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HCF4047BM1STN/a808avaiLOW-POWER MONOSTABLE/ASTABLE MULTIVIBRATOR
HCF4047M013TRSTN/a85550avaiLOW-POWER MONOSTABLE/ASTABLE MULTIVIBRATOR
HCF4047M013TRST ?N/a48049avaiLOW-POWER MONOSTABLE/ASTABLE MULTIVIBRATOR


HCF4047M013TR ,LOW-POWER MONOSTABLE/ASTABLE MULTIVIBRATORHCF4047BLOW POWER MONOSTABLE/ASTABLE MULTIVIBRATOR ■ LOW POWER CONSUMPTION : SPECIAL CMOS OSCILLAT ..
HCF4047M013TR ,LOW-POWER MONOSTABLE/ASTABLE MULTIVIBRATORBLOCK DIAGRAM 2/12HCF4047BFUNCTIONAL TERMINAL CONNECTIONS TERMINAL CONNECTIONSOUTPUT OUTPUT PER ..
HCF4049UB ,HEX BUFFER/CONVERTERSELECTRICAL CHARACTERISTICS (over recommended operating conditions)Test Conditions ValueSymbol Param ..
HCF4049UBEY ,HEX BUFFER/CONVERTERSHCF4049UBHEX BUFFER/CONVERTER (INVERTING) ■ PROPAGATION DELAY TIME : t = 40ns (TYP.) at V = 10V C ..
HCF4049UBM1 ,HEX BUFFER/CONVERTERSAbsolute Maximum Ratings are those values beyond which damage to the device may occur. Functional o ..
HCF4049UBM1 ,HEX BUFFER/CONVERTERSABSOLUTE MAXIMUM RATINGS Symbol Parameter Value UnitV Supply Voltage-0.5 to +22 VDDV DC Input ..
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HCF4047BM1-HCF4047M013TR
LOW-POWER MONOSTABLE/ASTABLE MULTIVIBRATOR
1/12September 2001 LOW POWER CONSUMPTION : SPECIAL
CMOS OSCILLATOR CONFIGURATION
� MONOSTABLE (one - shot) OR ASTABLE
(free-running) OPERATION TRUE AND COMPLEMENTED BUFFERED
OUTPUTS ONLY ONE EXTERNAL R AND C REQUIRED BUFFERED INPUTS QUIESCENT CURRENT SPECIFIED UP TO
20V STANDARDIZED, SYMMETRICAL OUTPUT
CHARACTERISTICS 5V, 10V AND 15V PARAMETRIC RATINGS INPUT LEAKAGE CURRENT I = 100nA (MAX) AT VDD = 18V TA = 25°C 100% TESTED FOR QUIESCENT CURRENT MEETS ALL REQUIREMENTS OF JEDEC
JESD13B " STANDARD SPECIFICATIONS
FOR DESCRIPTION OF B SERIES CMOS
DEVICES"
DESCRIPTION

The HCF4047B is a monolithic integrated circuit
fabricated in Metal Oxide Semiconductor
technology available in DIP and SOP packages.
The HCF4047B consist of a gatable astable
multivibrator with logic techniques incorporated to
permit positive or negative edge-triggered
monostable multivibrator action with retriggering
and external counting options. Inputs include
+TRIGGER -TRIGGER, ASTABLE, ASTABLE,
RETRIGGER, and EXTERNAL RESET. Buffered
outputs are Q, Q and OSCILLATOR. In all modes
of operation, an external capacitor must be
connected between C-Timing and RC-Common
terminals, and an external resistor must be
connected between the R-Timing and
RC-Common terminals.
For operating modes see functional terminal
connections and application notes.
HCF4047B

LOW POWER MONOSTABLE/ASTABLE MULTIVIBRATOR
PIN CONNECTION
ORDER CODES
HCF4047B
2/12
INPUT EQUIVALENT CIRCUIT PIN DESCRIPTION
BLOCK DIAGRAM


HCF4047B
3/12
FUNCTIONAL TERMINAL CONNECTIONS

* In all cases external capacitor and resistor between pins, 1, 2 and 3 (see logic diagrams).
** Input pulse to Reset of External Counting Chip.
External Counting Chip Output to pin 4.
LOGIC DIAGRAM
HCF4047B
4/12
DETAIL FOR FLIP-FLOPS FF1 AND FF3 (a) AND FOR FLIP-FLOPS FF2 AND FF4 (b)
ABSOLUTE MAXIMUM RATINGS

Absolute Maximum Ratings are those values beyond which damage to the device may occur. Functional operation under these conditions is
not implied.
All voltage values are referred to VSS pin voltage.
RECOMMENDED OPERATING CONDITIONS
HCF4047B
5/12
DC SPECIFICATIONS

The Noise Margin for both "1" and "0" level is: 1V min. with VDD=5V, 2V min. with VDD=10V, 2.5V min. with VDD=15V
HCF4047B
6/12
DYNAMIC ELECTRICAL CHARACTERISTICS (T
amb = 25°C, CL = 50pF, RL = 200KΩ, tr = tf = 20 ns)
(*) Typical temperature coefficient for all VDD value is 0.3 %/°C.
APPLICATION INFORMATION

1 - CIRCUIT DESCRIPTION
Astable operation is enabled by a high level on the
ASTABLE input. The period of the square wave at
the Q and Q Outputs in this mode of operation is a
function of the external components employed.
"True" input pulses on the ASTABLE input or
"Complement" pulses on the ASTABLE input
allow the circuit to be used as a gatable
multivibrator. The OSCILLATOR output period will
be half of the Q terminal output in the astable
mode. However, a 50% duty cycle is not
guaranteed at this output. In the monostable
mode, positive-edge triggering is accomplished by
application of a leading-edge pulse to the
+TRIGGER input and a low level to the -TRIGGER
input. For negative-edge triggering, a trailing-edge
pulse is applied to the -TRIGGER and a high level
is applied to the +TRIGGER. Input pulses may be
of any duration relative to the output pulse. The
multivibrator can be retriggered (on the leading
edge only) by applying a common pulse to both
the RETRIGGER and +TRIGGER inputs. In this
mode the output pulse remains high as long as the
input pulse period is shorter than the period
determined by the RC components. An external
countdown option can be implemented by
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