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O26.123456-JSO75C1LC-G-1.8-T1-T-4

Description
HCMOS Output Clock Oscillator, 26.123456MHz Nom,
CategoryPassive components    oscillator   
File Size3MB,4 Pages
ManufacturerJauch
Websitehttp://www.jauchusa.com/
Environmental Compliance
Download Datasheet Parametric View All

O26.123456-JSO75C1LC-G-1.8-T1-T-4 Overview

HCMOS Output Clock Oscillator, 26.123456MHz Nom,

O26.123456-JSO75C1LC-G-1.8-T1-T-4 Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
Objectid7311543220
Reach Compliance Codecompliant
YTEOL6.29
Other featuresTRI-STATE; STANDBY; ENABLE/DISABLE FUNCTION; ALSO COMPATIBLE WITH LVCMOS OUTPUT; TAPE; TR, 7/13 INCH
maximum descent time17 ns
Frequency Adjustment - MechanicalNO
frequency stability30%
JESD-609 codee4
Installation featuresSURFACE MOUNT
Nominal operating frequency26.123456 MHz
Maximum operating temperature85 °C
Minimum operating temperature-40 °C
Oscillator typeHCMOS
Output load30 pF
physical size7.0mm x 5.0mm x 0.9mm
longest rise time17 ns
Maximum supply voltage1.98 V
Minimum supply voltage1.62 V
Nominal supply voltage1.8 V
surface mountYES
maximum symmetry55/45 %
Terminal surfaceNickel/Palladium/Gold (Ni/Pd/Au)
MEMS Oscillator
JSO LC series · 1.8 V
actual size
2011/65/EC
RoHS
RoHS compliant
Pb free
2016
2520
3225
5032
7050
- low power oscillator with HCMOS/LVCMOS output
- compatible to industry standard packages 2016 – 7050
- extended shock & vibration resistance & temperature range
- configured to customer's specification
- very fast delivery service
REACH
compliant
Conflict
mineral free
GENERAL DATA
TYPE
frequency range
JSOxxCxLC 1.8 V
1.0 ~ 110.0 MHz
115.0 ~ 137.0 MHz
frequency stability over all
current consumption
supply voltage V
DC
temperature
operating
±20 ppm ~ ±50 ppm (see table 1)
see table 2
1.8 V ± 10%
T0 = -20°C ~ +70°C
T1 = -40°C ~ +85°C
T2 = -40°C ~ +105°C
T3 = -40°C ~ +125°C
T8 = -55°C ~ +125°C
storage
output
logic
rise & fall time
load max.
-55°C ~ +150°C
HCMOS/LVCMOS
4.2 ns max. at 15 pF / 6.8 ns max. at 30 pF
(see table 4)
30 pF max. recommended (≤74.0 MHz)
15 pF max. recommended (>74.0 MHz)
other load capacitances possible,
see supplementary
document
current max.
low level max.
high level min.
standby function (e/d)
output enable time max.
output disable time max.
start-up time max.
standby current max.
phase jitter 12 kHz ~ 20 MHz
symmetry at 0.5 x VDC
2 mA
0.1 x V
DC
0.9 x V
DC
stop (S), tristate-only (T) or none (N),
see table 3
5 ms (S) / 150 ns (T)
150 ns
5 ms
2 µA (for stop (S), see table 3)
< 3.0 ps RMS
45% ~ 55% (standard)
TABLE 1: FREQUENCY STABILITY CODE
stability code /
temp. code*
-20°C ~  +70°C
-40°C ~  +85°C
-40°C ~ +105°C
-40°C ~ +125°C
-55°C ~ +125°C
T0
T1
T2
T3
T8
B
±50 ppm
G
±30 ppm
C
±25 ppm
D
±20 ppm
available
* includes stability at 25°C, operating temp. range, supply voltage change,
shock and vibration, aging 1st year.
TABLE 2: CURRENT CONSUMPTION TYP. (FOR MAX. ADD 30%)
current at load
output disabled
  1.0 ~  19.9 MHz
 20.0 ~  29.9 MHz
 30.0 ~  49.9 MHz
 50.0 ~  79.9 MHz
 80.0 ~ 110.0 MHz
115.0 ~ 137.0 MHz
5 pF
3.5
3.6
4.2
4.5
4.9
5.7
(8.0)
15 pF
3.5
3.9
4.5
5.1
6.3
7.6
(13.0)
30 pF
3.5
4.4
5.4
6.5
60 pF
3.5
5.5
6.5
unit
mA
mA
mA
mA
mA
mA
mA
note: current at default edge control setting “D”, also refer to table 4.
TABLE 3: CONFIGURABLE STANDBY FUNCTION OPTIONS (E/D)
pin #1 (e/d control)
low “0” (V
IL
≤ 0.2 V
DC
)
option
S = Stop
functionality
output weakly pulled down,
oscillator in sleep mode
output high impedance,
oscillator operates
oscillator output active
oscillator output active
oscillator output active
T = TriState
N = None
high “1” (V
IH
≥ 0.8 V
DC
)
open*
all
all
* a pull up resistor is recommended in EMI stressed circuit environments.
note: some frequencies can‘t be configured, see table 5.
PACKAGING NOTE / MARKING
QTY < 250 pcs. → cut tape
QTY 250/500/1K/3K pcs. → tape and reel
Marking: lot code only
PIN CONNECTION
#4
#3
#1
#2
# 4: V
DC
# 1: e/d
# 3: output
# 2: GND
Jauch MEMS – Uses SiTime’s MEMS First™ technology
Jauch Quartz GmbH • e-mail: info@jauch.com • full data can be found under: www.jauch.com
All specifications are subject to change without notice
03052019

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