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ASM2I5T9070AG-48TT Datasheet(PDF) 4 Page - PulseCore Semiconductor

Part # ASM2I5T9070AG-48TT
Description  2.5V Single Data Rate 1:10 Clock Buffer Terabuffer
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Manufacturer  PULSECORE [PulseCore Semiconductor]
Direct Link  http://www.onsemi.com/
Logo PULSECORE - PulseCore Semiconductor

ASM2I5T9070AG-48TT Datasheet(HTML) 4 Page - PulseCore Semiconductor

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November 2006
ASM2P5T9070A
rev 0.2
2.5V Single Data Rate 1:10 Clock Buffer Terabuffer
4 of 9
Notice: The information in this document is subject to change without notice.
Power Supply Characteristics
Symbol
Parameter
Test Conditions
1
Typ
Max
Unit
IDDQ
Quiescent VDD Power Supply
Current
VDD= Max., Reference Clock = LOW
Outputs enabled, All outputs unloaded
1.5
2
mA
IDDD
Dynamic VDD Power Supply
Current per Output
VDD= Max., VDD= Max., CL= 0pF
150
200
µA/MHz
VDD= 2.5V., FREFERENCE CLOCK= 100MHz,
CL= 15pF
70
90
ITOT
Total Power VDD Supply
Current
VDD= 2.5V., FREFERENCE CLOCK= 200MHz,
CL= 15pF
100
150
mA
NOTE:
1. The termination resistors are excluded from these measurements.
Input AC Test Conditions
Symbol
Parameter
Value
Units
VIH
Input HIGH Voltage
VDD
V
VIL
Input LOW Voltage
0
V
VTH
Input Timing Measurement Reference Level
1
VDD/2
V
tR, tF
Input Signal Edge Rate
2
2
V/nS
NOTES:
1. A nominal 1.25V timing measurement reference level is specified to allow constant, repeatable results in an automatic test equipment (ATE) environment.
2. The input signal edge rate of 2V/nS or greater is to be maintained in the 10% to 90% range of the input waveform.
AC Electrical Characteristics Over Operating Range
4
Symbol
Parameter
Min
Typ
Max
Unit
Skew Parameters
tSK(O)
Same Device Output Pin-to-Pin Skew
1
25
pS
tSK(P)
Pulse Skew
2
300
pS
tSK(PP)
Part-to-Part Skew
3
300
pS
Propagation Delay
tPLH
tPHL
Propagation Delay A to Qn
2
nS
tR
Output Rise Time (20% to 80%)
350
850
pS
tF
Output Fall Time (20% to 80%)
350
850
pS
fO
Frequency Range
200
MHz
Output Gate Enable/Disable Delay
tPGE
Output Gate Enable to Qn
3.5
nS
tPGD
Output Gate Enable to Qn Driven to GL Designated Level
3
nS
NOTES:
1. Skew measured between all outputs under identical input and output transitions and load conditions on any one device.
2. Skew measured is the difference between propagation delay times tPHL and tPLH of any output under identical input and output transitions and load conditions
on any one device.
3. Skew measured is the magnitude of the difference in propagation times between any outputs of two devices, given identical transitions and load conditions at
identical VDD levels and temperature.
4. Guaranteed by design.


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