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74AHCT1G79GV Datenblatt(PDF) 6 Page - NXP Semiconductors

Teilenummer 74AHCT1G79GV
Bauteilbeschribung  Single D-type flip-flop; positive-edge trigger
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Hersteller  NXP [NXP Semiconductors]
Direct Link  http://www.nxp.com
Logo NXP - NXP Semiconductors

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74AHC_AHCT1G79_5
© NXP B.V. 2007. All rights reserved.
Product data sheet
Rev. 05 — 2 July 2007
6 of 12
NXP Semiconductors
74AHC1G79; 74AHCT1G79
Single D-type flip-flop; positive-edge trigger
11. Dynamic characteristics
[1]
tpd is the same as tPLH and tPHL.
[2]
Typical values are measured at VCC = 3.3 V.
[3]
Typical values are measured at VCC = 5.0 V.
[4]
CPD is used to determine the dynamic power dissipation PD (µW).
PD =CPD × VCC2 × fi + ∑ (CL × VCC2 × fo) where:
fi = input frequency in MHz;
fo = output frequency in MHz;
CL = output load capacitance in pF;
VCC = supply voltage in Volts.
Table 8.
Dynamic characteristics
GND = 0 V; tr = tf = ≤ 3.0 ns. For test circuit see Figure 6. For waveforms see Figure 5.
Symbol Parameter
Conditions
25
°C
−40 °C to +85 °C −40 °C to +125 °C Unit
Min
Typ
Max
Min
Max
Min
Max
For type 74AHC1G79
tpd
propagation
delay
CP to Q
[1]
VCC = 3.0 V to 3.6 V
[2]
CL = 15 pF
-
4.9
8.4
1.0
9.8
1.0
11.5
ns
CL = 50 pF
-
6.9
12.0
1.0
14.0
1.0
15.5
ns
VCC = 4.5 V to 5.5 V
[3]
CL = 15 pF
-
3.5
5.6
1.0
7.0
1.0
8.0
ns
CL = 50 pF
-
5.1
8.0
1.0
10.0
1.0
11.0
ns
tsu
set-up time
D to CP
3.0
1.0
-
3.0
-
4.0
-
ns
th
hold time
D to CP
+2.0
−1.0
-
2.0
-
3.0
-
ns
tW
pulse width
clock HIGH or LOW
3.0
-
-
3.0
-
4.0
-
ns
fmax
maximum
frequency
90
-
-
90
-
70
-
MHz
CPD
power
dissipation
capacitance
per buffer;
CL =50pF;f=1 MHz;
VI = GND to VCC
[4]
-15-
-
-
-
-
pF
For type 74AHCT1G79
tpd
propagation
delay
CP to Q
[1]
VCC = 4.5 V to 5.5 V
[3]
CL = 15 pF
-
3.5
5.0
1.0
6.0
1.0
8.0
ns
CL = 50 pF
-
5.0
8.0
1.0
10.0
1.0
11.0
ns
tsu
set-up time
D to CP
3.0
1.0
-
3.0
-
4.0
-
ns
th
hold time
D to CP
+2.0
−1.0
-
2.0
-
3.0
-
ns
tW
pulse width
clock HIGH or LOW
3.0
-
-
3.0
-
4.0
-
ns
fmax
maximum
frequency
90
-
-
90
-
70
-
MHz
CPD
power
dissipation
capacitance
per buffer;
CL =50pF;f=1 MHz;
VI = GND to VCC
[4]
-16-
-
-
-
-
pF


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