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ASM3I623S09AG-16-TR Datasheet(PDF) 4 Page - PulseCore Semiconductor

Part # ASM3I623S09AG-16-TR
Description  Timing-Safe??Peak EMI reduction IC
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Manufacturer  PULSECORE [PulseCore Semiconductor]
Direct Link  http://www.onsemi.com/
Logo PULSECORE - PulseCore Semiconductor

ASM3I623S09AG-16-TR Datasheet(HTML) 4 Page - PulseCore Semiconductor

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May 2007
ASM3P623S05/09A/B
rev 0.3
Timing-Safe™ Peak EMI Reduction IC
4 of 15
Notice: The information in this document is subject to change without notice.
Spread Spectrum Control and Input-Output Skew Table
(Note: The values given in the table are for an input frequency of 32MHz)
Device
Deviation
Input-Output Skew(±TSKEW)
ASM3P623S05A
±0.25 %
0.125
ASM3P623S05B
±0.5 %
0.25
ASM3P623S09A
±0.25 %
0.125
ASM3P623S09B
±0.5 %
0.25
Note: TSKEW is measured in units of the Clock Period
Absolute Maximum Ratings
Symbol
Parameter
Rating
Unit
VDD
Voltage on any pin with respect to Ground
-0.5 to +4.6
V
TSTG
Storage temperature
-65 to +125
°C
Ts
Max. Soldering Temperature (10 sec)
260
°C
TJ
Junction Temperature
150
°C
TDV
Static Discharge Voltage (As per JEDEC STD22- A114-B)
2
KV
Note: These are stress ratings only and are not implied for functional use. Exposure to absolute maximum ratings for prolonged periods of time may affect
device reliability.
Operating Conditions for ASM3P623S05A/B and ASM3P623S09A/B Devices
Parameter
Description
Min
Max
Unit
VDD
Supply Voltage
3.0
3.6
V
TA
Operating Temperature (Ambient Temperature)
-40
+85
°C
CL
Load Capacitance
30
pF
CIN
Input Capacitance
7
pF
Electrical Characteristics for ASM3P623S05A/B and ASM3P623S09A/B
Parameter
Description
Test Conditions
Min
Typ
Max
Unit
VIL
Input LOW Voltage
1
0.8
V
VIH
Input HIGH Voltage
1
2.0
V
IIL
Input LOW Current
VIN = 0V
50
µA
IIH
Input HIGH Current
VIN = VDD
100
µA
VOL
Output LOW Voltage
2
IOL = 8mA
0.4
V
VOH
Output HIGH Voltage
2
IOH = -8mA
2.4
V
IDD
Supply Current
Unloaded outputs
15
mA
Zo
Output Impedance
23
Note: 1. CLKIN input has a threshold voltage of VDD/2
2. Parameter is guaranteed by design and characterization. Not 100% tested in production


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