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CS2300-CP-CZZR Scheda tecnica(PDF) 6 Page - Cirrus Logic

Il numero della parte CS2300-CP-CZZR
Spiegazioni elettronici  Fractional-N Clock Multiplier with Internal LCO
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Produttore elettronici  CIRRUS [Cirrus Logic]
Homepage  http://www.cirrus.com
Logo CIRRUS - Cirrus Logic

CS2300-CP-CZZR Scheda tecnica(HTML) 6 Page - Cirrus Logic

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CS2300-CP
6
DS843PP1
3. CHARACTERISTICS AND SPECIFICATIONS
RECOMMENDED OPERATING CONDITIONS
GND = 0 V; all voltages with respect to ground. (Note 1)
Notes: 1.
Device functional operation is guaranteed within these limits. Functionality is not guaranteed or implied
outside of these limits. Operation outside of these limits may adversely affect device reliability.
ABSOLUTE MAXIMUM RATINGS
GND = 0 V; all voltages with respect to ground.
WARNING: Operation at or beyond these limits may result in permanent damage to the device.
Notes: 1. The maximum over/under voltage is limited by the input current except on the power supply pin.
DC ELECTRICAL CHARACTERISTICS
Test Conditions (unless otherwise specified): VD = 3.1 V to 3.5 V; TA = -10°C to +70°C (Commercial Grade).
Notes: 2.
To calculate the additional current consumption due to loading (per output pin), multiply clock output
frequency by load capacitance and power supply voltage.
For example, fCLK_OUT (49.152 MHz) * CL(15 pF) * VD (3.3 V) = 2.4 mA of additional current due to
these loading conditions on CLK_OUT.
Parameters
Symbol
Min
Typ
Max
Units
DC Power Supply
VD
3.1
3.3
3.5
V
Ambient Operating Temperature (Power Applied)
Commercial Grade
TAC
-10
-
+70
°C
Parameters
Symbol
Min
Max
Units
DC Power Supply
VD
-0.3
6.0
V
Input Current
IIN
-±10
mA
Digital Input Voltage (Note 1)VIN
-0.3
VD + 0.4
V
Ambient Operating Temperature (Power Applied)
TA
-55
125
°C
Storage Temperature
Tstg
-65
150
°C
Parameters
Symbol
Min
Typ
Max
Units
Power Supply Current - Unloaded
(Note 2)ID
-18
23
mA
Power Dissipation - Unloaded
(Note 2)PD
-59
76
mW
Input Leakage Current
IIN
--
±10
µA
Input Capacitance
IC
-8-
pF
High-Level Input Voltage
VIH
70%
-
-
VD
Low-Level Input Voltage
VIL
--
30%
VD
High-Level Output Voltage (IOH = -1.2 mA)
VOH
80%
-
-
VD
Low-Level Output Voltage (IOH = 1.2 mA)
VOL
--
20%
VD


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