PC82573V Intel, PC82573V Datasheet - Page 28

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PC82573V

Manufacturer Part Number
PC82573V
Description
Manufacturer
Intel
Datasheet

Specifications of PC82573V

Operating Temperature Classification
Commercial
Mounting
Surface Mount
Pin Count
196
Lead Free Status / RoHS Status
Compliant

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Table 17.
3.5
3.5.1
Table 18.
3.5.2
28
LED DC Specifications
1. Outputs are inputs/outputs in test mode.
2. This parameter is characterized but not tested.
External Interfaces
Crystal
The quartz crystal is strongly recommended as a low cost and high performance choice
with the 82573 device. Quartz crystals are the mainstay of frequency control
components and are available from numerous vendors in many package types with
various specification options.
Crystal Specifications
1. This value can change up to 10%.
External Clock Oscillator
If an external oscillator is used to provide a clock to the 82573, the connection shown
in the figure below must be used. The XTAL2 output signal of the 82573 must not be
connected. The XTAL1 input signal receives the output of the oscillator directly. AC
coupling is not recommended.
Voh
Vol
Ioz
Ios
Cin/out
Frequency
Vibration mode
Frequency Tolerance
Temperature Tolerance
Operating Temperature
Equivalent Series
Resistance (ESR)
Load Capacitance
Shunt Capacitance
Max Drive Level
Nominal Drive Level
Aging
Board Capacitance
External Capacitors
Board Resistance
Symbol
Parameter Name
Output High Voltage
Output Low Voltage
3-state Output Leakage
Current
Output Short Current
Pin Capacitance
Parameter
∆f/f
2
Symbol
o
C1, C2
1
C
∆f/f
T
at 25 °C
f/f
DL
DL
R
C
C
R
load
f
opr
-
o
o
s
s
s
o
o
at 12 mA
at 12 mA
Voh = VDD or VSS
VDD = 3.6 V, Vo = VDD,
VDD = 3.6 V, Vo = VSS
Input and bi-directional buffer
Recommended Value
±5 ppm per year
0 °C to +70 °C
Fundamental
25.000 MHz
Condition
±30 ppm
±30 ppm
500 µW
200 µW
20 pF
22 pF
0.1 Ω
40 Ω
6 pF
4 pF
Max/Min Range
±5 ppm per year
50 Ω (max)
500 µW
Min
2.4
1 mW
1 Ω
-
-
1
Max
±10
0.4
2.5
82573—Datasheet
Conditions
at 25 MHz
at 25 °C
at 25 °C
-
-
-
-
-
-
-
-
-
-
-
Unit
mV
µA
pF
V
V

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