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STCL1100YBFCWY7 Fiches technique(PDF) 11 Page - STMicroelectronics

No de pièce STCL1100YBFCWY7
Description  High frequency silicon oscillator family
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Fabricant  STMICROELECTRONICS [STMicroelectronics]
Site Internet  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

STCL1100YBFCWY7 Fiches technique(HTML) 11 Page - STMicroelectronics

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STCL1100 STCL1120 STCL1160
DC and AC parameters
Doc ID 13337 Rev 5
11/18
Table 3.
DC and AC parameters(1)
Sym
Description
Test condition
Min
Typ
Max
Unit
VCC
Operating voltage
4.5
5.0
5.5
V
ICC
Operating current
FOUT = 10 MHz, output unloaded
590
800
µA
FOUT = 10 MHz, output
unloaded, 0 to +105 °C
(STCL1100YBFCWY7)
590
900
µA
FOUT = 12 MHz, output unloaded
650
900
µA
FOUT = 16 MHz, output unloaded
800
1050
µA
ICC2
Standby current
CE = 0 V
2
3
µA
VOL
Output voltage low
IOL = 3 mA
0.4
V
VOH
Output voltage high
IOH = –3 mA
VCC –0.4 V
V
VIL
Input low voltage (CE input)
0.8
V
VIH
Input high voltage (CE input)
2
V
ILI
Input leakage current (CE input)
–1
+1
µA
Frequency accuracy
over all conditions(2), (3)
VCC = 4.5 to 5.5 V,
–20 to +85 °C (0 to +105 °C
for STCL1100YBFCWY7)
±1.5
%
Jitter
Period jitter, over 20 s
±150
psP-P
Duty cycle
Taken at half of the signal
amplitude
40
50
60
%
tSTART Startup time
(4)
From the point when VCC
reached min operating voltage or
CE went active until the
oscillations stabilize within
specifications.
10
20
µs
tR, tF Rise/fall time
CL = 12 pF; 10 to 90% of the
amplitude
5ns
CL
Load capacitance
12
pF
1.
Valid for Ambient Operating Temperature: TA = –20 to +85 °C; VCC = 4.5 to 5.5 V (except where noted).
2.
Frequency vs. temperature characteristics has its maximum at room temperature, for both higher and lower temperatures
the frequency decreases. Therefore, to reach symmetrical tolerances, the devices are factory-trimmed at room temperature
to the frequency value close to higher tolerance limit. See Typical operating characteristics.
3.
The specified values are for the recommended configuration, i.e. parts properly soldered on PCB, with 0.1 µF ceramic
capacitor soldered close to the VCC-GND pins and short leads between the output and scope probe (to minimize signal
reflections; see output waveform screenshots for various conditions). Recommended is usage of the active scope probe
that adds around 1 pF of the load capacity to the total load and having frequency counter connected to the scope output as
input capacitance of the counter is typically in tens of pF. Installing the device in a socket may have an influence on the
frequency and repeatability as well, depending on quality of its contacts.
4.
For details see startup waveform graph - Figure 8.


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