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전자부품 반도체 검색엔진( 무료 PDF 다운로드 ) - 데이터시트뱅크

MM74HCT573 데이터 시트보기 (PDF) - Fairchild Semiconductor

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MM74HCT573 Datasheet PDF : 8 Pages
1 2 3 4 5 6 7 8
Absolute Maximum Ratings(Note 1)
(Note 2)
Supply Voltage (VCC)
DC Input Voltage (VIN)
DC Output Voltage (VOUT)
Clamp Diode Current (IIK, IOK)
DC Output Current, per pin (IOUT)
DC VCC or GND Current, per pin (ICC)
Storage Temperature Range (TSTG)
Power Dissipation (PD)
(Note 3)
S. O. Package only
Lead Temperature (TL)
(Soldering 10 seconds)
0.5 to +7.0V
1.5 to VCC+ 1.5V
0.5 to VCC+ 0.5V
± 20 mA
± 35 mA
± 70 mA
65°C to +150°C
600 mW
500 mW
260°C
Recommended Operating
Conditions
Min Max Units
Supply Voltage (VCC)
DC Input or Output Voltage
4.5 5.5 V
(VIN, VOUT)
0
VCC
V
Operating Temperature Range (TA) 40 +85 °C
Input Rise or Fall Times
tr, tf
500 ns
Note 1: Absolute Maximum Ratings are those values beyond which dam-
age to the device may occur.
Note 2: Unless otherwise specified all voltages are referenced to ground.
Note 3: Power Dissipation temperature derating — plastic “N” package:
12 mW/°C from 65°C to 85°C.
DC Electrical Characteristics
VCC = 5V ± 10% (unless otherwise specified)
Symbol
Parameter
Conditions
VIH
Minimum HIGH Level
Input Voltage
VIL
Maximum LOW Level
Input Voltage
VOH
Minimum HIGH Level
VIN = VIH or VIL
Output Voltage
|IOUT| = 20 µA
|IOUT| = 6.0 mA, VCC = 4.5V
|IOUT| = 7.2 mA, VCC = 5.5V
VOL
Maximum LOW Level
VIN = VIH or VIL
Voltage
|IOUT| = 20 µA
|IOUT| = 6.0 mA, VCC = 4.5V
|IOUT| = 7.2 mA, VCC = 5.5V
IIN
Maximum Input
VIN = VCC or GND,
Current
VIH or VIL
IOZ
Maximum 3-STATE
VOUT = VCC or GND
Output Leakage
Enable = VIH or VIL
Current
ICC
Maximum Quiescent
VIN = VCC or GND
Supply Current
IOUT = 0 µA
VIN = 2.4V or 0.5V (Note 4)
Note 4: Measured per pin. All others tied to VCC or ground.
TA = 25°C
Typ
2.0
TA = −40 to 85°C TA = −55 to 125°C
Guaranteed Limits
Units
2.0
2.0
V
0.8
0.8
0.8
V
VCC VCC 0.1
4.2
3.98
5.7
4.98
VCC 0.1
3.84
4.84
0
0.1
0.1
0.2
0.26
0.33
0.2
0.26
0.33
±0.1
±1.0
VCC 0.1
V
3.7
4.7
0.1
V
0.4
0.4
±1.0
µA
±0.5
±5.0
±10
µA
8.0
80
1.5
1.8
160
µA
2.0
mA
3
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