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74LV4060N Arkusz danych(PDF) 6 Page - NXP Semiconductors

Numer części 74LV4060N
Szczegółowy opis  14-stage binary ripple counter with oscillator
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Producent  PHILIPS [NXP Semiconductors]
Strona internetowa  http://www.nxp.com
Logo PHILIPS - NXP Semiconductors

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Philips Semiconductors
Product specification
74LV4060
14-stage binary ripple counter with oscillator
1998 Jun 23
6
RECOMMENDED OPERATING CONDITIONS
SYMBOL
PARAMETER
CONDITIONS
MIN
TYP.
MAX
UNIT
VCC
DC supply voltage
See Note1
1.0
3.3
5.5
V
VI
Input voltage
0
VCC
V
VO
Output voltage
0
VCC
V
Tamb
Operating ambient temperature range in free
air
See DC and AC
characteristics
–40
–40
+85
+125
°C
tr, tf
Input rise and fall times
VCC = 1.0V to 2.0V
VCC = 2.0V to 2.7V
VCC = 2.7V to 3.6V
VCC = 3.6V to 5.5V
500
200
100
50
ns/V
NOTES:
1. The LV is guaranteed to function down to VCC = 1.0V (input levels GND or VCC); DC characteristics are guaranteed from VCC = 1.2V to VCC = 5.5V.
DC CHARACTERISTICS
Over operating conditions, voltages are referenced to GND (ground = 0 V)
LIMITS
SYMBOL
PARAMETER
TEST CONDITIONS
-40
°C to +85°C
-40
°C to +125°C
UNIT
MIN
TYP1
MAX
MIN
MAX
VCC = 1.2V
0.9
0.9
VIH
HIGH level Input
voltage
VCC = 2.0V
1.4
1.4
V
VIH
voltage
MR input
VCC = 2.7 to 3.6V
2.0
2.0
V
VCC = 4.5 to 5.5V
0.7 * VCC
0.7 * VCC
VCC = 1.2V
0.3
0.3
VIL
LOW level Input
voltage
VCC = 2.0V
0.6
0.6
V
VIL
voltage
MR input
VCC = 2.7 to 3.6V
0.8
0.8
V
VCC = 4.5 to 5.5
0.3 * VCC
0.3 * VCC
VCC = 1.2V
1.0
1.0
VIH
HIGH level Input
voltage
VCC = 2.0V
1.6
1.6
V
VIH
voltage
RS input
VCC = 2.7 to 3.6V
2.4
2.4
V
VCC = 4.5 to 5.5V
0.8 * VCC
0.8 * VCC
VCC = 1.2V
0.2
0.2
VIL
LOW level Input
voltage
VCC = 2.0V
0.4
0.4
V
VIL
voltage
RS input
VCC = 2.7 to 3.6V
0.5
0.5
V
VCC = 4.5 to 5.5
0.2 * VCC
0.2 * VCC
VCC = 1.2V; RS = GND and MR = GND;
–IO = 3.4mA
HIGH level output
VCC = 2.0V; RS = GND and MR = GND;
–IO = 3.4mA
VOH
HIGH level output
voltage;
RTC output
VCC = 2.7V; RS = GND and MR = GND;
–IO = 3.4mA
V
RTC out ut
VCC = 3.0V; RS = GND and MR = GND;
–IO = 3.4mA
2.40
2.82
2.20
VCC = 4.5V; RS = GND and MR = GND;
–IO = 3.4mA


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