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74HC147 Datasheet(PDF) 17 Page - NXP Semiconductors

Part # 74HC147
Description  10-to-4 line priority encoder
PDF  23 Pages
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Manufacturer  PHILIPS [NXP Semiconductors]
Direct Link  http://www.nxp.com
Logo PHILIPS - NXP Semiconductors

74HC147 Datasheet(HTML) 17 Page - NXP Semiconductors

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2003 Oct 30
17
Philips Semiconductors
Product specification
Hex inverting Schmitt trigger
74HC14; 74HCT14
APPLICATION INFORMATION
The slow input rise and fall times cause additional power
dissipation. This can be calculated using the following
formula:
Pad =fi × (tr × ICC(AV) +tf × ICC(AV)) × VCC.
Where:
Pad = additional power dissipation (µW);
fi = input frequency (MHz);
tr = input rise time (µs); 10% to 90%;
tf = input fall time (µs); 10% to 90%;
ICC(AV) = average additional supply current (µA).
ICC(AV) differs with positive or negative input transitions, as
shown in Figs 16 and 17.
For 74HC/HCT14 used in a relaxation oscillator circuit,
see Fig.18.
Note to application information
All values given are typical unless otherwise specified.
handbook, halfpage
02
46
400
300
100
0
200
MNA852
ICC(AV)
(
µA)
VCC (V)
positive - going
edge
negative - going
edge
negative - going
Fig.16 Average ICC for 74HC14 Schmitt trigger
devices.
Linear change of VI between 0.1VCC to 0.9VCC
handbook, halfpage
02
46
400
300
100
0
200
MNA853
VCC (V)
positive - going
egde
positive - going
edge
negative - going
egde
negative - going
edge
ICC(AV)
(
µA)
Fig.17 Average ICC for HCT Schmitt trigger
devices.
Linear change of VI between 0.1VCC to 0.9VCC.
handbook, halfpage
MNA854
R
C
Fig.18 Relaxation oscillator using 74HC/HCT14.
74HC14 : f
1
T
---
1
0.8 RC
-------------------
≈
=
74HCT14 : f
1
T
---
1
0.67 RC
----------------------
≈
=



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