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MK74CB214 Datasheet(PDF) 3 Page - Integrated Circuit Systems

Part No. MK74CB214
Description  Dual 1 to 7 Buffalo™ Clock Driver
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Maker  ICST [Integrated Circuit Systems]
Homepage  http://www.icst.com
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MK74CB214 Datasheet(HTML) 3 Page - Integrated Circuit Systems

   
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MK74CB214
Dual 1 to 7 Buffalo™ Clock Driver
MDS 74CB214 B
3
Revision 051396
Printed 11/16/00
MicroClock Incorporated•1171 North Fourth St.•San Jose•CA•95112•(408)295-9800tel•(408)295-9818fax
Parameter
Conditions
Minimum
Typical
Maximum
Units
ABSOLUTE MAXIMUM RATINGS (Note 1)
ABSOLUTE MAXIMUM RATINGS (Note 1)
Supply Voltage, VDD
Referenced to GND
7
V
Inputs
Referenced to GND
0.5
VDD+0.5
V
Clock Outputs
Referenced to GND
0.5
VDD+0.5
V
Ambient Operating Temperature
0
70
°C
Soldering Temperature
Max of 10 seconds
260
°C
Storage Temperature
-65
150
°C
DC CHARACTERISTICS (VDD = 5V unless noted)
DC CHARACTERISTICS (VDD = 5V unless noted)
Operating Voltage, VDD
3.0
5.5
V
Input High Voltage, VIH (INA, INB pins)
VDD-1
VDD/2
V
Input Low Voltage, VIL (INA, INB pins)
VDD/2
1
V
Output High Voltage, 3.3V and 5V
IOH=-8mA
VDD-0.4
V
Output High Voltage, 3.3V and 5V
IOH=-12mA
2.4
V
Output Low Voltage, 3.3V and 5V
IOL=12mA
0.8
V
Operating Supply Current, IDD, at 66.6MHz
No Load
20
mA
Short Circuit Current
Each output
±70
mA
Short Circuit Current at 3.3V
Each output
±35
mA
Input Capacitance
7
pF
AC CHARACTERISTICS (VDD = 5V unless noted)
AC CHARACTERISTICS (VDD = 5V unless noted)
Input Clock Frequency
67
MHz
Propagation Delay with load=10pF
2
3.5
5
ns
Propagation Delay with load=10pF
At VDD=3.3V
2.5
4.5
6.5
ns
Output Clock Rise Time, 3.3V and 5V
0.8 to 2.0V
1.5
ns
Output Clock Fall Time, 3.3V and 5V
2.0 to 0.8V
1.5
ns
Output Clock Rising Edge Skew, 3.3V and 5V
At VDD/2. Note 2
50
250
ps
Output Clock A to B Skew, 3.3V and 5V
At VDD/2. Note 3
100
500
ps
Maximum load per output pin
At 66.66 MHz
25
pF
Maximum load per side of 7 outputs
Note 4
105
pF
Electrical Specifications
Notes:
1. Stresses beyond those listed under Absolute Maximum Ratings could cause permanent damage to the device. Prolonged exposure
to levels above the operating limits but below the Absolute Maximums may affect device reliability.
2. Between any two A outputs, or any two B outputs, with equal loading.
3. Between any clock A output and any clock B output with INA connected to INB. With VDDA=VDDB and equal loading.
Combined with the 250ps uncertainty of MicroClock’s Clock Synthesizers, this adds to a 750ps total.
4. This is the load sum of all A outputs, or all B outputs, at 66.66MHz. The formula for per side load is CL (F) =
7 x 10-3
f (in Hz)


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