ⑦Internal identification code("A" is default)
④Supply voltage
See *1
⑤Frequency tolerance
⑥Operating temperature range
T
1.60 to 3.63 V
D
±25 × 10-6
B
-20 °C to +70 °C
K
2.25 to 3.63 V
J
±50 × 10-6
G
-40 °C to +85 °C
L
±100 × 10-6
H
-40 °C to +105 °C
[Model : SG-210STF]
Product name
SG-210 S T F 25.000000MHz L
(Standard form)
① ②③
④
⑤
①Model ②Function(S:Standby) ③Supply voltage
④Frequency ⑤Frequency tolerance
③Supply voltage
See *1
⑤Frequency tolerance
±25 × 10-6 / -20 °C to +70 °C
T
1.60 to 3.63 V
S
±50 × 10-6 / -40 °C to +85 °C
L
Y
±50 × 10-6 / -40 °C to +105 °C
W
±100 × 10-6 / -40 °C to +105 °C
Refer to
figure *1
SG2016CAN
-40 °C to +125 °C
±50 × 10-6, ±100 × 10-6
Current consumption
Please contact us about available
frequencies.
All others
Vcc[V]
3.63
3.63
105℃
2.25
2.25
85℃
1.71
1.71
1.60
1.60
1.2
1
60
75
75
f0[MHz]
*1:The upper limit of Operating
temperature and the related
conditions
Please note that Supply voltage range (VCC)
depends on Output frequency(fo) and upper
limit of Operationg temperature(T_use Max.).
Crystal oscillator
External dimensions
SG2016CAN
(Unit:mm)
Footprint (Recommended)
SG2016CAN
SG-210STF
SG-210STF
SG3225CAN
SG3225CAN
SG5032CAN
SG5032CAN
SG7050CAN
SG7050CAN
(Unit:mm)
Pin Map
Pin
Connection
Function
ST
¯¯ terminal
1
ST
¯¯
2
3
4
GND
OUT
VCC
ST
¯¯ function
HIGH or "open"
LOW
Oscillator circuit
Oscillation
Oscillation stop
Output
Specified frequency: Enable
High impedance: Disable
Ground
Clock output
Power supply
■Notes: 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).
PROMOTION OF ENVIRONMENTAL MANAGEMENT SYSTEM
CONFORMING TO INTERNATIONAL STANDARDS
At Seiko Epson, all environmental initiatives operate under the
Plan-Do-Check-Action (PDCA) cycle designed to achieve continuous
improvements. The environmental management system (EMS)
operates under the ISO 14001 environmental management standard.
All of our major manufacturing and non-manufacturing sites, in
Japan and overseas, completed the acquisition of ISO 14001
certification.
ISO 14000 is an international standard for environmental
management that was established by the International
Standards Organization in 1996 against the background of
growing concern regarding global warming, destruction of
the ozone layer, and global deforestation.
WORKING FOR HIGH QUALITY
In order provide high quality and reliable products and services
than meet customer needs,
Seiko Epson made early efforts towards obtaining ISO9000 series
certification and has acquired ISO9001 for all business
establishments in Japan and abroad. We have also acquired ISO/TS
16949 certification that is requested strongly by major automotive
manufacturers as standard.
ISO/TS16949 is the international standard that added the
sector-specific supplemental requirements for automotive
industry based on ISO9001.
►Explanation of the mark that are using it for the catalog
►Pb free.
►Complies with EU RoHS directive.
*About the products without the Pb-free mark.
Contains Pb in products exempted by EU RoHS directive.
(Contains Pb in sealing glass, high melting temperature type solder or other.)
►Designed for automotive applications such as Car Multimedia, Body Electronics, Remote Keyless Entry etc.
►Designed for automotive applications related to driving safety (Engine Control Unit, Air Bag, ESC etc ).
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 data, circuitry, software, usage, etc. written in this material is intended for reference only. Seiko Epson
does not assume any liability for the occurrence of customer damage or 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.
Seiko Epson Corporation
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