DATA SHEET
Product specification
File under Integrated Circuits, IC04
January 1995
INTEGRATED CIRCUITS
HEF4060B
MSI
14-stage ripple-carry binary
counter/divider and oscillator
For a complete data sheet, please also download:
The IC04 LOCMOS HE4000B Logic
Family Specifications HEF, HEC
The IC04 LOCMOS HE4000B Logic
Package Outlines/Information HEF, HEC
January 1995
2
Philips Semiconductors
Product specification
14-stage ripple-carry binary
counter/divider and oscillator
HEF4060B
MSI
DESCRIPTION
The HEF4060B is a 14-stage ripple-carry binary
counter/divider and oscillator with three oscillator terminals
(RS, R
TC
and C
TC
), ten buffered outputs (O
3
to O
9
and
O
11
to O
13
) and an overriding asynchronous master reset
input (MR). The oscillator configuration allows design of
either RC or crystal oscillator circuits. The oscillator may
be replaced by an external clock signal at input RS. The
counter advances on the negative-going transition of RS.
A HIGH level on MR resets the counter (O
3
to O
9
and
O
11
to O
13
= LOW), independent of other input conditions.
Schmitt-trigger action in the clock input makes the circuit
highly tolerant to slower clock rise and fall times.
Fig.1 Functional diagram.
Fig.2 Pinning diagram.
PINNING
FAMILY DATA, I
DD
LIMITS category MSI
See Family Specifications
MR
master reset
RS
clock input/oscillator pin
R
TC
oscillator pin
C
TC
external capacitor connection
O
3
to O
9
counter outputs
O
11
to O
13
HEF4060BP(N):
16-lead DIL; plastic (SOT38-1)
HEF4060BD(F):
16-lead DIL; ceramic (cerdip) (SOT74)
HEF4060BT(D):
16-lead SO; plastic (SOT109-1)
( ): Package Designator North America
January 1995
3
Philips Semiconductors
Product specification
14-stage ripple-carry binary counter/divider
and oscillator
HEF4060B
MSI
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Fig.3 Logic diagram.
January 1995
5
Philips Semiconductors
Product specification
14-stage ripple-carry binary counter/divider
and oscillator
HEF4060B
MSI
AC CHARACTERISTICS
V
SS
= 0 V; T
amb
= 25
C; input transition times
20 ns
Notes
1. where:
f
i
= input frequency (MHz)
f
o
= output frequency (MHz)
C
L
= load capacitance (pF)
V
DD
= supply voltage (V)
C
t
= timing capacitance (pF)
f
osc
= oscillator frequency (MHz)
RC oscillator
V
DD
V
TYPICAL FORMULA FOR P (
W)
(1)
Dynamic power dissipation
5
700 f
i
+
f
o
C
L
V
DD
2
per package
10
3 300 f
i
+
f
o
C
L
V
DD
2
(P)
15
8 900 f
i
+
f
o
C
L
V
DD
2
Total power dissipation
5
700 f
osc
+
f
o
C
L
V
DD
2
+
2C
t
V
DD
2
f
osc
+
690
V
DD
when using the
10
3 300 f
osc
+
f
o
C
L
V
DD
2
+
2C
t
V
DD
2
f
osc
+
6 900
V
DD
on-chip oscillator (P)
15
8 900 f
osc
+
f
o
C
L
V
DD
2
+
2C
t
V
DD
2
f
osc
+
22 000
V
DD
Fig.4 External component connection for RC oscillator.
Typical formula for oscillator frequency:
f
osc
1
2,3
R
t
C
t
---------------------------------
=