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SIT3807AC-C2-33SG-38.880000

Description
Oscillator, 1.544MHz Min, 44.736MHz Max, 38.88MHz Nom, CMOS
CategoryPassive components    oscillator   
File Size314KB,5 Pages
ManufacturerSiTime
Environmental Compliance
Download Datasheet Parametric View All

SIT3807AC-C2-33SG-38.880000 Overview

Oscillator, 1.544MHz Min, 44.736MHz Max, 38.88MHz Nom, CMOS

SIT3807AC-C2-33SG-38.880000 Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
Objectid113370139
Reach Compliance Codeunknown
JESD-609 codee4
Installation featuresSURFACE MOUNT
Number of terminals6
Maximum operating frequency44.736 MHz
Minimum operating frequency1.544 MHz
Nominal operating frequency38.88 MHz
Maximum operating temperature70 °C
Minimum operating temperature-20 °C
Package body materialPLASTIC/EPOXY
Encapsulate equivalent codeSOLCC6,.12
power supply3.3 V
Certification statusNot Qualified
Maximum slew rate33 mA
Nominal supply voltage3.3 V
surface mountYES
technologyCMOS
Terminal surfaceNickel/Palladium/Gold (Ni/Pd/Au)
SiT3807
Standard Frequency MEMS VCXO
Advanced information
Features, Benefits and Applications
27 standard frequencies from 1.544 MHz to 44.736 MHz
100% pin-to-pin compatible with and direct replacement of quartz based VCXO
Wide pull range options: ±50, ±100, ±150, ±200
Superior pull range linearity of <= 1%, 10 times better than quartz
LVCMOS/LVTTL compatible output
Typical tuning voltage: 0 V to Vdd
Three industry-standard packages: 3.2 mm x2.5 mm (4-pin), 5.0 mm x 3.2 mm (6-pin),
7.0 mm x 5.0 mm (6-pin)
Outstanding siicon reliability of 2 FIT (10x improvement over quartz-based devices)
Ultra short lead time
Ideal for telecom clock synchronization, instrumentation, low bandwidth analog PLL,
jitter cleaner, clock recovery, audio, video, FPGA, broadband and networking
Specifications
Electrical Characteristics
Parameter
Output Frequency Range
Frequency Stability
Symbol
f
F_stab
Min.
1.544
-25
-50
Operating Temperature Range
Supply Voltage
T_use
Vdd
Typ.
Max.
44.736
+25
+50
Unit
MHz
PPM
PPM
°C
°C
V
V
V
V
PPM
V
V
V
V
V
%
kHz
V
mA
mA
μA
%
ns
%Vdd
%Vdd
pF
ms
ms
ms
ps
ps
PPM
Condition
Standard frequencies only. Refer to the supported freqeuncy
list (back page)
Inclusive of initial tolerance (F_init), operating temperature, rated
power, supply voltage change, load change.
Select stability
option in part number ordering (see back page)
Extended Commercial
Industrial
Pull Range
[1,2]
Upper Control Voltage
PR
VC_U
-20
+70
-40
+85
1.71
1.8
1.89
2.25
2.5
2.75
2.52
2.8
3.08
2.97
3.3
3.63
±50, ±100, ±150, ±200
1.62
2.25
2.52
3
Positive slope
8
3.3
31
29
1.0
6
1.7
0.51
1.7
2.3
2.6
3.1
0.1
1
3.63
33
31
TBD
55
2.2
10
15
10
TBD
10
Vdd = 1.8 V, Voltage at which maximum deviation is guaranteed.
Vdd = 2.5 V, Voltage at which maximum deviation is guaranteed.
Vdd = 2.8 V, Voltage at which maximum deviation is guaranteed.
Vdd = 3.3 V, Voltage at which maximum deviation is guaranteed.
Voltage at which maximum deviation is guaranteed.
Lower Control Voltage
Linearity
Frequency Change Polarity
Control Voltage Bandwidth(-3dB)
Current Consumption
Standby Current
Duty Cycle
Rise/Fall Time
Output Voltage High
Output Voltage Low
Output Load
Start-up Time
OE Enable/Disable Time
Resume Time
RMS Period Jitter
RMS Phase Jitter (random)
Aging
VC_L
Lin
V_BW
Idd
I_std
DC
Tr, Tf
VOH
VOL
Ld
T_start
T_oe
T_resume
T_jitt
T_phj
F_aging
0
2.97
45
90
Contact SiTime for 16 kHz bandwidth
No load condition, f = 20 MHz, Vdd = 2.5 V, 2.8 V or 3.3 V
No load condition, f = 20 MHz, Vdd = 1.8 V
ST = GND, All Vdd, Output is Weakly Pulled Down
All Vdds
Vdd = 1.8, 2.5, 2.8 or 3.3 V, 10% - 90% Vdd level
IOH = TBD
IOL = TBD
±5
Measured from the time ST pin crosses 50% threshold
f = 10 MHz, all Vdds
f = 10 MHz, Pull range = 100 PPM, Integration bandwidth = 12kHz
to 20MHz, all Vdds
10 years
Notes:
1. Absolute Pull Range (APR) is defined as the guaranteed pull range over temperature and voltage.
2. APR = pull range (PR) - frequency stability (F_stab) - Aging (F_aging)
Specifications (Cont.)
SiTime Corporation
Rev. 0.56
990 Almanor Avenue
Sunnyvale, CA 94085
(408) 328-4400
www.sitime.com
Revised July 13, 2011
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